{"id":23195,"date":"2026-03-17T11:48:10","date_gmt":"2026-03-17T10:48:10","guid":{"rendered":"https:\/\/www.geowiss.uni-mainz.de\/institut-fuer-geowissenschaften\/petrologie\/"},"modified":"2026-05-06T13:09:26","modified_gmt":"2026-05-06T11:09:26","slug":"petrologie","status":"publish","type":"page","link":"https:\/\/www.geowiss.uni-mainz.de\/en\/institut-fuer-geowissenschaften\/petrologie\/","title":{"rendered":"Petrology"},"content":{"rendered":"\n<div style=\"height:22px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<jgu-base-anchornavigation react-props=\"{\n    &quot;theme&quot;: &quot;default&quot;,\n    &quot;align&quot;: &quot;wide&quot;\n}\">\n    \n<\/jgu-base-anchornavigation><jgu-base-heading react-props=\"{\n    &quot;anchor&quot;: &quot;petrologie-start&quot;,\n    &quot;index&quot;: &quot;AG&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Petrology&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n<jgu-base-teaserbox react-props=\"{\n    &quot;headline&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;image&quot;: {\n        &quot;id&quot;: 10375,\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/650-CPx-1-Ti.png&quot;,\n        &quot;caption&quot;: &quot;Element distribution map demonstrating variations in Ti content in a CPx crystal&lt;br&gt;&quot;,\n        &quot;credit&quot;: &quot;S. Buhre&quot;,\n        &quot;alt&quot;: &quot;Zonierter Clinopyroxen-Kristall, EPMA Element Map von Ti&quot;,\n        &quot;description&quot;: &quot;Zonierter Clinopyroxen-Kristall, EPMA Element Map von Ti&quot;,\n        &quot;title&quot;: &quot;650 CPx-1 Ti&quot;,\n        &quot;width&quot;: 951,\n        &quot;height&quot;: 606,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/650-CPx-1-Ti.png 951w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/650-CPx-1-Ti-300x191.png 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/650-CPx-1-Ti-768x489.png 768w&quot;\n    },\n    &quot;color&quot;: &quot;red&quot;,\n    &quot;index&quot;: &quot;Research group&quot;,\n    &quot;title&quot;: &quot;&lt;strong&gt;Petrology&lt;\\\/strong&gt;&quot;,\n    &quot;excerpt&quot;: &quot;&lt;strong&gt;Our research focuses on the formation and evolution of magmatic rocks as well as magmatic processes in the Earth&#039;s crust and upper mantle.&lt;\\\/strong&gt;&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;icon&quot;: &quot;&quot;,\n    &quot;iconColor&quot;: &quot;default&quot;,\n    &quot;isCalendar&quot;: false,\n    &quot;iconBoxed&quot;: false,\n    &quot;useLinkList&quot;: false,\n    &quot;linkList&quot;: {},\n    &quot;hideThumbnail&quot;: false,\n    &quot;type&quot;: &quot;boxed&quot;,\n    &quot;linkTitle&quot;: &quot;&quot;,\n    &quot;linkStyle&quot;: &quot;default&quot;,\n    &quot;overboxImage&quot;: false,\n    &quot;differingHeadlineColor&quot;: false,\n    &quot;headlineColor&quot;: &quot;&quot;,\n    &quot;textPositionBottom&quot;: false,\n    &quot;template&quot;: &quot;&quot;,\n    &quot;video&quot;: {\n        &quot;provider&quot;: &quot;youtube&quot;,\n        &quot;id&quot;: &quot;&quot;,\n        &quot;poster&quot;: &quot;&quot;\n    },\n    &quot;audioUrl&quot;: &quot;&quot;,\n    &quot;unbound&quot;: false\n}\">\n    \n<\/jgu-base-teaserbox>\n<div style=\"height:90px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:66.66%\">\n<p class=\"has-big-font-size\"><strong>Petrology deals with the study of the chemical and physical properties of rocks and minerals in order to reconstruct the conditions under which they form and evolve.<\/strong><br\/><\/p>\n\n\n\n<p class=\"has-big-font-size\">Our petrological research primarily focuses on the formation and evolution of magmatic rocks as well as metamorphic processes within the Earth&#8217;s crust and upper mantle.<br\/>We investigate the interplay between the conditions of magma genesis and the composition of magmatic rocks, as well as the processes that lead to the formation of ore deposits. One of the main directions of our research is the formation of critical resources such as oxide-, sulfide-, and carbonatite-related ores.<br\/>A central aspect of our work is the analysis and interpretation of the major and trace element composition of rocks and minerals. For this purpose, we use our in-house analytical facilities, including an electron microprobe, spectroscopy, laser-ICP-MS, and high-pressure high-temperature apparatus. Our research projects include fieldwork in various regions worldwide.   <\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:33.33%\"><jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Bild-1-Petrologie.jpg&quot;,\n        &quot;id&quot;: 13145,\n        &quot;title&quot;: &quot;Bild 1 Petrologie&quot;,\n        &quot;width&quot;: 1280,\n        &quot;height&quot;: 933,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Bild-1-Petrologie.jpg 1280w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Bild-1-Petrologie-300x219.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Bild-1-Petrologie-1024x746.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Bild-1-Petrologie-768x560.jpg 768w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image><\/div>\n<\/div>\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\"><\/div>\n<jgu-base-section react-props=\"{&quot;color&quot;:&quot;white-dark-text&quot;,&quot;metadata&quot;:{&quot;name&quot;:&quot;News&quot;},&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-white-dark-text \"><div class=\"content padding-medium\"><div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"news\"\n\tdata-label=\"News\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;anchor&quot;: &quot;news&quot;,\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;News&quot;,\n    &quot;className&quot;: &quot;&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n<jgu-base-postlisting react-props=\"{\n    &quot;categories&quot;: [\n        &quot;789;42&quot;\n    ],\n    &quot;align&quot;: &quot;&quot;,\n    &quot;type&quot;: &quot;slider&quot;,\n    &quot;isInFocus&quot;: false,\n    &quot;focusGroup&quot;: [],\n    &quot;isInFocusListing&quot;: false,\n    &quot;focusGroupListing&quot;: [],\n    &quot;categoriesListing&quot;: [],\n    &quot;limitListing&quot;: 10,\n    &quot;count&quot;: 10,\n    &quot;headline&quot;: &quot;Pressemeldungen&quot;,\n    &quot;secondHeadline&quot;: &quot;Kurznews&quot;,\n    &quot;color&quot;: &quot;default&quot;,\n    &quot;posts&quot;: [\n        {\n            &quot;id&quot;: &quot;16247&quot;,\n            &quot;index&quot;: &quot;27.03.2026&quot;,\n            &quot;title&quot;: &quot;Neues Elektronenstrahl-Mikrosonden-Labor er\\u00f6ffnet&quot;,\n            &quot;excerpt&quot;: &quot;Im Beisein von Wissenschaftsminister Clemens Hoch hat die Johannes Gutenberg-Universit\\u00e4t Mainz ihr neues Elektronenstrahl-Mikrosonden-Labor eingeweiht. Die feierliche Er\\u00f6ffnung unterstreicht die&amp;hellip;&quot;,\n            &quot;link&quot;: {\n                &quot;url&quot;: &quot;https:\\\/\\\/www.geowiss.uni-mainz.de\\\/2026\\\/03\\\/27\\\/neues-elektronenstrahl-mikrosonden-labor-durch-wissenschaftsminister-clemens-hoch-eroeffnet\\\/&quot;,\n                &quot;title&quot;: &quot;mehr erfahren&quot;,\n                &quot;target&quot;: &quot;_self&quot;\n            },\n            &quot;linkIcon&quot;: &quot;arrow-right-solid&quot;,\n            &quot;media&quot;: {},\n            &quot;image&quot;: {\n                &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Mittel-core4u_epma-sonde_buhre_hoch.jpeg&quot;,\n                &quot;credit&quot;: &quot;Peter Pulkowski&quot;\n            }\n        },\n        {\n            &quot;id&quot;: &quot;16202&quot;,\n            &quot;index&quot;: &quot;AG Petrologie&quot;,\n            &quot;title&quot;: &quot;Prof. Ilya Bindemann (University of Oregon, USA) zu Gast&quot;,\n            &quot;excerpt&quot;: &quot;Humboldt-Forschungspreistr\\u00e4ger Professor Bindemann ist ein weltweit f\\u00fchrender Experte f\\u00fcr die Analyse stabiler Isotope in geologischen Materialien und hat bedeutende Entdeckungen&amp;hellip;&quot;,\n            &quot;link&quot;: {\n                &quot;url&quot;: &quot;https:\\\/\\\/www.geowiss.uni-mainz.de\\\/2026\\\/03\\\/27\\\/prof-ilya-bindeman-ist-gast-am-institut-fuer-geowissenschaften\\\/&quot;,\n                &quot;title&quot;: &quot;mehr erfahren&quot;,\n                &quot;target&quot;: &quot;_self&quot;\n            },\n            &quot;linkIcon&quot;: &quot;arrow-right-solid&quot;,\n            &quot;media&quot;: {},\n            &quot;image&quot;: {\n                &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/ilya-bindeman.webp&quot;,\n                &quot;credit&quot;: &quot;&quot;\n            }\n        },\n        {\n            &quot;id&quot;: &quot;16291&quot;,\n            &quot;index&quot;: &quot;Exkursionen&quot;,\n            &quot;title&quot;: &quot;Islandkampagne untersucht Flux toxischer Metalle&quot;,\n            &quot;excerpt&quot;: &quot;Das interdisziplin\\u00e4re Forschungsprojekt untersuchte den Beitrag des Island-Mantel-Plumes zum erh\\u00f6hten Eintrag toxischer und gef\\u00e4hrlicher Metalle in die Erdkruste und die&amp;hellip;&quot;,\n            &quot;link&quot;: {\n                &quot;url&quot;: &quot;https:\\\/\\\/www.geowiss.uni-mainz.de\\\/2025\\\/08\\\/27\\\/islandkampagne-untersucht-flux-toxischer-metalle\\\/&quot;,\n                &quot;title&quot;: &quot;mehr erfahren&quot;,\n                &quot;target&quot;: &quot;_self&quot;\n            },\n            &quot;linkIcon&quot;: &quot;arrow-right-solid&quot;,\n            &quot;media&quot;: {},\n            &quot;image&quot;: {\n                &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Mittel-Island-Stricklava-e1774630864820.jpeg&quot;,\n                &quot;credit&quot;: &quot;S. Buhre&quot;\n            }\n        },\n        {\n            &quot;id&quot;: &quot;16964&quot;,\n            &quot;index&quot;: &quot;Exkursionen&quot;,\n            &quot;title&quot;: &quot;Gel\\u00e4ndekampagne zur Entstehung podiformer Chromerze&quot;,\n            &quot;excerpt&quot;: &quot;Ende August 2024 begab sich ein Team der Arbeitsgemeinschaften Petrologie und Metamorphe Prozesse auf eine Exkursion in das zerkl\\u00fcftete Pindos-Gebirge&amp;hellip;&quot;,\n            &quot;link&quot;: {\n                &quot;url&quot;: &quot;https:\\\/\\\/www.geowiss.uni-mainz.de\\\/2024\\\/08\\\/04\\\/gelaendekampagne-zur-entstehung-podiformer-chromerze\\\/&quot;,\n                &quot;title&quot;: &quot;mehr erfahren&quot;,\n                &quot;target&quot;: &quot;_self&quot;\n            },\n            &quot;linkIcon&quot;: &quot;arrow-right-solid&quot;,\n            &quot;media&quot;: {},\n            &quot;image&quot;: {\n                &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/chromerz.jpeg&quot;,\n                &quot;credit&quot;: &quot;&quot;\n            }\n        }\n    ],\n    &quot;listPosts&quot;: []\n}\"><\/jgu-base-postlisting><\/div><\/div>\n<\/jgu-base-section>\n<div class=\"wp-block-group alignwide is-layout-constrained wp-block-group-is-layout-constrained\">\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"research\"\n\tdata-label=\"Research\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n\n<div style=\"height:90px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Research&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n<jgu-base-tabs react-props=\"{\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;selected&quot;: 1,\n    &quot;ratio&quot;: 0,\n    &quot;autoRatio&quot;: true,\n    &quot;stackMobile&quot;: false,\n    &quot;hasAllOpenButton&quot;: true,\n    &quot;onlyOne&quot;: false,\n    &quot;initAllClosed&quot;: true,\n    &quot;enableSearch&quot;: false,\n    &quot;layout&quot;: {\n        &quot;type&quot;: &quot;flex&quot;,\n        &quot;flexWrap&quot;: &quot;nowrap&quot;,\n        &quot;justifyContent&quot;: &quot;space-between&quot;,\n        &quot;orientation&quot;: &quot;horizontal&quot;\n    }\n}\">\n    \n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;Current Research Topics&quot;,\n    &quot;slug&quot;: &quot;current-research-topics&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-section react-props=\"{&quot;color&quot;:&quot;white-dark-text&quot;,&quot;metadata&quot;:{&quot;name&quot;:&quot;Forschung&quot;},&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-white-dark-text \"><div class=\"content padding-medium\">\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>The role of Iceland mantle plume in the flux of toxic and heavy metals from the lithosphere to the hydrosphere<\/strong><br\/>PIs: Botcharnikov R. (Mainz), Portnyagin M. (Geomar, Kiel), Pogge von Strandmann P. (Mainz), Buhre S. (Mainz), Rojas-Agramonte Y. (Heidelberg), Winter C. (Kiel)<br\/>Funding: EarthCrysis<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Geochemical and gemological aspects of danburite crystals from salt diapirs: A case study from Southern Iran<\/strong><br\/>Funding: Alexander von Humboldt Foundation<br\/>PIs: R. Botcharnikov, T. H\u00e4ger,<br\/>Postdoctoral researcher: Dr. Elahe Namnabat<\/p>\n<\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Formation of cratonic lithospheric roots: Constraints from experimental petrological studies<\/strong><br\/>Funding: China Scholarship Council (CSC)<br\/>PIs: Tong Hou (Beijing) and Roman Botcharnikov (Mainz)<br\/>Visiting PhD student: Zongpeng Yang<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Modelling of CHROMium Enrichment in the mantle and the crust (CHROME)<\/strong><br\/>PIs: E. Moulas, R. Botcharnikov, B. Kaus, S. Buhre<br\/>Funding: DFG, SPP DOME<br\/>Postdoctoral researcher: Dr. Nicolas Riel<\/p>\n<\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Izu-Bonin-Mariana boninites &#8211; natural laboratory to study mantle melting and the evolution of magma plumbing systems in early stages of subduction<\/strong><br\/>PIs: R. Almeev, F. Holtz, J. Koepke (Hannover), R. Botcharnikov (Mainz)<br\/>Funding: DFG, SPP IODP<br\/>Students: PhD Lennart Koch (Hannover)<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>High-pressure and high-temperature treatment of diamonds<\/strong><br\/>PIs: T. H\u00e4ger, R. Botcharnikov, S. Buhre<br\/>Funding: Idar-Oberstein, JGU<br\/>Students: PhD N.N.<\/p>\n<\/div>\n<\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Completed research projects&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Carbon recycling by arc magmatism: an assessment from experimentally homogenized melt inclusions in high-Mg olivine<\/strong><br\/>PIs: R. Botcharnikov (Mainz), F. Holtz (Hannover), M. Portnyagin (Kiel), N. Mironov (Moscow)<br\/>Funding: DFG-RFBR Joint German-Russian Program<br\/>Students: PhD Stepan Krasheninnikov (Hannover \u2013 Mainz), BSc Anna Bott (Mainz)<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Rare-metal enrichment mechanism in anatectic pegmatites: Evidence from partial melting experiments<\/strong><br\/>Visiting PhD student: Siyu Liu<br\/>Funding: China Scholarship Council (CSC)<br\/>PIs: Rui Wang (Beijing) and Roman Botcharnikov (Mainz)<\/p>\n<\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Metallogenesis of the submarine volcanogenic iron oxide deposit in Western Tianshan, NW China<\/strong><br\/>Visiting PhD student: Hengxu Li<br\/>Funding: China Scholarship Council (CSC)<br\/>PIs: Zhaochong Zhang (Beijing), Tong Hou (Beijing) and Roman Botcharnikov (Mainz)<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Spectroscopic analyses and quantification of water and iron contents in beryl from different localities<\/strong><br\/>PIs: T. H\u00e4ger and R. Botcharnikov<br\/>Funding: Idar-Oberstein, JGU<br\/>Student: PhD Carina Hanser<\/p>\n<\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Constraining the time scales of magmatic and metamorphic<br\/>processes<\/strong><br\/>PIs: E. Moulas and R. Botcharnikov<br\/>Funding: JGU<br\/>Student: PhD Annalena Stroh<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Rare-metal enrichment in carbonatite-bearing magmatic systems: Part B. Understanding the role of fractional crystallization and liquid immiscibility by experimental simulations of silicate-carbonatite systems<\/strong><br\/>PIs: R. Botcharnikov, S. Buhre (Mainz), F. Holtz (Hannover), M. Tichomirowa, B. Schulz (Freiberg), R. Klemd (Erlangen)<br\/>Funding: DFG SPP &#8220;DOME&#8221; 2238 \u2013 Dynamics of Ore Metals Enrichment<br\/>Students: PhD Antonia Simon (Hannover \u2013 Mainz)<\/p>\n<\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Enrichment processes during transfer of chromium from the mantle to the crust<\/strong><br\/>PIs: R. Botcharnikov, E. Moulas, S. Buhre (Mainz)<br\/>Funding: DFG SPP &#8220;DOME&#8221; 2238 \u2013 Dynamics of Ore Metals Enrichment<br\/>Students: PhD Myriam Ruttmann<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Rare-metal enrichment in carbonatite-bearing magmatic systems: Part A. Understanding magmatic evolution and enrichment processes in time by high-precision dating and inclusion studies<\/strong><br\/>PIs: R. Botcharnikov (Mainz), F. Holtz (Hannover), M. Tichomirowa, B. Schulz (Freiberg), R. Klemd (Erlangen)<br\/>Funding: DFG SPP &#8220;DOME&#8221; 2238 \u2013 Dynamics of Ore Metals Enrichment<br\/>Students: PhD Daria Voropaeva (Freiberg), MSc Philipp Richert (Mainz)<\/p>\n<\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>How platinum-group elements are accommodated in magmatic sulfide phases, substitutions and inclusions?<\/strong><br\/>PIs: Hassan Helmy, Roman Botcharnikov<br\/>Funding: Alexander von Humboldt Fellowship for Prof. Hassan Helmy<br\/>Student: BSc Elisa Winkes<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Atmospheric Inorganic and Organic Selenium Speciation in Volcanic Environments<\/strong><br\/>PI: Alexandra Gutmann<br\/>Funding: JGU<\/p>\n<\/div>\n<\/div>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Formation of monomineralic Fe-Ti oxide ores in the high-Ti ferrobasaltic system: A case study in Emeishan, China<\/strong><br\/>PIs: F. Holtz (Hannover), R. Botcharnikov (Mainz), Z. Zhang (Beijing), T. Hou (Beijing)<br\/>Funding: DFG \u2013 China, Sino-German Program<br\/>Students: PhD Sarah Haselbach (Hannover), BSc Jonas Thiel (Mainz)<\/p>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\">\n<p class=\"has-big-font-size\"><strong>Behavior of chalcophile elements in subduction zone processes<br\/>PI: R. Botcharnikov<\/strong><br\/>Funding: DFG<br\/>Students: PhD Anastasia Zemlitskaya, MSc Katharina Kuper, BSc Amanda Marianov, BSc Wieland B\u00f6hme, BSc Oumar Mbareck<\/p>\n<\/div>\n<\/div>\n\n\n\n<div style=\"height:131px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<\/div><\/div>\n<\/jgu-base-section>\n\n\n<p class=\"has-big-font-size\"><\/p>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;Current Publications&quot;,\n    &quot;slug&quot;: &quot;current-publications&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<p class=\"has-big-font-size\"><\/p>\n\n\n\n<p class=\"has-big-font-size\"><a><strong>2026<\/strong><\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\">Chen, S., Hou, T., Pan, R., Luo, D., Liu, G., <strong>Botcharnikov, R.<\/strong> (2026). Multi-level magma reservoir and open system processes of the Tianchi caldera, Changbaishan Volcanic Field, NE China. <em>Journal of Volcanology and Geothermal Research<\/em> 473, 108598. <a href=\"https:\/\/doi.org\/10.1016\/j.jvolgeores.2026.108598\">https:\/\/doi.org\/10.1016\/j.jvolgeores.2026.108598<\/a> <\/p>\n\n\n\n<p class=\"has-big-font-size\">Portnyagin M., <strong>Botcharnikov R.<\/strong>, Yogodzinski G., Garbe-Sch\u00f6nber D., Hoernle K. (2026) Melting of sulfide-bearing slab beneath the Western Aleutian Arc: Implications for chalcophile element abundances in slab-derived melts and the origin of continental crust. <em>Geology<\/em>, doi.org\/10.1130\/G53585.1<\/p>\n\n\n\n<p class=\"has-big-font-size\"><\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>2025<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">Bindeman, I. N., J. Palandri, and C. Cimarelli. &#8220;Fulgurites: The Earth&#8217;s Minute Melts and Their Interaction with the Atmosphere.&#8221; Geochemical Perspectives Letters 38, no. 38 (2025): 1\u20135.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">Yang Z., Hou T., <strong>Botcharnikov R.,<\/strong> Moulas E., Weyer S., Wang M., Buhre S., and Zhang Z. (2025) Seismic and isotopic evidence for depth-dependent mantle sources of intraplate basalts from Eastern China. <em>Communications Earth &amp; Environment,<\/em> 6, 1048<em>,<\/em> <a href=\"https:\/\/doi.org\/10.1038\/s43247-025-03024-3\">https:\/\/doi.org\/10.1038\/s43247-025-03024-3<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\">Liu W., Shi G., Zhou Z., Qin L., Li X., <strong>Botcharnikov R.<\/strong>, Quan X., Yuan Y., H\u00e4ger T., Jantschke A. (2025) High-temperature wood silicification: Constraints from fluid and carbonaceous inclusions in quartz from Qitai, NW China. <em>Scientific Reports,<\/em> 15, 421961, <a href=\"https:\/\/doi.org\/10.1038\/s41598-025-27072-z\">https:\/\/doi.org\/10.1038\/s41598-025-27072-z<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\">Scicchitano, M. R., Shishkina, T. A., Wilke, F., Wilke, M., <strong>Botcharnikov, R. E.<\/strong>, Almeev, R. R. (2025). Basaltic glasses for quantification of CO<sub>2<\/sub> and H<sub>2<\/sub>O content by Secondary Ion Mass Spectrometry (SIMS). GFZ Data Services.   <a href=\"https:\/\/doi.org\/10.5880\/GFZ.3.1.2024.009\">https:\/\/doi.org\/10.5880\/GFZ.3.1.2024.009<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\">Shea J., Hughes E., Balzer R., Bindemann I., Blundy J., Brooker R., <strong>Botcharnikov R<\/strong>., Cartigny P., EIMF, Gaetani G., Kilgour G., Maclennan J., Monteleone B., Neave D., Shorttle O. (2025) Improved precision and reference materials for stable carbon isotope analysis in basaltic glasses using secondary ion mass spectrometry. <em>Geostandards and Geoanalytical Research<\/em> 49 (3), 607-627. <a href=\"https:\/\/doi.org\/10.1111\/ggr.12609\">https:\/\/doi.org\/10.1111\/ggr.12609<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\">Hanser C.S., Schmitz F., H\u00e4ger T., <strong>Botcharnikov R.<\/strong> (2025) Quantification of the Fe content in blue beryls and bluish-green emeralds using spectrum resolution of UV-Vis-NIR spectra.  <em>The Journal of Gemmology, 39: 338-350. doi.org\/10.15506\/JoG.2025.39.5.338 <\/em><\/p>\n\n\n\n<p class=\"has-big-font-size\">Wang, D., Hou, H., <strong>Botcharnikov, R<\/strong>., Weyer, S., Haselbach, S.-L., Zhang, Z., Wang, M., Horn, I., Holtz, F. (2025) Fe-isotopic evidence for hydrothermal reworking as a mechanism to form high-grade Fe-Ti-V oxide ores in layered intrusions, <em>Geochimica et Cosmochimica Acta<\/em>, 388, 78-93, <a href=\"https:\/\/doi.org\/10.1016\/j.gca.2024.11.017\">https:\/\/doi.org\/10.1016\/j.gca.2024.11.017<\/a>.<\/p>\n\n\n\n<p class=\"has-big-font-size\">Liu S., Wang R., <strong>Botcharnikov R<\/strong>., Sha H. (2025) Formation of rare-element pegmatites in the Chinese Altai: Contribution of two-stage melting. <em>Geology<\/em> 53: 207-211; doi: <a href=\"https:\/\/doi.org\/10.1130\/G52880.1\" target=\"_blank\" rel=\"noreferrer noopener\">https:\/\/doi.org\/10.1130\/G52880.1<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>2024<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">Stechern, A., Blum-Oeste, M., <strong>Botcharnikov, R. E.<\/strong>, Holtz, F., and W\u00f6rner, G. (2024) Magma storage conditions of Lascar andesites, central volcanic zone, Chile, <em>Eur. J. Mineral <\/em>., 36, 721\u2013748, <a href=\"https:\/\/doi.org\/10.5194\/ejm-36-721-2024\">https:\/\/doi.org\/10.5194\/ejm-36-721-2024<\/a>.<\/p>\n\n\n\n<p class=\"has-big-font-size\">Wang, D., Hou, H., <strong>Botcharnikov, R<\/strong>., Haselbach, S.-L., Almeev, R., Kluegel, A., Wang, M., Qin, J., Zhang, Z., Holtz, F. (2024) Experimental Constraints on the Storage Conditions and Differentiation of High-Ti Basalts from the Panzhihua and Hongge Layered Intrusions, SW China. <em>Journal of Petrology<\/em> (in press)<\/p>\n\n\n\n<p class=\"has-big-font-size\">Hanser C.S., Vullum P. E., van Helvoort A. T. J., Schmitz F., H\u00e4ger T., <strong>Botcharnikov R.,<\/strong> Bodil H. (2024) Atomic resolution transmission electron microscopy visualisation of channel occupancy in beryl in different crystallographic directions. <em>Physics and Chemistry of Minerals,<\/em> 51: 24; 51:24; https:\/\/doi.org\/10.1007\/s00269-024-01285-6.<\/p>\n\n\n\n<p class=\"has-big-font-size\">Hanser C.S., H\u00e4ger T., <strong>Botcharnikov R.<\/strong> (2024) Incorporation and substitution of ions and H<sub>2<\/sub>O in the structure of beryl. <em>European Journal of Mineralogy,<\/em> 36, 449\u2013472, https:\/\/doi.org\/10.5194\/ejm-36-449-2024<\/p>\n\n\n\n<p class=\"has-big-font-size\">Stroh, A., Moulas, E., and <strong>Botcharnikov, R.<\/strong> (2024) FIDDO: FInite Difference Diffusion in Olivine (1.0). <em>Zenodo<\/em>.  https:\/\/doi.org\/10.5281\/zenodo.10964860<\/p>\n\n\n\n<p class=\"has-big-font-size\">Yang D.-M., Hou H., <strong>Botcharnikov R<\/strong>., Veksler I., Holtz F., Zhang Z., Zhang L., Simon A., Groschopf N. (2024) An experimental study on the role of F<sup>\u2013<\/sup>, PO<sub>4<\/sub><sup>3-<\/sup>, Cl<sup>\u2013<\/sup> and SO<sub>4<\/sub><sup>2-<\/sup> ligands in the natrocarbonatite-nephelinite system at 850 \u2103 and 0.1 GPa. <em>Chemical Geology<\/em>, 655: 122085. https:\/\/doi.org\/10.1016\/j.chemgeo.2024.122085<\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Botcharnikov<\/strong> <strong>R<\/strong>., Wilke M., Garrevoet J., Portnyagin M., Klimm K., Buhre, S., Krasheninnikov, S., Almeev R., Moune S., Falkenberg G. (2024) Confocal m-XANES as a tool to analyse Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano. <em>European Journal of Mineralogy,<\/em> 36, 195\u2013208, https:\/\/doi.org\/10.5194\/ejm-36-195-2024.<\/p>\n\n\n\n<p class=\"has-big-font-size\">Qi D., Behrens H., Lazarov M., <strong>Botcharnikov R.<\/strong>, Zhang C., Ostertag-Henning C., Weyer S. (2024) <a><\/a>An experimental study on the reaction of cuprite (Cu<sub>2<\/sub>O) with acetate-bearing hydrothermal fluids at 100\u00b0C \u2013 250\u00b0C and 5 \u2013 30 MPa. <em>ACS Earth and Space Chemistry,<\/em> https:\/\/doi.org\/10.1021\/acsearthspacechem.3c00254<\/p>\n\n\n\n<p class=\"has-big-font-size\">Helmy, H., <strong>Botcharnikov, R.,<\/strong> Ballhaus, C., Buhre S. (2024) How and when do Pt-and Pd-semimetal minerals crystallize from saturated sulfide liquids? <em>Frontiers in Earth Science,<\/em> 11:1275208<em>;<\/em> <a href=\"https:\/\/doi.org\/10.3389\/feart.2023.1275208\">https:\/\/doi.org\/10.3389\/feart.2023.1275208<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\">Voropaeva D., Arzamastsev A.A., <strong>Botcharnikov R.,<\/strong> Buhre S., Gilbricht S., G\u00f6tze J., Klemd R., Schulz B., Tichomirowa M. (2024) LREE rich perovskite in antiskarn reactions \u2013 REE transfer from pyroxenites to carbonatites? <em>Lithos<\/em>, 468\u2013469, 107480; <a href=\"https:\/\/doi.org\/10.1016\/j.lithos.2023.107480\">https:\/\/doi.org\/10.1016\/j.lithos.2023.107480<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>2023<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">Helmy, H., <strong>Botcharnikov, R.,<\/strong> Ballhaus, C., Wirth, R., Schreiber, A. (2023) How Pt and Pd sit in magmatic sulfide phases, substitutions and\/or inclusions? <em>Contrib. Mineral. Petrol.  <\/em>  178:7, 41. doi.org\/10.1007\/s00410-023-02018-8.<\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Hanser C.S.<\/strong>, Stephan T., Gul B., H\u00e4ger T., <strong>Botcharnikov R.<\/strong> (2023) Comparison of emeralds from the Chitral District, Pakistan with other Pakistani and Afghan emeralds. <em>The Journal of Gemmology,<\/em> 38(6), 582-599. <\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Sorokina E.<\/strong>, Albert R., <strong>Botcharnikov R.<\/strong>, Popov M., H\u00e4ger T., Hofmeister W., Gerdes A. (2023) Genesis of Uralian andradite (var. demantoid): Constrains from in situ U-Pb LA-ICP-MS dating and trace element analysis. <em>Lithos,<\/em> 444-445: 107091. <a href=\"https:\/\/doi.org\/10.1016\/j.lithos.2023.107091\">https:\/\/doi.org\/10.1016\/j.lithos.2023.107091<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\">Yang Z., Hou T., Wang D., Marxer F., Wang M., Chebotarev D., Zhang Z., Zhang H., <strong>Botcharnikov R.,<\/strong> Holtz F. (2023) The role of magma mixing in the petrogenesis of Eocene ultrapotassic lavas, Western Yunnan, SW China. <em>Journal of Petrology,<\/em> 64, 1\u201326 (Editor&#8217;s Choice paper), https:\/\/doi.org\/10.1093\/petrology\/egac129<\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>2022<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">Luo D., Reichow M.K., Hou T., Santosh M., Zhang Z., Wang M., Qin J., Yang D., Pan R., Wang, X., Holtz F., <strong>Botcharnikov R.<\/strong> (2022) A snapshot of the transition from monogenetic volcanoes to composite volcanoes: case study on the Wulanhada Volcanic Field (northern China). <em>European Journal of Mineralogy<\/em>, 34, 469\u2013491, 2022; https:\/\/doi.org\/10.5194\/ejm-34-469-2022 <\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Hanser C.S.,<\/strong> Gul B., H\u00e4ger T., <strong>Botcharnikov R.<\/strong> (2022) Emerald from the Chitral region, Pakistan: A new deposit. <em>The Journal of Gemmology<\/em>, 38(3), 234\u2013252, <a href=\"https:\/\/doi.org\/10.15506\/JoG.2022.38.3.234\">https:\/\/doi.org\/10.15506\/JoG.2022.38.3.234<\/a> <\/p>\n\n\n\n<p class=\"has-big-font-size\">Pan R., Hou T., Wang X., Encarnaci\u00f3n, J., <strong>Botcharnikov R.<\/strong> (2022) Multiple magma storage regions and open system processes revealed by chemistry and textures of the Datong tholeiitic lavas, North China Craton. <em>Journal of Petrology,<\/em> egac034, <a href=\"https:\/\/doi.org\/10.1093\/petrology\/egac034\">https:\/\/doi.org\/10.1093\/petrology\/egac034<\/a> <\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>2021<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">Sugzdaite A., H\u00e4ger T., <strong>Sorokina E.,<\/strong> Popov M.P., Nikolaev A.G., <strong>Botcharnikov R<\/strong>., Hofmeister W. (2021) Investigations of natural and heat-treated demantoids from the Central Ural Mountains in Russia. Z. Dt. Gemmol. Ges., 70\/3-4, 19-36.<\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Helmy,<\/strong> <strong>H.,<\/strong> <strong>Botcharnikov, R.,<\/strong> Ballhaus, C., <strong>Deutsch-Zemlitskaya, A.,<\/strong> Wirth, R., Schreiber, A., <strong>Buhre, S.,<\/strong> and H\u00e4ger, T. (2021) Evolution of magmatic sulfide liquids: how and when base metal sulfides crystallize? <em>Contrib. Mineral. Petrol., 176: 107.<\/em> <a href=\"https:\/\/doi.org\/10.1007\/s00410-021-01868-4\">https:\/\/doi.org\/10.1007\/s00410-021-01868-4<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\">F\u00fcri E., Portnyagin M., Mironov N., Delignya C., Gurenko A., <strong>Botcharnikov R<\/strong>., Holtz F. (2021) In situ quantification of the nitrogen content of olivine-hosted melt inclusions from Klyuchevskoy volcano (Kamchatka): Implications for nitrogen recycling at subduction zones. <em>Chemical Geology<\/em>, 582: 120456.<\/p>\n\n\n\n<p class=\"has-big-font-size\">Hou T., <strong>Botcharnikov R<\/strong>., Moulas E., Just T., Koepke, J., Berndt J., Yang Z., Zhang Z., Wang M., and Holtz F. (2021) Kinetics of Fe-Ti oxide re-equilibration in magmatic systems: Implications for thermo-oxybarometry. <em>Journal of Petrology<\/em>, 1-24, doi.org\/10.1093\/petrology\/egaa116.<\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Sorokina E.,<\/strong> <strong>Botcharnikov R.<\/strong>, Kostitsyn Y.A., R\u00f6sel D., H\u00e4ger T., Rassomakhin M.A., Kononkova N.N., Somsikova A.V., Berndt J., Ludwig T., Medvedeva E.V., Hofmeister W. (2021) Sapphire-bearing magmatic rocks trace the boundary between paleo-continents: A case study of Ilmenogorsky alkaline complex, Uralian collision zone of Russia. <em>Gondwana Research<\/em>, 92, 239-252. <a href=\"https:\/\/doi.org\/10.1016\/j.gr.2021.01.001\">https:\/\/doi.org\/10.1016\/j.gr.2021.01.001<\/a><\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>2020<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">Korneeva A.A., Nekrylov N., Kamenetsky V.S., Portnyagin M.V., Savelyev D.P., Krasheninnikov S.P, Abersteiner A., Kamenetsky M.B., Zelenski M.E., Shcherbakov V.D., and <strong>Botcharnikov R.E.<\/strong> (2020) Composition, crystallization conditions and genesis of sulfide-saturated parental melts of olivine-phyric rocks from Kamchatsky Mys (Kamchatka, Russia). <em>Lithos<\/em> 370, 105657. <\/p>\n\n\n\n<p class=\"has-big-font-size\">Qi, D., Behrens, H., <strong>Botcharnikov, R.,<\/strong> Derrey, I., Holtz, F., Zhang, C., Li, X., and Horn, I. (2020) Reaction between Cu-bearing minerals and hydrothermal fluids at 800\u00b0C and 200 MPa: constraints from synthetic fluid inclusions. <em>Am. Mineralogist <\/em>, 105 (8), 1126-1139.<\/p>\n\n\n\n<p class=\"has-big-font-size\">Litvinenko A.K., <strong>Sorokina E.S.,<\/strong> H\u00e4ger T., Kostitsyn Y.A., <strong>Botcharnikov R.E<\/strong>., Somsikova A.V., Ludwig T., Romashova T.V., and Hofmeister W. (2020) Petrogenesis of the Snezhnoe ruby deposit, Central Pamir. <em>Minerals<\/em>, 10: 478.<\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>Helmy H.<\/strong> and <strong>Botcharnikov R.<\/strong> (2020) Experimental studies of the Pt and Pd antimonides and bismuthinides in sulphide systems between 1100 and 700\u00b0C and applications to nature.  <em>Am. Mineralogist <\/em>, 105: 344-352.<\/p>\n\n\n\n<p class=\"has-big-font-size\">Wang, M., Deng, J., Hou, T., Derrey, I., <strong>Botcharnikov, R.E.<\/strong>, Liu, X., Zhang, C., Qi, D., Zhang, Z., and Holtz, F. (2020) Experimental evidence for a protracted enrichment of tungsten in evolved granitic melts: Implications for scheelite mineralization. <em>Minerallium Deposita<\/em>, 55(7), pp. 1299\u20131306.<\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>2019<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">Portnyagin M.V., Mironov N.L., <strong>Botcharnikov R.E<\/strong>., Gurenko A.A., Almeev A.A., Holtz F. (2019) Dehydration of melt inclusions in olivine and the origin of silica-undersaturated island-arc melts. Earth and Planetary Science Letters, 517:95-105. <\/p>\n\n\n\n<p class=\"has-big-font-size\">K\u00f6tze, E., Schuth, S., Goldmann, S., Winkler, B., <strong>Botcharnikov, R.E.,<\/strong> and Holtz, F. (2019) The mobility of palladium and platinum in the presence of humic acids: An experimental study. Chem Geol 514:65-78. <\/p>\n\n\n\n<p class=\"has-big-font-size\">Filina, M.I.; <strong>Sorokina, E.S<\/strong>.; <strong>Botcharnikov, R<\/strong>.; Karampelas, S.; Rassomakhin, M.A.; Kononkova, N.N.; Nikolaev, A.G.; Berndt, J.; Hofmeister, W. (2019) Corundum anorthosites-kyshtymites from the South Urals, Russia: A combined mineralogical, geochemical, and U-Pb zircon geochronological study. Minerals, 9: 234.<\/p>\n\n\n\n<p class=\"has-big-font-size\"><strong>2018<\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">Koepke, J., <strong>Botcharnikov, R.E.,<\/strong> and Natland, J.H. (2018) Crystallization of late-stage MORB under varying water activities and redox conditions: Implications for the formation of highly evolved lavas and oxide gabbro in the ocean crust. Lithos, 323: 58-77, doi.org\/10.1016\/j.lithos.2018.10.001. <\/p>\n\n\n\n<p class=\"has-big-font-size\">Benard, A., Klimm, K., Woodland, A.B., Arculus, R.J., Wilke, M., <strong>Botcharnikov, R.E<\/strong>., Shimizu, N., Nebel, O., Rivard, C., and Ionov, D.A. (2018) Oxidizing agents in sub-arc mantle link slab devolatilization and arc magmas. Nature Communications, 9:3500, doi: 10.1038\/s41467-018-05804-2. <\/p>\n\n\n\n<p class=\"has-big-font-size\">Hughes, E., Buse, B., Kearns, S.L., Blundy, J.D., Kilgour, G., Mader, H.M., Brooker, R.A., Balzer, R., <strong>Botcharnikov, R.E.<\/strong>, Di Genova, D., Almeev, R.R., and Riker, J.M. (2018) High spatial resolution analysis of the iron oxidation state in silicate glasses using the electron probe. Am. Mineralogist 103: 1473-1486.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">Zhang, C., Almeev, R.R., Hughes, E., Borisov, A.A., Wolff, E.P., H\u00f6fer, H.E., <strong>Botcharnikov, R.E.,<\/strong> and Koepke, J. (2018) Electron microprobe technique for the determination of iron oxidation state in silicate glasses. Am. Mineralogist 103: 1445-1454.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">Savelyev, D.P., Kamenetsky, V.S., Danyushevsky, L.V., <strong>Botcharnikov, R.E.,<\/strong> Kamenetsky, M.B., Park, J.-W., Portnyagin, M.V., Olin, P., Krasheninnikov, S.P., and Zelenski, M.E. (2018) Immiscible sulfide melts in primitive oceanic magmas: evidence and implications from the Cretaceous picrites (eastern Kamchatka, Russia). American<\/p>\n\n\n\n<p class=\"has-big-font-size\">Mineralogist 103: 886\u2013898, doi: 10.2138\/am-2018-6352.<\/p>\n\n\n\n<p class=\"has-big-font-size\">Ciazela, J., Koepke, J., Dick, H., <strong>Botcharnikov, R<\/strong>., Muszynski, A., Lazarov, M., Schuth, S., Pieterek, B., and Kuhn, T. (2018) Sulfide enrichment at an oceanic crust-mantle transition zone: Kane Megamullion (23\u00b0N, MAR). Geochim. Cosmochim. Acta, 230: 155-189. 10.1016\/j.gca.2018.03.027.    <\/p>\n\n\n\n<p class=\"has-big-font-size\">Cottrell, L., Lanzirotti, A., Mysen, B., Birner, S., Kelley, K.A., <strong>Botcharnikov, R.E.,<\/strong> Newville, M., Davis, F.A. (2018) A M\u00f6ssbauer-based XANES calibration for hydrous basalt glasses reveals radiation-induced oxidation of Fe. American Mineralogist, v.103, 489-501. 10.2138\/am-2018-6268.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">Shishkina, T., Portnyagin, M., <strong>Botcharnikov, R.E.,<\/strong> Almeev, R., Simonyan, A., Garbe-Sch\u00f6nberg, D., Schuth, S., Oeser, M. and Holtz, F. (2018) Experimental calibration and implications of olivine-melt vanadium oxybarometry for hydrous basaltic arc magmas. American Mineralogist, v.103, 369-383, doi.org\/10.2138\/am-2017-6210. <\/p>\n\n\n<\/jgu-base-tabsitem>\n\n<\/jgu-base-tabs><\/div>\n<\/div>\n<\/div>\n<jgu-base-section react-props=\"{&quot;color&quot;:&quot;light&quot;,&quot;metadata&quot;:{&quot;name&quot;:&quot;Team&quot;},&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-light \"><div class=\"content padding-medium\"><div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"team\"\n\tdata-label=\"Team\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Team&quot;,\n    &quot;className&quot;: &quot;&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: 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\n<jgu-base-listitem react-props=\"{\n    &quot;title&quot;: &quot; &quot;,\n    &quot;uuid&quot;: &quot;1775319387324&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;icon&quot;: &quot;&quot;,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;Dr. Elahe Namnabat&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: null,\n        &quot;url&quot;: null,\n        &quot;credit&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: [],\n    &quot;color&quot;: &quot;default&quot;\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Humboldt Fellow&quot;,\n    &quot;uuid&quot;: &quot;1773144921640&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Petrology \\\/ Gemstone Research&quot;,\n    &quot;uuid&quot;: &quot;1773144984525&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;envelope-solid&quot;,\n    &quot;title&quot;: &quot;&lt;a href=\\&quot;mailto:namnabel@uni-mainz.de\\&quot;&gt;namnabel@uni-mainz.de&lt;\\\/a&gt;&quot;,\n    &quot;uuid&quot;: &quot;1773145031183&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;mailto:namnabel@uni-mainz.de&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;phone-solid&quot;,\n    &quot;title&quot;: &quot;  &quot;,\n    &quot;uuid&quot;: &quot;1773145072171&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><\/div>\n<\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;PhD Students&quot;,\n    &quot;className&quot;: &quot;&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns are-vertically-aligned-top is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-vertically-aligned-top is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-idm-person react-props=\"{\n    &quot;id&quot;: &quot;9111&quot;,\n    &quot;organizationId&quot;: 976,\n    &quot;roleId&quot;: 42,\n    &quot;name&quot;: &quot;&quot;,\n    &quot;link&quot;: &quot;idm&quot;,\n    &quot;skipDetails&quot;: [],\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;color&quot;: &quot;default&quot;,\n    &quot;mode&quot;: &quot;edit&quot;,\n    &quot;linkType&quot;: &quot;idm&quot;\n}\">\n        \n<\/jgu-base-idm-person>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-vertically-aligned-top is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;Antonia Simon&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: null,\n        &quot;url&quot;: null,\n        &quot;credit&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: [],\n    &quot;color&quot;: &quot;default&quot;\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;PhD Students&quot;,\n    &quot;uuid&quot;: &quot;1773144921640&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Petrology&quot;,\n    &quot;uuid&quot;: &quot;1773144984525&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-vertically-aligned-top is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;Myriam Ruttmann&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: null,\n        &quot;url&quot;: null,\n        &quot;credit&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: [],\n    &quot;color&quot;: &quot;default&quot;\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;PhD Students&quot;,\n    &quot;uuid&quot;: &quot;1773144921640&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Petrology&quot;,\n    &quot;uuid&quot;: &quot;1773144984525&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-vertically-aligned-top is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;Stepan Karashenninikov&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: null,\n        &quot;url&quot;: null,\n        &quot;credit&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: [],\n    &quot;color&quot;: &quot;default&quot;\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Doctoral candidate&quot;,\n    &quot;uuid&quot;: &quot;1773144921640&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Petrology \\\/ Gemstone Research&quot;,\n    &quot;uuid&quot;: &quot;1773144984525&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n<\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;MSc student&quot;,\n    &quot;className&quot;: &quot;&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns are-vertically-aligned-top is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-vertically-aligned-top is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-contactcard react-props=\"{\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;name&quot;: &quot;Richard Pigoznis&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: null,\n        &quot;url&quot;: null,\n        &quot;credit&quot;: &quot;&quot;\n    },\n    &quot;actions&quot;: [],\n    &quot;color&quot;: &quot;default&quot;\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Master&#039;s Degree Student&quot;,\n    &quot;uuid&quot;: &quot;1773144921640&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Petrology&quot;,\n    &quot;uuid&quot;: &quot;1773144984525&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;envelope-solid&quot;,\n    &quot;title&quot;: &quot;rpigozni@students.uni-mainz.de&lt;br&gt;&quot;,\n    &quot;uuid&quot;: &quot;1773145031183&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-vertically-aligned-top is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-contactcard react-props=\"{\n    &quot;name&quot;: &quot;Christian Forster&quot;,\n    &quot;avatar&quot;: {\n        &quot;id&quot;: null,\n        &quot;url&quot;: null,\n        &quot;credit&quot;: &quot;&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;actions&quot;: [],\n    &quot;color&quot;: &quot;default&quot;\n}\">\n    \n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;address-card-solid&quot;,\n    &quot;title&quot;: &quot;Master&#039;s Degree Student&quot;,\n    &quot;uuid&quot;: &quot;1773144921640&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;university-solid&quot;,\n    &quot;title&quot;: &quot;Petrology&quot;,\n    &quot;uuid&quot;: &quot;1773144984525&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<jgu-base-listitem react-props=\"{\n    &quot;icon&quot;: &quot;envelope-solid&quot;,\n    &quot;title&quot;: &quot;cforster@students.uni-mainz.de&quot;,\n    &quot;uuid&quot;: &quot;1773145031183&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;showInActions&quot;: false,\n    &quot;allowNesting&quot;: true,\n    &quot;showExpandableContent&quot;: false,\n    &quot;expandableContent&quot;: &quot;&quot;,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;\n    }\n}\">\n    \n<\/jgu-base-listitem>\n\n<\/jgu-base-contactcard><\/div>\n\n\n\n<div class=\"wp-block-column is-vertically-aligned-top is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><\/div>\n\n\n\n<div class=\"wp-block-column is-vertically-aligned-top is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><\/div>\n<\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h3&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h3&quot;\n    },\n    &quot;heading&quot;: &quot;Research Support Staff&quot;,\n    &quot;className&quot;: &quot;&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<div class=\"wp-block-columns is-layout-flex wp-container-core-columns-is-layout-9d6595d7 wp-block-columns-is-layout-flex\">\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-idm-person react-props=\"{\n    &quot;id&quot;: &quot;277&quot;,\n    &quot;organizationId&quot;: 975,\n    &quot;roleId&quot;: 5,\n    &quot;name&quot;: &quot;&quot;,\n    &quot;link&quot;: &quot;idm&quot;,\n    &quot;skipDetails&quot;: [],\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;color&quot;: &quot;default&quot;,\n    &quot;mode&quot;: &quot;edit&quot;,\n    &quot;linkType&quot;: &quot;idm&quot;\n}\">\n        \n<\/jgu-base-idm-person>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><jgu-base-idm-person react-props=\"{\n    &quot;id&quot;: &quot;111169&quot;,\n    &quot;organizationId&quot;: 968,\n    &quot;roleId&quot;: 5,\n    &quot;name&quot;: &quot;&quot;,\n    &quot;link&quot;: &quot;idm&quot;,\n    &quot;skipDetails&quot;: [],\n    &quot;align&quot;: &quot;left&quot;,\n    &quot;color&quot;: &quot;default&quot;,\n    &quot;mode&quot;: &quot;edit&quot;,\n    &quot;linkType&quot;: &quot;idm&quot;\n}\">\n        \n<\/jgu-base-idm-person>\n<\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><\/div>\n\n\n\n<div class=\"wp-block-column is-layout-flow wp-block-column-is-layout-flow\" style=\"flex-basis:100%\"><\/div>\n<\/div>\n<\/div><\/div>\n<\/jgu-base-section><jgu-base-section react-props=\"{&quot;color&quot;:&quot;white-dark-text&quot;,&quot;metadata&quot;:{&quot;name&quot;:&quot;Labore&quot;},&quot;align&quot;:&quot;wide&quot;,&quot;padding&quot;:&quot;medium&quot;}\">\n<div class=\"jgu-bgsection bg bg-white-dark-text \"><div class=\"content padding-medium\"><div\n\tclass=\"jgu-anchorpoint\"\n\tid=\"laboratories\"\n\tdata-label=\"Laboratories\"\n\tdata-hide-in-nav=\"false\"\n\ttabindex=\"0\"\n\tdata-initial-scroll=\"true\"\n><\/div>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Laboratories&quot;,\n    &quot;className&quot;: &quot;alignwide&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n<jgu-base-tabs react-props=\"{\n    &quot;layout&quot;: {\n        &quot;type&quot;: &quot;flex&quot;,\n        &quot;flexWrap&quot;: &quot;nowrap&quot;,\n        &quot;justifyContent&quot;: &quot;left&quot;,\n        &quot;orientation&quot;: &quot;vertical&quot;\n    },\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;selected&quot;: 1,\n    &quot;ratio&quot;: 0,\n    &quot;autoRatio&quot;: true,\n    &quot;stackMobile&quot;: false,\n    &quot;hasAllOpenButton&quot;: true,\n    &quot;onlyOne&quot;: false,\n    &quot;initAllClosed&quot;: true,\n    &quot;enableSearch&quot;: false\n}\">\n    \n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;Electron Microprobe&quot;,\n    &quot;slug&quot;: &quot;electron-microprobe&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;JEOL JXA-IHP200F FEG Electron Microprobe&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n<jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/core4u_epma-sonde-e1774517251915.jpeg&quot;,\n        &quot;id&quot;: 15470,\n        &quot;alt&quot;: &quot;FEG- Elektronenstrahl-Mikrosonde&quot;,\n        &quot;caption&quot;: &quot;FEG-Elektronenstrahl-Mikrosonde&quot;,\n        &quot;credit&quot;: &quot;Peter Pulkowski&quot;,\n        &quot;description&quot;: &quot;FEG- Elektronenstrahl-Mikrosonde&quot;,\n        &quot;title&quot;: &quot;(core4u_epma-sonde)&quot;,\n        &quot;width&quot;: 1280,\n        &quot;height&quot;: 700,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/core4u_epma-sonde-e1774517251915.jpeg 1280w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/core4u_epma-sonde-e1774517251915-300x164.jpeg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/core4u_epma-sonde-e1774517251915-1024x560.jpeg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/core4u_epma-sonde-e1774517251915-768x420.jpeg 768w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image>\n\n\n<p class=\"has-big-font-size\">The electron microprobe is referred to in English as EMP (Electron Microprobe) or EPMA (Electron Probe Micro-Analyzer) and is based on a scanning electron microscope. However, it is equipped with 5 WDX spectrometers for quantitative analysis of major, minor, and trace element concentrations. <\/p>\n\n\n\n<p class=\"has-big-font-size\">This allows the composition of the smallest areas to be analyzed non-destructively, meaning that even mineral grains measuring just a few micrometers can be analyzed in-situ (i.e., within the rock matrix) with high precision. In addition to rock samples, the smallest glass particles, gemstones, bones, teeth, skeletons of marine organisms, and much more can also be examined. <\/p>\n\n\n\n<p class=\"has-big-font-size\">Electrons are emitted from a Schottky emitter. This is a special type of electron source based on thermally assisted field emission. It consists of a very finely tapered tungsten cathode coated with a small amount of zirconium oxide. This coating lowers the effective work function of the electrons at the metal surface.   <\/p>\n\n\n\n<p class=\"has-big-font-size\">The cathode is moderately heated and simultaneously exposed to a strong electric field. Through the combination of thermal energy and field emission, electrons can overcome the potential barrier at the tip and escape into the vacuum. The emission area is extremely small, resulting in very high beam density. Compared to conventional thermal electron sources, the Schottky emitter provides a particularly bright, stable, and low-energy electron beam. This enables high spatial resolution, good beam stability, and reproducible conditions, which are crucial for precise geochemical analyses in the electron microprobe.    <\/p>\n\n\n\n<p class=\"has-big-font-size\">The electrons thus generated are accelerated in a high vacuum by an electric potential of up to 30 kV toward the sample. On their way there, the charge carriers pass through a series of electromagnetic coils that shape and focus the beam before it strikes the sample. There, interaction occurs with the atoms of the different elements in the sample, which are excited to emit their specific X-ray radiation. The interaction volume is only a few cubic micrometers, depending on the acceleration voltage. The X-ray spectrometers function like X-ray filters and measure the number of X-ray pulses for a specific element sequentially (normalized to the measurement time and beam current). The measured intensities are then compared with measurements on reference materials (whose compositions have been well determined beforehand) and element concentrations are calculated from this. The matrix correction performed after the measurement is needed to correct for the mutual influence of the elements on one another.      <\/p>\n\n\n\n<p class=\"has-big-font-size\">In principle, the EMS can analyze elements from <strong>Be to Pu<\/strong> (see periodic table) in all <strong>solid<\/strong> materials, provided they are <strong>vacuum-stable<\/strong> and <strong>do not change under the influence of electron bombardment<\/strong>. For quantitative analyses, a <strong>very good surface polish<\/strong> is also mandatory. Non-conductive materials must be <strong>coated with a 15-20 nm thick carbon layer<\/strong> to prevent negative charging of the sample.  <\/p>\n\n\n\n<p class=\"has-big-font-size\"><\/p>\n\n\n\n<p class=\"has-big-font-size\">Two of the 5 wavelength-dispersive spectrometers operate with Ar\/methane flow counters, which in combination with LDE1, LDEB, LDEC, TAP or TAPL, and PETL crystals are optimized for measuring light elements. The other spectrometers are equipped with Xe counters and a combination of PETL and LIFL crystals. <\/p>\n\n\n\n<p class=\"has-big-font-size\">With the EDS system, it is possible to measure multiple elements simultaneously and thereby perform phase identification in a matter of seconds.<\/p>\n\n\n\n<p class=\"has-normal-font-size\"><strong>Contact: <\/strong><a href=\"mailto:buhre@uni-mainz.de\">Dr. S. Buhre<\/a><\/p>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;X-ray Fluorescence Analysis&quot;,\n    &quot;slug&quot;: &quot;x-ray-fluorescence-analysis&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;X-ray Fluorescence Laboratory&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<p class=\"has-big-font-size\">X-ray fluorescence analysis (XRF) is used for material analysis. It serves for the qualitative and quantitative determination of the elemental composition of solid, liquid, or pasty samples, such as: rocks, soils, minerals, clays, ores, steels, alloys, glasses, ceramics, building materials, slags, plastics, pastes, and oils.<br\/>XRF is used in research and in quality and production control in industry. Depending on the equipment of the analytical instrument, the determination of elements from atomic number 4 (Be) to 92 (U) is possible. The measurement range, depending on the element and the matrix, extends from 0.0001 wt% to 100 wt%.   <\/p>\n\n\n<jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/RFA-Skizze.jpg&quot;,\n        &quot;id&quot;: 15938,\n        &quot;title&quot;: &quot;RFA-Skizze&quot;,\n        &quot;width&quot;: 1264,\n        &quot;height&quot;: 842,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/RFA-Skizze.jpg 1264w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/RFA-Skizze-300x200.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/RFA-Skizze-1024x682.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/RFA-Skizze-768x512.jpg 768w&quot;\n    },\n    &quot;caption&quot;: &quot;Schematic representation of the structure of a wavelength-dispersive X-ray fluorescence spectrometer&quot;,\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image>\n\n\n<p class=\"has-big-font-size\">X-ray fluorescence analysis uses X-rays as primary radiation to excite a sample to be analyzed. Through interaction with the sample, secondary X-ray radiation (&#8220;fluorescence radiation&#8221;) is produced, which can be qualitatively and quantitatively determined after spectral decomposition by diffraction on a crystal. The wavelengths of this radiation are characteristic of the elements present in the sample. From the intensity of the characteristic radiation, the concentration of the elements to be determined can be calculated based on extensive correction and calibration programs.   <\/p>\n\n\n\n<p class=\"has-big-font-size\">In order to optimally address all questions, the spectrometer is equipped with various apertures, 3 collimators, 6 analyzer crystals (PX1, PE002, Ge111, PX9, LiF200, LiF220), and 3 detectors (flow, scintillation, and Xe proportional counters). This allows the best setting to be made for trace to major elements. <\/p>\n\n\n\n<p class=\"has-big-font-size\">The main application at our institute is the determination of major and trace elements in geological samples. Special measurement programs (applications) are also created as needed. Semi-quantitative analyses on a wide variety of solids can be performed using the standardless measurement method IQ+ from Panalytical.   <\/p>\n\n\n\n<p class=\"has-big-font-size\"><\/p>\n\n\n\n<p class=\"has-normal-font-size\"><strong>Contact: <\/strong><a href=\"mailto:buhre@uni-mainz.de\">Dr. Stephan Buhre<\/a><\/p>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;Piston-Cylinder Apparatus&quot;,\n    &quot;slug&quot;: &quot;piston-cylinder-apparatus&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;High-Pressure Laboratory&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n<jgu-base-image react-props=\"{\n    &quot;image&quot;: {\n        &quot;url&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Hochdrucklabor-.jpg&quot;,\n        &quot;id&quot;: 15881,\n        &quot;alt&quot;: &quot;Hochdrucklabor - Uni Mainz&quot;,\n        &quot;description&quot;: &quot;Piston-Cylinder-Apparatur&quot;,\n        &quot;title&quot;: &quot;Hochdrucklabor&quot;,\n        &quot;width&quot;: 1024,\n        &quot;height&quot;: 400,\n        &quot;srcset&quot;: &quot;https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Hochdrucklabor-.jpg 1024w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Hochdrucklabor--300x117.jpg 300w, https:\\\/\\\/cms.zdv.uni-mainz.de\\\/fb09-geowissenschaften\\\/wp-content\\\/uploads\\\/sites\\\/789\\\/2026\\\/03\\\/Hochdrucklabor--768x300.jpg 768w&quot;\n    },\n    &quot;align&quot;: &quot;&quot;,\n    &quot;hasLightbox&quot;: false,\n    &quot;caption&quot;: &quot;&quot;,\n    &quot;imgWidth&quot;: 0,\n    &quot;link&quot;: {\n        &quot;url&quot;: &quot;&quot;,\n        &quot;target&quot;: &quot;&quot;,\n        &quot;rel&quot;: &quot;&quot;\n    }\n}\" class=\"align-\">\n    \n<\/jgu-base-image>\n\n\n<p class=\"has-normal-font-size\"><strong>Contact: <a href=\"mailto:buhre@uni-mainz.de\">Dr. Stephan Buhre<\/a><\/strong><\/p>\n\n\n\n<p class=\"has-big-font-size\">The Petrology work group has a piston-cylinder laboratory with two presses in a modified Boyd-England design. The equipment includes a 650-ton apparatus with a 1-inch piston diameter and a 250-ton press with a 0.5-inch piston diameter.  <\/p>\n\n\n\n<p class=\"has-big-font-size\">Both apparatus can generate pressures of up to 3.0 GPa (30,000 atmospheres) and reach temperatures of up to 1500 \u00b0C.<\/p>\n\n\n\n<p class=\"has-big-font-size\"><\/p>\n\n\n<\/jgu-base-tabsitem>\n\n<jgu-base-tabsitem react-props=\"{\n    &quot;title&quot;: &quot;Multi-Anvil Apparatus&quot;,\n    &quot;slug&quot;: &quot;multi-anvil-apparatus&quot;,\n    &quot;align&quot;: &quot;wide&quot;,\n    &quot;customSlug&quot;: false\n}\">\n    \n\n<p class=\"has-big-font-size\"><\/p>\n\n\n<jgu-base-heading react-props=\"{\n    &quot;tags&quot;: {\n        &quot;htmlTag&quot;: &quot;h2&quot;,\n        &quot;classTag&quot;: &quot;&quot;,\n        &quot;tag&quot;: &quot;h2&quot;\n    },\n    &quot;heading&quot;: &quot;Multi-Anvil Apparatus&quot;,\n    &quot;textAlign&quot;: &quot;left&quot;,\n    &quot;anchor&quot;: &quot;&quot;,\n    &quot;index&quot;: &quot;&quot;,\n    &quot;color&quot;: &quot;red&quot;\n}\"><\/jgu-base-heading>\n\n\n\n<p class=\"has-big-font-size\">Our high-pressure laboratory also has a so-called multi-anvil apparatus. This can achieve pressures of up to 15 GPa (150,000 atmospheres) and temperatures of up to 2500 \u00b0C.  <\/p>\n\n\n<\/jgu-base-tabsitem>\n\n<\/jgu-base-tabs><\/div><\/div>\n<\/jgu-base-section>\n<p class=\"has-big-font-size\"><\/p>\n    <div style=\"display: none\">\n        \n    <\/div>","protected":false},"excerpt":{"rendered":"<p>Petrology deals with the study of the chemical and physical properties of rocks and minerals in order to reconstruct the conditions under which they form and evolve. Our petrological research primarily focuses on the formation and evolution of magmatic rocks as well as metamorphic processes within the Earth&#8217;s crust and upper mantle.We investigate the interplay &hellip; <a href=\"https:\/\/www.geowiss.uni-mainz.de\/en\/institut-fuer-geowissenschaften\/petrologie\/\">Continued<\/a><\/p>\n","protected":false},"author":1931,"featured_media":0,"parent":21238,"menu_order":100,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"categories":[185,143],"tags":[188],"class_list":["post-23195","page","type-page","status-publish","hentry","category-petrology","category-work-groups","tag-petrology-work-group"],"content_raw":"<!-- wp:spacer {\"height\":\"22px\"} -->\n<div style=\"height:22px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<!-- \/wp:spacer --><!-- wp:jgu\/anchornavigation {\"theme\":\"default\"} \/--><!-- wp:jgu\/heading {\"anchor\":\"petrologie-start\",\"index\":\"AG\",\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Petrology\"} \/--><!-- wp:jgu\/teaserbox {\"headline\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"image\":{\"id\":10375,\"url\":null,\"caption\":\"Element distribution map demonstrating variations in Ti content in a CPx crystal\\u003cbr\\u003e\",\"credit\":\"S. Buhre\"},\"color\":\"red\",\"index\":\"Research group\",\"title\":\"\\u003cstrong\\u003ePetrology\\u003c\/strong\\u003e\",\"excerpt\":\"\\u003cstrong\\u003eOur research focuses on the formation and evolution of magmatic rocks as well as magmatic processes in the Earth's crust and upper mantle.\\u003c\/strong\\u003e\"} \/--><!-- wp:spacer -->\n<div style=\"height:90px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<!-- \/wp:spacer --><!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"66.66%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:66.66%\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Petrology deals with the study of the chemical and physical properties of rocks and minerals in order to reconstruct the conditions under which they form and evolve.<\/strong><br\/><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Our petrological research primarily focuses on the formation and evolution of magmatic rocks as well as metamorphic processes within the Earth's crust and upper mantle.<br\/>We investigate the interplay between the conditions of magma genesis and the composition of magmatic rocks, as well as the processes that lead to the formation of ore deposits. One of the main directions of our research is the formation of critical resources such as oxide-, sulfide-, and carbonatite-related ores.<br\/>A central aspect of our work is the analysis and interpretation of the major and trace element composition of rocks and minerals. For this purpose, we use our in-house analytical facilities, including an electron microprobe, spectroscopy, laser-ICP-MS, and high-pressure high-temperature apparatus. Our research projects include fieldwork in various regions worldwide.   <\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"33.33%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:33.33%\"><!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":13145}} \/--><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns --><!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><\/div>\n<!-- \/wp:columns --><!-- wp:jgu\/section {\"color\":\"white-dark-text\",\"metadata\":{\"name\":\"News\"}} -->\n<div class=\"jgu-bgsection bg bg-white-dark-text \"><div class=\"content padding-medium\"><!-- wp:jgu\/anchorpoint {\"title\":\"News\",\"slug\":\"news\",\"className\":\"\"} \/-->\n\n<!-- wp:jgu\/heading {\"anchor\":\"news\",\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"News\",\"className\":\"\"} \/-->\n\n<!-- wp:jgu\/post-listing {\"categories\":[\"789;42\"]} \/--><\/div><\/div>\n<!-- \/wp:jgu\/section --><!-- wp:group {\"metadata\":{\"name\":\"Bidergalerie Arbeitsgruppe\"},\"align\":\"wide\",\"layout\":{\"type\":\"constrained\"}} -->\n<div class=\"wp-block-group alignwide\"><!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"100%\",\"layout\":{\"type\":\"default\"}} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><!-- wp:jgu\/anchorpoint {\"title\":\"Research\",\"slug\":\"research\"} \/-->\n\n<!-- wp:spacer -->\n<div style=\"height:90px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<!-- \/wp:spacer -->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Research\"} \/-->\n\n<!-- wp:jgu\/tabs -->\n<!-- wp:jgu\/tabs-item {\"title\":\"Current Research Topics\",\"slug\":\"current-research-topics\"} -->\n<!-- wp:jgu\/section {\"color\":\"white-dark-text\",\"metadata\":{\"name\":\"Forschung\"}} -->\n<div class=\"jgu-bgsection bg bg-white-dark-text \"><div class=\"content padding-medium\"><!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>The role of Iceland mantle plume in the flux of toxic and heavy metals from the lithosphere to the hydrosphere<\/strong><br\/>PIs: Botcharnikov R. (Mainz), Portnyagin M. (Geomar, Kiel), Pogge von Strandmann P. (Mainz), Buhre S. (Mainz), Rojas-Agramonte Y. (Heidelberg), Winter C. (Kiel)<br\/>Funding: EarthCrysis<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Geochemical and gemological aspects of danburite crystals from salt diapirs: A case study from Southern Iran<\/strong><br\/>Funding: Alexander von Humboldt Foundation<br\/>PIs: R. Botcharnikov, T. H\u00e4ger,<br\/>Postdoctoral researcher: Dr. Elahe Namnabat<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Formation of cratonic lithospheric roots: Constraints from experimental petrological studies<\/strong><br\/>Funding: China Scholarship Council (CSC)<br\/>PIs: Tong Hou (Beijing) and Roman Botcharnikov (Mainz)<br\/>Visiting PhD student: Zongpeng Yang<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Modelling of CHROMium Enrichment in the mantle and the crust (CHROME)<\/strong><br\/>PIs: E. Moulas, R. Botcharnikov, B. Kaus, S. Buhre<br\/>Funding: DFG, SPP DOME<br\/>Postdoctoral researcher: Dr. Nicolas Riel<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Izu-Bonin-Mariana boninites - natural laboratory to study mantle melting and the evolution of magma plumbing systems in early stages of subduction<\/strong><br\/>PIs: R. Almeev, F. Holtz, J. Koepke (Hannover), R. Botcharnikov (Mainz)<br\/>Funding: DFG, SPP IODP<br\/>Students: PhD Lennart Koch (Hannover)<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>High-pressure and high-temperature treatment of diamonds<\/strong><br\/>PIs: T. H\u00e4ger, R. Botcharnikov, S. Buhre<br\/>Funding: Idar-Oberstein, JGU<br\/>Students: PhD N.N.<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Completed research projects\"} \/-->\n\n<!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Carbon recycling by arc magmatism: an assessment from experimentally homogenized melt inclusions in high-Mg olivine<\/strong><br\/>PIs: R. Botcharnikov (Mainz), F. Holtz (Hannover), M. Portnyagin (Kiel), N. Mironov (Moscow)<br\/>Funding: DFG-RFBR Joint German-Russian Program<br\/>Students: PhD Stepan Krasheninnikov (Hannover \u2013 Mainz), BSc Anna Bott (Mainz)<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Rare-metal enrichment mechanism in anatectic pegmatites: Evidence from partial melting experiments<\/strong><br\/>Visiting PhD student: Siyu Liu<br\/>Funding: China Scholarship Council (CSC)<br\/>PIs: Rui Wang (Beijing) and Roman Botcharnikov (Mainz)<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Metallogenesis of the submarine volcanogenic iron oxide deposit in Western Tianshan, NW China<\/strong><br\/>Visiting PhD student: Hengxu Li<br\/>Funding: China Scholarship Council (CSC)<br\/>PIs: Zhaochong Zhang (Beijing), Tong Hou (Beijing) and Roman Botcharnikov (Mainz)<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Spectroscopic analyses and quantification of water and iron contents in beryl from different localities<\/strong><br\/>PIs: T. H\u00e4ger and R. Botcharnikov<br\/>Funding: Idar-Oberstein, JGU<br\/>Student: PhD Carina Hanser<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Constraining the time scales of magmatic and metamorphic<br\/>processes<\/strong><br\/>PIs: E. Moulas and R. Botcharnikov<br\/>Funding: JGU<br\/>Student: PhD Annalena Stroh<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Rare-metal enrichment in carbonatite-bearing magmatic systems: Part B. Understanding the role of fractional crystallization and liquid immiscibility by experimental simulations of silicate-carbonatite systems<\/strong><br\/>PIs: R. Botcharnikov, S. Buhre (Mainz), F. Holtz (Hannover), M. Tichomirowa, B. Schulz (Freiberg), R. Klemd (Erlangen)<br\/>Funding: DFG SPP \"DOME\" 2238 \u2013 Dynamics of Ore Metals Enrichment<br\/>Students: PhD Antonia Simon (Hannover \u2013 Mainz)<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Enrichment processes during transfer of chromium from the mantle to the crust<\/strong><br\/>PIs: R. Botcharnikov, E. Moulas, S. Buhre (Mainz)<br\/>Funding: DFG SPP \"DOME\" 2238 \u2013 Dynamics of Ore Metals Enrichment<br\/>Students: PhD Myriam Ruttmann<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Rare-metal enrichment in carbonatite-bearing magmatic systems: Part A. Understanding magmatic evolution and enrichment processes in time by high-precision dating and inclusion studies<\/strong><br\/>PIs: R. Botcharnikov (Mainz), F. Holtz (Hannover), M. Tichomirowa, B. Schulz (Freiberg), R. Klemd (Erlangen)<br\/>Funding: DFG SPP \"DOME\" 2238 \u2013 Dynamics of Ore Metals Enrichment<br\/>Students: PhD Daria Voropaeva (Freiberg), MSc Philipp Richert (Mainz)<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>How platinum-group elements are accommodated in magmatic sulfide phases, substitutions and inclusions?<\/strong><br\/>PIs: Hassan Helmy, Roman Botcharnikov<br\/>Funding: Alexander von Humboldt Fellowship for Prof. Hassan Helmy<br\/>Student: BSc Elisa Winkes<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Atmospheric Inorganic and Organic Selenium Speciation in Volcanic Environments<\/strong><br\/>PI: Alexandra Gutmann<br\/>Funding: JGU<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:columns {\"metadata\":{\"name\":\"Projekt 1\"},\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Formation of monomineralic Fe-Ti oxide ores in the high-Ti ferrobasaltic system: A case study in Emeishan, China<\/strong><br\/>PIs: F. Holtz (Hannover), R. Botcharnikov (Mainz), Z. Zhang (Beijing), T. Hou (Beijing)<br\/>Funding: DFG \u2013 China, Sino-German Program<br\/>Students: PhD Sarah Haselbach (Hannover), BSc Jonas Thiel (Mainz)<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column -->\n<div class=\"wp-block-column\"><!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Behavior of chalcophile elements in subduction zone processes<br\/>PI: R. Botcharnikov<\/strong><br\/>Funding: DFG<br\/>Students: PhD Anastasia Zemlitskaya, MSc Katharina Kuper, BSc Amanda Marianov, BSc Wieland B\u00f6hme, BSc Oumar Mbareck<\/p>\n<!-- \/wp:paragraph --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:spacer {\"height\":\"131px\"} -->\n<div style=\"height:131px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n<!-- \/wp:spacer --><\/div><\/div>\n<!-- \/wp:jgu\/section -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><\/p>\n<!-- \/wp:paragraph -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"Current Publications\",\"slug\":\"current-publications\"} -->\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><a><strong>2026<\/strong><\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Chen, S., Hou, T., Pan, R., Luo, D., Liu, G., <strong>Botcharnikov, R.<\/strong> (2026). Multi-level magma reservoir and open system processes of the Tianchi caldera, Changbaishan Volcanic Field, NE China. <em>Journal of Volcanology and Geothermal Research<\/em> 473, 108598. <a href=\"https:\/\/doi.org\/10.1016\/j.jvolgeores.2026.108598\">https:\/\/doi.org\/10.1016\/j.jvolgeores.2026.108598<\/a> <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Portnyagin M., <strong>Botcharnikov R.<\/strong>, Yogodzinski G., Garbe-Sch\u00f6nber D., Hoernle K. (2026) Melting of sulfide-bearing slab beneath the Western Aleutian Arc: Implications for chalcophile element abundances in slab-derived melts and the origin of continental crust. <em>Geology<\/em>, doi.org\/10.1130\/G53585.1<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><strong>2025<\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Bindeman, I. N., J. Palandri, and C. Cimarelli. \"Fulgurites: The Earth's Minute Melts and Their Interaction with the Atmosphere.\" Geochemical Perspectives Letters 38, no. 38 (2025): 1\u20135.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Yang Z., Hou T., <strong>Botcharnikov R.,<\/strong> Moulas E., Weyer S., Wang M., Buhre S., and Zhang Z. (2025) Seismic and isotopic evidence for depth-dependent mantle sources of intraplate basalts from Eastern China. <em>Communications Earth &amp; Environment,<\/em> 6, 1048<em>,<\/em> <a href=\"https:\/\/doi.org\/10.1038\/s43247-025-03024-3\">https:\/\/doi.org\/10.1038\/s43247-025-03024-3<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Liu W., Shi G., Zhou Z., Qin L., Li X., <strong>Botcharnikov R.<\/strong>, Quan X., Yuan Y., H\u00e4ger T., Jantschke A. (2025) High-temperature wood silicification: Constraints from fluid and carbonaceous inclusions in quartz from Qitai, NW China. <em>Scientific Reports,<\/em> 15, 421961, <a href=\"https:\/\/doi.org\/10.1038\/s41598-025-27072-z\">https:\/\/doi.org\/10.1038\/s41598-025-27072-z<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Scicchitano, M. R., Shishkina, T. A., Wilke, F., Wilke, M., <strong>Botcharnikov, R. E.<\/strong>, Almeev, R. R. (2025). Basaltic glasses for quantification of CO<sub>2<\/sub> and H<sub>2<\/sub>O content by Secondary Ion Mass Spectrometry (SIMS). GFZ Data Services.   <a href=\"https:\/\/doi.org\/10.5880\/GFZ.3.1.2024.009\">https:\/\/doi.org\/10.5880\/GFZ.3.1.2024.009<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Shea J., Hughes E., Balzer R., Bindemann I., Blundy J., Brooker R., <strong>Botcharnikov R<\/strong>., Cartigny P., EIMF, Gaetani G., Kilgour G., Maclennan J., Monteleone B., Neave D., Shorttle O. (2025) Improved precision and reference materials for stable carbon isotope analysis in basaltic glasses using secondary ion mass spectrometry. <em>Geostandards and Geoanalytical Research<\/em> 49 (3), 607-627. <a href=\"https:\/\/doi.org\/10.1111\/ggr.12609\">https:\/\/doi.org\/10.1111\/ggr.12609<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Hanser C.S., Schmitz F., H\u00e4ger T., <strong>Botcharnikov R.<\/strong> (2025) Quantification of the Fe content in blue beryls and bluish-green emeralds using spectrum resolution of UV-Vis-NIR spectra.  <em>The Journal of Gemmology, 39: 338-350. doi.org\/10.15506\/JoG.2025.39.5.338 <\/em><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Wang, D., Hou, H., <strong>Botcharnikov, R<\/strong>., Weyer, S., Haselbach, S.-L., Zhang, Z., Wang, M., Horn, I., Holtz, F. (2025) Fe-isotopic evidence for hydrothermal reworking as a mechanism to form high-grade Fe-Ti-V oxide ores in layered intrusions, <em>Geochimica et Cosmochimica Acta<\/em>, 388, 78-93, <a href=\"https:\/\/doi.org\/10.1016\/j.gca.2024.11.017\">https:\/\/doi.org\/10.1016\/j.gca.2024.11.017<\/a>.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Liu S., Wang R., <strong>Botcharnikov R<\/strong>., Sha H. (2025) Formation of rare-element pegmatites in the Chinese Altai: Contribution of two-stage melting. <em>Geology<\/em> 53: 207-211; doi: <a href=\"https:\/\/doi.org\/10.1130\/G52880.1\" target=\"_blank\" rel=\"noreferrer noopener\">https:\/\/doi.org\/10.1130\/G52880.1<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><strong>2024<\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Stechern, A., Blum-Oeste, M., <strong>Botcharnikov, R. E.<\/strong>, Holtz, F., and W\u00f6rner, G. (2024) Magma storage conditions of Lascar andesites, central volcanic zone, Chile, <em>Eur. J. Mineral <\/em>., 36, 721\u2013748, <a href=\"https:\/\/doi.org\/10.5194\/ejm-36-721-2024\">https:\/\/doi.org\/10.5194\/ejm-36-721-2024<\/a>.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Wang, D., Hou, H., <strong>Botcharnikov, R<\/strong>., Haselbach, S.-L., Almeev, R., Kluegel, A., Wang, M., Qin, J., Zhang, Z., Holtz, F. (2024) Experimental Constraints on the Storage Conditions and Differentiation of High-Ti Basalts from the Panzhihua and Hongge Layered Intrusions, SW China. <em>Journal of Petrology<\/em> (in press)<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Hanser C.S., Vullum P. E., van Helvoort A. T. J., Schmitz F., H\u00e4ger T., <strong>Botcharnikov R.,<\/strong> Bodil H. (2024) Atomic resolution transmission electron microscopy visualisation of channel occupancy in beryl in different crystallographic directions. <em>Physics and Chemistry of Minerals,<\/em> 51: 24; 51:24; https:\/\/doi.org\/10.1007\/s00269-024-01285-6.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Hanser C.S., H\u00e4ger T., <strong>Botcharnikov R.<\/strong> (2024) Incorporation and substitution of ions and H<sub>2<\/sub>O in the structure of beryl. <em>European Journal of Mineralogy,<\/em> 36, 449\u2013472, https:\/\/doi.org\/10.5194\/ejm-36-449-2024<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Stroh, A., Moulas, E., and <strong>Botcharnikov, R.<\/strong> (2024) FIDDO: FInite Difference Diffusion in Olivine (1.0). <em>Zenodo<\/em>.  https:\/\/doi.org\/10.5281\/zenodo.10964860<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Yang D.-M., Hou H., <strong>Botcharnikov R<\/strong>., Veksler I., Holtz F., Zhang Z., Zhang L., Simon A., Groschopf N. (2024) An experimental study on the role of F<sup>\u2013<\/sup>, PO<sub>4<\/sub><sup>3-<\/sup>, Cl<sup>\u2013<\/sup> and SO<sub>4<\/sub><sup>2-<\/sup> ligands in the natrocarbonatite-nephelinite system at 850 \u2103 and 0.1 GPa. <em>Chemical Geology<\/em>, 655: 122085. https:\/\/doi.org\/10.1016\/j.chemgeo.2024.122085<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Botcharnikov<\/strong> <strong>R<\/strong>., Wilke M., Garrevoet J., Portnyagin M., Klimm K., Buhre, S., Krasheninnikov, S., Almeev R., Moune S., Falkenberg G. (2024) Confocal m-XANES as a tool to analyse Fe oxidation state in heterogeneous samples: the case of melt inclusions in olivine from the Hekla volcano. <em>European Journal of Mineralogy,<\/em> 36, 195\u2013208, https:\/\/doi.org\/10.5194\/ejm-36-195-2024.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Qi D., Behrens H., Lazarov M., <strong>Botcharnikov R.<\/strong>, Zhang C., Ostertag-Henning C., Weyer S. (2024) <a><\/a>An experimental study on the reaction of cuprite (Cu<sub>2<\/sub>O) with acetate-bearing hydrothermal fluids at 100\u00b0C \u2013 250\u00b0C and 5 \u2013 30 MPa. <em>ACS Earth and Space Chemistry,<\/em> https:\/\/doi.org\/10.1021\/acsearthspacechem.3c00254<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Helmy, H., <strong>Botcharnikov, R.,<\/strong> Ballhaus, C., Buhre S. (2024) How and when do Pt-and Pd-semimetal minerals crystallize from saturated sulfide liquids? <em>Frontiers in Earth Science,<\/em> 11:1275208<em>;<\/em> <a href=\"https:\/\/doi.org\/10.3389\/feart.2023.1275208\">https:\/\/doi.org\/10.3389\/feart.2023.1275208<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Voropaeva D., Arzamastsev A.A., <strong>Botcharnikov R.,<\/strong> Buhre S., Gilbricht S., G\u00f6tze J., Klemd R., Schulz B., Tichomirowa M. (2024) LREE rich perovskite in antiskarn reactions \u2013 REE transfer from pyroxenites to carbonatites? <em>Lithos<\/em>, 468\u2013469, 107480; <a href=\"https:\/\/doi.org\/10.1016\/j.lithos.2023.107480\">https:\/\/doi.org\/10.1016\/j.lithos.2023.107480<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><strong>2023<\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Helmy, H., <strong>Botcharnikov, R.,<\/strong> Ballhaus, C., Wirth, R., Schreiber, A. (2023) How Pt and Pd sit in magmatic sulfide phases, substitutions and\/or inclusions? <em>Contrib. Mineral. Petrol.  <\/em>  178:7, 41. doi.org\/10.1007\/s00410-023-02018-8.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Hanser C.S.<\/strong>, Stephan T., Gul B., H\u00e4ger T., <strong>Botcharnikov R.<\/strong> (2023) Comparison of emeralds from the Chitral District, Pakistan with other Pakistani and Afghan emeralds. <em>The Journal of Gemmology,<\/em> 38(6), 582-599. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Sorokina E.<\/strong>, Albert R., <strong>Botcharnikov R.<\/strong>, Popov M., H\u00e4ger T., Hofmeister W., Gerdes A. (2023) Genesis of Uralian andradite (var. demantoid): Constrains from in situ U-Pb LA-ICP-MS dating and trace element analysis. <em>Lithos,<\/em> 444-445: 107091. <a href=\"https:\/\/doi.org\/10.1016\/j.lithos.2023.107091\">https:\/\/doi.org\/10.1016\/j.lithos.2023.107091<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Yang Z., Hou T., Wang D., Marxer F., Wang M., Chebotarev D., Zhang Z., Zhang H., <strong>Botcharnikov R.,<\/strong> Holtz F. (2023) The role of magma mixing in the petrogenesis of Eocene ultrapotassic lavas, Western Yunnan, SW China. <em>Journal of Petrology,<\/em> 64, 1\u201326 (Editor's Choice paper), https:\/\/doi.org\/10.1093\/petrology\/egac129<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><strong>2022<\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Luo D., Reichow M.K., Hou T., Santosh M., Zhang Z., Wang M., Qin J., Yang D., Pan R., Wang, X., Holtz F., <strong>Botcharnikov R.<\/strong> (2022) A snapshot of the transition from monogenetic volcanoes to composite volcanoes: case study on the Wulanhada Volcanic Field (northern China). <em>European Journal of Mineralogy<\/em>, 34, 469\u2013491, 2022; https:\/\/doi.org\/10.5194\/ejm-34-469-2022 <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Hanser C.S.,<\/strong> Gul B., H\u00e4ger T., <strong>Botcharnikov R.<\/strong> (2022) Emerald from the Chitral region, Pakistan: A new deposit. <em>The Journal of Gemmology<\/em>, 38(3), 234\u2013252, <a href=\"https:\/\/doi.org\/10.15506\/JoG.2022.38.3.234\">https:\/\/doi.org\/10.15506\/JoG.2022.38.3.234<\/a> <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Pan R., Hou T., Wang X., Encarnaci\u00f3n, J., <strong>Botcharnikov R.<\/strong> (2022) Multiple magma storage regions and open system processes revealed by chemistry and textures of the Datong tholeiitic lavas, North China Craton. <em>Journal of Petrology,<\/em> egac034, <a href=\"https:\/\/doi.org\/10.1093\/petrology\/egac034\">https:\/\/doi.org\/10.1093\/petrology\/egac034<\/a> <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><strong>2021<\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Sugzdaite A., H\u00e4ger T., <strong>Sorokina E.,<\/strong> Popov M.P., Nikolaev A.G., <strong>Botcharnikov R<\/strong>., Hofmeister W. (2021) Investigations of natural and heat-treated demantoids from the Central Ural Mountains in Russia. Z. Dt. Gemmol. Ges., 70\/3-4, 19-36.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Helmy,<\/strong> <strong>H.,<\/strong> <strong>Botcharnikov, R.,<\/strong> Ballhaus, C., <strong>Deutsch-Zemlitskaya, A.,<\/strong> Wirth, R., Schreiber, A., <strong>Buhre, S.,<\/strong> and H\u00e4ger, T. (2021) Evolution of magmatic sulfide liquids: how and when base metal sulfides crystallize? <em>Contrib. Mineral. Petrol., 176: 107.<\/em> <a href=\"https:\/\/doi.org\/10.1007\/s00410-021-01868-4\">https:\/\/doi.org\/10.1007\/s00410-021-01868-4<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">F\u00fcri E., Portnyagin M., Mironov N., Delignya C., Gurenko A., <strong>Botcharnikov R<\/strong>., Holtz F. (2021) In situ quantification of the nitrogen content of olivine-hosted melt inclusions from Klyuchevskoy volcano (Kamchatka): Implications for nitrogen recycling at subduction zones. <em>Chemical Geology<\/em>, 582: 120456.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Hou T., <strong>Botcharnikov R<\/strong>., Moulas E., Just T., Koepke, J., Berndt J., Yang Z., Zhang Z., Wang M., and Holtz F. (2021) Kinetics of Fe-Ti oxide re-equilibration in magmatic systems: Implications for thermo-oxybarometry. <em>Journal of Petrology<\/em>, 1-24, doi.org\/10.1093\/petrology\/egaa116.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Sorokina E.,<\/strong> <strong>Botcharnikov R.<\/strong>, Kostitsyn Y.A., R\u00f6sel D., H\u00e4ger T., Rassomakhin M.A., Kononkova N.N., Somsikova A.V., Berndt J., Ludwig T., Medvedeva E.V., Hofmeister W. (2021) Sapphire-bearing magmatic rocks trace the boundary between paleo-continents: A case study of Ilmenogorsky alkaline complex, Uralian collision zone of Russia. <em>Gondwana Research<\/em>, 92, 239-252. <a href=\"https:\/\/doi.org\/10.1016\/j.gr.2021.01.001\">https:\/\/doi.org\/10.1016\/j.gr.2021.01.001<\/a><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><strong>2020<\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Korneeva A.A., Nekrylov N., Kamenetsky V.S., Portnyagin M.V., Savelyev D.P., Krasheninnikov S.P, Abersteiner A., Kamenetsky M.B., Zelenski M.E., Shcherbakov V.D., and <strong>Botcharnikov R.E.<\/strong> (2020) Composition, crystallization conditions and genesis of sulfide-saturated parental melts of olivine-phyric rocks from Kamchatsky Mys (Kamchatka, Russia). <em>Lithos<\/em> 370, 105657. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Qi, D., Behrens, H., <strong>Botcharnikov, R.,<\/strong> Derrey, I., Holtz, F., Zhang, C., Li, X., and Horn, I. (2020) Reaction between Cu-bearing minerals and hydrothermal fluids at 800\u00b0C and 200 MPa: constraints from synthetic fluid inclusions. <em>Am. Mineralogist <\/em>, 105 (8), 1126-1139.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Litvinenko A.K., <strong>Sorokina E.S.,<\/strong> H\u00e4ger T., Kostitsyn Y.A., <strong>Botcharnikov R.E<\/strong>., Somsikova A.V., Ludwig T., Romashova T.V., and Hofmeister W. (2020) Petrogenesis of the Snezhnoe ruby deposit, Central Pamir. <em>Minerals<\/em>, 10: 478.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\"><strong>Helmy H.<\/strong> and <strong>Botcharnikov R.<\/strong> (2020) Experimental studies of the Pt and Pd antimonides and bismuthinides in sulphide systems between 1100 and 700\u00b0C and applications to nature.  <em>Am. Mineralogist <\/em>, 105: 344-352.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Wang, M., Deng, J., Hou, T., Derrey, I., <strong>Botcharnikov, R.E.<\/strong>, Liu, X., Zhang, C., Qi, D., Zhang, Z., and Holtz, F. (2020) Experimental evidence for a protracted enrichment of tungsten in evolved granitic melts: Implications for scheelite mineralization. <em>Minerallium Deposita<\/em>, 55(7), pp. 1299\u20131306.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><strong>2019<\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Portnyagin M.V., Mironov N.L., <strong>Botcharnikov R.E<\/strong>., Gurenko A.A., Almeev A.A., Holtz F. (2019) Dehydration of melt inclusions in olivine and the origin of silica-undersaturated island-arc melts. Earth and Planetary Science Letters, 517:95-105. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">K\u00f6tze, E., Schuth, S., Goldmann, S., Winkler, B., <strong>Botcharnikov, R.E.,<\/strong> and Holtz, F. (2019) The mobility of palladium and platinum in the presence of humic acids: An experimental study. Chem Geol 514:65-78. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Filina, M.I.; <strong>Sorokina, E.S<\/strong>.; <strong>Botcharnikov, R<\/strong>.; Karampelas, S.; Rassomakhin, M.A.; Kononkova, N.N.; Nikolaev, A.G.; Berndt, J.; Hofmeister, W. (2019) Corundum anorthosites-kyshtymites from the South Urals, Russia: A combined mineralogical, geochemical, and U-Pb zircon geochronological study. Minerals, 9: 234.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><strong>2018<\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Koepke, J., <strong>Botcharnikov, R.E.,<\/strong> and Natland, J.H. (2018) Crystallization of late-stage MORB under varying water activities and redox conditions: Implications for the formation of highly evolved lavas and oxide gabbro in the ocean crust. Lithos, 323: 58-77, doi.org\/10.1016\/j.lithos.2018.10.001. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Benard, A., Klimm, K., Woodland, A.B., Arculus, R.J., Wilke, M., <strong>Botcharnikov, R.E<\/strong>., Shimizu, N., Nebel, O., Rivard, C., and Ionov, D.A. (2018) Oxidizing agents in sub-arc mantle link slab devolatilization and arc magmas. Nature Communications, 9:3500, doi: 10.1038\/s41467-018-05804-2. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Hughes, E., Buse, B., Kearns, S.L., Blundy, J.D., Kilgour, G., Mader, H.M., Brooker, R.A., Balzer, R., <strong>Botcharnikov, R.E.<\/strong>, Di Genova, D., Almeev, R.R., and Riker, J.M. (2018) High spatial resolution analysis of the iron oxidation state in silicate glasses using the electron probe. Am. Mineralogist 103: 1473-1486.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Zhang, C., Almeev, R.R., Hughes, E., Borisov, A.A., Wolff, E.P., H\u00f6fer, H.E., <strong>Botcharnikov, R.E.,<\/strong> and Koepke, J. (2018) Electron microprobe technique for the determination of iron oxidation state in silicate glasses. Am. Mineralogist 103: 1445-1454.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Savelyev, D.P., Kamenetsky, V.S., Danyushevsky, L.V., <strong>Botcharnikov, R.E.,<\/strong> Kamenetsky, M.B., Park, J.-W., Portnyagin, M.V., Olin, P., Krasheninnikov, S.P., and Zelenski, M.E. (2018) Immiscible sulfide melts in primitive oceanic magmas: evidence and implications from the Cretaceous picrites (eastern Kamchatka, Russia). American<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Mineralogist 103: 886\u2013898, doi: 10.2138\/am-2018-6352.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Ciazela, J., Koepke, J., Dick, H., <strong>Botcharnikov, R<\/strong>., Muszynski, A., Lazarov, M., Schuth, S., Pieterek, B., and Kuhn, T. (2018) Sulfide enrichment at an oceanic crust-mantle transition zone: Kane Megamullion (23\u00b0N, MAR). Geochim. Cosmochim. Acta, 230: 155-189. 10.1016\/j.gca.2018.03.027.    <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Cottrell, L., Lanzirotti, A., Mysen, B., Birner, S., Kelley, K.A., <strong>Botcharnikov, R.E.,<\/strong> Newville, M., Davis, F.A. (2018) A M\u00f6ssbauer-based XANES calibration for hydrous basalt glasses reveals radiation-induced oxidation of Fe. American Mineralogist, v.103, 489-501. 10.2138\/am-2018-6268.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Shishkina, T., Portnyagin, M., <strong>Botcharnikov, R.E.,<\/strong> Almeev, R., Simonyan, A., Garbe-Sch\u00f6nberg, D., Schuth, S., Oeser, M. and Holtz, F. (2018) Experimental calibration and implications of olivine-melt vanadium oxybarometry for hydrous basaltic arc magmas. American Mineralogist, v.103, 369-383, doi.org\/10.2138\/am-2017-6210. <\/p>\n<!-- \/wp:paragraph -->\n<!-- \/wp:jgu\/tabs-item -->\n<!-- \/wp:jgu\/tabs --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns --><\/div>\n<!-- \/wp:group --><!-- wp:jgu\/section {\"color\":\"light\",\"metadata\":{\"name\":\"Team\"}} -->\n<div class=\"jgu-bgsection bg bg-light \"><div class=\"content padding-medium\"><!-- wp:jgu\/anchorpoint {\"title\":\"Team\",\"slug\":\"team\"} \/-->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Team\",\"className\":\"\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><!-- wp:jgu\/idm-person {\"id\":\"5541\",\"organizationId\":975,\"roleId\":13} \/-->\n\n<!-- wp:jgu\/button -->\n<!-- wp:jgu\/button-item {\"text\":\"Research 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{\"id\":\"12469\",\"organizationId\":976,\"roleId\":16} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Visiting Researchers\",\"className\":\"\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><!-- wp:jgu\/contact-card {\"name\":\"Prof. Dr. Ilya Bindeman\",\"avatar\":{\"id\":null,\"url\":null,\"credit\":\"\"}} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Humboldt Fellow\",\"uuid\":\"1773144921640\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Petrology\",\"uuid\":\"1773144984525\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"envelope-solid\",\"title\":\"\\u003ca href=\\u0022mailto:bindeman@uoregon.edu\\u0022\\u003ebindeman@uoregon.edu\\u003c\/a\\u003e\",\"uuid\":\"1773145031183\",\"link\":{\"url\":\"mailto:bindeman@uoregon.edu\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"phone-solid\",\"title\":\"  \",\"uuid\":\"1773145072171\"} -->\n<!-- wp:jgu\/list-item {\"title\":\" \",\"uuid\":\"1775319407544\"} \/-->\n<!-- \/wp:jgu\/list-item -->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><!-- wp:jgu\/contact-card {\"name\":\"\\u003cstrong\\u003eProf. Dr. Vahid Ahadnejad\\u003c\/strong\\u003e\",\"avatar\":{\"id\":null,\"url\":null,\"credit\":\"\"}} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Visiting scholar\",\"uuid\":\"1773144921640\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Petrology \/ Gemstone Research\",\"uuid\":\"1773144984525\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"envelope-solid\",\"uuid\":\"1773145031183\"} -->\n<!-- wp:jgu\/list-item {\"title\":\" \",\"uuid\":\"1775319384468\"} \/-->\n<!-- \/wp:jgu\/list-item -->\n\n<!-- wp:jgu\/list-item {\"icon\":\"phone-solid\",\"title\":\"  \",\"uuid\":\"1773145072171\"} -->\n<!-- wp:jgu\/list-item {\"title\":\" \",\"uuid\":\"1775319387324\"} \/-->\n<!-- \/wp:jgu\/list-item -->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><!-- wp:jgu\/contact-card {\"name\":\"Dr. Elahe Namnabat\",\"avatar\":{\"id\":null,\"url\":null,\"credit\":\"\"}} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Humboldt Fellow\",\"uuid\":\"1773144921640\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Petrology \/ Gemstone Research\",\"uuid\":\"1773144984525\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"envelope-solid\",\"title\":\"\\u003ca href=\\u0022mailto:namnabel@uni-mainz.de\\u0022\\u003enamnabel@uni-mainz.de\\u003c\/a\\u003e\",\"uuid\":\"1773145031183\",\"link\":{\"url\":\"mailto:namnabel@uni-mainz.de\"}} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"phone-solid\",\"title\":\"  \",\"uuid\":\"1773145072171\"} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"100%\",\"metadata\":{\"name\":\"manuell\"}} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"PhD Students\",\"className\":\"\"} \/-->\n\n<!-- wp:columns {\"verticalAlignment\":\"top\",\"className\":\"\"} -->\n<div class=\"wp-block-columns are-vertically-aligned-top\"><!-- wp:column {\"verticalAlignment\":\"top\",\"width\":\"100%\"} -->\n<div class=\"wp-block-column is-vertically-aligned-top\" style=\"flex-basis:100%\"><!-- wp:jgu\/idm-person {\"id\":\"9111\",\"organizationId\":976,\"roleId\":42} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"verticalAlignment\":\"top\",\"width\":\"100%\"} -->\n<div class=\"wp-block-column is-vertically-aligned-top\" style=\"flex-basis:100%\"><!-- wp:jgu\/contact-card {\"name\":\"Antonia Simon\",\"avatar\":{\"id\":null,\"url\":null,\"credit\":\"\"}} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"PhD Students\",\"uuid\":\"1773144921640\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Petrology\",\"uuid\":\"1773144984525\"} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"verticalAlignment\":\"top\",\"width\":\"100%\"} -->\n<div class=\"wp-block-column is-vertically-aligned-top\" style=\"flex-basis:100%\"><!-- wp:jgu\/contact-card {\"name\":\"Myriam Ruttmann\",\"avatar\":{\"id\":null,\"url\":null,\"credit\":\"\"}} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"PhD Students\",\"uuid\":\"1773144921640\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Petrology\",\"uuid\":\"1773144984525\"} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"verticalAlignment\":\"top\",\"width\":\"100%\"} -->\n<div class=\"wp-block-column is-vertically-aligned-top\" style=\"flex-basis:100%\"><!-- wp:jgu\/contact-card {\"name\":\"Stepan Karashenninikov\",\"avatar\":{\"id\":null,\"url\":null,\"credit\":\"\"}} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Doctoral candidate\",\"uuid\":\"1773144921640\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Petrology \/ Gemstone Research\",\"uuid\":\"1773144984525\"} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"MSc student\",\"className\":\"\"} \/-->\n\n<!-- wp:columns {\"verticalAlignment\":\"top\",\"className\":\"\"} -->\n<div class=\"wp-block-columns are-vertically-aligned-top\"><!-- wp:column {\"verticalAlignment\":\"top\",\"width\":\"100%\"} -->\n<div class=\"wp-block-column is-vertically-aligned-top\" style=\"flex-basis:100%\"><!-- wp:jgu\/contact-card {\"align\":\"left\",\"name\":\"Richard Pigoznis\",\"avatar\":{\"id\":null,\"url\":null,\"credit\":\"\"}} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Master's Degree Student\",\"uuid\":\"1773144921640\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Petrology\",\"uuid\":\"1773144984525\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"envelope-solid\",\"title\":\"rpigozni@students.uni-mainz.de\\u003cbr\\u003e\",\"uuid\":\"1773145031183\"} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"verticalAlignment\":\"top\",\"width\":\"100%\"} -->\n<div class=\"wp-block-column is-vertically-aligned-top\" style=\"flex-basis:100%\"><!-- wp:jgu\/contact-card {\"name\":\"Christian Forster\",\"avatar\":{\"id\":null,\"url\":null,\"credit\":\"\"}} -->\n<!-- wp:jgu\/list-item {\"icon\":\"address-card-solid\",\"title\":\"Master's Degree Student\",\"uuid\":\"1773144921640\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"university-solid\",\"title\":\"Petrology\",\"uuid\":\"1773144984525\"} \/-->\n\n<!-- wp:jgu\/list-item {\"icon\":\"envelope-solid\",\"title\":\"cforster@students.uni-mainz.de\",\"uuid\":\"1773145031183\"} \/-->\n<!-- \/wp:jgu\/contact-card --><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"verticalAlignment\":\"top\",\"width\":\"100%\",\"metadata\":{\"name\":\"manuell\"}} -->\n<div class=\"wp-block-column is-vertically-aligned-top\" style=\"flex-basis:100%\"><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"verticalAlignment\":\"top\",\"width\":\"100%\"} -->\n<div class=\"wp-block-column is-vertically-aligned-top\" style=\"flex-basis:100%\"><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns -->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h3\",\"classTag\":\"\",\"tag\":\"h3\"},\"heading\":\"Research Support Staff\",\"className\":\"\"} \/-->\n\n<!-- wp:columns {\"className\":\"\"} -->\n<div class=\"wp-block-columns\"><!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><!-- wp:jgu\/idm-person {\"id\":\"277\",\"organizationId\":975,\"roleId\":5} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><!-- wp:jgu\/idm-person {\"id\":\"111169\",\"organizationId\":968,\"roleId\":5} \/--><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><\/div>\n<!-- \/wp:column -->\n\n<!-- wp:column {\"width\":\"100%\"} -->\n<div class=\"wp-block-column\" style=\"flex-basis:100%\"><\/div>\n<!-- \/wp:column --><\/div>\n<!-- \/wp:columns --><\/div><\/div>\n<!-- \/wp:jgu\/section --><!-- wp:jgu\/section {\"color\":\"white-dark-text\",\"metadata\":{\"name\":\"Labore\"}} -->\n<div class=\"jgu-bgsection bg bg-white-dark-text \"><div class=\"content padding-medium\"><!-- wp:jgu\/anchorpoint {\"title\":\"Laboratories\",\"slug\":\"laboratories\",\"className\":\"\"} \/-->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Laboratories\",\"className\":\"alignwide\"} \/-->\n\n<!-- wp:jgu\/tabs {\"layout\":{\"type\":\"flex\",\"flexWrap\":\"nowrap\",\"justifyContent\":\"left\",\"orientation\":\"vertical\"}} -->\n<!-- wp:jgu\/tabs-item {\"title\":\"Electron Microprobe\",\"slug\":\"electron-microprobe\"} -->\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"JEOL JXA-IHP200F FEG Electron Microprobe\"} \/-->\n\n<!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":15470}} \/-->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">The electron microprobe is referred to in English as EMP (Electron Microprobe) or EPMA (Electron Probe Micro-Analyzer) and is based on a scanning electron microscope. However, it is equipped with 5 WDX spectrometers for quantitative analysis of major, minor, and trace element concentrations. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">This allows the composition of the smallest areas to be analyzed non-destructively, meaning that even mineral grains measuring just a few micrometers can be analyzed in-situ (i.e., within the rock matrix) with high precision. In addition to rock samples, the smallest glass particles, gemstones, bones, teeth, skeletons of marine organisms, and much more can also be examined. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Electrons are emitted from a Schottky emitter. This is a special type of electron source based on thermally assisted field emission. It consists of a very finely tapered tungsten cathode coated with a small amount of zirconium oxide. This coating lowers the effective work function of the electrons at the metal surface.   <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">The cathode is moderately heated and simultaneously exposed to a strong electric field. Through the combination of thermal energy and field emission, electrons can overcome the potential barrier at the tip and escape into the vacuum. The emission area is extremely small, resulting in very high beam density. Compared to conventional thermal electron sources, the Schottky emitter provides a particularly bright, stable, and low-energy electron beam. This enables high spatial resolution, good beam stability, and reproducible conditions, which are crucial for precise geochemical analyses in the electron microprobe.    <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">The electrons thus generated are accelerated in a high vacuum by an electric potential of up to 30 kV toward the sample. On their way there, the charge carriers pass through a series of electromagnetic coils that shape and focus the beam before it strikes the sample. There, interaction occurs with the atoms of the different elements in the sample, which are excited to emit their specific X-ray radiation. The interaction volume is only a few cubic micrometers, depending on the acceleration voltage. The X-ray spectrometers function like X-ray filters and measure the number of X-ray pulses for a specific element sequentially (normalized to the measurement time and beam current). The measured intensities are then compared with measurements on reference materials (whose compositions have been well determined beforehand) and element concentrations are calculated from this. The matrix correction performed after the measurement is needed to correct for the mutual influence of the elements on one another.      <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">In principle, the EMS can analyze elements from <strong>Be to Pu<\/strong> (see periodic table) in all <strong>solid<\/strong> materials, provided they are <strong>vacuum-stable<\/strong> and <strong>do not change under the influence of electron bombardment<\/strong>. For quantitative analyses, a <strong>very good surface polish<\/strong> is also mandatory. Non-conductive materials must be <strong>coated with a 15-20 nm thick carbon layer<\/strong> to prevent negative charging of the sample.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Two of the 5 wavelength-dispersive spectrometers operate with Ar\/methane flow counters, which in combination with LDE1, LDEB, LDEC, TAP or TAPL, and PETL crystals are optimized for measuring light elements. The other spectrometers are equipped with Xe counters and a combination of PETL and LIFL crystals. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">With the EDS system, it is possible to measure multiple elements simultaneously and thereby perform phase identification in a matter of seconds.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"fontSize\":\"normal\",\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-normal-font-size\"><strong>Contact: <\/strong><a href=\"mailto:buhre@uni-mainz.de\">Dr. S. Buhre<\/a><\/p>\n<!-- \/wp:paragraph -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"X-ray Fluorescence Analysis\",\"slug\":\"x-ray-fluorescence-analysis\"} -->\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"X-ray Fluorescence Laboratory\"} \/-->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">X-ray fluorescence analysis (XRF) is used for material analysis. It serves for the qualitative and quantitative determination of the elemental composition of solid, liquid, or pasty samples, such as: rocks, soils, minerals, clays, ores, steels, alloys, glasses, ceramics, building materials, slags, plastics, pastes, and oils.<br\/>XRF is used in research and in quality and production control in industry. Depending on the equipment of the analytical instrument, the determination of elements from atomic number 4 (Be) to 92 (U) is possible. The measurement range, depending on the element and the matrix, extends from 0.0001 wt% to 100 wt%.   <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":15938},\"caption\":\"Schematic representation of the structure of a wavelength-dispersive X-ray fluorescence spectrometer\"} \/-->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">X-ray fluorescence analysis uses X-rays as primary radiation to excite a sample to be analyzed. Through interaction with the sample, secondary X-ray radiation (\"fluorescence radiation\") is produced, which can be qualitatively and quantitatively determined after spectral decomposition by diffraction on a crystal. The wavelengths of this radiation are characteristic of the elements present in the sample. From the intensity of the characteristic radiation, the concentration of the elements to be determined can be calculated based on extensive correction and calibration programs.   <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">In order to optimally address all questions, the spectrometer is equipped with various apertures, 3 collimators, 6 analyzer crystals (PX1, PE002, Ge111, PX9, LiF200, LiF220), and 3 detectors (flow, scintillation, and Xe proportional counters). This allows the best setting to be made for trace to major elements. <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">The main application at our institute is the determination of major and trace elements in geological samples. Special measurement programs (applications) are also created as needed. Semi-quantitative analyses on a wide variety of solids can be performed using the standardless measurement method IQ+ from Panalytical.   <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"fontSize\":\"normal\",\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-normal-font-size\"><strong>Contact: <\/strong><a href=\"mailto:buhre@uni-mainz.de\">Dr. Stephan Buhre<\/a><\/p>\n<!-- \/wp:paragraph -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"Piston-Cylinder Apparatus\",\"slug\":\"piston-cylinder-apparatus\"} -->\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"High-Pressure Laboratory\"} \/-->\n\n<!-- wp:jgu\/image {\"image\":{\"url\":null,\"id\":15881}} \/-->\n\n<!-- wp:paragraph {\"fontSize\":\"normal\",\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-normal-font-size\"><strong>Contact: <a href=\"mailto:buhre@uni-mainz.de\">Dr. Stephan Buhre<\/a><\/strong><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">The Petrology work group has a piston-cylinder laboratory with two presses in a modified Boyd-England design. The equipment includes a 650-ton apparatus with a 1-inch piston diameter and a 250-ton press with a 0.5-inch piston diameter.  <\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Both apparatus can generate pressures of up to 3.0 GPa (30,000 atmospheres) and reach temperatures of up to 1500 \u00b0C.<\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><\/p>\n<!-- \/wp:paragraph -->\n<!-- \/wp:jgu\/tabs-item -->\n\n<!-- wp:jgu\/tabs-item {\"title\":\"Multi-Anvil Apparatus\",\"slug\":\"multi-anvil-apparatus\"} -->\n<!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><\/p>\n<!-- \/wp:paragraph -->\n\n<!-- wp:jgu\/heading {\"tags\":{\"htmlTag\":\"h2\",\"classTag\":\"\",\"tag\":\"h2\"},\"heading\":\"Multi-Anvil Apparatus\"} \/-->\n\n<!-- wp:paragraph {\"translatedWithWPMLTM\":\"1\"} -->\n<p class=\"has-big-font-size\">Our high-pressure laboratory also has a so-called multi-anvil apparatus. This can achieve pressures of up to 15 GPa (150,000 atmospheres) and temperatures of up to 2500 \u00b0C.  <\/p>\n<!-- \/wp:paragraph -->\n<!-- \/wp:jgu\/tabs-item -->\n<!-- \/wp:jgu\/tabs --><\/div><\/div>\n<!-- \/wp:jgu\/section --><!-- wp:paragraph -->\n<p class=\"has-big-font-size\"><\/p>\n<!-- \/wp:paragraph -->","_links":{"self":[{"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/pages\/23195","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/users\/1931"}],"replies":[{"embeddable":true,"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/comments?post=23195"}],"version-history":[{"count":2,"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/pages\/23195\/revisions"}],"predecessor-version":[{"id":23216,"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/pages\/23195\/revisions\/23216"}],"up":[{"embeddable":true,"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/pages\/21238"}],"wp:attachment":[{"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/media?parent=23195"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/categories?post=23195"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.geowiss.uni-mainz.de\/en\/wp-json\/wp\/v2\/tags?post=23195"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}