Department of geology northwest university

Teacher Name

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<span style="color:#000000;font- size:14px;"> Profile & lt; / span & gt;

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≪ span style = & quot; color: Zhang Chao: born in 1982 in Zhenjiang, Jiangsu Province & lt; / span & gt;

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≪ span style = & quot; color: Lecturer Professor, Department of geology, Northwestern University;

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≪ span style = & quot; color: ×000000; & quot; & gt; 2012 – 2019 & nbsp; nbsp; & nbsp; Department of mineralogy, University of Hanover, Germany & nbsp; postdoctoral & lt; / span & gt;

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≪ span style = & quot; color: 2008 – 2012 & nbsp; & nbsp; Department of mineralogy, University of Hanover, Germany & nbsp; PhD & lt; / span & gt;

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≪ span style = & quot; color: 2004 – 2008 & nbsp; China University of Geosciences (Wuhan) & nbsp; master degree & lt; / span & gt;

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≪ span style = & quote; color: 000000; 2000 – 2004 & nbsp; China University of Geosciences (Wuhan) & nbsp; Undergraduate & lt; / span & gt;

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≪ span style = & quote; color: 000000; 1997 & nbsp; – 2000 & nbsp; nbsp; Zhenjiang middle school, Jiangsu Province & lt; / span & gt;

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<strong><span style="font- size:14px;"> </span></strong>

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<strong><span style="color:#000000;font- size:14px;"> Research interests & lt; / span & gt; & lt; / strong & gt;

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≪ span style = & quot; color: ා000000; background color: ාffff; & quot; & gt; experimental petrological simulation of magma formation evolution crystallization process & lt; / span & gt;

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<span style="color: rgb(0, 0, 0); font-family:; background-color: rgb(255, 255, 255);" serif",tahoma,verdana,helvetica;font- size:12px;font-style :normal;font- weight:400;text-decoration : none; & quot; = & quot; & quot; sans = & quot; & quot; & gt; oceanic crust petrology and magmatism of mid ocean ridge and subduction zone & lt; / span & gt;

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<span style="color: rgb(0, 0, 0); font-family:; background-color: rgb(255, 255, 255);" serif",tahoma,verdana,helvetica;font- size:12px;font-style :normal;font- weight:400;text-decoration : none; & quot; = & quot; & quot; sans = & quot; & quot; & gt; volatiles in magma hydrothermal system and their diagenetic Metallogenic Significance & lt; / span & gt;

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<span style="color:#000000;font- size:14px;"> Research projects & lt; / span & gt;

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≪ span style = & quot; color:; & quot; & gt; the general program of NSFC "volatiles and metallogenic metals in oceanic island arc magma: melting inclusions and experimental petrology of Kermadec island arc brothers volcanic rocks in the southwest Pacific" (2020-2023) & lt; span & gt; presided over & nbsp; & lt; / span & gt; & lt; / span & gt;

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≪ span style = & quot; color: wege in die Forschung II (2013-2015) & lt; span & gt; Chair & nbsp; nbsp; & lt; / span & gt; & lt; / span & gt;

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<span style="color:#000000;font- size:14px;"> Academic papers & lt; / span & gt;

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https://www.researchgate.net/profile/Chao_ Zhang21

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="font- weight:normal;color :#000000;">, Li X, Almeev RR, Horn I, Behrens H, Holtz F. (2020) Ti-in-quartz thermobarometry and TiO2 solubility in rhyolitic melts: New experiments and parametrization. <em> Earth and Planetary Science Letters</em>, 538: 116213.</span>

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<span style="font- weight:normal;color :#000000;">Li X, <strong>Z</strong><strong>hang C</strong>*, Almeev RR, Holtz F. (2020) GeoBalance: An Excel VBA program for mass balance calculation in geosciences. <em>Geochemistry</em>, 80(2): 125629.<br />

</span>

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<span style="font- weight:normal;color :#000000;">Li X, <strong>Zhang C</strong>*, Wang L, Behrens H, Holtz F. (2020) Experiments on the saturation of fluorite in magmatic systems: Implications for maximum F concentration and fluorine-cation bonding in silicate melt. <em>Journal of Earth Science</em>, 31(3): 456-467.</span>

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<span style="font- weight:normal;color :#000000;">Luo B, Zhang H, Zhang L, <strong>Zhang C</strong>, Shen L, Xiao Z, Pan F, Yang H, Li Z, Xu W, Guo L, Tao L.&nbsp;(2020) The magma plumbing system of Mesozoic Shanyang porphyry groups, South Qinling and implications for porphyry copper mineralization. <em> Earth and Planetary Science Letters</em>, 543: 116346.<br />

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<span style="font- weight:normal;color :#000000;">Zhu YX, Wang LX, Xiong QH, Ma CQ, Zhang X, <strong>Zhang C</strong>, Ahmed HA. (2020) Origin and evolution of ultrapotassic intermediate magma: The Songxian syenite massif, Central China. <em>Lithos</em>, 105554.<br />

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<span style="color:#000000;"><span style="color:#000000;">Cheng L,</span><strong><span style="color:#000000;"> Zhang C</span></strong><span style="color:#000000;">, Yang X. (2020) Petrogenesis of deformed tourmaline leucogranite in the Gurla Mandhata metamorphic core complex, Southwestern Tibet. <em>Lithos</em>, 364-365: 105533.</span><br />

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<span style="color:#000000;"><span style="color:#000000;">Li X, </span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;"><span>*</span>, Behrens H, Holtz F. (2020) Calculating amphibole formula from electron microprobe analysis data using a machine learning method based on principal components regression. <em>Lithos</em>, 362-363: 105469.</span><br />

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<span style="color:#000000;"><span style="color:#000000;">Li X, </span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;"><span>*,&nbsp;</span>Behrens H, Holtz F. (2020) Calculating biotite formula from electron microprobe analysis data using a machine learning method based on principal components regression. <em>Lithos</em>, 356-357: 105371.</span><br />

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&Nbsp; An experimental study on the reaction of biotite granite with boron bearing fluids: implications for the genesis of tourmaline granite. & lt; EM & gt; Chinese Science: Geoscience & lt; / EM & gt;. 49 (11): 1772-1787. & lt; / span & gt;

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<span style="color:#000000;">Cheng L, </span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">*, Li X, Almeev RR, Yang X, Holtz F. (2019) Improvement of Electron Probe Microanalysis of Boron Concentration in Silicate Glasses. <em> Microscopy and Microanalysis</em>. 25(4): 874-882.</span>

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<span style="color:#000000;">Hinterding R, Zhao Z, </span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Feldhoff A. (2019) Anisotropic growth of La2NiO4+δ: Influential pre-treatment in molten-flux synthesis. <em> Journal of Crystal Growth</em>. 523: 125135.</span>

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<span style="color:#000000;">de Ronde CEJ, Humphris SE, Höfig TW, Reyes AG, the IODP Expedition 376 Scientists (including </span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;"> ). (2019) Critical role of caldera collapse in the formation of seafloor mineralization: The case of Brothers volcano. <em>Geology</em>. 47(8): 762-766.</span>

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<span style="color:#000000;">Parlak O, Dunkl I, Karaoğlan F, Kusky TM, </span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Wang L, Koepke J, Billor Z, Hames WE, Şimşek E, Şimşek G, Şimşek T, Öztürk SE. (2019) Rapid cooling history of a Neotethyan ophiolite: Evidence for contemporaneous subduction initiation and metamorphic sole formation. <em>GSA Bulletin</em>. 131(11-12): 2011-2038.</span>

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<span style="color:#000000;">Hoffmann JE,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Moyen J-F, Nagel TJ. (2019) Chapter 7 - The Formation of Tonalites–Trondjhemite–Granodiorites in Early Continental Crust. In: Van Kranendonk MJ, Bennett VC, Hoffmann JE, editors. <em>Earth's Oldest Rocks (Second Edition</em>): Elsevier; p. 133-168.</span>

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<span style="color:#000000;">Li X,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">*, Almeev RR, Zhang X-C, Zhao X-F, Wang L-X, Koepke J, Holtz F. (2019) Electron probe microanalysis of Fe2+/ΣFe ratios in calcic and sodic-calcic amphibole and biotite using the flank method. <em>Chemical Geology</em>. 509: 152-162.</span>

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<span style="color:#000000;">Currin A, Wolff PE, Koepke J, Almeev RR, </span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Zihlmann B, et al. (2018) Chlorine-rich amphibole in deep layered gabbros as evidence for brine/rock interaction in the lower oceanic crust: A case study from the Wadi Wariyah, Samail Ophiolite, Sultanate of Oman. <em>Lithos</em>. 323(15): 125-36.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Almeev RR, Hughes EC, Borisov AA, Wolff EP, Höfer HE, Botcharnikov R, Koepke J. (2018) Electron microprobe technique for the determination of iron oxidation state in silicate glasses. <em> American Mineralogist</em>. 103(9): 1445-1454.</span>

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<span style="color:#000000;">Li X,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">*, Behrens H, Holtz F. (2018) Fluorine partitioning between titanite and silicate melt and its dependence on melt composition: experiments at 50-200 MPa and 875-925 °C. <em>European Journal of Mineralogy</em>. 30(1): 33-44.</span>

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<span style="color:#000000;">Wang L-X, Ma C-Q,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Zhu Y-X, Marks MAW. (2018) Halogen geochemistry of I- and A-type granites from Jiuhuashan region (South China): Insights into the elevated fluorine in A-type granite. <em>Chemical Geology</em>. 478: 164-182.</span>

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<span style="color:#000000;">Zhu Y,&nbsp;Wang L-X,&nbsp;Ma C-Q,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">. (2018) A flower-like glomerophyric diorite porphyry from Central China: Constraints on the unusual texture. <em>Lithos</em>.&nbsp;318-319: 1-13.</span>

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<span style="color:#000000;">Zhu Y,&nbsp;Wang L-X,&nbsp;Ma C-Q,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Wang K. (2018) Geochronology, Geochemistry and Sr-Nd-Pb Isotopic Study of the Wulong Flower-Like Glomerophyric Diorite Porphyry (Central China): Implications for Tectonic Evolution of Eastern Qinling.&nbsp;<em>Journal of Earth Science</em>. 29(5): 1203-1218.</span>

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<span style="color:#000000;">Fang W,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Steinbach F, Feldhoff A. (2017) Stabilizing Perovskite Structure by Interdiffusional Tailoring and Its Application in Composite Mixed Oxygen-Ionic and Electronic Conductors. <em>Angewandte Chemie</em>. 129(26): 7692-7696.</span>

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<span style="color:#000000;">González-García D, Behrens H, Petrelli M, Vetere F, Morgavi D,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, et al. (2017) Water-enhanced interdiffusion of major elements between natural shoshonite and high-K rhyolite melts. <em>Chemical Geology</em>. 466: 86-101.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Wang L-X, Marks MAW, France L, Koepke J. (2017) Volatiles (CO2, S, F, Cl, Br) in the dike-gabbro transition zone at IODP Hole 1256D: Magmatic imprint versus hydrothermal influence at fast-spreading mid-ocean ridge. <em>Chemical Geology</em>. 459: 43-60.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Lin J, Pan Y, Feng R, Almeev RR, Holtz F. (2017) Electron Probe Microanalysis of Bromine in Minerals and Glasses with Correction for Spectral Interference from Aluminium, and Comparison with Microbeam Synchrotron X-Ray Fluorescence Spectrometry. <em>Geostandards and Geoanalytical Research</em>. 41(3): 449-457.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Koepke J, France L, Godard M. (2017) Felsic Plutonic Rocks from IODP Hole 1256D, Eastern Pacific: Implications for the Nature of the Axial Melt Lens at Fast-Spreading Mid-Ocean Ridges. <em> Journal of Petrology</em>. 58(8): 1535-1565.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Koepke J, Albrecht M, Horn I, Holtz F. (2017) Apatite in the dike-gabbro transition zone of mid-ocean ridge: Evidence for brine assimilation by axial melt lens. <em>American Mineralogist</em> . 102(3): 558-570.</span>

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<span style="color:#000000;">Fischer LA, Erdmann M, France L, Wolff PE, Deloule E,&nbsp;</span><strong><span style="color:#000000;">Zhang&nbsp;C</span></strong><span style="color:#000000;">, et al. (2016) Trace element evidence for anatexis at oceanic magma chamber roofs and the role of partial melts for contamination of fresh MORB. <em>Lithos</em>. 260: 1-8.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Koepke J, Wang L-X, Wolff PE, Wilke S, Stechern A, Almeev R, Holtz F. (2016) A Practical Method for Accurate Measurement of Trace Level Fluorine in Mg- and Fe-Bearing Minerals and Glasses Using Electron Probe Microanalysis.&nbsp;<em>Geostandards and Geoanalytical Research</em>. 40(3): 351-363.</span>

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<span style="color:#000000;">Erdmann M, Fischer L, France L,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Godard M, Koepke J. (2015) Anatexis at the roof of an oceanic magma chamber at IODP Site 1256 (equatorial Pacific): an experimental study.&nbsp;<em>Contributions to Mineralogy and Petrology</em>. 169(4): 1-28.</span>

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<span style="color:#000000;">Wang L-X, Ma C-Q, Lai Z-X, Marks MAW,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Zhong Y-F. (2015) Early Jurassic mafic dykes from the Xiazhuang ore district (South China): Implications for tectonic evolution and uranium metallogenesis. <em>Lithos</em>. 239: 71-85.</span>

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<span style="color:#000000;">Wang L-X, Ma C-Q,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Zhang J-Y, Marks MAW. (2014) Genesis of leucogranite by prolonged fractional crystallization: A case study of the Mufushan complex, South China. <em>Lithos</em>. 206-207: 147-163.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Koepke J, Kirchner C, Götze N, Behrens H. (2014) Rapid hydrothermal cooling above the axial melt lens at fast-spreading mid-ocean ridge. <em>Scientific Reports</em>. 4: No. 6342</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Holtz F, Koepke J, Berndt J, Ma C. (2014) Decompressional anatexis in the migmatite core complex of northern Dabie orogen, eastern China: Petrological evidence and Ti-in-quartz thermobarometry. <em> Lithos</em>. 202–203: 227-236.</span>

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<span style="color:#000000;">Zhang J-Y, Ma C-Q,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">,&nbsp;Li J-W. (2014) Fractional crystallization and magma mixing: evidence from porphyritic diorite-granodiorite dykes and mafic microgranular enclaves within the Zhoukoudian pluton, Beijing. <em>Mineralogy and Petrology</em>. 108(6): 777-800.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Holtz F, Koepke J, Wolff PE, Ma C, Bédard JH. (2013) Constraints from experimental melting of amphibolite on the depth of formation of garnet-rich restites, and implications for models of Early Archean crustal growth.&nbsp;<em>Precambrian Research</em>. 231: 206-217.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Ma C, Holtz F, Koepke J, Wolff PE, Berndt J. (2013) Mineralogical and geochemical constraints on contribution of magma mixing and fractional crystallization to high-Mg adakite-like diorites in eastern Dabie orogen, East China. <em>Lithos</em>. 172-173: 118-138.</span>

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<span style="color:#000000;">Zhang J, Ma C, Li J, She Z,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">. (2013) Geochronology and geochemistry of the Early Cretaceous Jigongshan and Qijianfeng batholiths in the Tongbai orogen, central China: implications for lower crustal delamination. <em>International Journal of Earth Sciences</em>. 102(4): 1045-1067.</span>

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<span style="color:#000000;">Zhong Y, Ma C,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Wang S, She Z, Liu L, et al. (2013) Zircon U–Pb age, Hf isotopic compositions and geochemistry of the Silurian Fengdingshan I-type granite Pluton and Taoyuan mafic–felsic Complex at the southeastern margin of the Yangtze Block. <em>Journal of Asian Earth Sciences</em>. 74: 11-24.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Holtz F, Ma C, Wolff P, Li X. (2012) Tracing the evolution and distribution of F and Cl in plutonic systems from volatile-bearing minerals: a case study from the Liujiawa pluton (Dabie orogen, China).& nbsp;<em>Contributions to Mineralogy and Petrology</em>. 164: 859-879.</span>

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&The first geological map of intrusive rocks in Dabie orogenic belt (1:500000) and its explanation; Geological bulletin & lt; / EM & gt;. 31 (1): 13-19. & lt; / span & gt;

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≪ strong & gt; & lt; span style = & quot; color: × 000000; & quot; & gt; Zhang Chao & lt; / span & gt; & lt; / strong & gt; & lt; span style = & quot; color: × 000000; & quot; & gt;, machangqian, Holtz F. (2012) partial melting of the lower crust of the water bearing continent: a discussion on the genesis of C-type adakites in the Dabie Mountains;

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<span style="color:#000000;">Chen L, Ma CQ, Zhang JY, Mason R,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;"> . (2011) Mafic dykes derived from Early Cretaceous depleted mantle beneath the Dabie orogenic belt: implications for changing lithosphere mantle beneath Eastern China. <em>Geological Journal</em>. 46(4): 333-343.</span>

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<span style="color:#000000;">Ding L-X, Ma C-Q, Li J-W, Robinson PT, Deng X-D,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, et al. (2011) Timing and genesis of the adakitic and shoshonitic intrusions in the Laoniushan complex, southern margin of the North China Craton: Implications for post-collisional magmatism associated with the Qinling Orogen. <em>Lithos</em>. 26(3): 212-232.</span>

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Ma C-Q, Liao Q-A, Zhang J-Y, She Z-B. (2011) Implications of subduction and subduction zone migration of the Paleo-Pacific Plate beneath eastern North China, based on distribution, geochronology, and geochemistry of Late Mesozoic volcanic rocks. <em>International Journal of Earth Sciences</em>. 100(7): 1665-1684.</span>

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≪ span style = & quot; color: Sun Yang, Ma changqian, & nbsp; & lt; / span & gt; & lt; strong & gt; & lt; span style = & quot; color: Zhang Chao & lt; / span & gt; / strong & gt; & lt; span style = & quot; color: geochemistry of lujiazhai granite in Dabie Mountains, Zircon chronology and Hf isotopic characteristics: evidence of Neoproterozoic magmatic activity in the northeast margin of the Yangtze craton;

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<strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">, Ma C, Holtz F. (2010) Origin of high-Mg adakitic magmatic enclaves from the Meichuan pluton, southern Dabie orogen (central China): Implications for delamination of the lower continental crust and melt-mantle interaction. <em>Lithos</em>. 119(3-4): 467-484.</span>

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<span style="color:#000000;">Chen L, Ma C-Q, She Z-B, Mason R, Zhang J-Y,&nbsp;</span><strong><span style="color:#000000;">Zhang C</span></strong><span style="color:#000000;">. (2009) Petrogenesis and tectonic implications of A-type granites in the Dabie orogenic belt, China: geochronological and geochemical constraints. <em>Geological Magazine</em>. 146(5): 638-651.</span>

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&2; . 25(5): 1159-1177.</span>

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&The petrochemical characteristics and genesis of the Cretaceous Taohuashan xiaomoshan granite; EM & gt; Journal of University Geology & lt; / EM & gt;. 14 (3): 334-349. & lt; / span & gt;

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&In this paper, the author analyzes the characteristics of;

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&Magmatism. & lt; EM & gt; geoscience front & lt; / EM & gt;. 13 (2): 130-139. & lt; / span & gt;

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&11 (3): 415-424. & lt; / span & gt;

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≪ span style = & quot; color: 2019 Goldschmidt meeting, Barcelona. & quot; experiences on oh-f-cl exchange partition between biotite and silicate met and calibration of & nbsp; composite effects & quot;. Talk. & lt; / span & gt;

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≪ span style = & quot; color:; & quot; & gt; 2019, K ö LN. & quot; experiences on melt peridotite interaction at custom man boundary: implications for ergonomicity in the lower customer & quot;. & lt; / span & gt;

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≪ span style = & quot; color:; & quot; & gt; 2018, the 7th Asia Pacific International Conference on laser ablation and microanalysis, Beijing;

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≪ span style = & quot; color: (000000; & quot; & gt; 2018, iodp-icdp conference in Germany, & nbsp; Bochum. & quot; met / rock interaction and structural crystallization in the lower customer at Hess deep rift (East Pacific rise): natural rocks and experiences & quot;. Poster. & lt; / span & gt;

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≪ span style = & quot; color: 2017 Bremen. & quot; circulation of seawater derived fluids bench fast spreading mid ocean ridge: insights from IODP site 1256 & quot;. & lt; / span & gt;

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&Quote; color: ×000000; & quote; & gt; Compositional effects on the partitioning of F between amphibole and silicate melt</span><span style="color:#000000;">"</span><span style="color:#000000;">. Talk.</span></span>

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≪ span style = & quot; color:; & quot; & gt; 2015, iodp-icdp conference, Germany, & nbsp; Bonn. & quot; mid ocean ridge gabbro diorite tonalite plotonic system recovered from IODP hole 1256D, Eastern Pacific: implications for the nature of axial melt lens bench fast spreading ridge & quot;. Poster. & lt; / span & gt;

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≪ span style = & quot; color:; & quot; & gt; 2014, AGU conference, & nbsp; San Francisco. & quot; rapid hydraulic cooling about the axial melt len at fast spreading mid ocean ridge: quantification through intra plagioclase diffusion reviewed by IODP hole 1256D & quot;. Poster. & lt; / span & gt;

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≪ span style = & quot; color: 2014, Jena. & quot; rapid hydrothermal cooling about the axial melt lens at fast spreading mid ocean ridge - Evidence from IODP hole 1256D & quot;. Talk. & lt; / span & gt;

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≪ span style = & quot; color:; & quot; & gt; 2013, Germany iodp-icdp conference, Freiberg. & quot; temperature and redox conditions in the conductive layer covering a moving axial magma chamber: constraints from granoblastic dikes at the IODP site 1256 & quot;. Poster. & lt; / span & gt;

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≪ span style = & quot; color: in 2012, European mineral conference, Frankfurt. & quot; distribution and evolution of F and Cl in plutonic systems tracked by volatile bearing minerals (example, biotite and aptite) & quot;. Poster. & lt; / span & gt;

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≪ span style = & quot; color: Goldschmidt meeting, Prague. & quot; hydraulic crystallization process in Mafic psychological mixing maximal system: a case study from the Dabie orogen (East Central China) & quot;. Poster. & lt; / span & gt;

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≪ span style = & quot; color: Symposium on petrology and geodynamics, 2007, petrochemistry and geochemistry of Late Mesozoic Cenozoic volcanic rocks in Huanghua basin, Bohai Bay, Wuhan: Petrogenesis and structural system transformation;

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<span style="color:#000000;font- size:14px;"> Academic & lt; / span & gt;

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≪ span style = & quot; color:; & gt; & lt; span style = & quot; color:; & quot; & gt; 2018 / 05 – & nbsp; 2018 / 07 & nbsp; nbsp; & nbsp; participate in 376 voyages & nbsp; of IODP plan & lt; / span & gt; & lt; U & gt; & lt; a href = & quot; http://iodp.tamu.edu/scienceops/expeditions/brothers_ arc_ flux.html" ;><span style="color:#000000;">Brothers Arc Flux</span></a></u> </span>

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<span style="color:#000000;font- size:14px;"> Rewards & lt; / span & gt;

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≪ span style = & quot; color:; & quot; & gt; Hubei Province & nbsp; excellent bachelor's thesis (2004) & lt; / span & gt;

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Zhang Chao

Departments:Petrology & Mineralogy Teaching and Research Office
Title:Professor
Direction:Experimental petrology
Email:zhangchao@nwu.edu.cn

Location:Home > Faculty > Honor & Title >