谭舟,男,理学博士,出生于1990年,湖南长沙市宁乡县人。
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教育经历:
2012年6月,在中国地质大学江城学院获得学士学位,地质学专业;
2014年9月,在中国科学院地质与地球物理研究所硕博连读,岩石、矿物、矿床学专业;
2018年12月,在法国索邦大学(前玛丽居里大学/巴黎六大)ISTeP研究室获法国国家理学博士学位,地球科学、资源与环境专业;
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工作经历:
2019年1月至2020年12月,中国科学院地质与地球物理研究所,博士后,中科院特别研究助理;
2020年1月至今,中国科学院新疆生态与地理研究所,副研究员;
(1)?国家自然科学基金青年基金;冷俯冲带深部碳的储存和运移:基于南天山增生杂岩带中含碳/碳酸盐低温-超高压变质岩研究的见解;2021年1月-2023年12月;项目号42002241;24 万元;主持;
(2)?博士后面上基金;南天山碰撞造山时限新视角:来自超高压变质杂岩带内断层假玄武玻璃的Ar-Ar热年代学制约;2020年7月-2021年12月;项目号2020M670446;8 万元;主持;
??? (3)中国科学院新疆生地所高层次人才培育计划;俯冲带深部碳的储存和运移;2021年1月-2023年12月;项目号E150040101;60 万元;主持;代表性论著:
第一作者论文:
1)Tan,Z.,Agard,P.,Gao,J.,Hong,T.,Wan,B.,2020. Concordant pulse in Mn,Y and HREEs concentrations during UHP eclogitic garnet growth: Transient rock dynamics along a cold subduction plate interface. Earth Planet. Sci. Lett. 530,115908. https://doi.org/10.1016/j.epsl.2019.115908
2)Tan,Z.,Agard,P.,Moni,P.,Gao,J.,John,T.,Bayet,L.,Jiang,T.,Wang,X.S.,Hong,T.,Wan,B.,Caron,B.,2019. Architecture and P-T-deformation-time evolution of the Chinese SW-Tianshan HP/UHP complex: Implications for subduction dynamics. Earth-Science Rev. 197,102894. https://doi.org/10.1016/j.earscirev.2019.102894
3)Tan,Z.,Gao,J.,Jiang,T.,Wang,X.,Zhang,X.,2019. P–T–time (phengite Ar closure) history of spatially close-outcropping HP and UHP oceanic eclogites (southwestern Tianshan):implication for a potential deep juxtaposing process during exhumation?Int. Geol. Rev. 61,1270–1293. https://doi.org/10.1080/00206814.2018.1507760
4)Tan,Z.,Agard,P.,Gao,J.,John,T.,Li,J.L.,Jiang,T.,Bayet,L.,Wang,X.S.,Zhang,X.,2017. P–T–time-isotopic evolution of coesite-bearing eclogites: Implications for exhumation processes in SW Tianshan. Lithos. 278–281,1–25. https://doi.org/10.1016/j.lithos.2017.01.010
5)Tan,Z.,2018. P-T-deformation-time evolution of the Akeyasi HP/UHP complex (SW-Tianshan,China) and implications for subduction dynamics. PhD thesis,Sorbonne Universit . http://www.theses.fr/2018SORUS185/document
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合作作者论文:
1)Huang,B.,Zhang,B*.,Zhang,J.,Tan,Z.,Zhang,L.,Chen,S.,Li,X.,2020. Carbon material Raman spectroscopy metamorphic thermometer and its application in reconstruction and evolution of orogenic belt thermal structure. Acta Petrol. Sin. 36,526–540. https://doi.org/10.18654/1000-0569/2020.02.122)Bayet,L.,Agard,P*.,John,T.,Menneken,M.,Tan,Z.,
Gao,J.,2020. Tectonic evolution of the Tianshan Akeyazi metamorphic complex (NW China). Lithos. 354–355,105273. https://doi.org/10.1016/j.lithos.2019.1052733)Jiang,T.,Gao,J*.,Klemd,R.,Qian,Q.,Zhang,X.,Wa
ng,X.,Tan,Z.,Zhu,Z.,2015. Genetically and geochronologically contrasting plagiogranites in South Central Tianshan ophiolitic m lange: Implications for the breakup of Rodinia and subduction zone processes. J. Asian Earth Sci. 113,266–281. https://doi.org/10.1016/j.jseaes.2014.10.0154)Jiang,T.,Gao,J*.,Klemd,R.,Qian,Q.,Zhang,X.,Xi
ong,X.,Wang,X.,Tan,Z.,Chen,B.,2014. Paleozoic ophiolitic m langes from the South Tianshan Orogen,NW China: Geological,geochemical and geochronological implications for the geodynamic setting. Tectonophysics. 612–613,106–127. https://doi.org/10.1016/j.tecto.2013.11.0385)Wang,X.S.,Gao,J*.,Klemd,R.,Jiang,T.,Li,J.L.,Z
hang,X.,Tan,Z.,Li,L.,Zhu,Z.,2014. Geochemistry and geochronology of the Precambrian high-grade metamorphic complex in the Southern Central Tianshan ophiolitic m lange,NW China. Precambrian Res. 254,129–148. https://doi.org/10.1016/j.precamres.2014.08.017
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2019年;中国科学院特别研究助理(院级),80万,2年;
2018年;中国科学院特别研究助理资助项目,60万,2年;