2016年04月08日 星期五

高级专业技术职务

尹继元

尹继元  男,研究员

研究方向:岩石地球化学和低温热年代学

Add:北京市西城区阜外百万庄大街26号地质研究所,100037

Tel:       E-mail:yinjiyuan1983@163.com


自我介绍: 

尹继元,1983年3月,中国地质科学院地质研究所,研究员,博士生导师。2022年入选国家级高层次青年人才计划;2021年入选自然资源部高层次科技创新人才工程:杰出青年人才计划;2022年度获中国地质学会青年地质科技奖-银锤奖。2020年度获国土资源科学技术奖二等奖(R1);先后主持国家自然科学基金项目和国家重点研发计划专题等各类科研项目10余项。目前担任国际SCI刊物《Geosphere》《Lithosphere》和《Ore Geology Reviews》副主编,以及《China Geology》青年副主编。以第一作者或通讯作者发表论文30余篇,其中国际SCI论文20余篇。

个人经历: 

工作经历

1.2023.04-至今,英国朴茨茅斯大学,访问学者

2.2018.01-至今,中国地质科学院地质研究所,破格晋升 研究员

3.2018.10-2019.12,香港大学,研究助理

4.2014.01-2017.12,中国地质科学院地质研究所,副研究员

5.2015.03-2016.03,美国亚利桑那州立大学,访问学者

6.2014.01-2016.12,中科院地质与地球物理研究所,博士后

7.2012.09-2012.12,澳大利亚科廷大学 访问学者

8.2011.07-2013-12,中国地质科学院地质研究所,助理研究员

学习经历

1.2006.09 -2011.06,中国科学院广州地球化学研究所,地球化学专业,获博士学位

2.2002.09-2006.07,西北大学地质系,地质学专业(基地班),获学士学位

承担项目: 

主要在研项目

1.国家级高层次人才青年项目,项目负责人1项

2.国家自然科学基金项目,项目负责人4项

3.国家博士后基金项目,项目负责人2项

4.国家重点研发计划专题,专题负责人2项

5.国土资源部公益性行业专项项目,项目负责人1项

6.基本科研业务费项目,项目负责人2项

获奖及荣誉: 

1.2022年度,入选国家级高层次青年人才计划

2.2022年度,获中国地质学会青年地质科技奖--银锤奖

3.2021年度,入选自然资源部高层次科技创新人才工程:杰出青年人才计划

4.2020年度,获国土资源科学技术奖二等奖(排名第一)

5.2014年度,获得国家留学基金资助

6.2011年度,获中国科学院朱李月华优秀博士生奖

代表性论著: 

代表性学术论文

1. Yin J.Y*., Wang, Y.N*., Hodges, K.V., Xiao, W.J., Thomson, S.N., Chen, W., Yuan, C., Sun, M., Cai, K.D., Sun, J.B., 2023. Episodic long‐term exhumation of the Tianshan orogenic belt: New insights from multiple low‐temperature thermochronometers. Tectonics, 42, e2022TC007469.

2. Zhang, Y.Y., Sun, M., Yin, J.Y*., Yuan, C., Sun, Z., Xia, X.P., 2022. Subduction initiation of the western Paleo-Asian Ocean linked to global tectonic re-organization: Insights from Cambrian island-arc magmatism within West Junggar, NW China. Geological Society of America Bulletin, 134 (11-12): 3099–3112.

3. Zhang, Y.Y., Sun, M., Yin, J.Y*., Yuan, C., Sun, Z., Xia, X.P., 2022. Maturation of East Junggar oceanic arc related to supracrustal recycling driven by arc-arc collision: Perspectives from zircon Hf–O isotopes. International Journal of Earth Sciences, 111, 2519–2533.

4. 陶再礼,尹继元*,袁超,肖文交,陈文,陈岳龙,王雅美,杨帆,2022. 西昆仑造山带晚奥陶世侵入岩的岩石成因:对原特提斯洋俯冲过程的制约. 岩石学报3811):3321-3340.

5. Tao, Z.L., Yin, J.Y*., Sun, M., Wang, T., Yuan, C., Chen, W., Huang, H., Seltmann, R., Thomson, S.N., Chen, Y.L., 2022. Spatial and temporal variations of geochemical and isotopic compositions of Paleozoic magmatic rocks in the Western Tianshan, NW China: a magmatic response of the Advancing and Retreating Subduction. Journal of Asian Earth Sciences, 232(1): 105112.

6. Tao, Z.L., Yin, J.Y*., Xiao, W.J., Seltmann, R., Chen, W., Sun, M., Wang, T., Yuan, C., Thomson, S.N., Chen, Y.L., Xia, X.P., 2022. Contrasting styles of peraluminous S-type and I-type granitoids in the Chinese south Tianshan (NW China): Petrogenesis and tectonic implications. American Journal of Science, 322, 279-312

7. Tao, Z.L., Yin, J.Y*., Chen, W., Chen, Y.L., Sun, J.B., Xu, Z.H., 2022. Zircon U-Pb ages and tectonic implications of Late Paleozoic volcanic rocks in the western Tianshan, North Xinjiang, China. Journal of Earth Science, 33(3): 736-752.

8. Yin, J.Y*., Xiao, W.J., Christopher J. Spencer., Sun, M., Chen, W., Huang, H.Q., Yuan, Chao, Zhang, Y.Y., Tao, Z.L., Huang, H., Xia, X.P., 2021. The role and significance of juvenile sediments in the formation of A-type granites, West Junggar oceanic arc (NW China): zircon Hf-O isotopic perspectives. Geological Society of America Bulletin, 133 (7-8): 1560–1574.

9. 王雅美,尹继元*,袁超,肖文交,陈文,蔡克大,杨雪叶,陶再礼. 2021. 新疆西准噶尔苏云河斑岩型钼矿的剥露和保存条件:来自裂变径迹和(U-Th)/He热年代学的约束. 岩石学报,37(8):2547-2561

10. Yin, J.Y*., Xiao, W.J., Sun, M., Chen, W., Yuan, C., Zhang, Y.Y., Wang, T., Du, Q.Y., Wang, X.S., Xia, X.P., 2020. Petrogenesis of Early Cambrian granitoids in the western Kunlun orogenic belt, Northwest Tibet: Insight into early stage subduction of the Proto-Tethys Ocean. Geological Society of America Bulletin, 132 (9-10): 2221–2240

11. Yin., J.Y*., Chen, W., Thomson, S.N., Sun, M., Wang, Y.N., Xiao, W.J., Yuan, C., Sun, J.B., Long, X.P., 2019. Fission track thermochronology of the Tuwu-Yandong porphyry Cu deposits, NW China: Constraints on preservation and exhumation. Ore Geology Reviews, 113, 103104.

12. Yin, J.Y*., Chen, W., Hodges, K.V., Xiao, W.J., Cai, K.D., Yuan, C., Sun, M., Liu, L.P., van Soest, M., 2018. The thermal evolution of Chinese central Tianshan and its implications: Insights from multi-method chronometry. Tectonophysics, 722: 536-548.

13. Yin, J.Y*., Chen, W., Xiao, W.J., Long, X.P., Tao, N., Liu, L.P., Yuan, C., Sun, M. 2018. Tracking the multiple-stage exhumation history and magmatic-hydrothermal events of the West Junggar region, NW China: Evidence from 40Ar/39Ar and (U-Th)/He thermochronology. Journal of Asian Earth Sciences, 159: 130-141.

14. Yin, J.Y., Chen, W*., Xiao, W.J., Yuan, C., Sun, M., Cai, K.D., 2018. Petrogenesis and tectonic implications of Early Devonian mafic dyke-granite association in the northern West Junggar, NW China. International Geology Review, 60(1): 87-100.

15. Yin, J.Y*., Chen, W., Xiao, W.J., Yuan, C., Zhang, B., Cai, K.D., Long, X.P, 2017. Geochronology, petrogenesis and tectonic significance of the latest Devonian -early Carboniferous I-type granites in the Central Tianshan, NW China. Gondwana Research, 47: 188-199.

16. Yin, J.Y*., Chen, W., Xiao, W.J., Yuan, C., Windley, B.F., Yu, S., Cai, K.D., 2017. Late Silurian-early Devonian adakitic granodiorite, A-type and I-type granites in NW Junggar, NW China: Partial melting of mafic lower crust and implications for slab roll-back. Gondwana Research, 43:55-73.

17. Yin, J.Y., Chen, W*., Xiao, W.J., Yuan, C., Yu, S., Sun, J.B., Cai, K.D., Long, X.P., 2017. The source and tectonic implications of late Carboniferous–early Permian A-type granites and dikes from the eastern Alataw Mountains, Xinjiang: geochemical and Sr–Nd–Hf isotopic constraints. International Geology Review, 59(10), 1310-1323.

18. Yin, J.Y*., Chen, W., Xiao, W.J., Yuan, C., Long, X.P., Cai, K.D., Zhang, B, 2016. Late Carboniferous adakitic granodiorites in the Qiongkusitai area, western Tianshan, NW China: Implications for partial melting of lower crust in the southern Central Asian Orogenic Belt. Journal of Asian Earth Sciences, 124, 42-54.

19. Yin, J.Y*., Chen, W., Yuan, C., Yu, S., Xiao, W.J., Long, X.P., Li, J., Sun, J.B., 2015. Petrogenesis of Early Carboniferous adakitic dikes, Sawur region, northern West Junggar, NW China: implications for geodynamic evolution. Gondwana Research, 27(4): 1630-1645.

20. Yin, J.Y., Chen, W., Xiao, W. J*., Yuan, C., Sun, M., Tang, G.J., Yu, S., Long, X.P., Cai, K.D., Geng, H.Y., Zhang, Y., Liu, X.Y., 2015. Petrogenesis of Early–Permian Sanukitoids from West Junggar, Northwest China: Implications for Late Paleozoic Crustal Growth in Central Asia. Tectonophysics. 662, 385-397.

21. Yin, J.Y., Long, X.P*., Yuan, C., Sun, M., Zhao, G.C, Geng, H.Y., 2013. A Late Carboniferous slab window: geochronological and geochemical evidence from mafic to intermediate dykes in West Junggar, NW China. LITHOS, 175-176, 146-162

22. Yin J.Y., Yuan, C*., Sun, M., Long, X.P., Zhao, G.C., Wong, K.P., Geng, H.Y., Cai, K.D., 2010. Late Carboniferous high-Mg dioritic dikes in Western Junggar, NW China: Geochemical features, petrogenesis and tectonic implications. Gondwana Research, 17, 145-152. 

 

研究领域:

1. 环准噶尔造山带的岩浆作用与地壳增长

2. 天山-阿尔泰-准噶尔成矿带剥露-隆升及地貌演化

3. 西昆仑-帕米尔中新生代造山过程及其地貌演化

4. -古特提斯洋的形成,演化及其岩浆响应

5. 小兴安岭地区盆山演化和剥露过程