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中国地质大学北京地球科学与资源学院导师教师师资介绍简介-朱弟成教授

本站小编 Free考研考试/2020-05-03


朱弟成,1972年7月生,博士,教授,博士生导师

教育背景:
2000年09月-2003年07月,中国地质科学院构造地质学专业,理学博士
1997年09月-2000年07月,成都理工学院地质学系地层古生物专业,理学硕士
1993年09月-1997年07月,成都理工学院地质学系地质学专业,理学学士

工作经历:
2009年10月-至今,在中国地质大学(北京)从事科研教学工作
2016年12月-2017年02月,台湾大学地质系访问(合作者:钟孙霖教授)
2010年12月-2011年11月,英国Durham大学地球科学系访问(合作者:牛耀龄教授)
2007年12月-2009年10月,中国地质大学(北京)博士后(合作导师:莫宣学教授)
2006年02月-2006年06月,台湾大学地质系访问(合作者:钟孙霖教授)

2003年07月-2007年12月,成都地质矿产研究所从事青藏高原南部岩浆岩研究工作
2004年11月,被国土资源部破格晋升为副研究员
2009年12月,被中国地质大学(北京)聘为教授,2011年5月被聘为博士生导师

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联系方式:
地址:北京市海淀区学院路29号中国地质大学(北京)
办公电话:(+86-10)8232-2094(O)
传真:(+86-10)8232-2094
邮箱:dchengzhu@163.com;dczhu@cugb.edu.cn
----------------------更新日期:2019年08月18日-----------------------




主要学术论文:

36. Xu, W., Zhu, D.C.*, Wang, Q., Weinberg, R.F., Wang, R., Li, S.M., Zhang, L.L., Zhao, Z.D., 2019. Constructing the Early Mesozoic Gangdese crust in southern Tibet by hornblende-dominated magmatic differentiation. Journal of Petrology 60, 515–55.

35. Zhang, L.X., Wang, Q.*, Zhu, D.C., Li, S.M., Zhao, Z.D., Zhang, L.L., Chen, Y., Liu, S.A., Zheng, Y.C., Wang, R., Liao, Z.L., 2019. Generation of leucogranites via fractional crystallization: A case from the Late Triassic Luoza batholith in the Lhasa Terrane, southern Tibet. Gondwana Research 66, 63–76.

34. Zhan, Q.Y., Zhu, D.C.*, Wang, Q., Cawood, P.A., Xie, J.C., Li, S.M., Wang, R., Zhang, L.L., Zhao, Z.D., Deng, J., 2018. Constructing the Eastern Margin of the Tibetan Plateau during the Late Triassic. Journal of Geophysical Research: Solid Earth 123, 10449-10459.

33. Zhu, D.C.*, Wang, Q., Chung, S.L., Cawood, P.A., Zhao, Z.D., 2018. Gangdese magmatism in southern Tibet and India-Asia convergence since 120 Ma. TRELOAR, P.J. & SEARLE, M.P. (eds.) Himalayan Tectonics: A Modern Synthesis. Geological Society, London, Special Publications 483, https://doi.org/10.1144/SP483.14.

32. Liu, Z., Zhu, D.C.*, Wang, Q., Eyuboglu, Y., Zhao, Z.D., Liu, S.A., Xu, L.J., 2018. Transition from low-K to high-K calc-alkaline magmatism at approximately 84 Ma in the eastern Pontides (NE Turkey): Magmatic response to slab rollback of the Black Sea. Journal of Geophysical Research: Solid Earth 123, 7604-7628.

31. Yi, J.K., Wang, Q.*, Zhu, D.C., Li, S.M., Liu, S.A., Wang, R., Zhang, L.L., Zhao, Z.D., 2018. Westward-younging high-Mg adakitic magmatism in central Tibet: Record of a westward-migrating lithospheric foundering beneath the Lhasa–Qiangtang collision zone during the Late Cretaceous. Lithos 316-317, 92-103.

30. Liu, A.L., Wang, Q.*, Zhu, D.C., Zhao, Z.D., Liu, S.A., Wang, R., Dai, J.G., Zheng, Y.C., Zhang, L.L., 2018. Origin of the ca. 50 Ma Linzizong shoshonitic volcanic rocks in the eastern Gangdese arc, southern Tibet. Lithos 304-307, 374-387.

29. Wang, Q.*, Zhu, D.C., Liu, A.L., Cawood, P.A., Liu, S.A., Xia, Y., Chen, Y., Wang, H., Zhang, L.L., Zhao, Z.D., 2018. Survival of the Lhasa Terrane during its collision with Asia due to crust-mantle coupling revealed by ca. 114 Ma intrusive rocks in western Tibet. Lithos 304-307, 200-210.

28. Li, S.M., Wang, Q., Zhu, D.C.*, Stern, R.J., Cawood, P.A., Sui, Q.L., Zhao, Z.D. 2018. One or two Early Cretaceous arc systems in the Lhasa Terrane, southern Tibet. Journal of Geophysical Research: Solid Earth, 123, 3391–3413.

27. Zhu, D.C.*, Wang, Q., Zhao, Z.D., 2017. Constraining quantitatively the timing and process of continent-continent collision using magmatic record: Method and examples. Science China - Earth Sciences 60, 1040-1056.

26. Zhu, D.C.*, Wang, Q., Cawood, P.A., Zhao, Z.D., Mo, X.X., 2017. Raising the Gangdese Mountains in southern Tibet. Journal of Geophysical Research - Solid Earth 122, 214–223.

25. Li, S.M., Zhu, D.C*., Wang, Q., Zhao, Z.D., Zhang, L.L., Liu, S.A., Chang, Q.S., Lu, Y.H., Dai, J.G., Zheng, Y.C., 2016. Slab-derived adakites and subslab asthenosphere-derived OIB-type rocks at 156 ± 2 Ma from the north of Gerze, central Tibet: Records of the Bangong–Nujiang oceanic ridge subduction during the Late Jurassic. Lithos 262, 456-469.

24. Xie, J.C., Zhu, D.C*., Dong, G.C., Zhao, Z.D., Wang, Q., Mo, X.X., 2016. Linking the Tengchong Terrane in SW Yunnan with the Lhasa Terrane in southern Tibet through magmatic correlation. Gondwana Research 39, 217-229.

23. Zhu, D.C., Chung, S.L., Niu, Y.L., 2016. Recent advances on the tectonic and magmatic evolution of the Greater Tibetan Plateau: A special issue in honor of Prof. Guitang Pan. Lithos 245, 1-6.

22. Zhu, D.C., Li, S.M., Cawood, P.A., Wang, Q., Zhao, Z.D., Liu, S.A., Wang, L.Q., 2016. Assembly of the Lhasa and Qiangtang terranes in central Tibet by divergent double subduction. Lithos 245, 7-17.

21. Zhu, D.C., Wang, Q., Zhao, Z.D., Chung, S.L., Cawood, P.A., Niu, Y.L., Liu, S.A., Wu, F.Y., Mo, X.X., 2015. Magmatic record of India-Asia collision. Scientific Reports 5, 14289, doi: 10.1038/srep14289. (This article is also posted at http://www.mantleplumes.org/IndiaAsiaSlabBreakoff.html).

20. Wang, Q., Zhu, D.C*., Cawood, P.A., Zhao, Z.D., Liu, S.A., Chung, S.L., Zhang, L.L., Liu, D., Zheng, Y.C., Dai, J.G., 2015. Eocene magmatic processes and crustal thickening in southern Tibet: Insights from strongly fractionated ca. 43 Ma granites in the western Gangdese Batholith. Lithos 239, 128–141.

19. Wang, Q., Zhu, D.C*., Zhao, Z.D., Liu, S.A., Chung, S.L., Li, S.M., Liu, D., Dai, J.G., Wang, L.Q., Mo, X.X., 2014. Origin of the ca. 90 Ma magnesia-rich volcanic rocks in SE Nyima, central Tibet: Products of lithospheric delamination underneath the Lhasa-Qiangtang collision zone. Lithos 198-199, 24-37.

18. Li, S.M., Zhu, D.C*., Wang, Q., Zhao, Z.D., Sui, Q.L., Liu, S.A., Liu, D., Mo, X.X., 2014. Northward subduction of Bangong-Nujiang Tethys: Insight from Late Jurassic intrusive rocks from Bangong Tso in western Tibet. Lithos 205, 284-297.

17. Chen, Y., Zhu, D.C*., Zhao, Z.D., Meng, F.Y., Wang, Q., Santosh, M., Wang, L.Q., Dong, G.C., Mo, X.X., 2014. Slab breakoff triggered ca. 113 Ma magmatism around Xainza area of the Lhasa Terrane, Tibet. Gondwana Research 26, 449–463.

16. Xia, Y., Zhu, D.C*., Wang, Q., Zhao, Z.D., Liu, D., Wang, L.Q., Mo, X.X., 2014. Picritic porphyrites and associated basalts from the remnant Comei Large Igneous Province in SE Tibet: records of mantle-plume activity. Terra Nova 26, 487-494.

15. Sui, Q.L., Wang, Q., Zhu, D.C*., Zhao, Z.D., Chen, Y., Santosh, M., Hu, Z.C., Yuan, H.L., Mo, X.X., 2013. Compositional diversity of ca. 110 Ma magmatism in the northern Lhasa Terrane, Tibet: Implications for the magmatic origin and crustal growth in a continent-continent collision zone. Lithos 168-169, 144-159.

14. Zhu, D.C., Zhao, Z.D., Niu, Y.L., Dilek, Y., Hou, Z.Q., Mo, X.X., 2013. The origin and pre-Cenozoic evolution of the Tibetan Plateau. Gondwana Research 23, 1429-1454.

13. Zhu, D.C., Zhao, Z.D., Niu, Y.L., Dilek, Y., Wang, Q., Ji, W.H., Dong, G.C., Sui, Q.L., Liu, Y.S., Yuan, H.L., Mo, X.X., 2012. Cambrian bimodal volcanism in the Lhasa Terrane, southern Tibet: Record of an early Paleozoic Andean-type magmatic arc in the Australian proto-Tethyan margin. Chemical Geology 328, 290-308.

12. Guan, Q., Zhu, D.C*., Zhao, Z.D., Dong, G.C., Zhang, L.L., Li, X.W., Liu, M., Liu, M.H., Mo, X.X., Liu, Y.S., Yuan, H.L., Crustal thickening prior to 38 Ma in southern Tibet: Evidence from lower crust-derived adakitic magmatism in the Gangdese Batholith. Gondwana Research 21, 88–99.

11. Wang, Q., Zhu, D.C*., Zhao, Z.D., Zhang, X.Q., Guan, Q., Sui, Q.L., Hu, Z.C., Mo, X.X., Magmatic zircons from I-, S- and A-type granitoids in Tibet: Trace element characteristics and their application to detrital zircon provenance study. Journal of Asian Earth Sciences 53, 59-66.

10. Zhu, D.C., Zhao, Z.D., Niu, Y.L., Dilek, Y., Mo, X.X., 2011. Lhasa Terrane in southern Tibet came from Australia. Geology 39, 727-730.

9. Zhu, D.C., Zhao, Z.D., Niu, Y.L., Mo, X.X., Chung, S.L., Hou, Z.Q., Wang, L.Q., Wu, F.Y., 2011. The Lhasa Terrane: Record of a microcontinent and its histories of drift and growth. Earth and Planetary Science Letters 301, 241-255.

8. Zhu, D.C., Mo, X.X., Zhao, Z.D., Niu, Y.L., Wang, L.Q., Chu, Q.H., Pan, G.T., Xu, J.F., Zhou, C.Y., 2010. Presence of Permian extension- and arc-type magmatism in southern Tibet: Paleogeographic implications. GSA Bulletin 122, 979-993.

7. Zhu, D.C., Chung, S.L., Mo, X.X., Zhao, Z.D., Niu, Y.L., Song, B., Yang, Y.H., 2009. The 132 Ma Comei–Bunbury large igneous province: Remnants identified in present-day SE Tibet and SW Australia. Geology 37, 583-586.

6. Zhu, D.C., Mo, X.X., Niu, Y.L., Zhao, Z.D., Wang, L.Q., Liu, Y.S., Wu, F.Y., 2009. Geochemical investigation of Early Cretaceous igneous rocks along an east-west traverse throughout the central Lhasa Terrane, Tibet. Chemical Geology 268, 298-312.

5. Zhu, D.C., Mo, X.X., Niu, Y.L., Zhao, Z.D., Wang, L.Q., Pan, G.T., Wu, F.Y., 2009. Zircon U–Pb dating and in - situ Hf isotopic analysis of Permian peraluminous granite in the Lhasa terrane, southern Tibet: Implications for Permian collisional orogeny and paleogeography. Tectonophysics 469, 48-60.

4. Zhu, D.C., Pan, G.T., Zhao, Z.D., Lee, H.Y., Kang, Z.Q., Liao, Z.L., Wang, L.Q., Li, G.M., Dong, G.C., Liu, B., 2009. Early Cretaceous subduction-related adakite-like rocks in the Gangdese, south Tibet: Products of slab melting and subsequent melt-peridotite interaction? Journal of Asian Earth Sciences 34, 298-309.

3. Zhu, D.C., Mo, X.X., Pan, G.T., Zhao, Z.D., Dong, G.C., Shi, Y.R., Liao, Z.L., Zhou, C.Y., 2008. Petrogenesis of the earliest Early Cretaceous basalts and associated diabases from Cona area, eastern Tethyan Himalaya in south Tibet: Interaction between the incubating Kerguelen plume and eastern Greater India lithosphere? Lithos 100, 147-173.

2. Zhu, D.C., Pan, G.T., Chung, S.L., Liao, Z.L., Wang, L.Q., Li, G.M., 2008. SHRIMP zircon age and geochemical constraints on the origin of Early Jurassic volcanic rocks from the Yeba Formation, southern Gangdese in south Tibet. International Geology Review 50, 442-471.

1. Zhu, D.C., Pan, G.T., Mo, X.X., Liao, Z.L., Jiang, X.S., Wang, L.Q., Zhao, Z.D., 2007. Petrogenesis of volcanic rocks in the Sangxiu Formation, central segment of Tethyan Himalaya: A probable example of plume–lithosphere interaction. Journal of Asian Earth Sciences 29, 320-335.



正在主持的科研项目:
4. 教育部、国家外国专家局高等学校学科创新引智基地项目:岩浆成因和大陆地壳形成(编号:B18048;执行时间:2018.01-2022.12)
3. 国家自然科学基金委“特提斯地球动力系统”重大研究计划重点支持项目:中生代冈底斯弧的岩浆成因与地壳演化(编号:**;执行时间:2018.01-2021.12)
2. 国家973项目(中国西南特提斯典型复合成矿系统及其深部驱动机制)第四课题:碰撞造山斑岩-矽卡岩型复合成矿系统与深部过程(编号:2015CB452604;执行时间:2015.01-2019.12)
1. 国家自然科学基金面上基金项目:西藏班戈-那曲地区晚白垩世时期的深部过程与地表抬升(编号:**;执行时间:2015.01-2018.12)

已完成的科研项目:
5. 中国科学院战略性先导科技专项(B类)子课题:冈底斯弧的形成与Cu-Au +- Mo成矿作用(XDB**;2012.10-2017.10)
4. 国家基金项目:岩石圈由洋陆到陆陆汇聚过程的岩浆响应(**;执行时间:2013.01-2016.12)
3. 国家自然基金委面上基金项目:拉萨地块石炭-二叠纪冰海相杂砾岩物源区示踪及其古地理重建意义(编号:**;执行时间:2011.01-2013.12)
2. 国家自然基金委面上基金项目:西藏西部盐湖南部地区白垩纪岩浆作用成因及其与洋壳岩石圈俯冲的联系(编号:**;执行时间:2010.01-2012.12)
1. 国家自然基金委青年基金项目:西藏南部羊卓雍错东南地区白垩纪镁铁质岩是地幔柱或热点产物吗(编号:**;执行时间:2006.01-2008.12)






17. 2019年01月,教育部自然科学一等奖(第1完成人)(朱弟成、赵志丹、王青、刘栋、王瑞)
16. 2018年07月,中国地质大学(北京)2017年度研究生指导名师(http://www.cugb.edu.cn/gdetail.action?id=22531)
15. 2018年01月,教育部和国家外国专家局“高等学校学科创新引智计划”(简称“111计划”)负责人
14. 2016年06月,入选第二批国家“”科技创新领军人才
13. 2015年12月,国家自然科学奖二等奖(第3完成人)(王成善、魏文博、朱弟成、莫宣学、金胜)
12. 2015年11月,入选国家百千万人才工程,并获得“有突出贡献中青年专家”荣誉称号
11. 2015年10月,中国地质大学(北京)2015年度研究生指导名师
http://www.cugb.edu.cn/cugbCms/portal/inCampusHtml/2015/20300/20****.shtml
10. 2014年12月,入选科技部2014年中青年科技创新领军人才计划
9. 2014年11月,获国务院政府特殊津贴
8. 2013年11月,教育部
7. 2012年10月,国土资源部科学技术奖一等奖(第2完成人)(王成善、朱弟成、莫宣学、赵志丹、魏文博、万晓樵、王根厚、李亚林、周肃、喻学惠、金胜、戴紧根、李国彪、董国臣、叶高峰)
6. 2012年10月,国家基金获得者
5. 2011年10月,孙贤鉥奖
4. 2011年10月,中国地质学会第十三届青年地质科技奖金锤奖
3. 2010-2011年度,中国地质大学(北京)五四奖章
2. 2010年04月,第四批“国土资源部优秀青年科技人才”称号
1. 2009年12月,教育部新世纪优秀人才支持计划入选者






研究地区:青藏高原南部、藏东三江造山带、土耳其东部

研究方向:岩石学和地球化学,岩石大地构造。利用地球化学数据解释岩浆岩时代、源区和岩石成因,重建特提斯演化和青藏高原形成历史

招 生:招收岩浆作用与深部过程、岩浆作用与资源环境方向的博士研究生(3年内不招硕士研究生)

热忱欢迎:对地质事业充满激情、热情,并具有积极乐观生活态度的同学加盟(考前邮件联系和面试)

博 士 后:欢迎有国际SCI论文发表经历(第一作者1篇以上)的应届博士毕业生加盟

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