姚金龙

职 称:教授

所属部门:普地教研室

荣誉:国家优秀青年科学基金获得者

研究方向:板块构造、大陆造山带、超大陆聚散及其环境效应

电子邮箱:yaojinlong@nwu.edu.cn

一、个人简历

1987年生,必威BETWAY官网教授,博士生导师,国家优秀青年科学基金获得者(42322208)。2010年毕业于南京大学地球科学系地质学专业,获理学学士学位;2010 -2016年南京大学构造地质学专业博士研究生,2016年6月获理学博士学位(舒良树教授指导)。2015年赴英国圣安德鲁斯大学联合培养(Peter Cawood 教授指导)。2016年获得香江学者计划资助,2017年1月-2019年1月在香港大学开展博士后研究工作(导师:赵国春教授), 2019年1月-4月任香港大学研究助理。2019年4月至今,必威BETWAY官网任教。2023入选中国地质学会数据驱动与地学发展专业委员会学术委员。

主要从事大地构造与大陆动力学、超大陆、全球板块构造演化及其环境生命效应等方向的研究。先后主持国家优秀青年科学基金项目、自然科学基金面上项目、科技部重点研发青年科学家项目构造专题、陕西省高层次人才引进项目、陕西省特别支持重点项目等科研项目。在Nature Communications、JGR Solid Earth、Earth-Science Reviews等国际顶级或权威期刊发表第一或通讯作者SCI论文19篇,H指数24,I指数34。另发表合作作者SCI论文40余篇。入选斯坦福大学全球前2%顶尖科学家榜单2024。研究成果获教育部自然科学二等奖(排名第四)、香江学者奖、必威BETWAY官网优秀科研奖、优秀教师奖,并入选2021国家自然科学基金委年度报告亮点成果。


二科研项目

1. 国家优秀青年科学基金项目:大地构造与构造地质;项目批准号:42322208;直接费用:200万;项目起止日期:2024.01-2026.12。

2. 国家自然科学基金面上项目:华南云开地体前泥盆纪重大构造-岩浆事件研究; 项目批准号:41972238; 直接费用:67万;项目起止日期:2020.01- 2023.12(已结题)。

3. 科技部重点研发项目(寒武纪大爆发前后大陆聚合阶段全球构造古地理、岩浆成分、风化通量与真极移定量化研究,2023YFF0803604)专题负责人,承担经费57万;项目起止日期:2023.12-2028.11

4. 科技部重点研发项目青年科学家项目(新元古代-寒武纪之交构造-环境-生命重大转折事件及其耦合关系,2022YFF0802700)构造方向负责人,承担经费 80万;项目起止日期:2022.12-2027.11

5. 陕西省高层次人才引进项目,资助额度 80万;项目起止日期:2020.06-2026.06。

6. 陕西省特别支持重点项目:冈瓦纳大陆聚合阶段地球多圈层协同演化机制研究,资助额度20万;项目起止日期:2023.01-2024.12


三、科研奖励

2013年,教育部自然科学奖二等奖(排名第四)

2017年,香江学者奖

2023年,必威BETWAY官网优秀科研奖、必威BETWAY官网优秀教师奖


四、代表性论文

Yang, H., Yao, J.L.*, Cawood, P.A., Zhao, G., Han, Y., Li, X.C., Liu, Q., Zhang, D., Wang, X.S., Guo, Y., 2025. Quantifying magma water contents: a new entrainment model for charnockite formation. Journal of Geophysical Research: Solid Earth, 130, e2024JB029753. DOI: 10.1029/2024JB029753.

Yang, H., Yao, J.L.*, Zhao, G., Shu, L.S., Cui, P.Y., 2025. The early Paleozoic intracontinental orogeny in South China: A far-field  response to the closure of the Proto-Tethys Ocean in the Indochina Block. GSA Bulletin, DOI:10.1130/B37921.1.

Li, W., Yao, J.L.*, Zhao, G., Han, Y., Liu, Q., Zhang, D., 2025. Reconstructing Tarim within Rodinia: constraints from early Tonian accretionary and collisional records in the Altyn belt. Precambrian Research, 416, 107605.

Liu, J., Han, Y. *, Yao, J.L *, Zhao, G., Liu, Q., Zhou, H., Jing, J., Lu, L., Shao, D, 2025. Detrital zircon UPb-Hf isotopes of late Meso-Neoproterozoic metasedimentary rocks in the South Altyn Tagh: Implications for tectonic affinity of microcontinents in NW China. Journal of Asian Earth Sciences, 2024, 275: 106298

Yao, J.L. *, Cawood, P.A., Zhao, G.C. *, Han, Y.G., Xia, X.P., Liu, Q., Wang, P., 2021. Mariana type ophiolites constrain establishment of modern plate tectonic regime during Gondwana assembly. Nature Communications, 12, 4189.

Yao, J.L. *, Shu, L.S., Zhao, G.C., Han, Y.G., Liu, Q., 2021. Ca. 835-823 Ma doming extensional tectonics in the west Jiangnan accretionary orogenic belt, South China: implication for a slab roll-back event. Journal of Geodynamics, 101879.

Shu, L. S. *, Yao, J.L. *, Wang, B., Faure, M., Charvet, J., Chen, Y., 2021. Neoproterozoic plate tectonic process and Phanerozoic geodynamic evolution of the South China Block. Earth-Science Reviews, 216, 103596.

姚金龙*,赵国春,韩以贵,刘潜,余珊,Simon Williams,何艳红,李阳,2021. 晚新元古代—早寒武世现代板块构造与现代地球系统的建立. 必威BETWAY官网学报(自然科学版), 51(6), 1007-1018.

Yao, J. L., Shu, L. S., Cawood, P. A., Zhao, G.C., 2019. The Jiangnan Belt in South China: a ~970-820 Ma Rodinia margin accretionary orogen. Earth-Science Reviews, 196, 102872.

Yao, J.L., Shu, L.S., Cawood, P.A., Zhao, G.C., 2019. Differentiating continental and oceanic arc systems and retro-arc basins in the Neoproterozoic Jiangnan belt, South China. Geological Magazine,156, 2001–2016.

Yao, J. L., Shu, L. S., Cawood, P. A., Li, J. Y., 2017. Constraining timing and tectonic implications of Neoproterozoic metamorphic event in the Cathaysia Block, South China. Precambrian Research, 293, 1–12.

Yao, J.L, Cawood, P.A., Shu, L.S., Li, J.Y., 2016. An Early Neoproterozoic Accretionary Prism Ophiolitic Mélange from the Western Jiangnan Orogenic Belt, South China. The Journal of Geology, 124 (5), 587-601.

Yao, J. L., Shu, L. S., Cawood, P. A., Li, J. Y., 2016. Delineating and characterizing the boundary of the Cathaysia block and the Jiangnan orogenic belt in South China. Precambrian Research, 275, 265–277.

Yao, J.L., Shu, L.S., Santosh, M., Li, J. Y., 2015. Neoproterozoic arc-related andesite and orogeny-related unconformity in the eastern Jiangnan orogenic belt: constraints on the assembly of the Yangtze and Cathaysia blocks in South China. Precambrian Research, 262, 84–100.

Yao, J.L., Shu, L.S., Santosh, M., Zhao, G.C., 2014. Neoproterozoic arc-related mafic-ultramafic rocks and syn-collision granite from the western segment of the Jiangnan Orogen, South China: constraints on the Neoproterozoic assembly of the Yangtze and Cathaysia Blocks. Precambrian Research, 243, 39-62.

Yao, J.L., Shu, L.S., Santosh, M., 2014. Neoproterozoic arc-trench system and breakup of the South China Craton: constraints from N-MORB type and arc-related mafic rocks, and anorogenic granite in the Jiangnan orogenic belt. Precambrian Research, 247, 187–207.

Yao, J.L., Shu, L.S., Santosh, M., Xu, Z.Q., 2014. Palaeozoic metamorphism of the Neoproterozoic basement in NE Cathaysia: zircon U–Pb ages, Hf isotope and whole-rock geochemistry from the Chencai Group. Journal of the Geological Society, London, 171, 281–297.

Yao, J.L., Shu, L.S., Santosh, M., Li, J.Y., 2013. Geochronology and Hf isotope of detrital zircons from Precambrian sequences in the eastern Jiangnan Orogen: Constraining the assembly of Yangtze and Cathaysia Blocks in South China. Journal of Asian Earth Science, 74, 225–243.

Yao, J.L, Shu, L.S, Santosh, M., Li, J.Y, 2012. Precambrian crustal evolution of the South China Block and its relation to supercontinent history: constraints from U–Pb ages, Lu–Hf isotopes and REE geochemistry of zircons from sandstones and granodiorite. Precambrian Research, 208, 19-48.

Yao, J.L., Shu, L.S., Santosh, M., 2011. Detrital zircon U–Pb geochronology, Hf-isotopes and geochemistry — new clues for the Precambrian crustal evolution of Cathaysia Block, South China. Gondwana Research, 20, 553–567.

赵国春; 韩以贵; 李建华; 姚金龙; 刘潜; 张东海; 王潮; 唐卿; 张健; 尹常青; 张国伟, 2022.超大陆聚散的环境效应. 地质学报, 96(9): 3120-3127.

Cawood, P.A., Zhao, G.C., Yao, J.L., Wang, W., Xu, Y.J., Wang, Y.J., 2018. Reconstructing South China in Phanerozoic and Precambrian supercontinents. Earth-Science Reviews, 186, 173-194.


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