曾令森,男,汉族,1970年1月生,地质学专业,博士,无党派人士。中国地质科学院地质力学研究所研究员、博士生导师、副所长。主要从事地壳深熔作用与造山带深部过程方向。
1987年考入南京大学,1991年获构造地质学与地球物理学学士学位。1991年考入中国地质科学院,1994年获构造物理学硕士学位。1998年赴美国加州理工学院学习,2003年获地质学博士学位。1994年7月起长期在中国地质科学院地质研究所从事科研工作,2006年晋升研究员;现任中国地质科学院地质力学研究所副所长。
先后入选国土资源部“百人计划”(2005年),获国土资源部“优秀青年科技人才”(2009年)、中国青藏高原研究会“青藏高原青年科技奖”(2009年)、国土资源部“青藏高原地质理论创新与找矿重大突破先进个人”(2012年)。2013年入选国家首批创新人才推进计划“中青年科技创新领军人才”;2014年获国家杰出青年科学基金资助;2015年入选国家“万人计划”(高层次人才特殊支持计划),同年获中国地质学会第七届“黄汲清青年地质科学技术奖”,并入选国家百千万人才工程;2016年起享受国务院政府特殊津贴;2018年入选自然资源部第三批“国土资源高层次创新型科技人才培养工程”。
主要学术贡献
(1)发现地壳深熔作用的高度Nd同位素不平衡现象,建立了符合地质情况的地壳部分熔融Sr-Nd同位素系统耦合的新理论模型,为甄别深部地壳的部分熔融行为和熔融反应类型提供了基础理论支撑;
(2)发现并厘定喜马拉雅造山带碰撞初期始新世深熔作用的岩石地球化学特征,揭示了喜马拉雅造山带淡色花岗岩的主要类型、形成机制和部分熔融类型,推动并引领了碰撞造山带部分熔融作用及其深部动力学过程的研究;
(3)发现深俯冲大陆物质经历过超高压部分熔融,形成多相长英质包裹体(纳米花岗岩),为了解深俯冲大陆地壳物质的物理和化学行为提供了新证据。
(4)确定了西藏南部45Ma以来多期次(~45 Ma,~35 Ma和30-28 Ma)的钾质和钠质煌斑岩的岩石和地球化学特征,为重塑碰撞造山带深部地幔岩石圈地球化学特征及其形成机制,明确藏南裂谷系的开启时间提供了新约束。
代表性论著:
1)Yihong Tian, Lingsen Zeng*, Yaying Wang, Li-Long Yan, Li-E Gao. 2026. Early Cretaceous gabbroic anorthosite and diabase within the Langjiexue terrane, Tethyan Himalaya, Southern Tibet: An indication of incipient of the India Ocean ridge. Geological Society of America Bulletin. https://doi.org/10.1130/B38917.1
Lilong Yan, Lingsen Zeng*, Li-E Gao, Linghao Zhao, Haitao Wang, 2026. Magma flare-up and Nd isotopic excursion records from the Himalaya: Implications for an early Paleozoic Cordilleran-type orogen. Lithos, 526–527, 108461
2)Guangxu Li, Lingsen Zeng*, Li-E Gao, Lilong Yan, 2026. Hornblendite in the lower crust: a possible source for porphyry Cu deposits. Geochemistry, Geophysics, Geosystems (G3)
3)Yihong Tian, Lingsen Zeng*, Linghao Zhao, Lilong Yan, Guangxu Li. 2026. Eocene lamproitic magmatism in Gangdese: melting sub-arc lithospheric mantle and implications for the early Cenozoic magmatic “flare up” in southern Tibet. Geochemistry, Geophysics, Geosystems (G3)
4)曾令森, 高利娥, 赵令浩. 2025. 喜马拉雅造山带含金红石和含红柱石淡色花岗岩. 岩石学报, 41(11): 3617-3635.
5)Guangxu Li, Lingsen Zeng, Li-E Gao, Lilong Yan, Linghao Zhao, and Yihong Tian, 2025. Late Eocene sodic calc-alkaline lamprophyre in Gangdese batholith, southern Tibet: Implications for mantle metasomatism by carbonatitic melt. Geological Society of America Bulletin, 137, 630–648. https://doi.org/10.1130/B37566.1.
6)Zhuo Tang, Hanwen Dong , Rongze Fei, Linghao Zhao, Li-E Gao Yaying Wang, Lilong Yan, Lingsen Zeng, 2025. Structural and geochronological studies of the Cona detachment and Cona Rift: Implications for the Miocene evolution of the Cona region. Journal of Structure Geology, 201: 105562
7)Li-E Gao, Lingsen Zeng, Linghao Zhao, Lilong Yan, Yinglong Di, Guangxu Li, Yaying Wang, Rui Wang, 2025. Be–Nb–Ta mineralization in granites: An example from the Nyalam area in the Himalayan belt, southern Tibet. Lithos, 514-515: 108224
8)Hailing Wu, Lingsen Zeng, Rongfeng Ge, Wenbing Zhu,2025. Finite element method for garnet diffusion chronometry. Geochemistry, Geophysics, Geosystems, 26, e2025GC012182.
9)邱添, 曾令森, 2025. 西藏普兰超镁铁质岩体地幔橄榄岩中碳酸盐网脉的分形结构特征及意义. 岩石学报,41(11): 3773-3781
10)唐灼, 曾令森, 董汉文, 梁凤华, 费镕泽, 宋昱霆, 王亚莹. 2025. 喜马拉雅造山带东段错那拆离系断层的变形机制及构造演化. 岩石学报, 41(11): 3840-3854
11)Lingsen Zeng, Li-E Gao, Linghao Zhao, Kejun Hou, 2021. The role of titanite in shaping the geochemistry of amphibolite-derived melts. Lithos, 402-403, 106312
12)Qian Xu, Lingsen Zeng*, Li-E Gao, 2022. Early Miocene (21-23 Ma) high Sr/Y volcanic field in the Gangdese batholith, southern Tibet. Lithos, 428-429: 106807
13)Zhaoping Hu, Lingsen Zeng*, Michael W. Förster, Linghao Zhao, Li-E Gao, Huan Li, Yizeng Yang, Shuangqing Li, 2021. Recycling of subducted continental crust: Geochemical evidence from syn-exhumation Triassic alkaline mafic rocks of the southern Liaodong Peninsula. Lithos, 400–401, 106353
14)Qian Xu, Lingsen Zeng*, Linghao Zhao, Zhaoping Hu, Haitao Wang, Yu Shen, Yaying Wang, Yafei Wang, 2020. Geochemical characteristics and petrogenesis of Miocene high Sr/Y rocks in Xigatze fore-arc basin, southern Tibet. Lithos,366–367, 105543
15)赵令浩, 曾令森*, 高利娥, 高家昊, 王亚飞, 张立飞, 2020a. 变基性岩部分熔融过程中榍石的微量元素效应: 以南迦巴瓦混合岩为例. 岩石学报, 36(9): 2714-2728
16)曾令森,高利娥,2017. 喜马拉雅碰撞造山带新生代地壳深熔作用与淡色花岗岩. 岩石学报, 33(5): 1420-1444
17)曾令森,高利娥,郭春丽,侯可军,王倩, 2017. 西藏南部冈底斯大陆弧早白垩纪弧前伸展作用. 岩石学报, 33(8): 2377-2394
18)Lingsen Zeng, Li-E Gao, Suohang Tang, Kejun Hou, Chunli Guo, and Guyue Hu, 2015, Eocene Magmatism in the Tethyan Himalaya, Southern Tibet. In Mukherjee, S., Carosi, R., van der Beek, P. A., Mukherjee, B. K. & Robinson, D. M. (eds) Tectonics of the Himalaya. Geological Society, London, Special Publications, 412,doi:10.1144/SP412.8
19)Lingsen Zeng, Chen ZY., Chen J., 2013. Metamorphic solid salt (KCl-NaCl) in quartzo-feldspathic polyphase inclusions in the Sulu ultrahigh-pressure eclogite. Chinese Science Bulletin, 58, 931-937
20)Lingsen Zeng, Li-E Gao, Kejia Xie, Jing Liu-Zeng,2011,Mid-Eocene high Sr/Y granites in the Northern Himalayan Gneiss Domes: Melting thickened lower continental crust. Earth and Planetary Science Letters, 303,251-266
21)Lingsen Zeng, Li-E Gao, Chunyan Dong, Suohan Tang, 2012, High-pressure melting of metapelite and the formation of Ca-rich granitic melts in the Namche Barwa Massif, Southern Tibet. Gondwana Research, 21, 138–151
22)Lingsen Zeng, Fenghua Liang, Paul Asimow, Fangyuan Chen and Jing Chen. 2009, Partial melting of deeply subducted continental crust and the formation of quartzo-feldspathic polyphase inclusions in the Sulu UHP eclogites. Chinese Science Bulletin, 54: 2580-2594
23)Lingsen Zeng, Paul Asimow and Jason B. Saleeby, 2005, Coupling of Anatectic Reactions and Dissolution of Accessory Phases and the Sr and Nd Isotope Systematics of Anatectic Melts from a Metasedimentary Source, Geochimica et Cosmochimica Acta, 69,3671-3682.
24)Lingsen Zeng, Jason B. Saleeby and Paul Asimow, 2005, Nd isotope disequilibrium during crustal anatexis: A record from the Goat Ranch migmatite complex, southern Sierra Nevada batholith, California, Geology, 33, 53-56.
25)Lingsen Zeng, Jason B. Saleeby and Mihai Ducea, 2005, Geochemical characteristics of crustal anatexis during the formation of migmatite at the Southern Sierra Nevada, California, Contributions to Mineralogy and Petrology, 150, 386-402.
26)Lingsen Zeng, Liu J, Gao LE, Xie KJ and Wen L. 2009. Early Oligocene crustal anatexis in the Yardoi gneiss dome, southern Tibet and geological implications. Chinese Science Bulletin, 54(1): 104-112
27)Lingsen Zeng, Fenghua Liang, Zhenyu Chen, Fulai Liu, Zhiqin Xu. 2009. Metamorphic garnet pyroxenite from the 540-600 m main borehole of the Chinese Continental Scientific Drilling (CCSD) project. Tectonophysics, 475: 396-412
28)Lingsen Zeng, Liu Jing, Gao Li-E, Kejia Xie. 2009. Early Mesozoic high-pressure metamorphism within the Lhasa Block, Tibet and implications for regional tectonics. Earth Science Frontiers, 2009, 16(2): 140-151
29)Lingsen Zeng, Fulai Liu, Fenghua Liang, and Fangyuan Chen, 2007, Barite in omphacite-hosted K-feldspar + quartz polycrystalline aggregates from the Sulu eclogites and its implications. Chinese Science Bulletin, 52(21): 2995-3001
30)Li-E Gao, Lingsen Zeng, Paul Asimow, 2017. Contrasting geochemical signatures of fluid-absent versus fluid-fluxed melting of muscovite in metasedimentary sources: The Himalayan leucogranites. Geology, 45, 39-42.
31)Li-E Gao and Lingsen Zeng, 2014, Miocene high-Ca two-mica granites in the Malashan gneiss dome, southern Tibet: fluxing melting during tectonic transition from compression to extension. Geochemica et Cosmochimica Acta, 130, 136-155.
32)Yaying Wang, Lingsen Zeng*, Paul Asimow, Li-E Gao, Chi Ma, Paula Antoshechkina, Chunli Guo, Kejun Hou, Suohan Tang. 2018. Early Cretaceous high-Ti and low-Ti mafic magmatism in Southeastern Tibet: Insights into magmatic evolution of the Comei Large Igneous Province. Lithos, 296–299, 396–411
33)Guyue Hu, Lingsen Zeng, Li-E Gao, Qiuping Liu, Han Chen, Yingshuai Guo, 2018. Diverse magma sources for the Himalayan leucogranites: Evidence from B-Sr-Nd isotopes. Lithos, 314–315, 88–99
34)Wei Wang, Lingsen Zeng*, Li-E Gao, Qian Wang, Chunli Guo, Kejun Hou, Jing Liu-Zeng, 2018. Eocene-Oligocene potassic high Ba-Sr granitoids in the Southeastern Tibet: Petrogenesis and tectonic implications. Lithos, 322, 38-51
35)Tao Peng, Lingsen Zeng, Li-E Gao, Axel Gerdes, Jia-Hao Gao, Zhao-Ping Hu and Chunming Wu, 2018. Metamorphic P-T path and SIMS zircon U-Pb dating of amphibolites in Namche Barwa Complex (NBC), southern Tibet. Lithos, 320–321, 454-469
36)Yuhua Wang, Lingsen Zeng, Li-E Gao, Kejun Hou, Chunli Guo, Lifei Zhang, Wei Wang, Huiyi Sun, 2017. Neoproterozoic magmatism in eastern Himalayan Terrane. Science Bulletin, 62, 415–424
37)郭春丽,曾令森*,高利娥,苏红中,马星华,尹冰,2017. 福建河田高分异花岗岩的矿物和全岩地球化学找矿标志研究. 地质学报, 91(8): 1796-1817
38)Ya-Fei Wang, Lingsen Zeng*, Jiahao Gao, Linghao Zhao, Li-E Gao, Zhen Shang, 2019. Along-arc variations in isotope and trace element compositions of Paleogene gabbroic rocks in the Gangdese batholith, southern Tibet. Lithos. Lithos, 324–325, 877–892
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