- 姓名: 刘金恒
- 性别:
- 职务:
- 职称: 副研究员
- 学历: 博士研究生
- 电子邮件: liujinheng@gig.ac.cn
刘金恒,中国科学院广州地球化学研究所副研究员,博士。2015年毕业于吉林大学资源勘查工程(固体)专业,获学士学位。2018年获吉林大学构造地质学硕士学位,2022年获中国科学院广州地球化学研究所矿物学、岩石学、矿床学博士学位。2023年1月至2026年2月在中国科学院广州地球化学研究所从事博士后研究,2026年3月起任中国科学院广州地球化学研究所副研究员。主要从事花岗质岩浆作用与稀有金属成矿研究。以第一作者发表SCI论文7篇、中文论文2篇。主持国家自然科学基金青年科学基金项目、中国博士后科学基金面上项目等,负责新疆自治区重点研发专项课题及国家重点研发专项专题。
简 历:
社会任职:
1. 花岗岩–伟晶岩成因演化与稀有金属成矿:
主要研究强过铝质花岗岩–伟晶岩的源区特征、成因演化及岩浆–流体作用,探讨锂、铍等稀有金属的富集成矿机制及找矿指示。
2. 构造–岩浆演化与大陆地壳生长:
以青藏高原及邻区为重点,研究俯冲、碰撞及陆内演化过程中的岩浆作用、壳幔相互作用与大陆地壳生长。
研究方向:
获奖及荣誉:
1. Liu, J.-H.†, Liu, X.†, Wang, Q., Wang, H., Wyman, D. A., Guo, H.-F., Tang, G.-J., Ma, L., Zhao, Z.-H., Huang, X.-L., Li, W.-X., Yuan, C., Xia, X.-P., Yang, Y.-N., Zhang, L. 2026. Tourmaline-bearing two-mica granites and associated mafic dikes in an intra-continental extension setting: Implications for the petrogenesis of leucogranites and crustal growth. GSA Bulletin, 138(3–4), 1085–1104. DOI: 10.1130/B38413.1. †Co-first authors.
2. Liu, J.-H., Wang, Q., Li, W.-F., Wang, B.-Z., Wyman, D. A., Ding, L., Wang, H., Xu, C.-B., Li, S.-P., Wang, C.-T., Liu, J.-D., Zhang, R.-Q., Wang, Z.-L., Huang, T.-Y., Zhang, X.-Y. 2024. Origins and evolution of two types of Late Triassic granitic magmas in the Caolong-Xiangkariwa area of central-eastern Songpan-Ganze terrane, northern Tibet: Implications for pegmatite lithium mineralization. GSA Bulletin, 136(5–6), 2543–2557.
3. Liu, J.-H., Wang, Q., Wang, B.-Z., Li, W.-F., Xu, C.-B., Li, S.-P., Wang, Z.-L., Hao, L.-L., Song, T.-Z., Wang, C.-T., Zheng, Y., Wang, J.-S. 2023. Petrogenesis of the Chakabeishan pegmatites, North Qaidam Terrane: Implications for Indosinian lithium mineralization in the northern Tibetan Plateau. Lithos, 440–441, 107025.
4. Liu, J.-H., Wang, Q., Xu, C.-B., Zhou, J.-S., Wang, B.-Z., Li, W.-F., Li, S.-P., Huang, T.-Y., Yan, Q.-H., Song, T.-Z., Wang, C.-T., Zheng, Y., Wang, J.-S. 2022. Geochronology of the Chakabeishan Li–(Be) rare-element pegmatite, Zongwulong orogenic belt, northwest China: Constraints from columbite–tantalite U–Pb and muscovite–lepidolite 40Ar/39Ar dating. Ore Geology Reviews, 146, 104930.
5. Liu, J.-H., Gou, G.-N., Wang, Q., Zhang, X.-Z., Guo, H.-F. 2022. Petrogenesis of Eocene high-silica granites in the Maliaoshan area, northern Tibet: Implications for the Eocene magmatic flare-up in the Northern Qiangtang Block. Journal of Asian Earth Sciences, 234, 105268.
6. Liu, J.-H., Xie, C.-M., Li, C., Fan, J.-J., Wang, M., Wang, W., Yu, Y.-P., Dong, Y.-C., Hao, Y.-J. 2019. Origins and tectonic implications of Late Cretaceous adakite and primitive high-Mg andesite in the Songdo area, southern Lhasa subterrane, Tibet. Gondwana Research, 76, 185–203.
7. Liu, J.-H., Xie, C.-M., Li, C., Wang, M., Wu, H., Li, X.-K., Liu, Y.-M., Zhang, T.-Y. 2018. Early Carboniferous adakite-like and I-type granites in central Qiangtang, northern Tibet: Implications for intra-oceanic subduction and back-arc basin formation within the Paleo-Tethys Ocean. Lithos, 296–299, 265–280.
8. 刘金恒, 解超明, 范建军, 王明, 罗安波, 高忠维, 王斌, 曾孝文. 西藏松多地区晚白垩世末期弧岩浆岩岩石成因及构造意义[J]. 地质通报, 2018, 37(8): 1477–1491.
9. 刘金恒, 胡培远, 李才, 解超明, 范建军, 于云鹏. 藏北羌塘中部上二叠统—下三叠统天泉山组的建立及意义——对龙木错-双湖-澜沧江洋构造演化的指示[J]. 地质通报, 2016, 35(5): 667–673.
10. Wei, Y.-W., Wang, Q., Zhang, X.-Z., Wang, J., Xu, C.-B., Xue, W.-W., Hu, W.-L., Liu, J.-H., Qiao, W. 2026. Quantifying magmatic underplating and crustal melting in early Tibetan Plateau uplift. GSA Bulletin. Advance online publication. DOI: 10.1130/B38652.1.
11. Ma, Ling, Zhou, J.-S., Wang, Q., Ma, Lin, Liu, J.-H., Li, W.-F., Wang, B.-Z., Wang, C.-T., Liu, J.-D., Zhang, X.-Y., Liu, M.-R., Yu, Z.-W., Yang, Q.-J., Shi, Z.-K. 2026. Geochemistry of tourmaline in granitic rocks from the Zharigana and Caolong areas, Northern Tibet: Implications for the identification of lithium-mineralizing plutons. Lithos, 526–527, 108444.
12. Shen, M.-H., Wang, H., Liu, J.-H., Zhang, X.-Y., Du, X.-F., Zhang, S., Huang, L., Cai, M.-Z., Wang, M. 2026. Late Triassic lithium mineralization in the Kumusayi-Shaliangxi deposit (Altyn Tagh, NW China): provenance and high-precision timing constraints. Ore Geology Reviews, 190, 107148.
13. Zhang, S., Wang, H., Liu, J.-H., Zhang, X.-Y., Huang, L., Wang, K.-Y., Du, X.-F., Shen, M.-H., Cai, M.-Z. 2026. Tourmaline constraints on Li enrichment in the Huanglongling super-large pegmatite-type lithium deposit, Altyn Tagh, NW China. Ore Geology Reviews, 191, 107188.
14. Huang, L., Wang, H., Zhang, X.-Y., Liu, J.-H., Bai, H.-Y., Wang, K.-Y., Zhang, S., Sun, Z.-Q. 2026. Petrogenesis of the Bingzhou rare metal pegmatites, West Kunlun: Implications for regional exploration. Ore Geology Reviews, 188, 107094.
15. 杜晓飞, 王核, 李斌, 张嵩, 刘建平, 刘金恒, 王威, 马华东, 朱炳玉, 邱林. 新疆阿尔金地区黄龙岭锂矿床伟晶岩分带特征与多期构造–岩浆叠加成矿机制[J/OL]. 西北地质, 2026[2026-09-17]. DOI: 10.12401/j.nwg.2026054.
16. Zhang, S., Wang, H., Liu, J.-H., Zhang, X.-Y., Huang, L., Wang, K.-Y., Du, X.-F., Cai, M.-Z., Shen, M.-H. 2025. Geology and geochronology of the Huanglongling super-large pegmatite-type lithium deposit, Altyn Tagh, NW China. Ore Geology Reviews, 184, 106692.
17. Yang, Z.-Y., Wang, Q., Wang, J., Ma, L., Wyman, D., Kerr, A. C., Bi, X.-W., Sun, P., Zhang, X.-Z., Hao, L.-L., Liu, X., Xu, C.-B., Liu, J.-H., Huang, T.-Y. 2025. Recycling of sub-continental lithosphere during early ocean spreading revealed by Triassic trachytes in the central Tibetan Plateau. Chemical Geology, 693, 122985.
18. Wang, J., Xu, C.-B., Wang, Q., Hawkesworth, C. J., Xu, Y.-G., Tang, G.-J., Wyman, D., Kerr, A. C., Wang, B.-Z., Liu, J.-H., Li, W.-F., Li, S.-P., Qi, Y., Li, J., Xiao, Z., Wang, C.-T. 2025. Indian cratonic mantle beneath northern Qiangtang in eastern Tibet ca. 11 Ma. Geology, 53(6), 514–518.
19. 许传兵, 王强, 王军, 但卫, 刘金恒, 李五福, 王秉璋, 李善平, 王春涛, 王子龙. 羌塘东部玉树地区阿多中三叠世A型流纹岩地球化学特征、成因及其地质意义[J]. 大地构造与成矿学, 2025, 49(3): 712–723.
20. Liu, X., Wang, Q., Liu, X.-J., Ma, L., Wyman, D. A., Tang, G.-J., Dan, W., Jiang, Z.-Q., Wu, H., Hu, W.-L., Liu, J.-H., Xu, C.-B., Fang, G.-C. 2024. Early Cretaceous fayalite-, ferrosilite-, and biotite-bearing rhyolitic porphyries in the Baishuizhai area, South China: Formation by fractional crystallization in the shallow crust. Lithos, 482–483, 107694.
21. Wei, Y.-W., Wang, J., Wang, Q., Wang, B.-Z., Kerr, A. C., Li, W.-F., Li, S.-P., Liu, J.-H., Wang, C.-T., Wang, Z.-L. 2024. Eocene rhyolites in the Shanglaxiu-Xialaxiu area of north-eastern Qiangtang Block, Tibet: Partial melting of juvenile crust? Lithos, 476–477, 107594.
22. Xu, C.-B., Wang, J., Wang, Q., Kerr, A. C., Li, W.-F., Liu, J.-H., Wang, B.-Z., Li, S.-P., Wang, C.-T., Wang, Z.-L., Gong, L. 2024. First identification of Mid-Miocene north–south trending dikes in the eastern Qiangtang terrane, eastern Tibet: Mantle melting and implications for plateau uplift. Lithos, 478–479, 107620.
23. Fan, J.-J., Zhang, X.-Z., Ma, L., Wang, Q., Jiang, Z.-Q., Xia, X.-P., Wei, G.-J., Wang, Z.-L., Zhou, J.-S., Li, Q.-W., Liu, X., Huang, T.-Y., Zhang, M.-Y., Liu, J.-H. 2024. Formation of Eocene–Miocene felsic magmatic rocks along N-S–trending Yardoi-Kongbugang mountain ranges in the eastern Himalaya: New insights into surface uplift and the initiation of E-W extension in southern Tibet. GSA Bulletin, 136(1–2), 433–446.
24. 李五福, 王强, 王秉璋, 刘建栋, 王春涛, 周金胜, 马林, 王涛, 张新远, 刘金恒, 李玉龙, 袁博武, 王泰山, 曹锦山, 金婷婷, 韩晓龙, 谭运鸿. 东昆仑大格勒地区碱性杂岩体中辉石角闪石岩的年代学、地球化学特征及地质意义[J]. 大地构造与成矿学, 2024, 48(1): 144–162.
25. 王秉璋, 潘彤, 王强, 李五福, 祁生胜, 郑英, 金婷婷, 刘金恒. 青藏高原东北缘茶卡北山地区印支期高分异花岗岩的发现及找矿意义[J]. 岩石学报, 2023, 39(8): 2402–2428.
26. 李五福, 李善平, 王秉璋, 王春涛, 刘金恒, 张新远, 曹锦山, 许传兵, 刘建栋, 金婷婷. 青海三江北段草陇(绿柱石-)锂辉石花岗伟晶岩的发现及其Li-Be找矿意义[J]. 大地构造与成矿学, 2023, 47(4): 895–913.
27. 李五福, 刘金恒, 李善平, 贾春兴, 王成武, 周金胜, 王春涛, 许传兵, 谈生祥, 胡继春, 章荣清, 龚林, 王秉璋, 王强. 青藏高原东北部玉树地区尕朵-扎朵早侏罗世含(绿柱石-锂云母)锂辉石伟晶岩的发现及成矿意义[J]. 大地构造与成矿学, 2022, 46(5): 924–950.
28. Wang, Q., Tang, G.-J., Hao, L.-L., Wyman, D., Ma, L., Dan, W., Zhang, X.-Z., Liu, J.-H., Huang, T.-Y., Xu, C.-B. 2020. Ridge subduction, magmatism, and metallogenesis. Science China Earth Sciences, 63(10), 1499–1518.
29. Wang, W., Wang, M., Zhai, Q.-G., Xie, C.-M., Hu, P.-Y., Li, C., Liu, J.-H., Luo, A.-B. 2020. Transition from oceanic subduction to continental collision recorded in the Bangong-Nujiang suture zone: Insights from Early Cretaceous magmatic rocks in the north-central Tibet. Gondwana Research, 78, 77–91.
30. Luo, A.-B., Wang, M., Li, C., Xie, C.-M., Fan, J.-J., Zhang, T.-Y., Liu, J.-H., Wang, W. 2019. Petrogenesis of early Late Cretaceous Asa-intrusive rocks in central Tibet, western China: post-collisional partial melting of thickened lower crust. International Journal of Earth Sciences, 108(6), 1979–1999.
31. Li, X.-K., Chen, J., Wang, R.-C., Li, C., Wang, M., Liu, J.-H., Yu, Y.-P., Luo, A.-B. 2019. Early Cretaceous tectonomagmatic evolution and basin development of western Bangong–Nujiang suture: A complete history of soft collision. Lithos, 344–345, 360–373.
32. Fan, J.-J., Li, C., Liu, J.-H., Wang, M., Liu, Y.-M., Xie, C.-M. 2018. The Middle Triassic evolution of the Bangong–Nujiang Tethyan Ocean: evidence from analyses of OIB-type basalts and OIB-derived phonolites in northern Tibet. International Journal of Earth Sciences, 107(5), 1755–1775.
33. Zhang, T.-Y., Fan, J.-J., Li, C., Xie, C.-M., Wang, M., Wu, Y.-W., Xu, M.-J., Xu, W., Liu, J.-H., Luo, A.-B. 2018. Early Carboniferous ophiolite in central Qiangtang, northern Tibet: record of an oceanic back-arc system in the Palaeo-Tethys Ocean. International Geology Review, 60(4), 449–463.
34. 刘一鸣, 李才, 李三忠, 解超明, 王明, 范建军, 刘金恒, 郭润华. 青藏高原羌南-保山板块都古尔地区早白垩世变质辉长岩:对班公湖-怒江洋俯冲闭合的制约[J]. 地质通报, 2018, 37(8): 1450–1463.
代表论著:
1. 国家自然科学基金青年科学基金项目(C类),42402051,青藏高原可可西里–松潘–甘孜地块中部玉树地区晚三叠世镁铁质岩墙的成因及地质意义,2025.01–2027.12,30万元,主持。
2. 新疆自治区重点研发专项(课题),2024B03003-1,阿尔金地区锂铍等战略性矿产成矿规律及超大型矿床成因研究,2024.12–2027.12,270万元,主持。
3. 科技部国家重点研发专项(专题),2024YFC2909903,阿尔金地区锂铍等战略性矿产成矿规律及超大型矿床成因研究,2024.12–2027.11,50万元,主持。
4. 中国博士后科学基金面上项目,2023M743503,藏北草陇伟晶岩型锂铍矿床成因及矿化机制:来自磷灰石地球化学的制约,2024.01–2025.06,8万元,主持。
5. 国家资助博士后计划C档,GZC20232681,藏北草陇伟晶岩型锂铍矿床成因及矿化机制:来自磷灰石地球化学的制约,2023.12–2024.09,24万元,主持。

研究队伍