陈康  (副研究员)

副研究员 硕士生导师

性别:男

毕业院校:中国地质大学(武汉)

学历:博士研究生

学位:理学博士学位

所在单位:地质过程与矿产资源国家重点实验室

入职时间:2016-11-01

学科:地球化学

联系方式:kangchen@cug.edu.cn

Email:

个人简介

教育经历

2010.9-2016.6,中国地质大学(武汉)地球科学学院地球化学专业,博士学位,导师:高山

2013.9-2015.1,美国马里兰大学地质系,联合培养博士生,导师:Roberta Rudnick

2006.9-2010.6,中国地质大学(武汉)地球科学学院地球化学专业,学士学位,导师:吴元保

 

工作经历

2020.7至今,中国地质大学(武汉)地质过程与矿产资源国家重点实验室,副研究员

2019.1-2019.7,美国莱斯大学地球、环境和行星科学系,访问学者,合作者:Cin-Ty Lee

2016.11-2020.6,中国地质大学(武汉)地质过程与矿产资源国家重点实验室,助理研究员

2016.7-2016.10,中国地质大学(武汉)地质过程与矿产资源国家重点实验室,研究助理

 

研究兴趣

(1)大陆地壳形成机制和生长演化历史

(2)俯冲带岩浆作用过程中亲铜元素行为及其控制因素

(3)硅酸盐中亲铁亲铜元素含量分析测试方法

我主要以岩石学、矿物学和地球化学为主要手段,结合大数据统计分析,聚焦研究大陆地壳的演化和生长机制、俯冲带岩浆成因和亲铜元素地球化学等方向。取得如下主要成果:1)利用古老冰川沉积物的亲铜元素组成,限定大陆上地壳在太古宙晚期由基性不断演化为酸性,而后太古宙时期大陆上地壳的成分基本保持不变,指示太古宙晚期是大陆地壳生长的关键时期,且全球性的板块构造运动可能始于30亿年前;2)利用大陆弧深部堆晶的亲铜元素组成,证明俯冲带幔源岩浆在下地壳深部发生硫化物的饱和分异,形成富集亲铜元素的堆晶层,这些堆晶与大陆地壳亏损亲铜元素的特征互补,表明地壳深部堆晶的拆沉作用是大陆地壳形成的必经过程;3)利用俯冲带弧岩浆大数据的La/Yb、Dy/Yb和FeO/MnO等地球化学指标,揭示岛弧拉斑质岩浆演化中期的Fe亏损是由磁铁矿的分异所致,而大陆弧钙碱性岩浆早期的Fe亏损并不是磁铁矿的分异导致,而是由石榴石(可能还有角闪石)的饱和分异所致,进一步地对比研究表明,大陆弧钙碱性岩浆的高压分异是大陆地壳成熟的必要过程。

 

承担项目

主持:

(6) 科技部国家重点研发计划子课题,太古宙-元古宙转换期岩浆亲铜元素行为研究,2024-01至2028-12

(5) 国家自然科学基金委员会,面上项目,42373024,大陆下地壳亲铜元素组成研究:来自下地壳剖面和包体中麻粒岩的约束,2024-01至2027-12

(4)  国家自然科学基金委员会,面上项目,42073024,大陆弧岩浆演化过程中亲铜元素和Cu同位素地球化学行为研究,2021-01至2024-12

(3) 国家自然科学基金委员会,青年科学基金项目,41703034,大陆上地壳Cu-Ag-Au丰度及其在地质历史时期中的演化:来自冰碛岩的约束,2018-01至2020-12

(2) 地质过程与矿产资源国家重点实验室开放基金,MSFGPMR12,大陆上地壳金和银丰度:来自黄土的约束,2017-01至2019.12

(1) 中国地质大学(武汉)新青年教师科研启动基金,岩石样品金和银含量的高精度测试方法,2017-01至2019.12

 

参与:

(5) 国家自然科学基金委员会,面上项目,41973024,大陆弧堆晶下地壳亲铜元素和Cu同位素地球化学研究,2020-01至2023-12

(4) 国家自然科学基金委员会,面上项目,41873029,大陆上地壳卤素元素丰度及其分析方法研究,2019-01至2022-12

(3) 国家自然科学基金委员会,面上项目,41876037,亏损地幔不均一性:深海橄榄岩元素和Hf-Nd-Os同位素特征及和MORB对比研究,2019-01至2022-12

(2) 国家自然科学基金委员会,面上项目,41373026,大陆地壳铂族元素丰度研究,2014-01至2017-12

(1) 国家自然科学基金委员会,面上项目,41173016,大陆地壳生长模式年龄和生长速率的Nd-Hf同位素对比研究,2012-01至2015-12

 

学术服务

Lithos专辑“Continental crust formation”客座编辑。

审稿经历:American Mineralogist、Communications Earth & Environment、Contributions to Mineralogy and Petrology、Earth and Planetary Science Letters、Economic Geology、Geochimica et Cosmochimica Acta、Lithos、Nature Communications、Nature Geoscience、Precambrian Research、Science Advances、Solid Earth Sciences等期刊。

 

发表论文

31. Wang, Meiling, Wang, Zaicong*, Guo, Liang, Zou, Zongqi, Wu, Fei, Dai, Wei, Guo, Jingliang, Chen, Kang, Feng, Lanping, Chen, Haihong, Li, Ming, Liu, Yongsheng, 2025. Calcium isotope composition of the Gangdese continental arc deep crust and implications for making continental crust. Geochimica et Cosmochimica Acta 400 248-264. https://doi.org/10.1016/j.gca.2025.04.033


30. Wang, Rui*, Tang, Ming, Wang, Qing, Chen, Kang, Cawood, Peter A., 2025. Editorial: Crust formation from subduction to collision. Lithos 516-517 108266. https://doi.org/10.1016/j.lithos.2025.108266


29. 刘勇胜*, 何德涛, 陈康, 赵国春, 2025. 原始地壳增厚驱动水反向富集与早期TTG形成. 科学通报 70 (21) 3557-3565. https://doi.org/10.1360/TB-2024-1275


28. Han, Peng-Yuan*, Rudnick, Roberta L., Hu, Zhao-Chu, He, Tao, Marks, M. A. W., Chen, Kang, 2024. Halogen enrichment on the continental surface: a perspective from loess. Geochemical Perspectives Letters 32 52-57. https://doi.org/10.7185/geochemlet.2442


27. Yu, Yuanyang, Zong, Keqing*, Chen, Kang, Guo, Jing-Liang, Wang, Xinshui, Wang, Zaicong, Zhang, Wen, Hu, Zhaochu, Liu, Yongsheng, 2024. Formation of deep arc root cumulates and implications for crustal growth in the southern Central Asian Orogenic Belt. Chemical Geology 660 122147. https://doi.org/10.1016/j.chemgeo.2024.122147


26. Zou, Zongqi, Wang, Zaicong*, Xu, Yi-Gang, Foley, Stephen, Cheng, Huai, Ma, Liang, Wang, Xiang, Chen, Kang, Hu, Zhaochu, Liu, Yongsheng, Liu, Yanhong, 2024. Deep mantle cycle of chalcophile metals and sulfur in subducted oceanic crust. Geochimica et Cosmochimica Acta 370 15-28. https://doi.org/10.1016/j.gca.2024.02.007


25. Chen, Kang*, Tang, Ming, Hu, Zhaochu, Liu, Yongsheng, 2023. Generation of tholeiitic and calc-alkaline arc magmas and its implications for continental growth. Geochimica et Cosmochimica Acta 355 173-183. https://doi.org/10.1016/j.gca.2023.07.002


24. Tang, Ming*, Liu, Xuanyu, Chen, Kang, 2023. High Mg# of the continental crust explained by calc-alkaline differentiation. National Science Review 10 (3) nwac258. https://doi.org/10.1093/nsr/nwac258


23. Lin, Ran, Zong, Keqing*, Lin, Jie, Yang, Ao, Chen, Kang, Hu, Zhaochu, Liu, Yongsheng, 2022a. Determination of the Isotopic Composition of an Enriched Lutetium Spike by MC-ICP-MS. Atomic Spectroscopy 43 (5) 396-402. http://www.at-spectrosc.com/as/article/abstract/2022188


22. Lin, Ran, Lin, Jie*, Zong, Keqing, Yang, Ao, Chen, Kang, Liu, Yongsheng, Hu, Zhaochu, 2022b. Determination of the Isotopic Composition of Ytterbium by MC-ICP-MS Using an Optimized Regression Model. Analytical Chemistry 94 (20) 7200-7209. https://pubs.acs.org/doi/abs/10.1021/acs.analchem.1c05609


21. Xu, Zhe, Wang, Zaicong*, Guo, Jing-Liang, Liu, Yanhong, Guo, Jinghui, Cheng, Huai, Chen, Kang, Wang, Xiang, Zong, Keqing, Zhu, Zhaoxian, Hu, Zhaochu, Li, Hua, 2022. Chalcophile elements of the Early Cretaceous Guojialing granodiorites and mafic enclaves, eastern China, and implications for the formation of giant Jiaodong gold deposits. Journal of Asian Earth Sciences 238 105374. https://doi.org/10.1016/j.jseaes.2022.105374


20. 陈康*, 胡兆初, 汪在聪, 2022. 地质历史时期大陆地壳的化学成分是如何演化的?. 地球科学 47 (10) 3808. http://www.earth-science.net/article/doi/10.3799/dqkx.2022.818


19. 刘勇胜*, 宗克清, 何德涛, 汪在聪, 陈康, 沈俊, 2022. 地球深部物质释放如何影响地表环境?. 地球科学 47 (10) 3783. http://www.earth-science.net/article/doi/10.3799/dqkx.2022.807


18. Yang, Wenwu, Zhao, He, Zhang, Wen, Luo, Tao, Li, Ming, Chen, Kang, Hu, Shenghong, Hu, Zhaochu*, 2021. A simple method for the preparation of homogeneous and stable solid powder standards: Application to sulfide analysis by LA-ICP-MS. Spectrochimica Acta Part B: Atomic Spectroscopy 178 106124. https://doi.org/10.1016/j.sab.2021.106124


17. Chen, Kang*, Rudnick, Roberta L., Wang, Zaicong, Tang, Ming, Gaschnig, Richard M., Zou, Zongqi, He, Tao, Hu, Zhaochu, Liu, Yongsheng, 2020a. How mafic was the Archean upper continental crust? Insights from Cu and Ag in ancient glacial diamictites. Geochimica et Cosmochimica Acta 278 16-29. https://doi.org/10.1016/j.gca.2019.08.002


16. Chen, Kang*, Tang, Ming, Lee, Cin-Ty A., Wang, Zaicong, Zou, Zongqi, Hu, Zhaochu, Liu, Yongsheng, 2020b. Reply to Comment from Zafar, Leng and Chen on “Sulfide-bearing cumulates in deep continental arcs: The missing copper reservoir” by Chen et al. (Earth Planet. Sci. Lett. 531 (2020) 115971). Earth and Planetary Science Letters 551 116592. https://doi.org/10.1016/j.epsl.2020.116592


15. Chen, Kang*, Tang, Ming, Lee, Cin-Ty A., Wang, Zaicong, Zou, Zongqi, Hu, Zhaochu, Liu, Yongsheng, 2020c. Sulfide-bearing cumulates in deep continental arcs: The missing copper reservoir. Earth and Planetary Science Letters 531 115971. https://doi.org/10.1016/j.epsl.2019.115971


14. Lin, Ran, Lin, Jie*, Zong, Keqing, Chen, Kang, Tong, Shuoyun, Feng, Lanping, Zhang, Wen, Li, Ming, Liu, Yongsheng, Hu, Zhaochu, Zhou, Lian, 2020. Determination of the Isotopic Composition of an Enriched Hafnium Spike by MC-ICP-MS Using a Regression Model. Geostandards and Geoanalytical Research 44 (4) 753-762. https://doi.org/10.1111/ggr.12343


13. Zou, Zongqi, Wang, Zaicong*, Cheng, Huai, He, Tao, Liu, Yinuo, Chen, Kang, Hu, Zhaochu, Liu, Yongsheng, 2020. Comparative Determination of Mass Fractions of Elements with Variable Chalcophile Affinities in Geological Reference Materials with and without HF-desilicification. Geostandards and Geoanalytical Research 44 (3) 501-521. https://doi.org/10.1111/ggr.12328


12. Cheng, Huai, Wang, Zaicong*, Chen, Kang, Zong, Keqing, Zou, Zongqi, He, Tao, Hu, Zhaochu, Fischer-Gödde, Mario, Liu, Yanhong, 2019. High-precision Determination of Gold Mass Fractions in Geological Reference Materials by Internal Standardisation. Geostandards and Geoanalytical Research 43 (4) 663-680. https://doi.org/10.1111/ggr.12284


11. Tang, Ming*, Lee, Cin-Ty A., Chen, Kang, Erdman, Monica, Costin, Gelu, Jiang, Hehe, 2019. Nb/Ta systematics in arc magma differentiation and the role of arclogites in continent formation. Nature Communications 10 (1) 235. https://doi.org/10.1038/s41467-018-08198-3


10. Feng, Yantong, Zhang, Wen*, Hu, Zhaochu, Liu, Yongsheng, Chen, Kang, Fu, Jiali, Xie, Junyi, Shi, Quanhui, 2018. Development of sulfide reference materials for in situ platinum group elements and S–Pb isotope analyses by LA-(MC)-ICP-MS. Journal of Analytical Atomic Spectrometry 33 (12) 2172-2183. http://dx.doi.org/10.1039/C8JA00305J


9. Han, Peng-Yuan, Guo, Jing-Liang*, Chen, Kang, Huang, Hua, Zong, Ke-Qing, Liu, Yong-Sheng, Hu, Zhao-Chu, Gao, Shan, 2017. Widespread Neoarchean (~ 2.7–2.6 Ga) magmatism of the Yangtze craton, South China, as revealed by modern river detrital zircons. Gondwana Research 42 1-12. http://dx.doi.org/10.1016/j.gr.2016.09.006


8. Chen, Kang*, Walker, Richard J., Rudnick, Roberta L., Gao, Shan, Gaschnig, Richard M., Puchtel, Igor S., Tang, Ming, Hu, Zhao-Chu, 2016. Platinum-group element abundances and Re–Os isotopic systematics of the upper continental crust through time: Evidence from glacial diamictites. Geochimica et Cosmochimica Acta 191 1-16. http://dx.doi.org/10.1016/j.gca.2016.07.004


7. Lin, Jie, Liu, Yongsheng*, Hu, Zhaochu, Yang, Lu, Chen, Kang, Chen, Haihong, Zong, Keqing, Gao, Shan, 2016. Accurate determination of lithium isotope ratios by MC-ICP-MS without strict matrix-matching by using a novel washing method. Journal of Analytical Atomic Spectrometry 31 (2) 390-397. http://dx.doi.org/10.1039/C5JA00231A


6. Tang, Ming*, Chen, Kang, Rudnick, Roberta L., 2016. Archean upper crust transition from mafic to felsic marks the onset of plate tectonics. Science 351 (6271) 372-375. http://science.sciencemag.org/content/351/6271/372


5. 蔺洁, 刘勇胜*, 胡兆初, 陈康, 陈海红, 宗克清, 高山, 2016. MC-ICP-MS准确测定地质样品中锂同位素组成. 矿物岩石地球化学通报 35 (3) 458-464. https://doi.org/10.3969/j.issn.1007-2802.2016.03.008


4. Guo, Jing-Liang, Wu, Yuan-Bao, Gao, Shan*, Jin, Zhen-Min, Zong, Ke-Qing, Hu, Zhao-Chu, Chen, Kang, Chen, Hai-Hong, Liu, Yong-Sheng, 2015. Episodic Paleoarchean-Paleoproterozoic (3.3–2.0 Ga) granitoid magmatism in Yangtze Craton, South China: Implications for late Archean tectonics. Precambrian Research 270 246-266. http://dx.doi.org/10.1016/j.precamres.2015.09.007


3. Guo, Jing-Liang, Gao, Shan*, Wu, Yuan-Bao, Li, Ming, Chen, Kang, Hu, Zhao-Chu, Liang, Zheng-Wei, Liu, Yong-Sheng, Zhou, Lian, Zong, Ke-Qing, Zhang, Wen, Chen, Hai-Hong, 2014. 3.45 Ga granitic gneisses from the Yangtze Craton, South China: Implications for Early Archean crustal growth. Precambrian Research 242 (0) 82-95. http://dx.doi.org/10.1016/j.precamres.2013.12.018


2. Zong, Keqing*, Liu, Yongsheng, Zhang, Zeming, He, Zhenyu, Hu, Zhaochu, Guo, Jingliang, Chen, Kang, 2013. The generation and evolution of Archean continental crust in the Dunhuang block, northeastern Tarim craton, northwestern China. Precambrian Research 235 (0) 251-263. http://dx.doi.org/10.1016/j.precamres.2013.07.002


1. Chen, Kang, Gao, Shan*, Wu, Yuanbao, Guo, Jingliang, Hu, Zhaochu, Liu, Yongsheng, Zong, Keqing, Liang, Zhengwei, Geng, Xianlei, 2013. 2.6–2.7 Ga crustal growth in Yangtze craton, South China. Precambrian Research 224 472-490. https://doi.org/10.1016/j.precamres.2012.10.017

 

会议摘要/报告

11. Chen, K., Wang, Z., Kay, S., 2024, The behavior of chalcophile elements during the differentiation of two distinct magma series from the Central Andes. Goldschmidt Meeting, Chicago, USA, Oral presentation, 2024 Aug. 18-23.


10. 陈康,唐铭,胡兆初,刘勇胜,2022,弧岩浆Fe分异及其对大陆地壳生长的启示,2022/2021中国地球科学联合学术年会,口头报告,线上,中国,2022年12月5-9日。


9. Chen, K., Tang, M., Hu, Z., Liu, Y., 2022, Crustal thickness controls the differentiation style and composition of arc magmas and continental crust formation. Goldschmidt Meeting, Virtual and Honolulu, USA, Oral presentation, 2022 Jul. 10-15.


8. 陈康,唐铭,2021,钙碱性和拉斑系列弧岩浆演化:对大陆地壳生长的启示,第七届青年地学论坛,特邀报告,贵阳,中国,2021年7月9-11日。


7. 陈康,唐铭,Lee Cin-Ty,汪在聪,胡兆初,刘勇胜,2020,大陆弧深部含硫化物堆晶:缺失的铜储库,中国地球科学联合学术年会,邀请报告,重庆,中国,2020年10月18-21日。


6. Chen, K., Tang, M., Kay, Suzanne M., Wang, Z., Hu, Z., Liu, Y., 2020, Chalcophile element systematics in continental arc magmas as observed in the Central Andes. Goldschmidt Meeting, Virtual presentation, 2020 Jun. 21-26.


5. Chen K., Rudnick, R.L., Wang Z., Tang M., Zou Z., Hu Z., Liu Y., 2019, How Mafic was the Archean Upper Continental Crust? Goldschmidt Meeting, oral presentation. Barcelona, Spain, 2019 Aug. 18-23.


4. Chen, K., Wang Z., Tang M., Zou Z., Hu Z., Liu Y., 2018, Tracking sulfide fractionation in deep continental arcs: Implications for porphyry Cu deposits. Goldschmidt Meeting, oral presentation. Boston, USA, 2018 Aug.12-17.


3. Chen K., Tang M., Liu Y-S., Gao S., 2016, Reevaluating element mobility during continental weathering. Goldschmidt Meeting, poster presentation. Yokohama, Japan, 2016 Jun. 26-Jul. 1.


2. 陈康,Walker R. J., Rudnick R. L., 高山, 2015, Platinum-group element abundances and Re-Os isotopic systematics of the upper continental crust through time: evidence from glacial diamictites. 中国地球科学联合学术年会,展板报告,北京,中国,2015年10月11-14日。


1. Chen K., Gao S., Wu Y.-B., 2013, 2.6-2.7 Ga continental crust growth in Yangtze craton, South China. AGU Fall Meeting, poster presentation. San Francisco, California, USA, 2013 Dec. 9-13.

 

邀请报告

3. 2021年9月20日,北京大学地球与空间科学学院,报告题目:地壳厚度对弧岩浆演化的控制:对大陆地壳生长的启示。


2. 2020年9月26日,青年矿床论坛,报告题目,俯冲带岩浆作用过程中亲铜元素行为:对大陆地壳生长和斑岩铜矿的启示。


1. 2019年6月10日,美国康内尔大学地球和大气科学学院,报告题目:How mafic was the Archean upper continental crust?

 

招生培养

在读硕士:

2. 吴淑孝,2025级,研究方向:大陆下地壳亲铜元素组成

1. 费强,2023级,研究方向:弧岩浆演化过程中亲铜元素行为

 

欢迎对岩石地球化学感兴趣的学生加入我的研究小组(https://grzy.cug.edu.cn/kangchen)和我们的“壳幔交换动力学”科研团队 (https://geochemistry.cug.edu.cn/)!


教育经历

[1]   2013.9-2015.1

美国马里兰大学  |  地球化学  |  访问学生

[2]   2010.9-2016.6

中国地质大学(武汉)  |  地球化学  |  理学博士学位  |  研究生(博士)毕业

[3]   2006.9-2010.6

中国地质大学(武汉)  |  地球化学  |  学士学位  |  大学本科

工作经历

[1]   2019.1-2019.7

美国莱斯大学  |  地球、环境和行星科学系  |  访问学者

[2]   2020.7-至今

中国地质大学(武汉)  |  地质过程与矿产资源国家重点实验室  |  副研究员

[3]   2016.11-2020.6

中国地质大学(武汉)  |  地质过程与矿产资源国家重点实验室  |  助理研究员

[4]   2016.7-2016.10

中国地质大学(武汉)  |  地质过程与矿产资源国家重点实验室  |  研究助理

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  • 团队成员

    团队名称:壳幔交换动力学科研团队

    团队介绍:https://geochemistry.cug.edu.cn/