西北大学地质学系

教师名称

一、个人简介

1990年2月生,2018年6月于南京大学获地质学博士学位,2018年7月至2020年6月于南京大学地球科学与工程学院任助理研究员,2020年7月至今为西北大学地质学系讲师。

主要研究兴趣为板内玄武岩的成因、地幔的化学组成和演化与地球深部化学储库的形成机制、利用元素和同位素示踪地球深部与地表之间的物质循环和协同演化过程。

更多请见“幔游”课题组(Rocking Mantle Group)网站:http://www.rockingmantle.com/.

二、科研情况

1.学术论文

1. Wang X. J., Chen L. H., Hanyu T., Zhong Y., Shi J. H., Liu X. W., Kawabata H., Zeng G., Xie L. W., 2021. Magnesium isotopic fractionation during basalt differentiation as recorded by evolved magmas. Earth and Planetary Science Letters, 565, 116954.

2. 王小均, 陈立辉, 刘建强. 2019. 大洋与大陆板内典型EM1型玄武岩的成因联系和区别. 矿物岩石地球化学通报, 38(02): 237-247.

3. Wang X. J., Chen L. H., Hofmann A. W., Hanyu T., Kawabata H., Zhong Y., Xie L. W., Shi J. H., Miyazaki T., Hirahara Y., Takahashi T., Senda R., Chang Q., Vaglarov B. S., Kimura J. I., 2018. Recycled ancient ghost carbonate in the Pitcairn mantle plume. Proceedings of the National Academy of Sciences of the United States of America, 115(35): 8682-8687.

4. Wang X. J., Chen L. H., Hofmann A. W., Mao F. G., Liu J. Q., Zhong Y., Xie L. W., Yang Y. H., 2017. Mantle transition zone-derived EM1 component beneath NE China: Geochemical evidence from Cenozoic potassic basalts. Earth and Planetary Science Letters, 465: 16-28.

5. 王小均, 刘建强, 陈立辉 (2014) HIMU型洋岛玄武岩的地球化学特征. 高校地质学报, 20(03):353-367.

6. Zeng G., Chen L. H., Hofmann A. W., Wang X. J., Liu J. Q., Yu X., Xie L. W., 2021. Nephelinites in eastern China originating from the mantle transition zone. Chemical Geology, 576, 120276.

7. Zhong, Y., Zhang, G. L., Jin, Q. Z., Huang, F., Wang, X. J., Xie, L. W. 2021, Sub-basin scale inhomogeneity of mantle in the South China Sea revealed by magnesium isotopes, Science Bulletin, 66 (7), 740-748.

8. Jiang, D. S., Xu, X. S., Wang, X. J., Zeng, G., Chen, A. X., & Huang, B. et al. 2021, Geochemical evidence for the Paleo-Pacific plate subduction at ~125 Ma in Eastern China, Lithos, 398-399, 106259.

9. Liu J. Q., Erdmann S., Chen L. H., Zhang H. L., Wu B., Zeng G., Wang X. J., Lei Z. L., Yu X., 2021. Petrological evidence for magma recharge and mixing beneath the Ma'anshan monogenetic volcano of Xiaogulihe in Northeast China. Lithos 382-383, 105928.

10. Wu S. T., Yang Y., Jochum K. P., Romer R. L., Glodny J., Savov I. P., Agostini S., De Hoog J. C. M., Peters S. T. M., Kronz A., Zhang C., Bao Z., Wang X. J., Li Y., Tang G., Feng L., Yu H., Li Z., Zhang L., Lin J., Zeng Y., Xu C., Wang Y., Cui Z., Deng L., Xiao J., Liu Y., Xue D., Zhang D., Jia L., Wang H., Xu L., Huang C., Xie L., Pack A., Wörner G., He M., Li C., Yuan H., Huang F., Li Q., Yang J., Li X., Wu F., 2021. Isotopic Compositions (Li-B-Si-O-Mg-Sr-Nd-Hf-Pb) and Fe2+/ΣFe Ratios of Three Synthetic Andesite Glass Reference Materials (ARM-1, ARM-2, ARM-3). Geostandard and Geoanalytical Research. Doi:https://doi.org/10.1111/ggr.12399.

11. Lei, Z. L., Zeng, G., Liu, J. Q., Wang, X. J., Chen, L. H., Zhang, X. Y., and Shi, J. H., 2020. Melt-Lithosphere Interaction Controlled Compositional Variations in Mafic Dikes from Fujian Province, Southeastern China. Journal of Earth Science. https://doi.org/10.1007/s12583-020-1358-y.

12. He Y., Chen L. H., Shi J. H., Zeng G., Wang X. J., Xue X. Q., Zhong Y., Erdmann S., Xie L. W., 2019. Light Mg Isotopic Composition in the Mantle Beyond the Big Mantle Wedge Beneath eastern Asia. Journal of Geophysical Research: Solid Earth, doi: 10.1029/2018JB016857.

13. Yu X., Zeng G., Chen L. H., Wang X. J., Liu J. Q., Xie L. W., Yang T., 2019. Evidence for rutile-bearing eclogite in the mantle sources of the Cenozoic Zhejiang basalts, eastern China. Lithos, 324-325: 152-164.

14. Erdmann S., Chen L. H., Liu J. Q., Xue X. Q., Wang X. J., 2019. Hot, volatile‐poor, and oxidized magmatism above the stagnant Pacific plate in Eastern China in the Cenozoic. Geochemistry, Geophysics, Geosystems, 20, 4849-4868.

15. Zhong Y., Chen L. H., Wang X. J., Zhang G. L., Xie L. W., Zeng G., 2017. Magnesium isotopic variation of oceanic island basalts generated by partial melting and crustal recycling. Earth and Planetary Science Letters, 463: 127-135.

16. Liu J. Q., Chen L. H., Wang X. J., Zhong Y., Yu X., Zeng G., Erdmann S., 2017. The role of melt-rock interaction in the formation of Quaternary high-MgO potassic basalt from the Greater Khingan Range, northeast China. Journal of Geophysical Research: Solid Earth, 122(1): 262-280.

17. Liu J. Q., Chen L. H., Zeng G., Wang X. J., Zhong Y., Yu X., 2016. Lithospheric thickness controlled compositional variations in potassic basalts of Northeast China by melt-rock interactions. Geophysical Research Letters, 43(6): 2582-2589.

18. 何叶, 陈立辉, 曾罡, 王小均 (2020). 浙江建德新生代玄武岩源区特征及其成因. 高校地质学报 26(03): 241-254.

19. 雷祝梁, 曾罡, 王小均, 陈立辉. (2019). 中国东南部晚中生代基性岩脉地幔源区的岩性演化历史. 地球科学, 44(04): 1159-1168.

20. 薛笑秋, 陈立辉, 刘建强, 何叶, 王小均, 曾罡, 钟源. (2019). 中国东北软流圈地幔中的原始橄榄岩质地幔:来自大兴安岭地区新生代玄武岩的地球化学证据. 地球科学, 44(04): 1143-1158.

21. 刘建强, 陈立辉, 钟源, 林蔚涵, 王小均 (2017) 小兴安岭逊克地区第四纪高镁安山岩的岩石学、K-Ar年代学及火山地质特征. 岩石学报 33(1):31-40.

22. 林蔚涵, 陈立辉, 刘建强, 王小均, 钟源, 曾罡 (2017) 大兴安岭新生代高镁安山岩的确认. 高校地质学报 23(01):16-25.

2.科研项目

1. 国家自然科学基金面上项目: “用Mg-Ca同位素制约HIMU地幔组分的属性”(主持),在研(2020.01–2023.12);
2. 国家自然科学基金面上项目: “东北新生代高镁安山岩的成因”(参加,4/6),已结题;
3. 国家自然科学基金面上项目: “中国东南部新生代小规模溢流玄武岩成因研究”(参加,2/5),已结题;

3.学术专著

4.学术会议和学术交流

1. 强演化“玄武岩”记录铁钛氧化物分离引起的镁同位素变化,第12届全国同位素地质年代学与同位素地球化学学术讨论会,武汉,2020.11.22. (邀请报告/主题报告)
2. Pitcairn地幔柱中存在再循环古老碳酸盐的化学“印记”,第五届青年地学论坛,南京, 2018. 10.27-29. (邀请报告)
3. Pitcairn地幔柱中存在再循环古老碳酸盐的化学“印记”,2018年中国地球科学联合学术年会,北京, 2018. 10.26-29. (主题报告)

常规口头报告多次,受邀参加国际大洋发现计划IODP 391航次科学考察。

5.科研奖励

编辑

王小均

所属部门:岩矿教研室
职称:讲师
研究方向:火成岩岩石学与地幔地球化学
电子邮件:wangxj@nwu.edu.cn

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