一、基本信息
姓名:王玺
性别:女
出生年月:1987年4月
祖籍:山东济南
联系地址:山东省青岛市崂山区松岭路238号,邮编266100
电子邮箱:wangx@ouc.edu.cn
二、简历
1. 学习经历:
2011.09-2014.12,南京大学,构造地质学,博士学位
2008.09-2011.06,中国石油大学(华东),构造地质学,硕士学位
2004.09-2008.06,中国石油大学(华东),资源勘查专业,学士学位
2. 工作经历:
2022.09至今:澳门永利集团304官网手机,副教授
2020.01-2022.09:南京大学,特任助理研究员
2016.12-2019.12:中国石油大学(华东),讲师
2015.01-2016.12:南京大学,博士后
3. 学术兼职:
《Precambrian Research》《Global and Planetary Change》《Journal of Asian Earth Sciences》《中国科学: 地球科学》等期刊审稿人
4. 主持的重要科研项目:
1)国家自然科学基金-面上基金项目,“华北中部新太古代-古元古代镁铁质火成岩地幔源区性质随时间变化的地球化学研究”(42072218),2021.01-2024.12,60万元,项目负责人
2)国家自然科学基金-青年基金项目,“华北中部吕梁地区新太古代构造-岩浆作用与地壳演化”(41702198),2018.01-2020.12,23万元,项目负责人
3)山东省自然科学基金博士基金,“山西吕梁地区新太古代-早古元古代岩浆作用与构造意义”(ZR2017BD008),2017.07-2019.07,7万元,项目负责人
4)中国博士后科学基金面上资助项目,“华北中部吕梁杂岩野鸡山群沉积时代与构造背景探讨”(2016M591816),2016.03-2017.03,5万元,项目负责人
5)中国石油大学(华东)自主创新科研计划项目,“华北中部吕梁地区新太古代岩浆作用、地壳演化与构造意义”(17CX02001A),2017.01-2019.12,10万元,项目负责人
6)南京大学国家自然科学基金培育项目,“华北吕梁地区野鸡山群沉积时代约束与构造背景探讨”(020614380033),2016.03-2016.12,5万元,项目负责人
三、主要学术领域
1. 学科方向:岩石大地构造,构造地质学,岩浆岩地球化学
2. 近期研究兴趣:
1)太古宙微板块的起源、增生和聚散; 2)陆壳的形成与演化; 3)现今陆缘微板块构造研究。
3. 研究生培养
研究生招生: 每年招收有地质学、地球化学、海洋地质学及相关专业背景,有志于从事(1)早期地球或地球早前寒武纪构造-岩浆活动与地壳演化;或(2)太古宙-古元古代地球多圈层相互作用研究,或者对大数据地球科学、岩石样品化学分析、地球化学模拟等感兴趣的硕士1-2名。
主要论文目录
第一作者/通讯作者文章:
1. X. Wang*, W.-B. Zhu*, Y.-F. Zheng, 2022. Geochemical constraints on the nature of Late Archean basaltic-andesitic magmatism in the North China Craton. Earth-Science Reviews 230, 104065.
2. X. Wang*, W.-B. Zhu*, Y.-F. Zheng, R.-F. Ge, 2022. Tectonic switch from a lithospheric rift to an active continental margin in the Paleoproterozoic: evidence from low δ18O granites from the Trans-North China Orogen in the North China Craton. Precambrian Research 377, 106672.
3. X. Wang*, Y. Liu, J. Cao, Y.-D. Liu, B. Luo, K.-Y. Wu, Z. Shi, H.-B. Kang, 2021. Controls of deep-seated faults and folds and their effects on hydrocarbon fluid migration and accumulation in the sedimentary basin: a case study from the northwestern Sichuan Basin of China. Geofluids 2021, 5371021.
4. X. Wang*, Y.-F. Zheng, W.-B. Zhu, 2019. Geochemical evidence for reworking of the juvenile crust in the Neoarchean for felsic magmatism in the Yunzhongshan area, the North China Craton. Precambrian Research 335,105493.
5. X. Wang*, Y.-F. Zheng, W.-B. Zhu, 2019. Geochemical constraints on the origin of Neoarchean magmatic rocks in the Lüliang Complex, North China Craton: tectonic implications. Precambrian Research 327, 212-231.
6. X. Wang, W.-B. Zhu, Y. Liu, M. Luo, R.-F. Ge, H. Zhang, X.-M. Ren, X. Cui, 2017. Revisiting the Yejishan Group of the Lüliang Complex, North China: Implications for a Paleoproterozoic active continental marginal basin in the Trans-North China Orogen. Precambrian Research 292: 93-114.
7. X. Wang, W.-B. Zhu, R.-F. Ge, M. Luo, X.-Q. Zhu, Q.-L. Zhang, L.-S. Wang, X.-M. Ren, 2014. Two episodes of Paleoproterozoic metamorphosed mafic dykes in the Lvliang Complex: Implications for the evolution of the Trans-North China Orogen. Precambrian Research 243: 133-148.
8. X. Wang, W.-B. Zhu, M. Luo, X.-M. Ren, X. Cui, 2014. Approximately 1.78 Ga mafic dykes in the Lüliang Complex, North China Craton: Zircon ages and Lu-Hf isotopes, geochemistry, and implications. Geochemistry, Geophysics, Geosystems 15(8): 3123-3144.
9. 王玺*, 陈清华, 朱文斌, 马婷婷, 王晓蕾, 刘寅, 2013. 苏北盆地高邮凹陷边界断裂带构造特征及成因,大地构造与成矿学37, 20-28.
非第一作者/通讯作者文章:
10. Liu Yin, Suppe John, Cao Yingchang, Hao Fang, Liu Yiduo, Wang Xi, Wu Kongyou, Cao Zicheng, Wei Hehua, 2023. Linkage and formation of strike-slip faults in deep basins and the implications for petroleum accumulation: A case study from the Shunbei area of the Tarim Basin, China. AAPG Bull. 107, 331-355.
11. 朱文斌, 王玺, 葛荣峰, 2021. 地体的单向和多向聚合与离散, 地质学报, 95 (1): 124-138.
12. Xiang Cui, Wen-Bin Zhu, Xi Wang, 2021. Neoproterozoic modification of heterogeneous continental lithosphere beneath the Yangtze interior: revealed from mafic dykes from the Huangling area, South China, International Journal of Earth Sciences.https://doi.org/10.1007/s00531-021-02098-6
13. Yin Liu, Xi Wang, Kongyou Wu, Shuning Chen, Zheng Shi, Weijiang Yao, 2019. Late Carboniferous seismic and volcanic record in the northwestern margin of the Junggar Basin: Implication for the tectonic setting of the West Junggar. Gondwana Research, 71: 49-75.
14. Yin Liu, Qing-Hua Chen, Xi Wang, Kai Hu, Shao-Lei Cao, Lin Wu, Feng Gao, 2017. Influence of normal fault growth and linkage on the evolution of a rift basin: A case from the Gaoyou depression of the Subei Basin, eastern China. AAPG Bulletin, 101(2): 265-288.
15. Yin Liu, Kongyou Wu, Xi Wang, Bo Liu, Jianxun Guo, Yannan Du, 2017. Architecture of buried reverse fault zone in the sedimentary basin: A case study from the Hong-Che Fault Zone of the Junggar Basin. Journal of Structural Geology, 105: 1-17.
16. Xiang Cui, Wen-Bin Zhu, I.C.W. Fitzsimons, Xi Wang, Yuan-Zhi Lu, Xin-Hui Wu, 2017. A possible transition from island arc to continental arc magmatism in the eastern Jiangnan Orogen, South China: insights from a Neoproterozoic (870-860 Ma) gabbroic–dioritic complex near the Fuchuan ophiolite. Gondwana Research, 46: 1-16.
17. Rongfeng Ge, Wenbin Zhu, Simon A. Wilde, Jingwen He, Xiang Cui, Xi Wang, Bihai Zheng,2014. Neoproterozoic to Paleozoic long-lived accretionary orogen in the northern Tarim Craton. Tectonics 33, doi:10.1002/2013TC003501.