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王伟
( 教授 )
赞
的个人主页 http://grzy.cug.edu.cn/wangwei
教授 博士生导师 硕士生导师
曾获荣誉 :
入选国家高层次海外人才计划
性别 :
男
毕业院校 :
香港大学
学历 :
博士研究生毕业
学位 :
博士学位
所在单位 :
地球科学学院
入职时间 :
2014年08月01日
学科 :
地质学 矿物学、岩石学、矿床学
办公地点 :
地勘楼409
联系方式 :
wwz@cug.edu.cn
Email :
4d856856784a8e3cf2e546ff37e1e9c8fab315208abed9b26bf2e94504e82909f75d041ab1b94ea57dba2b859fa5938a96f8f4da6f46914d48682bc7729f8f22bc67b057687a0f3ed9cc5e0ac59d8d4970212d98e736e79fd1995adc8c85ea716b68e0e9c6e6d797db01006954d500b688fc39dec52e4956911049f389da3e84
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[31] 31. Sun, Q.Y, Zhou, Y.Y, Zhao, T.P, Wang, W., 2017. Geochronology and geochemistry of the Paleoproterozoic Yinyugou Group in the southern North China Craton: Implications for provenance and tectonic evolution. Precambrian Research 296, 120-147.
[32] 32. Sun, Q.Y, Zhou, Y.Y, Wang, W., Li, C., Zhao, T.P, 2017. Formation and evolution of the Paleoproterozoic meta-mafic and associated supracrustal rocks from the Lushan Taihua Complex, southern North China Craton: Insights from zircon U-Pb geochronology and whole-rock geochemistry. Precambrian Research 303, 428-444.
[33] 33. Wang, W*., Cawood, P.A., Zhou, M.F., Pandit, M.K., Chen, W.T., 2017. Zircon U-Pb age and Hf isotope evidence for Eoarchean crustal remnant, and crustal growth and reworking respond to supercontinental cycles in NW India. Journal of Geological Society 174, 759-772.
[34] 34. Wang, W*., Cawood, P.A., Zhou, M.F., Pandit, M.K., Xia, X.P., Zhao, J.H., 2017. Low-δ18O rhyolites from the Malani Igneous Suite: a positive test for South China and NW India linkage in Rodinia. Geophysical Research Letters 44, 10298-10305.
[35] 35. Wang, W*., Zhao, J.H., Zhou, M., Pandit, M.K., Zheng, J.P., 2018. Depositional age, provenance and tectonic setting of the Meso- and Neoproterozoic sequences in SE Yangtze Block, China: Implications on Proterozoic supercontinent reconstructions. Precambrian Research. 309, 231-247
[36] 36. Wang, W*., Pandit, M.K., Zhao, J.-H., Chen, W.-T., Zheng, J.-P., 2018. Slab break-off triggered lithosphere - asthenosphere interaction at a convergent margin: The Neoproterozoic bimodal magmatism in NW India. Lithos 296-299, 281-296.
[37] 37. Chen, W.T., Sun, W.H., Zhou, M.F., Wang, W., 2018. Ca. 1050 Ma intra-continental rift-related A-type felsic rocks in the southwestern Yangtze Block, South China. Precambrian Research. 309, 22-24.
[38] 38. Wang, W*., Zeng, M.-F., Zhou, M.-F., Zhao, J.-H., Zheng, J.-P., Lan, Z.-F., 2018. Age, provenance and tectonic setting of Neoproterozoic to early Paleozoic sequences in southeastern South China Block: Constraints on its linkage to western Australia-East Antarctica. Precambrian Research. 309, 290-308.
[39] 39. de Wall, H., Pandit, M.K., Donhauser, I., Schöbel, S., Wang, W., Sharma, K.K., 2018. Evolution and tectonic setting of the Malani – Nagarparkar Igneous Suite: A Neoproterozoic Silicic-dominated Large Igneous Province in NW India-SE Pakistan. Journal of Asian Earth Sciences 160, 136-158.
[40] 40. Luo, B.J., Liu, R., Zhang, H.F., Zhao, J.H., Yang, H., Xu, W.C., Guo, L., Zhang, L.Q., Tao, L., Pan, F.B., Wang, W., Zhong, G., Hui, S., 2018. Neoproterozoic continental back-arc rift development in the Northwestern Yangtze Block: Evidence from the Hannan intrusive magmatism. Gondwana Research 59, 27-42
[41] 41. Wang, W*., Bolhar, R., Zhou, M.-F., Zhao, X.-F., 2018. Enhanced terrestrial input into Paleoproterozoic to Mesoproterozoic carbonates in the southwestern South China Block during the fragmentation of the Columbia supercontinent. Precambrian Research 313, 1-17.
[42] 42. Liu H, Zhao, J.H, Cawood, P.A, Wang, W., 2018. South China in Rodinia: Constrains from the Neoproterozoic Suixan volcano-sedimentary group of South Qinling Belt. Precambrian Research 314, 170-193
[43] 43. Guo, J.W, Zheng J.P., Ping, X.Q., Wan Y.S., Li, Y.H, Wu, Y.B, Zhao, J.H, Wang, W., 2018. Paleoproterozoic porphyries and coarse-grained granites manifesting a vertical hierarchical structure of Archean continental crust beneath the Yangtze Craton Precambrian Research 318, 288-305
[44] 44. Wang, W*., Cawood, P.A., Pandit M.K., Xia X.P., Zhao J.H., 2018. Coupled crustal evolution and supercontinent cycle: insights from in situ U-Pb, O and Hf isotopes in detrital zircon, NW India, American Journal of Science, 318, 989-1017
[45] 45. Zhao, J.H., Pandit, M.K., Wang, W., Xia, X.P., 2018. Neoproterozoic tectonothermal evolution of NW India: Evidence from geochemistry and geochronology of granitoids. Lithos, 316-317, 330-346
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