曹立成
近期热点
资料介绍
个人简历
男,博士,特任副教授,1989年出生►2007年9月—2011年6月,中国地质大学(武汉)资源学院学习,获学士学位►2011年9月—2014年6月,中国地质大学(武汉)资源学院学习,获硕士学位►2014年9月—2019年2月,同济大学海洋与地球科学学院学习,获博士学位►2017年1月—2018月1月,荷兰乌特勒支大学地球科学学院学习,访问博士生►2019年5月—至今,中国地质大学(武汉)海洋学院任教,特任副教授 ☆科研项目★国家科技重大专项课题“南海北部深水区富生烃凹陷评价”子课题“南海西北部深水区裂后期沉积体系研究和海底扇评价”(2011-2014,项目编号:2011ZX05025-002-02,已结题,参加)★中海油湛江分公司科研项目“乐东区水道成因演化及优质储层展布”(2013-2014,项目编号:CCL2013ZJFN0701,已结题,参加)★国家自然科学基金面上项目“南海东部白垩-中新世构造演变及沉积响应”(2016-2019,项目编号:41576059,在研,参加) 联系方式湖北省武汉市洪山区鲁磨路388号中国地质大学海洋学院(邮编:430074)研究领域
"目前主要从事海洋地质与沉积地球化学等方面的教学和科研工作古地理重建古河流演化物源分析"近期论文
国际学术论文(*通讯作者)[1] Cao, L., Jiang, T., Wang, Z., Zhang, Y. and Sun, H., 2015. Provenance of Upper Miocene sediments in the Yinggehai and Qiongdongnan basins, northwestern South China Sea: Evidence from REE, heavy minerals and zircon U–Pb ages. Marine Geology, 361: 136–146.[2] Jiang, T., Cao, L.*, Xie, X., Wang, Z., Li, X., Zhang, Y., Zhang, D. and Sun, H., 2015. Insights from heavy minerals and zircon U–Pb ages into the middle Miocene–Pliocene provenance evolution of the Yinggehai Basin, northwestern South China Sea. Sedimentary Geology, 327: 32–42.[3] Shao, L., Cao, L.*, Pang, X., Jiang, T., Qiao, P. and Zhao, M., 2016. Detrital zircon provenance of the Paleogene syn-rift sediments in the northern South China Sea. Geochemistry, Geophysics, Geosystems, 17: 255–269.[4] Cao, L.*, Shao, L., Qiao, P., Chen, S. and Wu, M., 2017. Geochemical evolution of Oligocene–Middle Miocene sediments in the deep-water area of the Pearl River Mouth Basin, northern South China Sea. Marine and Petroleum Geology, 80: 358–368.[5] Shao, L., Cao, L.*, Qiao, P., Zhang, X., Li, Q. and van Hinsbergen, D.J.J., 2017. Cretaceous–Eocene provenance connections between the Palawan Continental Terrane and the northern South China Sea margin. Earth and Planetary Science Letters, 477: 97–107.[6] Shao, L., Meng, A., Li, Q., Qiao, P., Cui, Y., Cao, L. and Chen, S., 2017. Detrital zircon ages and elemental characteristics of the Eocene sequence in IODP Hole U1435A: Implications for rifting and environmental changes before the opening of the South China Sea. Marine Geology, 394: 39–51.[7] Zhu, W., Xie, X., Wang, Z., Zhang, D., Zhang, C., Cao, L. and Shao, L., 2017. New insights on the origin of the basement of the Xisha Uplift, South China Sea. Science China Earth Sciences, 60: 1–9.[8] Cao, L., Shao, L., Qiao, P., Zhao, Z. and van Hinsbergen, D.J.J., 2018. Early Miocene birth of modern Pearl River recorded low-relief, high-elevation surface formation of SE Tibetan Plateau. Earth and Planetary Science Letters, 496: 120–131.[9] Zhang, G., Shao, L., Qiao, P., Cao, L.*, Pang, X., Zhao, Z., Xiang, X., Cui, Y. and Li, S., 2019. Cretaceous–Palaeogene sedimentary evolution of the South China Sea region: A preliminary synthesis. Geological Journal: 1–22.★国际学术会议[1] 2015/05, AAPG GTW-Tectonic Evolution and Sedimentation of South China Sea Region, Kota Kinabalu: Middle Miocene-Pliocene Provenance Evolution of the Yinggehai Basin, Northwestern South China Sea.(展板报告)[2] 2017/12, AGU Fall Meeting, New Orleans: No Separation of the Palawan Continental Terrane from the South China Margin during the Cretaceous-Eocene.(口头报告)标签: 海洋学院 中国地质大学(武汉)
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