
姓名:陈文汉
职称:研究员 硕导
电子邮箱:chenwh@cdut.edu.cn
研究室:古海洋、古气候研究室副主任
个人简介:
陈文汉,男,1991年出生,汉族,地层与古生物学博士,四川省青年人才计划获得者,成都理工大学研究员、硕士生导师。2023年6月以“珠峰人才引进计划B类”入职成都理工大学沉积地质研究院,沉积与生物地球化学国际研究中心固定成员。研究工作重点关注地球表层系统在地质历史时期极端气候变化事件过程中的响应,目前在EPSL、Geology、GRL、Petroleum Science、GPC、ESR、GSAB等期刊累计发表论文17篇,担任Geochimica et Cosmochimica Acta、Global and Planetary Change、Terra Nova、Frontiers in Earth Science、Applied Geochemistry等重要地学期刊审稿人,《矿物岩石地球化学通报》首届青年编委,《地球科学》青年编委,主持国家自然科学基金面上项目1项、青年科学基金项目1项,参与国家自然科学基金重点研发项目、基础科学中心项目、IGCP 739项目等。
沉积与生物地球化学国际研究中心个人主页:
https://sgbg.cdut.edu.cn/info/1089/1551.htm
Google Scholar个人主页:scholar.google.com/citations?user=pN3XMtsAAAAJ&hl=zh-CN&oi=ao
学历和工作背景:
教育经历:
2022/02-2022/08英国牛津大学访问学者合作导师: Prof. Stuart Robinson, Prof. Hugh Jenkyns
2019/10-2019/12英国利兹大学访问学者合作导师: Dr. Robert Newton, Prof. Simon Poulton
2018/09-2022/12中国地质大学(武汉)博士导师:黄春菊教授,David Kemp教授
2013/09-2016/06兰州大学硕士导师:聂军胜教授
2009/09-2013/06河南财经政法大学学士导师:高更和教授
工作经历:
2023/06-至今成都理工大学沉积地质研究院研究员、硕士生导师
主要研究领域:致力于研究地质历史时期极热事件期间地球表层系统的响应过程。相关研究主要围绕沉积地球化学展开,重点关注地球表生过程中碳-氮-硫-磷-铁-钡等元素的生物地球化学循环,同时结合旋回地层学方法和海-气系统模型,揭示海洋和大气地球化学在古气候突变期的协同演化特征,探讨极端气候事件潜在的触发与恢复机制,为预测未来全球变化提供科学依据。
主持/参与科研项目:
1.国家自然科学基金面上项目(42572124),Toarcian大洋缺氧事件海洋磷循环的空间差异性研究,2026/01-2029/12,在研,主持.
2.国家自然科学基金委员会青年科学基金项目(42302119),早侏罗世Toarcian期大洋缺氧事件期间特提斯洋有机质富集机制的空间差异研究,2024/01-2026/12,在研,主持.
3.国家自然科学基金重点研发计划项目(2023YFF0804000),地球深时大洋缺氧事件与环境演变,2024.01-2028.12,在研,参与.
4.国家自然科学基金委员会面上项目(42272033),贡觉盆地早古近纪的天文年代标尺和水循环演变研究,2023.01-2026.12,在研,参与.
5.国家自然科学基金委员会基础科学中心项目(41888101),大陆演化与季风系统演变,2019.01-2023.12,已结题,参与.
代表性文章:
1.Xu, Q.,Chen, W*.,Zhang, C., Xu, H., Sun, S., Gao, X., Kemp, D.B., Deng, S., Xiong, F., Li, C*., 2026. First High-Precision U–Pb Age for the Early Jurassic Beipiao Formation (NE China): Implications for Source Rock Deposition and the Toarcian Hyperthermal Event. Petroleum Science, in press.
2.Chen, W.,Kemp, D.B., Jenkyns, H.C., Robinson, S.A., Lin, Y., Hu, J., Han, Z., He, T., Zhang, F., Sun, X., Shi, G., Li, C., 2026. Barium isotopes indicate spatiotemporal heterogeneity of marine primary productivity during the Toarcian Oceanic Anoxic Event. Geophysical Research Letters, 53, e2026GL121983.
3.Chen, W*.,Kemp, D.B., Jenkyns, H.C., Robinson, S.A., Jiang, S., Pan, C., Li, C*., 2024. Widespread upper-ocean deoxygenation in the Alpine-Mediterranean Tethys during the Toarcian Oceanic Anoxic Event. Global and Planetary Change 243, 104631.
4.Kemp, D.B., Han, Z., Hu, X.,Chen, W.,Jin, S., Izumi, K., Yan, Q., Baranyi, V., Jin, X., Dal Corso, J., Ge, Y., 2024. Global hydroclimate perturbations during the Toarcian oceanic anoxic event. Earth-Science Reviews 258, 104946.
5.Kemp, D.B., Ramezani, J., Izumi, K., Al-Suwaidi, A., Huang, C.,Chen, W.,Zhu, Y., 2024. The timing and duration of large-scale carbon release in the Early Jurassic. Geology, 52, 891–895.
6.Liu, D., Huang, C., Li, M.,Chen, W.,Chu, R., 2023. Evolution of phosphorus enrichment in the early to middle Middle Triassic Epoch in Southern China's ancient oceans and its response to astronomical forcing. Quaternary Sciences 43, 1538–1546.
7.Zhang, R., Huang, C., Kemp, D.B., Wang, Z., Zhang, Z.,Chen, W.,2023. Astronomical forcing of the hydrological cycle in the Weihe Basin (North China) during the middle to late Eocene. Global and Planetary Change 228, 104208.
8.Chen, W.,Kemp, D.B., He, T., Newton, R.J., Xiong, Y., Jenkyns, H.C., Izumi, K., Cho, T., Huang, C., Poulton, S.W., 2023. Shallow- and deep-ocean Fe cycling and redox evolution across the Pliensbachian–Toarcian boundary and Toarcian Oceanic Anoxic Event in Panthalassa. Earth and Planetary Science Letters 602, 117959.
9.Chen, W.,Kemp, D.B., Newton, R.J., He, T., Huang, C., Cho, T., Izumi, K., 2022. Major sulfur cycle perturbations in the Panthalassic Ocean across the Pliensbachian–Toarcian boundary and the Toarcian Oceanic Anoxic Event. Global and Planetary Change 215, 103884.
10.Chen, W.,Kemp, D.B., He, T., Huang, C., Jin, S., Xiong, Y., Newton, R.J., 2021. First record of the early Toarcian oceanic anoxic event in the Hebrides Basin (UK) and implications for redox and weathering changes. Global and Planetary Change 207, 103685.
11.Kemp, D.B.,Chen, W.,Cho, T., Algeo, T.J., Shen, J., Ikeda, M., 2022. Deep-ocean anoxia across the Pliensbachian–Toarcian boundary and the Toarcian Oceanic Anoxic Event in the Panthalassic Ocean. Global and Planetary Change 212, 103782.
12.Kemp, D.B., Suan, G., Fantasia, A., Jin, S.,Chen, W.,2022. Global organic carbon burial during the Toarcian oceanic anoxic event: Patterns and controls. Earth-Science Reviews 231, 104086.
13.Jin, S., Kemp, D.B., Jolley, D.W., Vieira, M., Zachos, J.C., Huang, C., Li, M.,Chen, W.,2022. Large-scale, astronomically paced sediment input to the North Sea Basin during the Paleocene Eocene Thermal Maximum. Earth and Planetary Science Letters 579, 117340.
14.Jin, X., Zhang, F., Baranyi, V., Kemp, D.B., Feng, X., Grasby, S.E., Sun, G., Shi, Z.,Chen, W.,Dal Corso, J., 2022. Early Jurassic massive release of terrestrial mercury linked to floral crisis. Earth and Planetary Science Letters 598, 117842.
15.Nie, J., Ren, X., Saylor, J.E., Su, Q., Horton, B.K., Bush, M.A.,Chen, W.,Pfaff, K., 2020. Magnetic polarity stratigraphy, provenance, and paleoclimate analysis of Cenozoic strata in the Qaidam Basin, NE Tibetan Plateau. GSA Bulletin 132(1–2), 310–320.
16.Su, Q., Nie J., Saylor, J.E., Horton, B.K., Bush, M.A.,Chen, W.,2016. An anisotropy of magnetic susceptibility study of the Cenozoic Dahonggou section in northern Qaidam Basin and its tectonic implications. Quaternary Sciences 36(4), 859–869.
17.Peng, W., Wang, Z., Song, Y., Pfaff, K., Luo, Z., Nie, J.,Chen, W.,2016. A comparison of heavy mineral assemblage between the loess and the Red Clay sequences on the Chinese Loess Plateau. Aeolian Research 21, 87–91.