2024年-今,中国科学院南京地质古生物研究所,副研究员
2018年-2020年,美国加州大学河滨分校,博士后
2016年-2024年,中国科学院南京地质古生物研究所,助理研究员
2011年-2016年,中国地质大学(北京),博士研究生
2007年-2011年,中国地质大学(北京),本科
古气候-古海洋,重点关注地质历史时期碳-氮-磷循环、黑色页岩成因等,使用沉积地球化学指标与定量模拟重建关键转折期气候-环境变化。2018年至2022年,担任SCI期刊Palaeogeography, Palaeoclimatology, Palaeoecology编委;2021年,担任法国科研署(ANR)Generic Call地球化学项目评审。
2016年,中国地质大学(北京)优秀博士论文
主持:
国家自然科学基金面上项目(2024-2027,52万)
中石油长庆油田资助项目(2023-2024,横向,80万)
国家自然科学基金青年基金项目(2019-2021,26万)
国家重点实验室基础项目(2017-2020,15万)
江苏省自然科学基金青年项目(2017-2020,20万)
参与:
国家重点研发计划“晚奥陶-早志留世全球大规模有机质堆积对地球宜居性的影响”(2024-2028)
中科院先导专项B(XDB10010100, XDB26000000)
国家科技重大专项子课题(2017-2020, 179万)
美国 NASA Astrobiology Institute 团队资助项目(CAN 7,2015-2019)
专辑:
《Palaeogeography, Palaeoclimatology, Palaeoecology》专辑VSI28,“Marine oxygenation, de-oxygenation and life during the Early Paleozoic”,Eds, Junpeng Zhang (责任客座编辑), Timothy W. Lyons, Charles D. Diamond, Cole T. Edwards, Yuandong Zhang
部分论文(*通讯作者):
Zhang, J.*, Li, C., Zhong, Y., Wu, X., Fang, X., Liu, M., Chen, D., Gill, B.C., Algeo, T.J., Lyons, T.W., Zhang, Y. and Tian, H., 2024. Linking carbon cycle perturbations to the Late Ordovician glaciation and mass extinction: A modeling approach. Earth and Planetary Science Letters, 631, p.118635.
Zhang, J.*, Li, W., Fang, X., Wu, X., Li, C. and Zhang, Y., 2024. Marine eutrophication within the Tarim Platform in sync with Middle to Late Ordovician climatic cooling. Journal of the Geological Society, 181, 2, jgs2023-078.
Qie W.*, Zhang J.*, Luo G., Algeo, T.J., Chen B., Xiang L., Liang K., Liu X., Pogge von Strandmann, P.A.E, Chen J. and Wang X.. Enhanced continental weathering as a trigger for the end-Devonian Hangenberg Crisis. Geophysical Research Letters, 50, p.e2022GL102640.
Wu, X., Luo, H., Zhang, J.*, Chen, Q., Fang, X., Wang, W., Li, W., Shi, Z. and Zhang, Y.*, 2023. Volcanism-driven marine eutrophication in the end-Ordovician: Evidence from radiolarians and trace elements of black shale in South China. Journal of Asian Earth Sciences, 253, p.105687.
Zhang, J.*, Li, C., Fang, X., Li, W., Deng, Y., Tu, C., Algeo, T.J., Lyons, T.W. and Zhang, Y., 2022. Progressive expansion of seafloor anoxia in the Middle to Late Ordovician Yangtze Sea: Implications for concurrent decline of invertebrate diversity. Earth and Planetary Science Letters, 598, p.117858.
Zhang, J.*, Lyons, T.W., Li, C., Fang, X., Chen, Q., Botting, J. and Zhang, Y., 2022. What triggered the Late Ordovician mass extinction (LOME)? Perspectives from geobiology and biogeochemical modeling. Global and Planetary Change, 216, p.103917.
张俊鹏*, 李超, 张元动. 早古生代海洋缺氧事件的地质记录与背景机制, 科学通报, 2021, 67(15): 1644-1659.
Zhang, J.*, Edwards, C.T., Diamond, C.W., Lyons, T.W. and Zhang, Y., 2021. Marine oxygenation, deoxygenation, and life during the Early Paleozoic: An overview. Palaeogeography, Palaeoclimatology, Palaeoecology, 584, p.110715.
Li, C., Zhang, J.*, Li, W., Botting, J., Chen, Q., Fan, J. and Zhang, Y., 2021. Multiple glacio-eustatic cycles and associated environmental changes through the Hirnantian (Late Ordovician) in South China. Global and Planetary Change, 207, p.103668.
Fang, X., Li, W., Zhang, J.*, Song, Y. and Zhang, Y., 2020. Paleo-environmental changes during the Middle–Late Ordovician transition on the Yangtze Platform, South China and their ecological implications. Palaeogeography, Palaeoclimatology, Palaeoecology, 560, p.109991.
Li, Y.*, Schieber, J., Fan, T., Li, Z. and Zhang, J.*, 2017. Regional depositional changes and their controls on carbon and sulfur cycling across the Ordovician-Silurian boundary, northwestern Guizhou, South China. Palaeogeography, Palaeoclimatology, Palaeoecology, 485, pp.816-832.
Zhang, J.*, Fan, T., Zhang, Y., Lash, G.G., Li, Y. and Wu, Y., 2017. Heterogenous oceanic redox conditions through the Ediacaran-Cambrian boundary limited the metazoan zonation. Scientific Reports, 7(1), p.8550.
Zhang, J.*, Fan, T., Algeo, T.J., Li, Y. and Zhang, J., 2016. Paleo-marine environments of the early Cambrian Yangtze Platform. Palaeogeography, Palaeoclimatology, Palaeoecology, 443, pp.66-79.
Zhang, J., Fan, T.*, Li, J., Zhang, J., Li, Y., Wu, Y. and Xiong, W., 2015. Characterization of the Lower Cambrian shale in the Northwestern Guizhou province, South China: implications for shale-gas potential. Energy & Fuels, 29(10), pp.6383-6393.