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2011.08-2016.05:美国雪城大学,地质学,博士研究生(导师:陆尊礼)
2007.08-2011.07:中国科学技术大学,地球化学专业,本科(导师:陈福坤)
2016.08-2020.01:美国罗格斯大学,博士后(合作导师:Yair Rosenthal)
2020.04-今:同济大学,副教授
1. 利用冷水珊瑚重建南海深部物质能量循环,2021.12-2026.11,350万,国家重点研发计划青年科学家项目,负责人;
2. 中中新世太平洋深部海水性质与洋流变迁的全球影响,2021.01-2023.12,24万,国家自然科学基金青年科学基金项目,负责人;
3. 用有孔虫微量元素再造晚第三纪西南太平洋海水化学组分,2018.02-2020.01,1.5万美元,美国科学支持项目,负责人;
4. 用有孔虫Na/Ca作为一种新的指标再造新生代海水化学组分,2016.09-2019.08,39万美元,美国国家科学基金会,参加人;
5. 用碳酸钙I/Ca测量早期生命发展时的大气含氧量,2014.08-2018.07,14万美元,美国国家科学基金会,参加人;
6. 用有孔虫中的碘作为指标研究古新世-始新世极热事件中的海水脱氧情况,2012.09-2016.08,25万美元,美国国家科学基金会,参加人;
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg1. 海洋热量和碳循环演变及其气候效应,2023.12-2027.11,200万,上海市科委基础研究特区计划,核心成员;
2. 利用冷水珊瑚重建南海深部物质能量循环,2021.12-2026.11,350万,国家重点研发计划青年科学家项目,负责人;
3. 中中新世太平洋深部海水性质与洋流变迁的全球影响,2021.01-2023.12,24万,国家自然科学基金青年科学基金项目,负责人;
4. 用有孔虫微量元素再造晚第三纪西南太平洋海水化学组分,2018.02-2020.01,1.5万美元,美国科学支持项目,负责人;
5. 用有孔虫Na/Ca作为一种新的指标再造新生代海水化学组分,2016.09-2019.08,39万美元,美国国家科学基金会,核心成员;
6. 用碳酸钙I/Ca测量早期生命发展时的大气含氧量,2014.08-2018.07,14万美元,美国国家科学基金会,核心成员;
7. 用有孔虫中的碘作为指标研究古新世-始新世极热事件中的海水脱氧情况,2012.09-2016.08,25万美元,美国国家科学基金会,核心成员
惠鑫如*,周晓理,翦知湣,等. (2025). 南海中部上层水冷水竹节珊瑚的年龄模式和生长速率[J]. 第四纪研究,45(2):526-534. DOI: 10.11928/j.issn.1001-7410.2025.02.16
2024:
Zhou, X., Wang, H., Zhu, Y.*, Wang, Y., Watling, L., Jian, Z., & Qiao, P. (2024). Core-top calibrations for element-to-calcium proxies of seawater properties in bamboo corals (Keratoisididae) from the South China Sea. Geochemistry, Geophysics, Geosystems, 25, e2024GC011677. https://doi.org/10.1029/2024GC011677
Wang, H., X. Zhou, H. Dang, L. Watling, and Z. Jian, 2024, Radiocarbon-based ages and growth rates of cold-water bamboo corals in the South China Sea, Deep-Sea Research Part I, 208, 104323.
2023:
Hess, A. V., A. Auderset, Y. Rosenthal, K. Miller, and X. Zhou, 2023, A well-oxygenated eastern tropical Pacific during the warm Miocene, Nature, DOI:10.1038/s41586-023-06104-6
Jian, Z., H. Dang, J. Yu, Q. Wu, X. Gong, C Stepanek, C. Colin, L. Hu, G. Lohmann, X. Zhou, S. Wan, 2023, Changes in deep Pacific circulation and carbon storage during the Pliocene-Pleistocene transition, Earth and Planetary Science Letters, 605, 118020.
卜鸣渊, 曾治惟, 易亮, 周晓理, 党皓文, 翦知湣, 冷水柳珊瑚骨骼化石重建的早全新世南海中层水十年际变化[J]. 第四纪研究, 2023,43(1): 74-82.
2022:
Zhou, X., A. V. Hess, K. Bu, T. Sagawa, and Y. Rosenthal, 2022, Simultaneous determination of I/Ca and other elemental ratios in foraminifera: Comparing results from acidic and basic solutions, Geochemistry, Geophysics, Geosystems, 23, e2022GC010660. https://doi.org/10.1029/2022GC010660
Rosenthal, Y., S. Bova, and X. Zhou, 2022, A User Guide for Choosing Planktic Foraminiferal Mg/Ca-Temperature Calibrations, Paleoceanography and Paleoclimatology, 37 (6), DOI:
10.1029/2022PA004413
2021:
Zhou, X., Y. Rosenthal, L. Haynes, S. Woodard, K. A. Allen, W. Si, D. Evans, S. Sosdian, C. H. Lear, B. Hönisch, and J. Ere, 2021, Planktic foraminiferal Na/Ca: a potential proxy for seawater calcium concentration, Geochimicaet Cosmochimica Acta, 305, 306-322.
Stirpe C. R., K. A. Allen, E. L. Sikes, X. Zhou, Y. Rosenthal, A. M. Cruz-Uribe, and H. L. Brooks, 2021, The Mg/Ca proxy for temperature: A Uvigerina Core-Top Study in the Southwest Pacific, Geochimicaet Cosmochimica Acta, 309, 299-312.
Yang, C., H. Dang, X. Zhou, H. Zhang, X. Wang, Y. Wang, P. Qiao, X. Jiang, and Z. Jian, 2021, Upper ocean hydrographic changes in response to the evolution of the East Asian monsoon in the northern South China Sea during the middle to late Miocene, Global and Planetary Change, 201,103478.
2020:
Lu, W., R. E. M. Rickaby, B. A. A. Hoogakker, A. E. Rathburn, A. M. Burkett, A. J. Dickson, G. Martínez-Méndez, C. Hillenbrand, X. Zhou, E. Thomas, and Z. Lu, 2020, I/Ca in epifaunal benthic foraminifera: a semi-quantitative proxy for bottom water oxygen in a multi-proxy compilation for glacial ocean deoxygenation, Earth and Planetary Science Letters, 533, 116055, https://doi.org/10.1016/j.epsl.2019.116055.
Sutherland, R., G.R. Dickens, P. Blum, C. Agnini, L. Alegret, G. Asatryan, J. Bhattacharya, A. Bordenave, L. Chang, J. Collot, M. J. Cramwinckel, E. Dallanave, M. K. Drake, S. J. G. Etienne, M. Giorgioni, M. Gurnis, D.T. Harper, H.-H.M.Huang, A.L. Keller, A.R. Lam, H. Li, H. Matsui, H. E. G. Morgans, C. Newsam, Y.-H. Park, K. M. Pascher, S. F. Pekar, D.E. Penman, S. Saito, W.R. Stratford, T. Westerhold, and X. Zhou, 2020, Continental-scale geographic change across Zealandia during Paleogene subduction initiation, Geology, 48,419-424. https://doi.org/10.1130/G47008.1.
2018:
Sutherland, R., Dickens, G.R., Blum, P., and the Expedition 371 Scientists, 2018. Expedition 371 Preliminary Report: Tasman Frontier Subduction Initiation and Paleogene Climate. International Ocean Discovery Program. https://doi.org/10.14379/iodp.pr.371.2018.
Hoogakker, B. A. A., Z. Lu, N. Umling, L. Jones, X. Zhou, R. E. M. Rickaby, R. Thunell, O. Cartapanis, and E. Galbraith, Glacial expansion of oxygen-depleted seawater in the eastern tropical Pacific, 2018, Nature,562, 410-413, https://doi.org/10.1038/s41586-018-0589-x.
Lu, W., A. Ridgwell, E. Thomas, D. S. Hardisty, G. Luo, T. J. Algeo, M. R. Saltzman, B. C. Gill, Y. Shen, H-F, Ling, C. T. Edwards, M. T. Whalen, X. Zhou, K. M. Gutchess, L. Jin, R. E. M. Rickaby, H. C. Jenkyns, T. W. Lyons, T. M. Lenton, L. R. Kump, and Z. Lu, 2018, Late inception of a resiliently oxygenated upper ocean, Science, DOI: 10.1126/science.aar5372.
2017:
Zhou, X., H. C. Jenkyns, W. Lu, D. S. Hardisty, J. D. Owens, T. W. Lyons, and Z. Lu, 2017, Organically bound iodine as a bottom-water redox proxy: Preliminary validation and application, Chemical Geology, 457, 95-106, doi:10.1016/j.chemgeo.2017.03.016.
Grunert, P., Y. Rosenthal, F. Jorissen, A. Holbourn, X. Zhou, and W. E. Piller, 2017, Mg/Ca-temperature calibration for costate Bulimina species (B. costata, B. inflata, B. mexicana): A paleothermometer for hypoxic environments, Geochimica et Cosmochimica Acta, 220, 36-54,doi:10.1016/j.gca.2017.09.021.
Hardisty, D. S., Z. Lu, A. Bekker, C.W. Diamond, B. C. Gill, G. Jiang, L. C. Kah, A. H. Knoll, S. J. Loyd, M. R. Osburn, N. J. Planavsky, C. Wang, X. Zhou, and T. W. Lyons, 2017, Perspectives on Proterozoic surface ocean redox from iodine contents in ancient and recent carbonate, EPSL, 463, 159-170, doi:10.1016/j.epsl.2017.01.032.
Lu, W., S. Wörndle, G. P. Halverson, X. Zhou, A. Bekker, R. H. Rainbird, D. S. Hardisty, T. W. Lyons, and Z. Lu, 2017, Iodine proxy evidence for increased ocean oxygenation during the Bitter Springs Anomaly, Geochemical Perspectives Letters, 5, 53-57, doi: 10.7185/geochemlet.1746.
Levy, Z., C. T. Mills, Z. Lu, M. B. Goldhaber, D. O. Rosenberry, D. M. Mushet,L. K. Lautz, X. Zhou, and D. I. Siegel, 2017, Using halogens (Cl, Br, I) to understand the hydrogeochemical evolution of drought-derived saline porewater beneath a prairie wetland, Chemical Geology, 476, 191-207, https://doi.org/10.1016/j.chemgeo.2017.11.017.
2016:
Zhou, X., E. Thomas, A. M. E. Winguth, A. Ridgewell, H. Scher, B. A. A. Hoogakker, R. E. M. Rickaby, and Z. Lu, 2016, Expanded oxygen minimum zones during the late Paleocene-early Eocene: Hints from multiproxy comparison and ocean modeling, Paleoceanography, 31, 1532-1546, doi:10.1002/2016PA003020.
Gutchess, K. M., L. Jin, L. Lautz, S. B. Shaw, X. Zhou, and Z. Lu, 2016, Chloride sources in urban and rural headwater catchments, central New York, Science of the Total Environment, 565, 462-472, doi:10.1016/j.scitotenv.2016.04.181.
Lu, Z., B. A. A. Hoogakker, C. Hillenbrand, X. Zhou, E. Thomas, K. M. Gutchess, W. Lu, L. Jones, and R. E. M. Rickaby, 2016, Oxygen depletion recorded in upper waters of the glacial Southern Ocean, Nature Communications, 7,doi:10.1038/ncomms11146.
2015:
Zhou, X., H. C. Jenkyns, J. D. Owens, C. K. Junium, X. Zheng, B. B. Sageman, D. S. Hardisty, T. W. Lyons, A. Ridgewell, and Z. Lu, 2015, Upper ocean oxygenation dynamics from I/Ca ratios during the Cenomanian–Turonian OAE 2, Paleoceanography,30, 510-526, doi:10.1002/2014PA002741.
Zhou, X., Z. Lu, R. E. M. Rickaby, E.W. Domack, J. S. Wellner, and H. A. Kennedy, 2015, Ikaite abundance controlled by porewater phosphorus level: potential links to dust and productivity, Journal of Geology, 123, 269-281, DOI:10.1086/681918.
Lu, Z., S. T. Hummel, L. K. Lautz, G. D. Hoke, X. Zhou, J. Leone and D. I. Siegel, 2015, Iodine as a sensitive tracer for detecting influence of organic-rich shale in shallow groundwater, Applied Geochemistry,doi:10.1016/j.apgeochem.2014.10.019.
2014:
Zhou, X., E. Thomas, R. E. M. Rickaby, A. M. E. Winguth, and Z. Lu, 2014, I/Ca evidence for upper ocean deoxygenation during the Paleocene-Eocene Thermal Maximum (PETM), Paleoceanography, 29,964-975, DOI: 10.1002/2014PA002702.
Hardisty, D. S., Z. Lu, N. J. Planavsky, A. Bekker, X. Zhou, P. Philippot, and T. W. Lyons, 2014, An iodine record of Paleoproterozoic surface ocean oxygenation, Geology, 42, 619-622, doi: 10.1130/G35439.1.

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