李 超
(2021-04-15)
简介
李超,男,1974年出生,博士,中国地质大学(武汉)教授,博士生导师,生物地质与环境地质国家重点实验室副主任。2011年入选教育部新世纪优秀人才支持计划,是国务院政府特殊津贴专家(2016)。2018年获得国家基金委杰出青年科学基金资助,2019年入选国家“万人计划”科技创新领军人才。2014年获中国矿物岩石地球化学学会“侯德封奖”。2018获教育部高等学校科学研究优秀成果奖-自然科学一等奖(排名第3)。
联系方式:
电话:027-67883606
传真:027-67883456
电子邮件:chaoli@cug.edu.cn or ucrchaoli@gmail.com
通讯地址:湖北省武汉市东湖高新区锦程街68号,邮编430078;中国地质大学(武汉)生物地质与环境地质国家重点实验室
教育经历:
1. 1992/09-1996/06,中国地质大学(武汉)地球科学学院,获地球化学学士学位
2. 1996/09-2001/12,中国科学院广州地球化学研究所,获地球化学博士学位(硕博连读)
职业经历:
1. 2002/01-2003/12,中国科学院广州地球化学研究所,助理研究员
2. 2004/01-2006/08,中国科学院广州地球化学研究所,副研究员
3. 2004/09-2007/03,美国加州理工学院地球与行星科学系,地球生物学博士后学者
4. 2007/04-2009/06,美国加州大学河边分校地球科学系,Assistant Research Specialist
5. 2009/07-2011/03,美国加州大学河边分校地球科学系,Associate Research Specialist
6. 2011/04-现在,中国地质大学(武汉)生物地质与环境地质国家重点实验室,教授、博士生导师
职业服务:
1. 《Science Bulletin》特邀编委 (2021-今)
2. 《Geochimica et Cosmochimica Acta》编委(2019-今)
3. 《Palaeogeography Palaeoclimatology Palaeoecology》编委(2018-今)
4. 《中国科学:地球科学》中英文版编委 (2013-今)
5. 《地质学报》英文版编委 (2018-今)
6. 《地球科学》中英文版编委 (2012-今)
7. 《地球化学》编委(2018-今)
8. 中国地质学会同位素专业委员会第七届委员、中国海洋湖沼学会微生物海洋学专业委员会理事
9. 国家自然科学基金委、科技部、教育部科学与人才项目函评或会评专家
10. AGU、Goldschmidt、CGU等>10个国际国内会议组织人或专题召集人(近5年)
所属职业协会:
1. 中国矿物岩石地球化学学会
2. 中国地质学会会员
3. International Geochemical Society
4. International Association of Sedimentologists
5. American Geophysical Union
学生培养
1. 毕业博士(毕业年份):常标(2020; 校优),王海洋 (2020),李娜(2020),石炜(2020;2018年博士国奖),张子虎(2018),雷丽丹 (2017),金承胜 (2017;校优), 程猛 (2016;校优)
2. 在读博士(入学年份):王威(2019),胡军(在职,2015)
3. 毕业硕士(毕业年份):王威(2019),王海洋(2017;校优;2015年硕士国奖), 李娜(2017),唐士达(2016),石炜(2016),崔豪(2014),金承胜(2014;校优、省优),张子虎(2014)
4. 在读硕士(入学年份):谷昊东(2019),孙思远(2019),黄开旗(2020-09),方杰(2020-09)
5. 毕业本科生培养和毕业设计(毕业年份):王添翼(2020),黄开旗(2020,校优),孙月彤(2020,校优),王霈(2020),方杰(2020),李保(2019),王威(2017),梁鸣(2017),李永杰(2017),徐良胖(2016),利振斌(2016),石雨洁(2016),赵文彬(2016),李娜(2015),石炜(2014),王海洋(2014;省优),张子虎(2012)
6. 在读本科生培养和毕业设计(入学年级): 张海洋(2017),熊浩(2018),王宗傲(2018),王贲(2018)
研究兴趣、手段与代表性成果:
致力于地球古代-现代海洋生物地球化学过程与机制研究(海洋生物地球化学、地球生物学)。研究手段侧重于铁-硫-碳化学、微量元素、碳酸盐相关地球化学指标和有机地球化学等多元现代地球化学方法与手段的综合应用。近10年来,在早期地球海洋,特别是元古代-寒武纪早期海洋化学空间结构、海洋化学演化与复杂生命协同演化、分层海洋环境下一些关键生命元素的生物地球化学循环和古海洋碳酸盐地球化学等方面取得创新成果(前寒武纪地球生物学)。1、发现了早期海洋化学空间差异和动态演化的基本特征,提出了“硫化楔”及多层古海洋化学空间结构模型和氧化剂对近岸区域水化学控制假说;2、发现了古海洋表层氧化海水的动态扩张及其与早期动物时空演化之间的时空耦合关系,提出了早期动物辐射与陆架表层氧化海水动态扩张有关的新协同演化假说;3、提出了分层海洋环境下包含溶解有机碳过程的碳生物地球化学循环新模型和以不同水化学层间相互作用为特征的钼生物地球化学循环新模型,揭示了早期海洋元素循环独有的空间特征。4、发现了早期海洋大规模白云岩的早期成岩形成机制,为困扰地学界百年的“白云石之谜”的回答提供了新的解决思路,也为碳酸盐指标用于地表环境记录的合理性和科学性提供了理论基础。5、研发了碳酸盐晶格磷酸盐(CAP)技术用于直接重建古海洋磷酸盐含量,为地质历史时期古海洋P循环及其在环境与生命协同演化中的角色研究奠定基础。这些研究成果深化和促进了我们对于早期地球环境及其与生命之间的协同演化关系。研究成果以第一作者/通讯作者身份发表在《Science》、《PNAS》、《Geology》、《EPSL》、《GCA》等国际重要学术刊物上。研究成果被Science正面评述为“阐明了新元古代海洋-大气化学演化与早期动物演化的关键连接”。发表论文(包括论著)90篇章,其中SCI论文73篇;第一和/或通讯作者SCI论文45篇,其中Nature Index期刊论文13篇:Science 1篇、PNAS 1篇、Geology 2篇、EPSL 2篇、GCA 7篇。7篇论文入选ESI Top1%高被引论文,SCI他引2500余次(截止202104)。
研究项目
1. 国家万人计划科技创新领军人才项目,2019/02-2022/01, 80万元,主持。
2. 国家自然科学基金委员会杰出青年基金项目“地球生物学”(批准号:41825019),2019/01-2023/12,400万元,主持。
3. 国家自然科学基金委员会创新研究群体项目“地球生物学”(批准号:41821001),2019/01-2024/12,个人经费200万元,排名第3。
4. 国家自然科学基金委员会与英国自然环境研究理事会合作研究项目“元古宙-显生宙转折期地球系统的剧烈波动与生物圈恢复力”(批准号:4161101250),2017/01-2020/12,个人经费70万元, 排名第3。
5. 科技部国家重大科学研究计划课题“古海洋MCP 储碳的生物地球化学过程机制及MCP 定量模型预测”(批准号:2013CB955704),2013/01-2017/08, 569万元,主持。
6. 国家自然科学基金委员会面上项目“华南寒武纪海洋化学的时空二维演化及其对早期动物演化的影响”(批准号:41172030),2012/01-2015/12,85万元,主持。
7. 教育部新世纪优秀人才支持计划“华北燕山盆地早中元古代古海洋化学时空演化及其对早期真核生命演化的影响”(批准号:NCET-11-0724),2012/01-2014/12,50万元,主持。
8. NASA Astrobiology Institute“Stoichiometry of Life – Task 3a – Ancient Geologic Records (PI: Ariel Anbar)”(批准号:NNX07AU15G),2009/03-2011/02,$180,000,骨干参与。
9. 美国国家科学基金委“Collaborative Research: Biogeochemistry of Neoproterozoic Snowball Earth and its Aftermath in South China (PI: Gordon Love)”(批准号:EAR-0720362),2007/09-2010/08,$254,588,骨干参与。
10. 美国国家科学基金委“Collaborative research: Biogeochemistry of Snowball Earth (PI: Alex Sessions)”(批准号:EAR-0418770),2004/09-2006/11,$74,263,骨干参与。
11. 美国国家科学基金委“Collaborative Research: Hydrogen Isotope Biogeochemistry of Anoxic Environments - Field and Laboratory Studies (PI: Alex Sessions)”(批准号:EAR-0311824),2003/08-2006/07,$299,743,骨干参与。
12. 国家自然科学基金委员会青年项目“中国中新元古代全时代沉积物分子有机地球化学研究”,2003/01-2005/12,25万元,主持。
学术论文/教材章节发表 (*为通讯作者):
1. Matthew S. Dodd, Zihu Zhang, Chao Li*, Thomas J. Algeo, Timothy W. Lyons, Dalton S. Hardisty, Sean J. Loyd, David L. Meyer, Benjamin C. Gill, Wei Shi, Wei Wang. Development of carbonate-1 associated phosphate (CAP) as a proxy for reconstructing ancient ocean phosphate levels. Geochimica et Cosmochimica Acta, 2021, 301: 48-69.
2. Chengsheng Jin, Chao Li*, Thomas J. Algeo, Guochang Wang, Wei Shi, Meng Cheng, Zihu Zhang, Haiyang Wang, Na Li and Wei Wang. Spatial heterogeneity of redox-sensitive trace metal enrichments in upper Ediacaran anoxic black shales. Journal of the Geological Society, 2021, in press, DOI: 10.1144/jgs2020-234.
3. Akshay Mehra, Brenhin Keller, Tianran Zhang, Nicholas J. Tosca, Scott M. McLennan, Erik Sperling, Una Farrell, Jochen Brocks, Donald Canfield, Devon Cole, Peter Crockford, Huan Cui, Tais W. Dahl, Keith Dewing, Joe Emmings, Robert R. Gaines, Tim Gibson, Geoffrey J. Gilleaudeau, Romain Guilbaud, Malcolm Hodgkiss, Amber Jarrett, Pavel Kabanov, Marcus Kunzmann, Chao Li, David K. Loydell, Xinze Lu, Austin Miller, N. Tanner Mills, Lucas D. Mouro, Brennan O’Connell, Shanan E. Peters, Simon Poulton, Samantha R. Ritzer, Emmy Smith, Philip Wilby, Christina Woltz, Justin V. Strauss. Curation and analysis of global sedimentary geochemical data to inform Earth history. GSA Today, 2021, 31, in press, DOI: 10.1130/GSATG484A.1.
4. Paul Bridger, Simon W. Poulton, Ying Zhou, Chao Li, Kun Zhang, Graham A. Shields. The Ediacaran ‘Miaohe Member’ of South China: new insights from paleoredox proxies and stable isotope data. Geological Magazine, 2021, in press, DOI: 10.1017/S0016756821000261.
5. Guangyou Zhu, Tingting Li, Kun Zhao, Chao Li, Meng Cheng, Weiyan Chen, Huihui Yan, Zhiyao Zhang, and Thomas J. Algeo. Mo isotope records from Lower Cambrian black shales, northwestern Tarim Basin (China): Implications for the early Cambrian ocean. GSA Bulletin, 2021, in press, DOI: 10.1130/B35726.1.
6. Haiyang Wang, Aoran Liu, Chao Li*, Qinglai Feng, Shida Tang, Meng Cheng, Thomas J. Algeo. A benthic oxygen oasis in the early Neoproterozoic ocean. Precambrian Research, 2021, 355: 106085.
7. Chao Li*, Maoyan Zhu, Qinglai Feng, Sébastien Clausen. Editorial: The co-evolution of life and environments in South China from Snowball Earth to Cambrian Explosion. Palaeogeography, Palaeoclimatology, Palaeoecology, 2021, 563:110181.
8. Na Li, Chao Li*, Thomas J. Algeo, Meng Cheng, Chengsheng Jin, Guangyou Zhu, Junxuan Fan, Zongyuan Sun. Redox changes in the outer Yangtze Sea (South China) through the Hirnantian Glaciation and their implications for the end-Ordovician biocrisis. Earth-Science Reviews, 2021, 212: 103443, DOI: 10.1016/j.earscirev.2020.103443.
9. 谷昊东,胡军*,安志辉,叶琴,孙思远,张志麒,李超*. 神农架陡山沱组沉积特征及其对“鄂西海槽”的启示. 地球科学,2020, in press.
10. Jun Hu, Chao Li*, Jinnan Tong*, Qin Ye, Li Tian, Zhihui An, Matthew S. Dodd, Thomas J. Algeo. Glacial origin of the Cryogenian Nantuo Formation in eastern Shennongjia area (South China): implications for macroalgal survival. Precambrian Research, 2020, 351:105969. DOI:10.1016/j.precamres.2020.105969.
11. Chao Li*, Wei Shi, Meng Cheng, Chengsheng Jin, Thomas J. Algeo. The redox structure of Ediacaran and early Cambrian oceans and its controls. Science Bulletin, 2020, 65(24):2141-2149, DOI: 10.1016/j.scib.2020.09.023.
12. Majed Algabri, Zhenbing She, Liangxuan Jiao, Dominic Papineau, Guoqing Wang, Chao Zhang, Dongjie Tang, Guang Ouyang, Yaguan Zhang, Guoyong Chen, Chao Li. Apatite-glaucony association in the Ediacaran Doushantuo Formation, South China and implications for marine redox conditions. Precambrian Research, 2020, 347:105842.
13. Biao Chang, Chao Li*, Deng Liu, Ian Foster, Aradhna Tripati, Max K. Lloyd, Ingrid Maradiaga, Genming Luo, Zhihui An, Zhenbing She, Shucheng Xie, Jinnan Tong, Junhua Huang*, Thomas J. Algeo, Timothy W. Lyons, Adrian Immenhauser. Massive formation of early diagenetic dolomite in the Ediacaran ocean: Constraints on the “dolomite problem.” Proceedings of the National Academy of Sciences of USA, 2020, 117(25): 14005-14014, DOI: 10.1073/pnas.1916673117.
14. Yu Liu, Chao Li, Junxuan Fan, Ping'an Peng, Thomas J. Algeo. Elevated marine productivity triggered nitrogen limitation on the Yangtze Platform (South China) during the Ordovician-Silurian transition. Palaeogeography, Palaeoclimatology, Palaeoecology, 2020, 554:109833, DOI: 10.1016/j.palaeo.2020.109833.
15. Chao Li*, Zihu Zhang, Chengsheng Jin, Meng Cheng, Haiyang Wang, Junhua Huang, Thomas J. Algeo. Spatiotemporal evolution and causes of marine euxinia in the early Cambrian Nanhua Basin (South China). Palaeogeography, Palaeoclimatology, Palaeoecology, 2020, 546: 109676, DOI: 10.1016/j.palaeo.2020.109676.
16. Thomas J. Algeo, Chao Li. Redox classification and calibration of redox thresholds in sedimentary systems. Geochimica et Cosmochimica Acta, 2020, 287:8-26. DOI: 10.1016/j.gca.2020.01.055. (SCI高被引论文+热点论文;2021/03-今)
17. Chengsheng Jin, Chao Li*, Thomas J. Algeo, Shiyong Wu, Meng Cheng, Zihu Zhang, Wei Shi. Controls on organic matter accumulation on the early-Cambrian western Yangtze Platform, South China. Marine and Petroleum Geology, 2020, 111:75-87. (SCI高被引论文;2021/03-今)
18. Meng Cheng, Chao Li*, Chengsheng Jin, Haiyang Wang, Thomas J. Algeo, Timothy W. Lyons, Feifei Zhang, Ariel Anbar. Evidence for high organic carbon export to the early Cambrian seafloor. Geochimica et Cosmochimica Acta, 2020, 287:125-140. DOI: 10.1016/j.gca.2020.01.050.
19. Haiyang Wang, Zihu Zhang, Chao Li*, Thomas J. Algeo, Meng Cheng, Wei Wang. Spatiotemporal redox heterogeneity and transient marine shelf oxygenation in the Mesoproterozoic ocean. Geochimica et Cosmochimica Acta, 2020, 270: 201-217. DOI: 10.1016/j.gca.2019.11.028.
20. Biao Chang, William F. Defliese, Chao Li*, Junhua Huang*, Aradhna Tripati, Thomas J. Algeo. Effects of different constants and standards on the reproducibility of carbonate clumped isotope (Δ47) measurements: Insights from a long-term dataset. Rapid Communications in Mass Spectrometry, 2020, 34(8): e8678. DOI: 10.1002/rcm.8678.
21. Guang Ouyang, Zhenbing She*, Dominic Papineau*, Xiangfa Wang, Genming Luo, Chao Li. Dynamic carbon and sulfur cycling in the aftermath of the Lomagundi-Jatuli Event: Evidence from the Paleoproterozoic Hutuo Supergroup, North China Craton. Precambrian Research, 2020, 337:105549. DOI: 10.1016/j.precamres.2019.105549.
22. Na Li, Chao Li*, Junxuan Fan, Thomas J. Algeo, Detian Yan, Guangyou Zhu, Shiyong Wu, Shida Tang, Meng Cheng, Chengsheng Jin. Sulfate-controlled marine euxinia in the semi-restricted inner Yangtze Sea (South China) during the Ordovician-Silurian transition. Palaeogeography, Palaeoclimatology, Palaeoecology, 2019, 534: 109281, DOI: 10.1016/j.palaeo.2019.109281.
23. Feifei Zhang, Shuhai Xiao, Stephen J. Romaniello, Dalton Hardisty, Chao Li, Victor Melezhik, Boris Pokrovsky, Meng Cheng, Wei Shi, Timothy M. Lenton, Ariel D. Anbar. Global marine redox changes drove the rise and fall of the Ediacara Biota. Geobiology, 2019, 17(6):594-610. DOI: 10.1111/gbi.12359
24. Zhengyi Lyu, Lei Zhang, Thomas J. Algeo, Laishi Zhao, Zhong-Qiang Chen, Chao Li, Biao Ma, Feihong Ye. Global-ocean circulation changes during the Smithian–Spathian transition inferred from carbon-sulfur cycle records. Earth-Science Reviews, 2019, 195: 114-132.
25. Wei Shi, Chao Li*, Genming Luo, Junhua Huang, Thomas J. Algeo, Chengsheng Jin, Zihu Zhang, and Meng Cheng. Sulfur isotope evidence for transient marine-shelf oxidation during the Ediacaran Shuram Excursion. Geology, 2018, 46(3):267-270. DOI:10.1130/G39663.1.
26. Chao Li*, Meng Cheng, Maoyan Zhu and Timothy W. Lyons. Heterogeneous and dynamic marine shelf oxygenation and coupled early animal evolution. Emerging Topics in Life Sciences, 2018, 2(2):279-288.
27. Zihu Zhang, Chao Li*, Meng Cheng, Thomas J. Algeo, Chengsheng Jin, Feng Tang, Junhua Huang. Evidence for highly complex redox conditions and strong water-column stratification in an early Cambrian continental-margin sea. Geochemistry, Geophysics, Geosystems, 2018, 19: 2397–2410.
28. Changshi Qi*, Chao Li*, Sarah E. Gabbott, Xiaoya Ma, Luhua Xie, Wenfeng Deng, Chengsheng Jin, Xian-Guang Hou. Influence of redox conditions on animal distribution and soft-bodied fossil preservation of the Lower Cambrian Chengjiang Biota. Palaeogeography, Palaeoclimatology, Palaeoecology, 2018, 507: 180-187.
29. Meng Cheng, Chao Li*, Xi Chen, Lian Zhou, Thomas J. Algeo, Hong-Fei Ling, Lian-Jun Feng, Cheng-Sheng Jin. Delayed Neoproterozoic oceanic oxygenation: Evidence from Mo isotopes of the Cryogenian Datangpo Formation. Precambrian Research, 2018, 319:187-197, DOI: 10.1016/j.precamres.2017.12.007.
30. Jin Chengsheng, Chao Li*, Thomas J. Algeo, Brennan O'Connell, Meng Cheng, Wei Shi, Jun Shen, Noah J. Planavsky. Highly heterogeneous “poikiloredox” conditions in the early Ediacaran Yangtze Sea. Precambrian Research, 2018, 31, 157-166.
31. Nianzhi Jiao*, Yantao Liang, Yongyu Zhang, Jihua Liu, Yao Zhang, Rui Zhang, Meixun Zhao, Minhan Dai, Weidong Zhai, Kunshan Gao, Jinming Song, Dongliang Yuan, Chao Li, Guanghui Lin, Xiaoping Huang, Hongqiang Yan, Limin Hu, Zenghu Zhang, Long Wang, Chunjie Cao, Yawei Luo, Tingwei Luo, Nannan Wang, Hongyue Dang, Dongxiao Wang, Si Zhang. Carbon pools and fluxes in the China Seas and adjacent oceans. Science China Earth Science, 2018, 61(11): 1535-1563, DOI: 10.1007/s11430-018-9190-x.
32. Nianzhi Jiao Ruanhong Cai, Qiang Zheng, Kai Tang, Jihua Liu, Fanglue Jiao, Douglas Wallace, Feng Chen, Chao Li, Rudolf Amann, Ronald Benner and Farooq Azam. Unveiling the enigma of refractory carbon in the ocean. National Science Review, 2018, 5(4): 459-463. doi: 10.1093/nsr/nwy020.
33. 王威,王海洋,李超. “富氧海洋”的今生前世. 科学,2018,70(2): 43-46.
34. Wei Shi, Chao Li*, Thomas J. Algeo. Quantitative model evaluation of dissolved organic carbon oxidation hypotheses for the Ediacaran Shuram carbon isotopic negative excursion event. Science China Earth Science, 2017, 60:2118-2127, DOI: 10.1007/s11430-017-9137-1.
35. Chao Li*, Chengsheng Jin, Noah J. Planavsky, Thomas J. Algeo, Meng Cheng, Xinglian Yang, Yuanlong Zhao, Shucheng Xie. Coupled oceanic oxygenation and metazoan diversification during the early–middle Cambrian? Geology, 2017, 45: 743-746. DOI:10.1130/G39208.1.
36. Meng Cheng, Chao Li*, Lian Zhou, LianJun Feng, Thomas J. Algeo, FeiFei Zhang, Stephen Romaniello, ChengSheng Jin, HongFei Ling, ShaoYong Jiang. Transient deep-water oxygenation in the early Cambrian Nanhua Basin, South China. Geochimica et Cosmochimica Acta, 2017, 210: 42-58.
37. Xinze Lu*, Brian Kendall*, Holly J. Stein, Chao Li*, Judith L. Hannah, Gwyneth W. Gordon, Jan Ove R. Ebbestad. Marine redox conditions during deposition of Late Ordovician and Early Silurian organic-rich mudrocks in the Siljan ring district, central Sweden. Chemical Geology, 2017, 457:75-94. DOI: 10.1016/j.chemgeo.2017.03.015.
38. Li-Dan Lei, Jun Shen, Chao Li*, Thomas J. Algeoa, Zhong-Qiang Chen, Qing-Lai Feng, Meng Cheng, Cheng-Sheng Jin, Jun-Hua Huang*. Controls on regional marine redox evolution during Permian-Triassic transition in South China. Palaeogeography, Palaeoclimatology, Palaeoecology, 2017, 486: 17-32. DOI: 10.1016/j.palaeo.2017.02.010.
39. Chao Li*, Dalton Hardisty, Genming Luo, Junhua Huang, Thomas Algeo, Meng Cheng, Wei Shi, Zhihui An, Jinnan Tong, Shucheng Xie, Nianzhi Jiao, Timothy W. Lyons. Uncovering the spatial heterogeneity of Ediacaran carbon cycling. Geobiology, 2017, 15:211-224. (SCI高被引论文2018-2019)
40. Chengsheng Jin, Chao Li*, Thomas Algeo, Meng Cheng, Lidan Lei, Zihu Zhang, Wei Shi. Evidence for marine redox control on spatial colonization of early animals during Cambrian Age 3 (c. 521–514 Ma) in South China. Geological Magazine, 2017, 154(6): 1360-1370. DOI :10.1017/S0016756816001138.
41. Chao Li*, Maoyan Zhu, Xuelei Chu. Atmospheric and Oceanic Oxygenation and evolution of early life on Earth: New contributions from China. Journal of Earth Science, 2016, 27(2): 167-169.
42. Meng Cheng, Chao Li*, Lian Zhou, Thomas J. Algeo, Feifei Zhang, Stephen Romaniello, Cheng-Sheng Jin, Li-Dan Lei, Lian-Jun Feng, Shao-Yong Jiang. Marine Mo biogeochemistry in the context of dynamically euxinic mid-depth waters: A case study of the lower Cambrian Niutitang shales, South China. Geochimica et Cosmochimica Acta, 2016, 183:79-93.
43. Chengsheng Jin, Chao Li*, Thomas J. Algeo, Noah J. Planavsky, Hao Cui, Xinglian Yang, Yuanlong Zhao, Xingliang Zhang, Shucheng Xie. A highly redox-heterogeneous ocean in South China during the early Cambrian (~529-514 Ma): Implications for biota-environment co-evolution. Earth and Planetary Science Letters, 2016, 441:38-51. (SCI高被引论文2016-2019, 2020-今)
44. Yu Liu, Chao Li*, Thomas J. Algeo, Junxuan Fan, Ping'an Peng. Global and regional controls on marine redox changes across the Ordovician-Silurian boundary in South China. Palaeogeography, Palaeoclimatology, Palaeoecology, 2016, 463:180-191.
45. Jun Shen*, Qinglai Feng, Thomas J. Algeo∗, Chao Li, Noah J. Planavsky, Lian Zhou, Mingliang Zhang. Two pulses of oceanic environmental disturbance during the Permian–Triassic boundary crisis. Earth and Planetary Science Letters, 2016, 443: 139-152.
46. Zhen-Bing She, Yan-Tao Zhang, Wei Liu, Jingjing Song, Yaguan Zhang, Chao Li, Paul Strother, Dominic Papineau. New observations of Ambient Inclusion Trails (AITs) and pyrite framboids in the Ediacaran Doushantuo Formation, South China. Palaeogeography Palaeoclimatology Palaeoecology, 2016, 461: 374-388.
47. Zhenbing She*, Fanyan Yang, Wei Liu, Luhua Xie, Yusheng Wan, Chao Li, Dominic Papineau. The Termination and Aftermath of the Lomagundi-Jatuli Carbon Isotope Excursions in the Paleoproterozoic Hutuo Group, North China. Journal of Earth Science, 2016, 27(2): 297-316.
48. 李超、王家生、罗根明. 化学地层学. 地层学基础与前沿(中国地质大学出版社), 2016, 教材,pp218-245.
49. 焦念志,李超,王晓雪. 海洋碳汇对气候变化的响应与反馈. 地球科学进展, 2016,31(7) : 668-681.
50. Chao Li*, Noah J. Planavsky, Wei Shi, Zihu Zhang, Chuanming Zhou, Meng Cheng, Lidya G. Tarhan, Genming Luo, Shucheng Xie. Ediacaran Marine Redox Heterogeneity and Early Animal Ecosystems. Scientific Reports, 2015, 5, Article number: 17097, doi:10.1038/srep17097.
51. Chao Li*, Noah J. Planavsky, Gordon D. Love, Christopher T. Reinhard Dalton Hardisty, Lianjun Feng, Steven M. Bate, Jing Huang, Qirui Zhang, Xuelei Chu, Timothy W. Lyons. Marine redox conditions in the middle Proterozoic ocean and isotopic constraints on authigenic carbonate formation: Insights from the Chuanlinggou Formation, Yanshan Basin, North China. Geochimica et Cosmochimica Acta, 2015, 150: 90-105.
52. Chao Li*, Meng Cheng, Thomas J. Algeo, Shucheng Xie. A theoretical prediction of chemical zonation in early oceans (>520 Ma). Science China Earth Sciences, 2015, 58(11): 1901-1909. (《中国科学:地球科学》2017年度热点论文和2020年度最佳论文奖)
53. Meng Cheng, Chao Li*, Lian Zhou, Shucheng Xie. Mo marine geochemistry and reconstruction of ancient ocean redox states. Science China Earth Sciences, 2015, 58(12): 2123-2133.
54. Haiyang Wang, Chao Li*, Chaoyong Hu, Shucheng Xie. Spurious thermoluminescence characteristics of the Ediacaran Doushantuo Formation (ca. 635–551 Ma) and its implications for marine dissolved organic carbon reservoir. Journal of Earth Science, 2015, 26(6): 883−892.
55. Jiao, N., L. Legendre, C. Robinson, H. Thomas, Y.-W. Luo, H. Dang, J. Liu, R. Zhang, K. Tang, T. Luo, Chao Li, X. Wang, and C. Zhang, Comment on “Dilution limits dissolved organic carbon utilization in the deep ocean”, Science, 2015, 350(6267): 1483.
56. Genming Luo, Shuhei Ono, Junhua Huang, Thomas J. Algeo, Chao Li, Lian Zhou, Andrew Robinson, Timothy W. Lyons, Shucheng Xie. Decline in oceanic sulfate levels during the early Mesoproterozoic. Precambrian Research, 2015, 258:36-47.
57. 李超*, 金承胜. 寒武纪早期大气-海洋氧含量与生命大爆发. 矿物岩石地球化学通报, 2015, 34(3):501-508.
58. Lianjun Feng#, Chao Li*#, Jing Huang, Huajin Chang, Xuelei Chu. A sulfate control on marine mid-depth euxinia on the early Cambrian (ca. 529-521 Ma) Yangtze platform, South China. Precambrian Research, 2014, 246: 123-133. (#共同第一作者)
59. Chengsheng Jin, Chao Li*, Xingfang Peng, Hao Cui, Wei Shi, Zihu Zhang, Genming Luo, Shucheng, Xie. Spatiotemporal variability of ocean chemistry in the early Cambrian, South China. Science China: Earth Sciences, 2014, 57(4): 579-591.
60. Jiasong Fang, Chao Li, Li Zhang, Tara Davis, Chiaki Kato, Douglas H. Bartlett. Hydrogen Isotope Fractionation in Lipid Biosynthesis by Piezophilic Bacterium Moritella japonica DSK1. Chemical Geology, 2014, 367:34-38.
61. N. Jiao, C. Robinson, F. Azam, H. Thomas, F. Baltar, H. Dang, N. J. Hardman-Mountford, M. Johnson, D. L. Kirchman, B. P. Koch, L. Legendre, C. Li, J. Liu, T. Luo, Y.-W. Luo, A. Mitra, A. Romanou, K. Tang, X. Wang, C. Zhang, R. Zhang. Mechanisms of microbial carbon sequestration in the ocean – future research directions. Biogeosciences, 2014, 11:5285–5306, doi:10.5194/bg-11-5285-2014.
62. Genming Luo, Christopher K. Junium, Lee R. Kump, Junhua Huang, Chao Li, Qinglai Feng, Xiaoying Shi, Xiao Bai, Shucheng Xie. Shallow stratification prevailed for ∼1700 to ∼1300Ma ocean: Evidence from organic carbon isotopes in the North China Craton. Earth and Planetary Science Letters, 2014, 400: 219-232.
63. Anthony Chappaz, Timothy W. Lyons, Daniel D. Gregory, Christopher T. Reinhard, Benjamin C. Gill, Chao Li, Ross R. Large. Does pyrite act as an important host for molybdenum in modern and ancient euxinic sediments? Geochimica et Cosmochimica Acta, 2014, 126: 112-122.
64. 林杞,王家生,卜庆涛,李超,林荣骁, 孙飞, 张卫坤. 海洋沉积物中自生黄铁矿研究的体视镜挑选与铬还原处理方法对比-来自南海北部陆坡Site4B站位的研究. 沉积学报, 2014, 32(6):1052-1059.
65. Camille A. Partin, Andrey Bekker, Noah J. Planavsky, Clinton T. Scott, Benjamin C. Gill, Chao Li, Victor Podkovyrov, Andrey V. Maslov, Kurt O. Konhauser, Stefan V. Lalonde, Gordon D. Love, Simon W. Poulton, Timothy W. Lyons. Large-scale fluctuations in Precambrian atmospheric and oceanic oxygen levels from the record of U in shales. Earth and Planetary Science Letters, 2013, 369-370: 284-293. (SCI高被引论文2013-今)
66. 崔豪, 周炼, 李超*, 彭兴芳, 金承胜, 石炜, 张子虎, 罗根明, 谢树成. 铁—钼同位素与古海洋化学演化. 地球科学进展, 2013, 9(28):1049-1056.
67. 焦念志,张传伦,李超,王晓雪,党宏月,曾庆璐,张锐,张瑶,汤凯,张子莲,徐大鹏. 2013. 海洋微型生物碳泵储碳机制及气候效应. 中国科学:地球科学,43(1), 1-18.
68. Chao Li*, Gordon D. Love, Timothy W. Lyons, Clinton T. Scott, Lianjun Feng, Jing Huang, Huajing Chang, Qirui Zhang, Xuelei Chu. Evidence for a redox stratified Cryogenian marine basin, Datangpo Formation, South China. Earth and Planetary Science Letters, 2012. 331, 246-256.
69. 谢树成,罗根明,宋金明,李超,黄咸雨,杨欢,李一良,黄俊华,胡超涌.2012. 2001-2010年生物地球化学研究进展与展望. 矿物岩石地球化学通报 31(5),447-469.
70. Chao Li*, Alex L. Sessions, David L. Valentine, Nivedita Thiagarajan. D/H ratios of terrestrial lipids from Santa Barbara Basin over the past 1400 years: A preliminary assessment of paleoclimatic relevance. Organic Geochemistry, 2011, 42:15-24.
71. Noah J. Planavsky, Peter McGoldrick, Clinton T. Scott, Chao Li, Christopher T. Reinhard, Amy Kelly, Xuelei Chu, Andrey Bekker, Gordon D. Love, Timothy W. Lyons. Widespread iron-Rich conditions in the Mid-Proterozoic ocean. Nature, 2011, 477:448-451. (SCI高被引论文2011-今)
72. Chao Li*, Gordon D. Love, Timothy W. Lyons, David A. Fike, Alex L. Sessions, Xuelei Chu. A stratified redox model for the Ediacaran ocean. Science, 2010, 328: 80-83. (SCI高被引论文2010-今)
73. Chao Li, Alex L. Sessions, Frank S. Kinnaman, David L. Valentine. Hydrogen-isotopic variability in lipids from Santa Barbara Basin sediments. Geochimica et Cosmochimica Acta, 2009, 73: 4803-4823.
74. Brian J. Campbell, Chao Li, Alex L. Sessions, David L. Valentine. Hydrogen isotopic fractionation in lipid biosynthesis by H2-consuming Desulfobacterium autotrophicum. Geochimica et Cosmochimica Acta, 2009, 73 (10): 2744-2757.
75. Chunxia Yang, Yongheng Chen, Ping’an Peng, Chao Li, Xiangyang Chang, Yingjuan Wu. Trace element partitioning and transformations during the roasting of pyrite ores in sulfuric acid industry. Journal of Hazardous Materials, 2009, 167(1-3):835-845.
76. Ashley A. Jones, Alex L. Sessions, Brain J. Campbell, Chao Li, David L. Valentine. D/H ratios of fatty acids from marine particulate organic matter in the California Borderland Basins. Organic Geochemistry, 2008, 39(5): 485-500.
77. Hong Lu, Chao Li, Yongge Sun, Ping’an Peng, Zhongyao Xiao. Hydrogen isotopic compositions, distributions and source signals of individual n-alkanes for some typical crude oils in Lunnan Oilfield, Tarim Basin, NW China. Science in China Series D-Earth Sciences (English version), 2005, 48(8): 1220-1226.
78. Xinhui Bi, Guoying Sheng, Xiaohong Liu, Chao Li and Jiamo Fu. Molecular and carbon and hydrogen isotopic composition of n-alkanes in plant leaf waxes. Organic Geochemistry, 2005, 36(10): 1405-1417.
79. Chunxia Yang, Yongheng Chen, Ping’an Peng, Chao Li, Xiangyang Chang, Changshen Xie. Distribution of natural and anthropogenic thallium in the soils in an industrial pyrite slag disposing area. Science of the Total Environment, 2005, 341 (1-3): 159-172.
80. 杨春霞,陈永亨,彭平安,李超,常向阳,谢长生. 土壤中重金属铊的分级提取形态分析法研究. 分析测试学报, 2005, 24 (2):1-6.
81. 杨春霞,陈永亨,彭平安,李超,常向阳,谢长生. 含铊黄铁矿冶炼废渣在自然淋滤过程中铊的迁移与释放. 环境科学研究, 2005, 18(2): 99-102.
82. Chao Li, Ping’an Peng*, Guoying Sheng, Jiamo Fu. A study of a 1.2 Ga kerogen using Ru ion-catalyzed oxidation and pyrolysis-gas chromatography-mass spectrometry: structural feature and possible source. Organic Geochemistry, 2004, 35: 531-541.
83. 熊永强,耿安松,廖玉宏,潘长春,刘德勇,李超,彭平安. 原油中烷基萘和烷基菲的碳同位素组成研究.新疆石油地质, 2004, 25(4): 355-357.
84. 熊永强,耿安松,潘长春,刘德勇,李超,彭平安. 陆相有机质中单体烃的氢同位素组成特征. 石油勘探与开发, 2004, 31(1): 60-63.
85. Chao Li*, Ping’an Peng, Guoying Sheng, Jiamo Fu, Yuzhong Yan. A molecular and isotopic geochemical study of Meso- to Neoproterozoic (1.73-0.85 Ga) sediments from the Jixian section, Yanshan Basin, North China. Precambrian Research, 2003, 125: 337-356.
86. 李超,彭平安,盛国英,傅家谟,阎玉忠. 蓟县剖面洪水庄组黑色页岩的干酪根分子结构特征研究. 自然科学进展,2003,13(1):57-63.
87. 李宝才,董玉莲,李超,周建元,闻克威,盛国英,傅家漠. 秋茄和榕树叶片中正构烷烃分布和单体化合物δ13C值及其光合作用.热带海洋学报,2003, 22(1): 62-69.
88. 李超,彭平安,盛国英,傅家谟,阎玉忠.蓟县剖面中一新元古代沉积物的稳定碳同位素生物地球化学研究。地质学报,2002, 76(4): 433-440.
89. 李超,彭平安,盛国英,傅家谟,阎玉忠.蓟县剖面元古代沉积物(1.8-0.85Ga)中的生物标志化合物特征。地学前缘,2001,8(4):453-461.
90. Chao Li, Ping’an Peng*, Guoying Sheng, Jiamo Fu. Precambrian organic matter. Chinese Science Bulletin, 2000, 45(4): 295-304.
近年来代表性学术报告
1. 2021/04/10, 上海(中国),邀请报告:“晚新元古代海洋生物泵-微型生物碳泵输出速率波动及可能机制初探,” 中国科学院-国家自然科学基金委地球系统科学发展战略研究-生物泵地质演化专题研讨会。
2. 2020/12/21,武汉(中国),邀请报告:“若干新兴碳酸盐岩技术的地球生物学应用,”“地球生物学”国家创新研究群体2020“地球生物学新技术新方法”研讨会。
3. 2020/12/17, Virtual conference,Invited talk:“Probing A Large Dissolved Organic Carbon Pool in Neoproterozoic Oceans,”International Conference on Ocean Negative Carbon Emission.
4. 2020/11/08-09,厦门(中国),邀请报告:“新元古代大型DOC库:证据、演化及可能机制,” 中国科学院-国家自然科学基金委地球系统科学发展战略研究研讨会。
5. 2020/10/14,南京(中国),邀请报告:““白云石之谜”与古海洋化学演化,”中国科学院南京地质古生物研究所。
6. 2020/09/20,贵阳(中国),邀请报告:““白云石之谜”与古海洋化学演化,” 贵州大学。
7. 2020/05/17,中国矿物岩石地球化学委员会网络论坛邀请报告:“Oceanic Oxygenation and Early Animal Radiation,” 地球化学空中会议室。
8. 2019/11/11-15, Chengjiang (中国),Invited keynote talk: “Redox Structure of Ediacaran and Early Cambrian Oceans and Its Possible Formation Mechanism”, International Conference on the Cambrian Explosion (ICCE-2019).
9. 2019/08/18-23, Barcelona (Spain), Invited talk: “Spatiotemporal Coevolution of Oxygen Levels and Early Animals”, Goldschmidt 2019.
10. 2019/04/26-27, 北京(中国),邀请报告:“Heterogeneous Oceanic Redox, Dynamic Shelf Oxygenation and Coupled Early Animal Evolution,”地球深部氧循环与大气氧升高研讨会。
11. 2018/11/2-3, 宜昌(中国), Invited keynote talk: “An Emerging Picture: Spatially Heterogeneous Oceanic Redox, Dynamic Shelf Oxygenations and Coupled Early Animal Evolution”, 2018 IGCP 648 Field Symposium in South China.
12. 2018/08/15, 西安(中国), Invited keynote talk: “Spatial heterogeneity of oceanic redox, dynamic shelf oxygenation and coupled early animal evolution”, International Conference on Ediacaran and Cambrian Sciences.
13. 2017/11/25,深圳(中国),Invited talk: “Marine Shelf Oxygenation in Ediacaran and Early Cambrian”, The 2nd Shenzhen Forum on Ocean Sciences for Young Scientists.
14. 2017/11/11,武汉(中国),邀请报告:“Marine Shelf Oxygenation and Coupled Metazoan Diversification in Ediacaran and Early Cambrian”, 第三届古生物学青年学者论坛。
15. 2017/10/30,南京(中国),中国沉积学发展战略调研报告成果介绍邀请报告:“中国前寒武纪沉积学:核心科学问题、中国学者的角色、优势及面临的机遇和挑战”,第六届全国沉积学大会。
16. 2017/10/29,南京(中国),口头报告:“Marine Shelf Oxygenation in Ediacaran and Early Cambrian”,第六届全国沉积学大会。
17. 2017/10/11,宜昌(中国),Invited Talk: “Marine Shelf Oxygenation and Coupled Metazoan Diversification in Ediacaran and Early Cambrian”, The 2nd China-Germany Joint Conference on Palaeontology。
18. 2017/09/21,南京(中国),邀请报告:“晚新元古代-寒武纪早期海洋化学与生命协同演化研究的一些进展和思考”,国家重点基础研究发展计划(973计划)“从雪球事件到寒武纪大爆发:距今6亿年前后的生物与环境演变” 2017年度课题验收会暨领域学术研讨会。
19. 2016/12/17,武汉(中国),口头报告:“埃迪卡拉纪碳循环的空间差异性”,第四届中国地质大学前寒武纪研究学术研讨会。
20. 2016/09/26-28,北京(中国),邀请报告:“Coevolution of life and environment during “Boring Billion” and late Neoproterozoic-early Cambrian: Advances and perspectives”,香山科学会议“沉积学发展国际战略研讨会”。
21. 2016/06/26-2016/07/01, Yokohama (Japan), “A highly redox-heterogeneous ocean in south china during the early Cambrian (~529-514 ma): implications for biota-environment co-evolution”. Goldschmidt 2016。
22. 2016/01/15-2016/01/17, 宜昌(中国),邀请报告:“早期地球(>520Ma)海洋化学结构研究的一些进展和思考”,中德合作项目年度学术交流会。
23. 2015/12/14-2015/12/18, San Francisco (USA), “A euxinic-wedge model for Mo cycling in the early Cambrian oceans”. AGU Fall Meeting.
24. 2015/10/11-2015/10/14, 北京(中国),“华南埃迪卡拉系陡山沱组假性热释光特征—古海洋溶解有机碳库(DOC)存在的直接证据?”中国地球科学联合学术年会。
25. 2015/10/23-2015/10/29, 武汉(中国),“早期地球(>520Ma)海洋化学结构研究的一些进展和思考”,全国沉积学大会。
26. 2015/08/10-2015/08/14, 沈阳(中国),“探寻寒武纪早期海洋化学演化与生命大爆发的关系”,中国古生物学会第28届学术年会。
27. 2015/06/23-2015/06/29, 长春(中国),“探寻寒武纪早期海洋化学演化与生命大爆发的关系”,中国矿物岩石地球化学学会第15届学术年会。
28. 2014/06/16-2014/06/18, Wuhan (China), “Marine redox conditions for the preservation of the Miaohe Biota and their implications for the Ediacaran ocean chemistry and life evolution” The 3rd International Conference of Geobiology.
29. 2014/07/02-2014/07/04, 上海(中国), “庙河生物群的保存环境及其对埃迪卡拉纪海洋化学和生命演化的启示”,第三届地球系统科学大会。
30. 2013/03/16-2013/03/18, 北京中国科学院学术会堂,“早期地球海洋化学与生命的协同演化—进展与思考”,科学与技术前沿论坛-“地球生物学前沿”。
31. 2013/02/22-2013/02/25, 南京地质与古生物研究所,“元古代海洋中的微型生物碳泵”,国家重点基础研究发展计划(973计划)项目启动会暨中德合作项目2013年度学术交流会。
32. 2013/01/28-2013/01/31, Goa (India), “Probing Microbial Carbon Pump in Proterozoic Oceans”, IMBIZO III Conference, IMBER (Integrated Marine Biogeochemistry and Ecosystem Research).
近年来会议组织-会议专题召集:
1. 第七届全国沉积学大会,成都(北京),2021年11月29日-12月2日;专题:新元古代-早古生代转折期地球环境和生命协同演化
2. 第三届全国气体同位素技术与地球科学应用研讨会,北京(中国),2021年5月14-17日;专题:团簇、多维同位素分析技术、分馏机理和应用
3. 第十二届全国同位素地质年代学与同位素地球化学学术讨论会,武汉(中国),2020年11月20-23日;专题:沉积与古环境同位素地球化学
4. 2020中国地球科学联合年会,重庆(中国), 2020年10月18-21日; 专题: 超大陆演化及其生物和环境效应。
5. Goldschmidt 2020, Hawaii (UAS), June 21-26, 2020; Session: Sulfur in Energy and Mineral Resource Formation, Production, and the Environment.
6. 2018 IGCP 648 Annual Meeting, Yichang (China), November 01-03, 2018.
7. 2018中国地球科学联合年会,北京(中国), 2018年10月20-24日; 专题: 超大陆演化及其生物和环境效应。
8. 第十一届全国同位素地质年代学与同位素地球化学学术讨论会,合肥(中国),2017年11月16-19日; 专题:沉积与海洋同位素地球化学。
9. 第六届全国沉积学大会,南京(中国),2017年10月28-30日; 专题:深时地球表生环境异常变化:生物响应与资源效应。
10. 2017 中国地球科学联合年会,北京(中国), 2017年10月15-18日; 专题: 超大陆演化及其生物和环境效应。
11. 2017 International Modeling Workshop, Wuhan (China), July 10, 2017. Co-convener with Zhongqiang Cheng and Graham Shields-Zhou.
12. The 4th International Geobiology Conference, Wuhan (China), June 24-June 26, 2017; Session: Precambrian Geobiology.
13. Gordon Research Conference “Frontiers of Science: Ocean Biogeochemistry”, HongKong (China), June 12-17, 2016; Session: Methane and Sulfur: Roles in Carbon Pumps.
14. Goldschmidt 2016, Yokohama (Japan), June 26-July 01, 2016; Session: Alternative Earths: Biotic and geochemical co-evolution from the Neoproterozoic through the Mesozoic.
15. 2016年中国地球科学联合学术年会,北京(中国),2016年10月15-18日;专题:超大陆演化及其生物环境效应。
16. 第四届地球系统科学大会,上海(中国),2016年07月04-06日;专题:海洋碳汇对气候变化的响应与反馈。
17. 第四届全国生物-有机地球化学研讨会,上海(中国),2016年10月21-22日;专题:地质时期生物-有机地球化学。
18. 第四届(2016)中国地质大学前寒武纪研究学术研讨会,武汉(中国),2016年12月17日。
19. 第三届(2015)中国地质大学前寒武纪研究学术研讨会暨前寒武纪沉积学发展战略研讨会,北京(中国),2015年11月21日。
20. 第三届生物-有机地球化学研讨会,武汉(中国),2015年3月17-18日;专题:地质时期生物-有机地球化学。
21. 第二届(2014)中国地质大学前寒武纪研究学术研讨会,武汉(中国),2014年11月23日
22. Goldschmidt 2014, Sacramento (USA), June 8-13, 2014; Session: Dynamics and Stability of Earth's Oxygenated Biosphere.
23. The 3rd International Conference of Geobiology, Wuhan (China), June 16-18, 2014; Session: Precambrian Geobiology.
24. 第三届地球系统科学大会,上海(中国),2014年7月2-4日;专题:大气和海洋氧化与地球早期生命演化
实验室资源:
古海洋生物地球化学前处理实验室与仪器分析实验室可完成以下分析:
1. 古海洋生物地球化学基础分析:岩石样品粉碎、TC、TS、TIC、TOC; 主微量元素的快速定性-半定量(XRF)。
2. 铁组分分析:岩石样品中总铁定量、黄铁矿提取和定量、其他活性铁组分提取和定量(AAS)等。
3. 硫化学分析:碳酸盐晶格硫酸盐(CAS)提取定量,黄铁矿硫定量;硫化物-硫酸盐δ34S测定。
4. 磷化学分析:P含量和碳酸盐晶格磷酸盐(CAP)测定等。
5. 其他地球化学分析:XRD矿物组成分析、硫酸盐δ18O测定、酸溶-干酪根提取等。
平台对外开放。