姓名:王海洋
职称:研究员 博导
电子邮箱:why@cdut.edu.cn
研究室:古海洋和古气候研究室
基本信息
山西闻喜人,中共党员,中国地质大学(武汉)地球化学博士,成都理工大学沉积地质研究院研究员,四川省青年人才计划获得者。主要从事早期地球表生环境大气和海洋的化学状态、演化及其与生命协同关系的研究,成果以第一或通讯作者发表在Nature、Nature Communications、The Innovation、Geochimica et Cosmochimica Acta、Precambrian Research、科学通报等期刊。主持国家自然科学基金面上项目与青年基金(C类)各1项、中国博士后科学基金1项。任中国矿物岩石地球化学学会气体地球化学专业委员会委员、青年工作委员会委员,NC、Geology、EPSL、PR等期刊审稿专家。组织国际会议专题3次,受邀在国内外会议上完成邀请报告或主旨报告12次。
围绕“地球表层氧化的过程、机制与效应”,以沉积学、地层学与古生物学为基础,结合多指标开展古环境重建与定量模拟,在三方面取得创新性成果:(1)大气氧含量演化,建立了碳酸盐结合态硫酸根三氧同位素示踪大气氧含量的新指标,重建了地球大气氧含量演化历史,揭示出其长达20亿年的过渡性氧化阶段;(2)海洋氧化过程,率先使用硫酸根三氧同位素等指标约束海洋氧化事件,发现大气氧驱动的全球海洋脉冲式增氧过程与陆架初级生产者驱动的局部“氧化绿洲”,提出这两种氧化模式长期并存、此消彼长的演化关系;(3)氧化的元素循环效应,发现了海洋氧化驱动的碳-硫循环频繁扰动以及铁循环由无氧向有氧机制的转变,阐明了大气氧、海洋氧化与铁-碳-硫循环之间的调控与反馈机制。这些成果为理解宜居地球形成过程、生命演化的环境驱动及沉积型矿产与油气资源勘查提供了科学支撑。
教育和工作经历
2023−至今,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,研究员
2021−2023,南京大学地球科学与工程学院\国际同位素效应研究中心,博士后
2019−2020,美国路易斯安那州立大学,国家留学基金委资助-博士研究生联合培养
2017−2020,中国地质大学(武汉)生物地质与环境地质国家重点实验室,地球化学博士
2014−2017,中国地质大学(武汉)地球科学学院,地质学硕士
2010−2014,中国地质大学(武汉)地球科学学院,地质学(基地班)学士
主持的科研项目
1.国家自然科学基金委员会面上项目“新元古代显著碳同位素负偏事件形成机制及其对古海洋化学演化的启示”,2026/01-2029/12,开展中.
2.国家自然科学基金委员会青年科学基金项目(C类)“埃迪卡拉纪碳同位素负偏事件的硫酸盐叁氧同位素研究”,2022/01-2024/12,已结题.
3.中国博士后科学基金面上资助二等“华南陡山沱组碳同位素异常事件的硫酸钡氧同位素研究”,2021/07-2023/02,已结题.
学术论文
第一/通讯作者*
09.Haiyang Wang, Chao Li*, Yongbo Peng*, Junpeng Zhang, Meng Cheng, Xiaobin Cao, Wenkun Qie, Zihu Zhang, Matthew S. Dodd, Mingcai Hou, Malcolm Wallace, Ashleigh v.S. Hood, Timothy W. Lyons, Huiming Bao, 2025. Two-billion-year transitional oxygenation of the Earth's surface.Nature645, 665-671.
08.Haiyang Wang*, Chao Li*, 2026. Stagewise oxygenation of the Earth's atmosphere and oceans.The Innovation, 101353.DOI:10.1016/j.xinn.2026.101353.
07.Haiyang Wang, Yongbo Peng*, Chao Li*, Xiaobin Cao, Meng Cheng, Huiming Bao*, 2023. Sulfate triple-oxygen-isotope evidence confirming oceanic oxygenation 570 million years ago.Nature Communications14, 4315.
06.Haiyang Wang, Chao Li*, Meng Cheng, Zihu Zhang, Thomas J. Algeo, 2022. Redbed formation in the redox-stratified mid-Proterozoic ocean.Precambrian Research379, 106815.
05.Haiyang Wang, Aoran Liu, Chao Li*, Qinglai Feng, Shida Tang, Meng Cheng, and Thomas J. Algeo, 2021. A benthic oxygen oasis in the early Neoproterozoic ocean.Precambrian Research355, 106085.
04.Haiyang Wang, Zihu Zhang, Chao Li*, Thomas J. Algeo, Meng Cheng, Wei Wang, 2020. Spatiotemporal redox heterogeneity and transient marine shelf oxygenation in the Mesoproterozoic ocean.Geochimica et Cosmochimica Acta270, 201–217.
03.Haiyang Wang,Chao Li*, Chaoyong Hu, Shucheng Xie, 2015. Spurious Thermoluminescence Characteristics of the Ediacaran Doushantuo Formation (ca. 635–551 Ma) and Its Implications for Marine Dissolved Organic Carbon Reservoir.Journal of Earth Science26(6), 883–892.
02.王海洋,李超*,彭永波*, 2026.宜居地球演化:叁氧同位素解码地球氧气崛起之路,科学通报71(5-6): 1084-1086
01.王海洋*,王威, 2017.温室气体的“牢笼”——海洋惰性溶解有机碳库.科学中国人01: 132−134.
共同作者
22. Chao Li*,Haiyang Wang, 2025. Research Briefing: Earth’s atmosphere took two billion years to become fully oxygenated.Nature. DOI: 10.1038/d41586-025-02959-z.
21. Chao Li*,Haiyang Wang, 2024. Uncovering the largest negative carbon isotope excursion in Earth history.Science China: Earth Science67(3), 885-889.
20.李超*,王海洋, 2024.揭秘地质历史时期最大碳同位素负偏事件的本质.中国科学:地球科学54(3), 902-906.
19. Matthew S. Dodd,Haiyang Wang, Chao Li*, Martyn Towner, Andrew R. Thomson, John F. Slack, Yu-sheng Wan, Franco Pirajno, Chakravadhanula Manikyamba, Qiang Wang, Dominic Papineau, 2022. Abiotic anoxic iron oxidation, formation of Archean banded iron formations, and the oxidation of early Earth.Earth and Planetary Science Letters584, 117469.
18. Meng Cheng,Haiyang Wang, Chao Li*, Genming Luo, Junhua Huang, Zhenbing She, Lidan Lei, Guang Ouyang, Zihu Zhang, Matthew S. Dodd, Thomas J. Algeo, 2022. Barite in the Ediacaran Doushantuo Formation and its implications for marine carbon cycling during the largest negative carbon isotope excursion in Earth’s history.Precambrian Research368, 106485.
17. Meng Cheng*, Junpeng Zhang*, James D. Schiffbauer, Zihu Zhang,Haiyang Wang, Mengcun Cao, Na Li, Matthew S. Dodd, Mikaela A. Pulsipher, Thomas J. Algeo, Mingcai Hou, Chao Li*, 2026. Enhanced oceanic phosphorus recycling during the Cambrian SPICE event.Geology. DOI: DOI:10.1130/G54063.1.
16. Yonghan Fan, Meng Cheng*, Xinyang Chen*, Catherine Rose,Haiyang Wang, Zihu Zhang, Thomas J. Algeo, Chao Li*, 2026. Carbonate associated phosphate evidence for a small inorganic phosphorus reservoir in the terminal Ediacaran ocean.Global and Planetary Change258, 105284.
15. Jinzuo Tong, Meng Cheng*, Jun Hu, Xinyang Chen,Haiyang Wang, Thomas J. Algeo, Mingcai Hou, Chao Li, 2025. Zinc isotopic evidence for enhanced oceanic primary productivity during termination of the late Ediacaran Shuram Excursion.Geochim Cosmochim Acta405, 66-79.
14. Meng Cheng*, Zihu Zhang, Jun Hu*,Haiyang Wang, Mengchun Cao, Chao Li,2025. Reconciling redox proxy contradiction with active Fe-Mn shuttle in the Cryogenian Nanhua Basin of South China.Palaeogeogr. Palaeoclimatol. Palaeoecol.667, 112899.
13. Haodong Gu, Jun Hu*, Meng Cheng,Haiyang Wang, Matthew S. Dodd, Zihu Zhang, Thomas J. Algeo, Chao Li, 2024. Heterogeneous coupling of δ13Corgand δ13Ccarbduring the Shuram Excursion: Implications for a large dissolved organic carbon reservoir in the Ediacaran ocean.Global and Planetary Change239, 104466.
12. Meng Cheng, Wei Wei, Xinyang Chen,Haiyang Wang, Lianjun Feng, Zhenbing She, Yong Fu, Thomas J. Algeo, Fang Huang*, Chao Li*, 2024. Active methane release from the early Cambrian seafloor? Clues from Ba isotopes.Palaeogeogr. Palaeoclimatol. Palaeoecol653, 112399.
11. Zihu Zhang, Meng Cheng*,Haiyang Wang, Xinyang Chen, Wei Guo, Chao Li*, 2023. Spatiotemporal variation of dissolved oxygen in the Ediacaran surface ocean and its implication for Ediacaran oceanic carbon cycling.Science China: Earth Science66(8), 1892-1905.
10.张子虎,程猛*,王海洋,陈欣阳,郭伟,李超*, 2023.埃迪卡拉纪海洋表层溶解氧含量的时空波动及其对海洋碳循环扰动的启示.中国科学:地球科学53(8), 1913-1926.
09. Meng Cheng*, Zihu Zhang, Chengsheng Jin, Wei Wei,Haiyang Wang, Thomas J. Algeo, Chao Li*, 2023. Salinity variation and hydrographic dynamics in the early Cambrian Nanhua Basin (South China).Science China: Earth Sciences66, 1268-1278.
08.程猛*,张子虎,金承胜,魏巍,王海洋,Thomas J. Algeo,李超*, 2023.寒武纪早期南华盆地盐度及水文动力学过程重建.中国科学:地球科学53(6), 1273-1284.
07. Na Li, Feifei Zhang*, Jianhua Gao, Mengchun Cao, Guang-Yi Wei,Haiyang Wang, Zihu Zhang, Meng Cheng, Guolin Xiong, Jianlin Zhou, Hua Zhang, Yongbo Peng, Chao Li, Shu-Zhong Shen, 2022. Assessing bulk carbonates as archives for seawater sulfur isotopic composition using shallow water cores from the South China Sea.Palaeogeogr. Palaeoclimatol. Palaeoecol598, 111029.
06. Kaiqi Huang, Meng Cheng*, Thomas J. Algeo, Jun Hu,Haiyang Wang, Zihu Zhang, Matthew S. Dodd, Yan Wu, Wei Guo, Chao Li*, 2022. Interaction of Shibantan Biota and environment in the terminal Ediacaran ocean: Evidence from I/(Ca+Mg) and sulfur isotopes.Precambrian Research379, 106814.
05. Meng Cheng, Zihu Zhang, Thomas J. Algeo, Shuliang Liu, Xiaodan Liu,Haiyang Wang, Biao Chang, Chengsheng Jin, Wen Pan, Mengchun Cao, Chao Li, 2021. Hydrological controls on marine chemistry in the Cryogenian Nanhua Basin (South China).Earth-Science Reviews218, 103678.
04. Chengsheng Jin, Chao Li, Thomas J. Algeo, Guochang Wang, Wei Shi, Meng Cheng, Zihu Zhang,Haiyang Wang, Na Li, Wei Wang, 2021. Spatial heterogeneity of redox-sensitive trace metal enrichments in upper Ediacaran anoxic black shales.Journal of the Geological Society. Jgs2020–234.
03. Meng Cheng, Chao Li*, Chengsheng Jin,Haiyang Wang, Thomas J. Algeo, Timothy W. Lyons, Feifei Zhang, Ariel Anbar, 2020. Evidence for high organic carbon export to the early Cambrian seafloor.Geochimica et Cosmochimica Acta287, 125–140.
02. Chao Li*, Zihu Zhang, Chengsheng Jin, Meng Cheng,Haiyang Wang, Junhua Huang, Thomas J. Algeo, 2020. Spatiotemporal evolution and causes of marine euxinia in the early Cambrian Nanhua Basin (South China).Palaeogeogr. Palaeoclimatol. Palaeoecol.546, 109676.
01.王威,王海洋,李超, 2018. “富氧海洋”的今生前世.科学70(2), 43−46.
学术报告
23.2025.11.30-12.1,沉积圈学科讨论会,溧阳,邀请报告:早期地球大气与海洋的氧化历史.
22.2025.10.13-15,第三届数据驱动与地学发展全国学术研讨会,珠海,邀请报告:叁氧同位素数据对地球表层氧化历史的约束.
21.2025.09.25,成都理工大学沉积地质研究院沉积大讲堂,成都,邀请报告:地球氧气的崛起之路.
20.2025.09.24,中国科学院南京地质古生物研究所,南京,邀请报告:地球氧气的崛起之路——来自叁氧同位素证据.
19.2025.08.08-10,中国微生物学会第十三届地质微生物学学术研讨会,绵阳,邀请报告:叁氧同位素对地球大气氧化关键阶段及短期波动的约束.
18.2025.06.13-15,同位素地质进展暨同位素地质专业委员会成立四十周年学术讨论会,济南,邀请报告:叁氧同位素对地球大气氧化关键阶段及短期波动的约束.
17.2025.06.10-13,The 5thInternational Conference of Geobiology,武汉,主旨报告:Sulfate triple oxygen isotope evidence for a two-billion-year transitional oxygenation of Earth's surface.
16.2025.05.27,国家重点研发计划专项《地球系统与全球变化》联合中期与学术交流会,北京,口头报告:叁氧同位素对地球大气氧化关键阶段及短期波动的约束.
15.2025.02.16-18,International conference on early life and environments,西安,邀请报告:Exploring Early Earth’s Oceanic Oxygenation.
14.2024.08.19-25,Goldschmidt2024,芝加哥,口头报告:Exploring Early Earth’s Oceanic Oxygenation—Geochemical Insights from Case Studies.
13.2024.06.07,第十三届全国同位素地质年代学与同位素地球化学学术讨论会,西安,邀请报告:硫酸盐叁氧同位素对新元古代碳循环扰动的启示.
14.2024.05.18,第九届青年地学论坛,厦门,特邀报告:前寒武纪缺氧海洋的氧化模式——综合地球化学对比研究.
11.2024.04.20,国家重点研发计划专项《地球系统与全球变化》“寒武纪大爆发环境诱因与生态重建”项目启动会暨“地球海洋动物生态系统建立”研讨会,西安,邀请报告:硫酸盐叁氧同位素揭秘新元古代碳氧循环的异常扰动.
10.2024.02.23,国家重点研发计划专项《地球系统与全球变化》新元古代和古生代之交地球-生命系统演变项目年度总结与学术交流会,澄江,口头报告:新元古代大气氧对海洋的脉冲式氧化.
09.2023.10.10-15,大陆地壳演化与早期板块构造2023年国际学术研讨会,北京,口头报告:Sulfate triple-oxygen-isotope evidence confirming oceanic oxygenation 570 million years ago.
08.2023.08.22,中国科学院南京地质古生物研究所学术沙龙,南京,邀请报告:埃迪卡拉纪硫酸根叁氧同位素为海洋氧化提供直接证据.
07.2023.04.02-05,第七届全国沉积学大会,成都,口头报告:早新元古代的底栖氧化绿洲环境.
06.2022.08.22-26,International Sedimentological Congress,北京,口头报告:Sulfur and oxygen isotope compositions of Ediacaran seawater sulfate.
05.2022.09.12,南京大学表生地球化学教育部重点实验室青年学者论坛,南京,口头报告:硫酸盐叁氧同位素组成见证5.7亿年前海洋的氧化.
04.2019. 8. 18-23,Goldschmidt2019,巴塞罗那,展板报告:Transient rise of atmospheric O2levels and marine shelf oxygenation at ~1.36 Ga.
03.2017. 10. 27-30,第六届全国沉积学大会,南京,展板报告:华北燕山盆地1.4 Ga古海洋氧化还原状态和初级生产力水平重建研究.
02.2015. 11. 21,第三届中国地质大学前寒武纪研究学术研讨会,北京,口头报告: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.
01.2015. 8. 11-14,中国古生物学会第28届学术年会,沈阳,口头报告:华南埃迪卡拉纪陡山沱组假性热释光特征及其对古海洋大型溶解有机碳库的启示.