宋海军

博士生导师 硕士生导师

曾获荣誉:中国青年科技奖特别奖

性别:男

毕业院校:中国地质大学(武汉)

学历:博士研究生

学位:博士

所在单位:地球科学学院

办公地点:主楼

联系方式:湖北武汉洪山区鲁磨路388号中国地质大学地球科学学院

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个人简历


个人简介:


宋海军,男,1983年出生,教授,博导,国家杰青获得者,中国古生物学会副理事长,国际SCI刊物Global and Planetary Change、All Earth期刊的Associate Editor,科学通报、Science Bulletin特邀编委,古生物学报、PeerJ 等期刊编委。


主要从事重大地质突变期地球生物学研究,主要包括古环境演变、生物灭绝事件、地球生物学大数据和AI应用。主持了国家自然基金重点项目、优青、杰青项目等,在Science、Nature Geoscience、Nature Ecology & Evolution、PNAS等刊物上发表论文100余篇,论文被Science,PNAS, National Science Reviews专刊正面评述。


获得国家自然科学二等奖,教育部自然科学一等奖,成果入选2023年中国重大科学、技术与工程进展,2023年度中国海洋与湖沼十大科技进展,4次入选中国古生物学十大进展。


曾获得中国青年科技奖特别奖、中国青年古生物学奖等荣誉。


指导的本科生多次获得全国大学生挑战杯课外学术作品竞赛一等奖、二等奖,中国青少年科技创新奖,全国大学生年度人物,全国大学生百强社团等。


指导的研究生多次获得国家奖学金,全国向上向善好青年,李四光优秀博士生奖。


欢迎对古生物、古气候、大数据、模拟感兴趣的本科生、研究生、博士后加入!


发表论文(15 篇代表作):

1.     Dai, X., Davies, J.H.F.L., Yuan, Z., Brayard, A., Ovtcharova, M., Xu, G., Liu, X., Smith, C.P.A., Schweitzer, C.E., Li, M., Perrot, M.G., Jiang, S., Miao, L., Cao, Y., Yan, J., Bai, R., Wang, F., Guo, W., Song, H., Tian, L., Dal Corso, J., Liu, Y., Chu, D., Song, Haijun*, 2023. A Mesozoic fossil lagerstätte from 250.8 million years ago shows a modern-type marine ecosystem. Science, 379(6632): 567-572.

2.    Song, Haijun*, Wignall, P.B., Tong, J., Yin, H., 2013. Two pulses of extinction during the Permian-Triassic crisis. Nature Geoscience, 6: 52-56.

3.     Song, Haijun*, Huang, S., Jia, E., Dai, X., Wignall, P.B., Dunhill, A.M., 2020. Flat latitudinal diversity gradient caused by the Permian–Triassic mass extinction. PNAS, 117(30):17578-17583

4.     Song, Haijun*, Kemp, D.B., Tian, L., Chu, D., Song, H., Dai, X., 2021. Thresholds of temperature change for mass extinctions. Nature Communications, 12(1): 4694.

5.     Song, Haijun*, Wignall, P. B., Dunhill, A. M., 2018. Decoupled taxonomic and ecological recoveries from the Permo-Triassic extinction. Science Advances, 4(10): eaat5091.

6.    Song, Haijun*, Jiang, G., Poulton, S.W., Wignall, P.B., Tong, J., Song, H., An, Z., Chu, D., Tian, L., She, Z. & Wang, C. 2017. The onset of widespread marine red beds and the evolution of ferruginous oceans. Nature Communications, 8, 399.

7.    Dal Corso, J.*, Song, Haijun*, Callegaro, S., Chu, D., Sun, Y., Hilton, J., Grasby, S.E., Joachimski, M.M., Wignall, P.B.*, 2022. Environmental crises at the Permian–Triassic mass extinction. Nature Reviews Earth & Environment, 3(3): 197-214.

8.    Song, Haijun, Wignall, P.B., Chen, Z.-Q., Tong, J.*, Bond, D.P., Lai, X., Zhao, X., Jiang, H., Yan, C. & Niu, Z., 2011. Recovery tempo and pattern of marine ecosystems after the end-Permian mass extinction. Geology, 39, 739-742.

9.     Dai, X., Korn, D., Song, Haijun*, 2021. Morphological selectivity of the Permian-Triassic ammonoid mass extinction. Geology, 49(9): 1112-1116.

10.  Li, M., Song, Haijun*, Algeo, T.J., Wignall, P.B., Dai, X. & Woods, A.D. (2018) A dolomitization event at the oceanic chemocline during the Permian-Triassic transition. Geology, 46, 1043-1046.

11. Liu, X., Song, Haijun*, Chu, D., Dai, X., Wang, F., Silvestro, D., 2024. Heterogeneous selectivity and morphological evolution of marine clades during the Permian–Triassic mass extinction. Nature Ecology & Evolution, 8(7): 1248-1258. 

12. Feng, Y., Song, Haijun*, Song, H., Wu, Y., Li, X., Tian, L., Dong, S., Lei, Y., Clapham, M.E., 2024. High extinction risk in large foraminifera during past and future mass extinctions. Science Advances, 10(32): eadj8223. 

13. Song, Haijun*, Wu, Y., Dai, X., Corso, J.D., Wang, F., Feng, Y., Chu, D., Tian, L., Song, H., Foster, W.J., 2024. Respiratory protein-driven selectivity during the Permian–Triassic mass extinction. The Innovation: 100618.

14. Li, M., Wignall, P.B., Dai, X., Hu, M., Song, Haijun*, 2021. Phanerozoic variation in dolomite abundance linked to oceanic anoxia. Geology, 49(6): 698-702.

15. Song, Haijun*, Wignall, P.B., Tong, J., Song, H., Chen, J., Chu, D., Tian, L., Luo, M., Zong, K., Chen, Y., 2015. Integrated Sr isotope variations and global environmental changes through the Late Permian to early Late Triassic. Earth and Planetary Science Letters, 424: 140-147.





 


 


 








研究方向

  • [1]   主要从事重大地质突变期地球生物学研究,主要包括古环境演变、生物灭绝事件、地球生物学大数据和AI应用。

  • 联系方式

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  • [2]  传真:

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