人才详细信息

简介
丁金枝,中国科学院青藏高原研究所研究员,博士生导师,国家优秀青年科学基金项目获得者,主要从事多年冻土与全球变化的响应和反馈研究,在青藏高原多年冻土碳储量、碳动态,以及碳输入和碳输出关键过程方面取得了系列研究成果,在Nature, Nature Geoscience, Nature Communications等期刊发表论文50多篇,主持科技部、基金委和中科院科研项目多项,获第十四届“青藏高原青年科技奖”。
工作经历
2022-01 至今, 中国科学院青藏高原研究所,研究员
2020-03 至 2021-12, 中国科学院青藏高原研究所,副研究员
研究方向
多年冻土生物地球化学循环及其对全球变化的响应及反馈
职务
社会任职
《中国科学·地球科学》编委
承担项目
获奖及荣誉
2024年,第十四届“青藏高原青年科技奖”
2018年,中国科学院“优秀博士论文”
2017年,中国科学院“院长特别奖”
2016年,中国科学院“院长优秀奖”
代表论著
1. Zhang, L., Bufe, A., Dean, J. F., Rocher-Ros, G., Sponseller, R. A., Stanley, E. H., Karlsson, J., Butman, D. E., Liu, R., Hou, L.,Ding, J. Z.*, Piao, S., Xia, X.* & Battin, T. J. (2026). Rock weathering can counteract river CO2 emissions induced by permafrost thaw.Nature, 655, 125–132.https://doi.org/10.1038/s41586-026-10664-8
2. Wei, Y., Li, J., Gu, X., Huo, H., Wang, T., Wang, S., An, B., Yao, T., Piao, S. & Ding, J. Z.* (2026). Permafrost tipping point triggered by warming-driven loss of old carbon. Nature Communications, 17, 5344. https://doi.org/10.1038/s41467-026-72122-3
3. Gu, X., Huo, H., Tian, S. & Ding, J. Z.* (2025). Warming-Driven Abrupt Shifts in Alpine Permafrost Dynamics With Elevation. Global Change Biology, 31(12), e70616. https://doi.org/10.1111/gcb.70616
4. Hong, S., Ding, J. Z.*, Kan, F., Xu, H., Chen, S., Yao, Y. & Piao, S.* (2023). Asymmetry of carbon sequestrations by plant and soil after forestation regulated by soil nitrogen. Nature Communications, 14, 3196. https://doi.org/10.1038/s41467-023-38911-w
5. He, Y., Ding, J. Z.*, Dorji, T., Wang, T., Li, J. & Smith, P. (2022). Observation-based global soil heterotrophic respiration indicates underestimated turnover and sequestration of soil carbon by terrestrial ecosystem models. Global Change Biology, 28(18), 5547–5559. https://doi.org/10.1111/gcb.16286
6. Ding, J. Z., Wang, T.*, Piao, S., Smith, P., Zhang, G., Yan, Z., Ren, S., Liu, D., Wang, S., Chen, S., Dai, F., He, J., Li, Y., Liu, Y., Mao, J., Arain, A., Tian, H., Shi, X., Yang, Y., Zeng, N. & Zhao, L. (2019). The paleoclimatic footprint in the soil carbon stock of the Tibetan permafrost region. Nature Communications, 10, 4195. https://doi.org/10.1038/s41467-019-12214-5
7. Ding, J. Z., Chen, L., Ji, C., Hugelius, G., Li, Y., Liu, L., Qin, S., Zhang, B., Yang, G., Li, F., Fang, K., Chen, Y., Peng, Y., Zhao, X., He, H., Smith, P., Fang, J. & Yang, Y.* (2017). Decadal soil carbon accumulation across Tibetan permafrost regions. Nature Geoscience, 10, 420–424. https://doi.org/10.1038/ngeo2945