
姓名:汪子琳 性别:女 出生年月:1998.07 籍贯:湖南长沙
个人简介
汪子琳,女,1998年7月生,湖南长沙人。2026年8月毕业于英国诺丁汉大学地理科学学院,获地理科学博士学位;2022年获伦敦大学学院地理空间科学硕士学位(Distinction);2020年获宁波诺丁汉大学环境科学理学学士学位(一等荣誉学士)。主要从事水电水库温室气体排放与碳排放核算、空间数据分析与机器学习、流域与水资源可持续管理等研究。近年来,先后以第一作者或通讯作者在Communication Earth & Environment, Nature Reviews Earth & Environment, Water Research等刊物发表SCI论文5篇;参与发表多篇环境与气候变化领域论文,并参与撰写英文学术专著章节。
研究领域:
(1)水电水库温室气体排放与碳排放核算;
(2)空间数据分析与机器学习在环境科学中的应用;
(3)水资源-能源-粮食纽带治理与流域可持续发展;
(4)气候变化适应与环境管理。
工作经历
2026.9-至今 湖南农业大学 环境与生态学院 讲师
2022.10-2022.12 中国电建集团中南勘测设计研究院 实习生
2019.08-2021.06 宁波诺丁汉大学 科研助理
教育经历
2023.02-2026.07 英国诺丁汉大学 地理科学学院 地理科学博士
2021.09-2022.09 伦敦大学学院 土木、环境与地理工程系 地理空间科学硕士
2016.09-2020.07 宁波诺丁汉大学 地理科学学院 环境科学理学学士
教学情况
本科生课程助教:《地理信息系统导论》(GEOG1026,宁波诺丁汉大学,2024-25学年秋季)
本科生课程助教:《城市系统与技术》(ABEE4086,宁波诺丁汉大学,2023-24学年春季)
参与科研项目情况:
参与:“The microplastics and impacts to urban catchment – case of Ningbo”项目,国家自然科学基金国际青年科学家基金资助(41850410497),2019-2021。
代表性论文
[1] Wang, Z., Feng, M., Johnson, M.F. et al. Hydropower reservoirs will lead energy-sector carbon emissions by 2050 under a net-zero scenario. Commun Earth Environ (2026). https://doi.org/10.1038/s43247-026-03982-2
[2] Wang, Z., Feng, M., Johnson, M. F., Lipani, A. and Chan, F. The role of reservoir size in driving methane emissions in China. Water Research, 2025, 279: 123441.
[3] Wang, Z., Feng, M., Johnson, M. F., Guoqing, S. and Chan, F. Large Reservoir Expansion Underlies the Near-Doubling of Reservoir GHG Emissions in China Since 21st Century. Journal of Environmental Management, 2026, 404: 129245.
[4] Wang, Z., Chan, F. K. S., Feng, M. and Johnson, M. F. Greenhouse gas emissions from hydropower reservoirs: emission processes and management approaches, 2024, 19(7): 073002.
[5] Wang, Z., French, N., James, T., Schillaci, C., Chan, F., Feng, M. and Lipani, A. Climate and environmental data contribute to the prediction of grain commodity prices using deep learning. Journal of Sustainable Agriculture and Environment, 2023, 2(3): 251-265.
[6] Chan, F. K. S., Paszkowski, A., Wang, Z., Lu, X., Mitchell, G., Tran, D. D., Warner, J., Li, J., Chen, Y. D., Li, N., Pal, I., Griffiths, J., Chen, J., Chen, W.-Q. and Zhu, Y.-G. Building resilience in Asian mega-deltas. Nature Reviews Earth & Environment, 2024, 5(7): 522-537.
[7] Chan, F. K. S., Wang, Z., Chen, J., Lu, X., Nafea, T., Montz, B., Adekola, O., Pezzoli, A., Griffiths, J., Peng, Y., Li, P. and Wang, J. Selected global flood preparation and response lessons: implications for more resilient Chinese Cities. Natural Hazards, 2023, 118(3): 1767-1796.
[8] Chan, F. K. S., Chen, W. Y., Wang, Z., Loh, C., Thadani, D. R., Mitchell, G., Chau, P. Y. K., Altamirano, M. A., Jaimerena, B. A., Qi, Y., Li, L., Gu, X. and Zhang, F. Meeting financial challenge facing China's Sponge City Program (SCP) - Hong Kong as a gateway to green finance. Nature-Based Solutions, 2022, 2: 100019.
[9] Chan, F. K. S., Yang, L. E., Mitchell, G., Wright, N., Guan, M., Lu, X., Wang, Z., Montz, B. and Adekola, O. Comparison of sustainable flood risk management by four countries-the United Kingdom, the Netherlands, the United States, and Japan-and the implications for Asian coastal megacities. Natural Hazards and Earth System Sciences, 2022, 22(8): 2567-2588.(
[10] Mitchell, G., Chan, F. K. S., Chen, W. Y., Thadani, D. R., Robinson, G. M., Wang, Z., Li, L., Li, X., Mullins, M.-T. and Chau, P. Y. K. Can green city branding support China's Sponge City Programme? Blue-Green Systems, 2022, 4(1): 24-44.
[11] Chan, F. K. S., Chen, W. Y., Sang, Y., Chen, Y. D., Huang, W., Chen, W.-Q., Griffiths, J., Li, J., Peng, Y., Cai, X., He, J., Gu, X., Qi, Y., Lu, X., Xu, Y., Wang, Z., Chau, P. Y. K., Tan-Mullins, M. and Zhu, Y.-G. Build in prevention and preparedness to improve climate resilience in coastal cities: Lessons from China's GBA. One Earth, 2021, 4(10): 1356-1360.
专著章节
[1] Wang, Z., Chan, F. K. S., Tan-Mullins, M., Feng, M., & Sang, Y. Investigate the practices of water-energy-food nexus governance in the context of transboundary basin: A case study in the Mekong River. In The Mekong Delta Environmental Research Guidebook, Elsevier, 2025, pp. 43-71.
[2] Wang, Z. and Ka Shun Chan, F. Chapter 17: Water, energy and food security nexus approach to responding to hydrological changes driven by climate change. In Handbook on Climate Change and International Security, Edward Elgar Publishing, 2023, pp. 276-295.
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