
博士,中国科学院地理科学与资源研究所副研究员,硕士生导师。地理资源所“可桢-秉维青年人才”和博士后创新人才支持计划获得者。主持国家自然科学基金委面上基金、青年基金、中国科学院青年团队计划课题、科技部基础调查专项子课题、博士后面上基金,作为骨干参与基金委卓越研究群体项目、国家重点研发计划课题、中国科学院碳中和重大咨询项目专题、科学院先导专项子课题等。
长期从事大气沉降及其生态环境效应研究,在大气氮沉降动态表征、驱动机制解析及多组分沉降与生态环境互馈方面取得系统性原创成果。相关成果共发表学术论文60篇,其中SCI论文46篇。第一或通讯作者(含共同)论文27篇,代表性论文包括Nature子刊、Science Bulletin、Global Change Biology和Environmental Science & Technology等地学和生态环境领域顶级期刊。总被引用次数3800余次(Google Scholar),H指数25。3篇入选ESI高被引论文。担任《应用生态学报》青年编委及中国矿物岩石地球化学学会元素地球化学专业委员会委员。参编中文专著4部。为NC、EST、GCB、地理学报等众多国内外期刊审稿。
工作及学习经历:
2020.08-至今 中国科学院地理科学与资源研究所 助理研究员、副研究员
2018.07-2020.07 中国科学院地理科学与资源研究所 特别研究助理(博士后)
2015.09-2018.06 中国科学院大学 地理科学与资源研究所 生态学博士
2012.09-2015.06 中国科学院大学 地理科学与资源研究所 环境工程硕士
2008.09-2012.06 中国石油大学(华东)化学工程学院 环境工程学士
研究方向:
大气沉降及其生态效应、全球变化与碳氮循环
代表性论文(*通讯作者,#共一):
[1] Xi Y, Wang Q, Zhu J*, Penuelas J, Hao T, Zhang Q, Chen Y, Tai Z, Lin Q, Wang H, Liu Y, Li L, Yu G* (2026) Atmospheric Chlorine Wet Deposition in China: National Decreases but Localized Increases in Urban Agglomerations. Environmental Science & Technology, 60, 17291-17301.
[2] Zhang Q, Zhu J*, Wang Q, Hao T, Vogt R D, Fernández-Martínez M, Xi Y, Lin Q, Chen Y, He N, Yu G, Liu C-Q* (2026) Disproportionate Soil Inorganic Carbon Loss and Associated CO2 Emission Driven by Soil Acidification. Earth's Future, 14(7): e2026EF008227.
[3] Tai Z, Wang Q, Zhu J*, Xi Y, Chen Y, Lin Q, Wang C, Yu G (2026) Declining Atmospheric Phosphorus Wet Deposition in China. Global Biogeochemical Cycles, 40, e2025GB008701.
[4] Zhang Q, Zhu J*, Wang Q, Yu G, Liu C-Q* (2025) Climate and anthropogenic activities control spatiotemporal dynamics of topsoil inorganic carbon in China. Communications Earth & Environment, 6, 625.
[5] Zhu J#, Jia Y#, Yu G*, Wang Q, He N, Chen Z, He H, Zhu X, Li P, Zhang F, Liu X, Goulding K, Fowler D, Vitousek P (2025) Changing patterns of global nitrogen deposition driven by socio-economic development. Nature Communications, 16, 46.(高被引论文、热点论文)
[6] Chen Y, Wang Q, Zhu J*, Yang M, Hao T, Zhang Q, Xi Y, Yu G (2024) Multi-elemental stoichiometric ratios of atmospheric wet deposition in Chinese terrestrial ecosystems. Environmental Research, 245, 117987.
[7] Lin Q, Zhu J*, Wang Q, Zhang Q, Yu G (2024) Patterns and drivers of atmospheric nitrogen deposition retention in global forests. Global Change Biology, 30, e17410.
[8] Xi Y, Wang Q, Zhu J*, Yang M, Hao T, Chen Y, Zhang Q, He N, Yu G (2023) Atmospheric wet organic nitrogen deposition in China: Insights from the national observation network. Science of the Total Environment, 898, 165629.
[9] Chen Y, Wang Q, Zhu J*, Xi Y, Zhang Q, Dai G, He N, Yu G (2022) Atmospheric Wet Iron, Molybdenum, and Vanadium Deposition in Chinese Terrestrial Ecosystems. Environmental Science & Technology, 56, 12898-12905.
[10] Xi Y, Wang Q, Zhu J*, Zhang Q, Chen Y, He N, Yu G (2022) Atmospheric silicon wet deposition and its influencing factors in China. Environmental Research, 214, 114084.
[11] Zhang Q, Zhu J*, Wang Q, Xu L, Li M, Dai G, Mulder J, Xi Y, He N* (2022a) Soil acidification in China’s forests due to atmospheric acid deposition from 1980 to 2050. Science Bulletin, 67, 914-917.
[12] Zhang Q, Zhu J*, Wang Q, Xu L, Li M, Li Y, Liu C, He N* (2022b) New Insights Into Multi-Component Atmospheric Wet Deposition Across China: A Multidimensional Analysis. Earth's Future, 10, e2021EF002588.
[13] Xi Y, Zhu J*, Zhang Q, Dai G, He N, Wang Q* (2021) Hysteresis response of wet nitrate deposition to emission reduction in Chinese terrestrial ecosystems. Atmospheric Environment, 260, 118555.
[14] Zhu J*, Wang Q, He N, Yu G* (2021) Effect of atmospheric nitrogen deposition and its components on carbon flux in terrestrial ecosystems in China. Environmental Research, 202, 111787.
[15] Zhu J#, Chen Z#, Wang Q, Xu L, He N, Jia Y, Zhang Q, Yu G (2020) Potential transition in the effects of atmospheric nitrogen deposition in China. Environmental Pollution, 258, 113739.
[16] Yu G, Jia Y, He N, Zhu J, Chen Z, Wang Q, Piao S, Liu X, He H, Guo X, Wen Z, Li P, Ding G, Goulding K (2019) Stabilization of atmospheric nitrogen deposition in China over the past decade. Nature Geoscience, 12, 424-429. (高被引论文)
[17] Zhu J, He N, Zhang J, Wang Q, Zhao N, Jia Y, Ge J, Yu G (2017) Estimation of carbon sequestration in China’s forests induced by atmospheric wet nitrogen deposition using the principles of ecological stoichiometry. Environmental Research Letters, 12, 114038.
[18] Zhu J, Wang Q, He N, Smith M D, Elser J J, Du J, Yuan G, Yu G, Yu Q (2016a) Imbalanced atmospheric nitrogen and phosphorus depositions in China: Implications for nutrient limitation. Journal of Geophysical Research-Biogeosciences, 121, 1605-1616.
[19] Zhu J, Wang Q, Yu H, Li M, He N (2016b) Heavy metal deposition through rainfall in Chinese natural terrestrial ecosystems: Evidences from national-scale network monitoring. Chemosphere, 164, 128-133.
[20] Zhu J, He N, Wang Q, Yuan G, Wen D, Yu G, Jia Y (2015) The composition, spatial patterns, and influencing factors of atmospheric wet nitrogen deposition in Chinese terrestrial ecosystems. Science of the Total Environment, 511, 777-785.(高被引论文)
招生专业:生态学、资源与环境
招生方向:生态系统生态学、全球变化生态学
课题组倡导“快乐科研”,学术氛围融洽开放,团队协作愉快。欢迎生态学、地理学、大气化学、环境科学等相关背景、热爱科研并愿意长期投入科学探索的同学联系报考加入。
联系方式:zhujx@igsnrr.ac.cn 或者 zhujianxing2008@yeah.net
更新日期:2026年7月