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刘茂甸

职称:研究员、博士生导师

研究方向:全球变化与污染物循环

通讯地址:北京大学城环学院新楼

[email protected]

个人简历 人才培养 科学研究 教研成果



简介

刘茂甸,北京大学城市与环境学院研究员,博士生导师,国家高层次青年人才计划(海外)入选者,兼任北京大学碳中和研究院研究员。博士毕业于北京大学,师从王学军教授。攻读博士期间曾在UCONN海洋科学系联合培养,毕业后赴Yale进行博士后研究。专注于碳、汞等环境污染物在全球和区域尺度上的过程模拟和微观机理研究,在排放清单、传输模拟和观测、人类健康、环境变化等方面取得一系列成果。已在国际学术期刊上发表SCI论文近50篇。其中,20来篇为第一或通讯作者,涵盖《美国国家科学院院刊》(PNAS)、《自然-地球科学》(Nature Geoscience)、《自然-通讯》(Nature Communications)、《环境科学与技术》(ES&T)、《水研究》(Water Research)等刊物。研究成果引起了新华社、Nature 等国内外数十家主流媒体的广泛关注。所开发的方法学被联合国环境署采纳,为全球各国在水环境汞污染减排方面提供了科学指导。长期招收硕士生、博士生、博士后等。


工作经历

2023.04-至今,北京大学城市与环境学院,碳中和研究院,研究员

2019.10-2023.04,Yale University School of the Environment,博士后


教育经历

2014.09-2019.07,北京大学,环境地理,博士学位

2016.10-2017.10,University of Connecticut,Marine Science,博士联培

2010.09-2014.07,南京农业大学,农业资源与环境,学士学位


荣誉与奖励

国家青年人才计划(海外)

北京科协青年人才托举工程

北京大学优秀博士学位论文

博士生国家奖学金,2018

博士生国家奖学金,2016


杂志任职

2021-现在,Reviews of Environmental Contamination and Toxicology,编委



研究组长期招收博士后、博士生、硕士生、客座研究生等,教育和研究背景不限。

期待对全球环境变化、污染物环境过程模拟、环境地球化学、环境污染与健康风险等研究方向感兴趣的同学加入研究组。

热烈欢迎本科生加入研究组,参加拔尖计划、本研等。


研究方向

全球变化与污染物循环


目前主要兴趣包括:

多尺度高分辨率排放清单开发

碳氮汞等污染物大气-陆地-海洋过程模拟

陆地和海洋系统污染物埋藏

气候变化与陆地海洋环境相互作用

环境地球科学大数据分析

污染物-健康-气候综合评估





学术期刊:

48        Liu, Maodian*, Raymond, Peter A, Lauerwald, Ronny, Zhang, Qianru, Trapp-Müller, Gerrit, Davis, Kay L, Moosdorf, Nils, Xiao, Changhao, Middelburg, Jack J., Bouwman, Alexander F., Beusen, Arthur H. W., Peng, Changhui, Lacroix, Fabrice, Tian, Hanqin, Wang, Junjie, Li, Mingxu, Zhu, Qiuan, Cohen, Sagy, van Hoek, Wim J., Li, Ya, Li, Yangmingkai, Yao, Yuanzhi & Regnier, Pierre. Global riverine land-to-ocean carbon export constrained by observations and multi-model assessment. Nature Geoscience 17, 896-904 (2024).

47        Guo, Wenzhe, Liu, Maodian*, Zhang, Qianru, Deng, Yidan, Chu, Zhaohan, Qin, Hehao, Li, Yangmingkai, Liu, Yu-Rong, Zhang, Haoran, Zhang, Wei, Tao, Shu & Wang, Xuejun*. Warming-Induced Vegetation Greening May Aggravate Soil Mercury Levels Worldwide. Environmental Science & Technology 58, 15078–15089 (2024).

46        Chu, Zhaohan, Liu, Maodian*, Zhang, Qianru, Cai, Xingrui, Zhang, Yanping, Hu, Tao, Qiu, Xinran, Huang, Zhe & Wang, Xuejun*. Spatiotemporal distribution of global wind erosion over the past four decades. Environmental Research Letters 19, 114019 (2024).

45        Zhang, Yanxu, Zhang, Peng, Song, Zhengcheng, Huang, Shaojian, Yuan, Tengfei, Wu, Peipei, Shah, Viral, Liu, Maodian, Chen, Long, Wang, Xuejun, Zhou, Jun & Agnan, Yannick. An updated global mercury budget from a coupled atmosphere-land-ocean model: 40% more re-emissions buffer the effect of primary emission reductions. One Earth 6, 316-325 (2023).

44        Zhang, Qianru, Wang, Yuhang, Liu, Maodian, Zheng, Mingming, Yuan, Lianxin, Liu, Junfeng, Tao, Shu & Wang, Xuejun. Wintertime formation of large sulfate particles in China and implications for human health. Environmental Science & Technology 57, 20010-20023 (2023).

43        Yu, Chenghao, Lin, Huiming, Guo, Junming, Peng, Mao, Liu, Maodian, Tong, Yindong, Lu, Yifan, Wang, Xuejun & Pan, Xiangliang. Significant impacts of river inputs on the distributions and transports of mercury and methylmercury in nearshore and open seas–Simulation based on field surveys and mass balance modeling. Environment International 180, 108216 (2023).

42        Liu, Maodian*, Mason, Robert P, Vlahos, Penny, Whitney, Michael M, Zhang, Qianru, Warren, Joseph K, Wang, Xuejun & Baumann, Zofia. Riverine Discharge Fuels the Production of Methylmercury in a Large Temperate Estuary. Environmental Science & Technology 57, 13056-13066 (2023).

41       Chu, Zhaohan, Zhou, Yunzhuo, Liu, Maodian*, Lin, Huiming, Cheng, Menghan, Xie, Han, Yuan, Liuliang, Zhang, Zhihao, Zhang, Qianru, Li, Chengcheng, Chen, Yuang, Guo, Yanpei, Chen, Long & Wang, Xuejun. Large-Scale Observations Support Aboveground Vegetation as an Important Biological Mercury Sink in the Tibetan Plateau. Environmental Science & Technology 57, 17278-17290 (2023).

40        Zhang, Haoran, Li, Ruixiong, Cai, Xingrui, Zheng, Chaoyue, Liu, Laibao, Liu, Maodian, Zhang, Qianru, Lin, Huiming, Chen, Long & Wang, Xuejun. Do electricity flows hamper regional economic–environmental equity? Applied Energy 326, 120001 (2022).

39        Yu, Chenghao, Liu, Maodian, Guo, Junming, Lin, Huiming, Yan, Yunyun, Zhang, Qianru, Cheng, Menghan, Lu, Yifan, Sun, Xuejun & Wang, Xuejun. Transport of mercury in a regulated high-sediment river and its input to marginal seas. Water Research 214, 118211 (2022).

38        Chen, Yuang, Zhang, Qianru, Cai, Xingrui, Zhang, Haoran, Lin, Huiming, Zheng, Chaoyue, Guo, Zhanqiang, Hu, Shanying, Chen, Long, Tao, Shu, Liu, Maodian* & Wang, Xuejun*. Rapid increase in China’s industrial ammonia emissions: evidence from unit-based mapping. Environmental Science & Technology, es-2021-08369t (2022).

37        Zheng, Chaoyue, Zhang, Haoran, Cai, Xingrui, Chen, Long, Liu, Maodian, Lin, Huiming & Wang, Xuejun. Characteristics of CO2 and atmospheric pollutant emissions from China’s cement industry: A life-cycle perspective. Journal of Cleaner Production 282, 124533 (2021).

36        Zhang, Zhihao, Chen, Long, Cheng, Menghan, Liu, Maodian* & Wang, Xuejun*. Biotransport of mercury and human methylmercury exposure through crabs in China–A life cycle-based analysis. Journal of Hazardous Materials 415, 125684 (2021).

35        Yu, Chenghao, Xu, Yunping, Yan, Yunyun, Xiao, Wenjie, Liu, Maodian, Cheng, Menghan, He, Wei, Xu, Fuliu & Wang, Xuejun. Mercury and methylmercury in China's lake sediments and first estimation of mercury burial fluxes. Science of the Total Environment 770, 145338 (2021).

34        Liu, Maodian, Zhang, Qianru, Yu, Chenghao, Yuan, Liuliang, He, Yipeng, Xiao, Wenjie, Zhang, Haoran, Guo, Junming, Zhang, Wei, Li, Yanbin, Zhang, Qianggong, Chen, Long* & Wang, Xuejun*. Observation-based mercury export from rivers to coastal oceans in East Asia. Environmental Science & Technology 55, 14269-14280 (2021).

33        Liu, Maodian, Zhang, Qianru, Maavara, Taylor, Liu, Shaoda, Wang, Xuejun* & Raymond, Peter A*. Rivers as the largest source of mercury to coastal oceans worldwide. Nature Geoscience 14, 672-677 (2021).

32        Liu, Maodian, Xiao, Wenjie, Zhang, Qianru, Yuan, Shengliu, Raymond, Peter A, Chen, Jiubin, Liu, Junfeng, Tao, Shu, Xu, Yunping* & Wang, Xuejun*. Substantial accumulation of mercury in the deepest parts of the ocean and implications for the environmental mercury cycle. Proceedings of the National Academy of Sciences 118, e2102629118 (2021).

31        Cheng, Menghan, Liu, Maodian*, Li, Dou, Luo, Qing, Zhang, Zhihao, Yuan, Liuliang, Yu, Chenghao, Xie, Han, Lin, Huiming, Zhang, Qianru, De, Ji & Wang, Xuejun*. Human methylmercury exposure and potential impacts in central Tibet: food and traditional Tibetan medicine. Bulletin of Environmental Contamination and Toxicology 107, 449–458 (2021).

30        Zhang, Qianru, Tong, Peifeng, Liu, Maodian, Lin, Huiming, Yun, Xiao, Zhang, Haoran, Tao, Wei, Liu, Junfeng, Wang, Shuxiao, Tao, Shu & Wang, Xuejun. A WRF-Chem model-based future vehicle emission control policy simulation and assessment for the Beijing-Tianjin-Hebei region, China. Journal of Environmental Management 253, 109751 (2020).

29        Liu, Maodian, Xiao, Wenjie, Zhang, Qianru, Shi, Linlin, Wang, Xuejun* & Xu, Yunping*. Methylmercury bioaccumulation in deepest ocean fauna: Implications for ocean mercury biotransport through food webs. Environmental Science & Technology Letters 7, 469-476 (2020).

28        Liu, Maodian, He, Yipeng, Baumann, Zofia, Zhang, Qianru, Jing, Xin, Mason, Robert P, Xie, Han, Shen, Huizhong, Chen, Long, Zhang, Wei, Zhang, Qianggong & Wang, Xuejun*. The impact of the Three Gorges Dam on the fate of metal contaminants across the river–ocean continuum. Water Research 185, 116295 (2020).

27        Liu, Maodian, Cheng, Menghan, Zhang, Qianru, Hansen, Gunnar, He, Yipeng, Yu, Chenghao, Lin, Huiming, Zhang, Haoran & Wang, Xuejun*. Significant elevation of human methylmercury exposure induced by the food trade in Beijing, a developing megacity. Environment International 135, 105392 (2020).

26        Du, Peng, Zhang, Lingrong, Ma, Yuntao, Li, Xinyue, Wang, Zhenglu, Mao, Kang, Wang, Na, Li, Ying, He, Jia, Zhang, Xuan, Hao, Fanghua, Li, Xiqing, Liu, Maodian* & Wang, Xuejun*. Occurrence and fate of heavy metals in municipal wastewater in Heilongjiang Province, China: A monthly reconnaissance from 2015 to 2017. Water 12, 728 (2020).

25        Chen, Long, Liang, Sai, Zhang, Haoran, Cai, Xingrui, Chen, Yuanchen, Liu, Maodian, Lin, Huiming, Li, Yumeng, Qi, Jianchuan, Tong, Yindong, Zhang, Wei, Wang, Xuejun & Shu, Jiong. Rapid increase in cement-related mercury emissions and deposition in China during 2005–2015. Environmental Science & Technology 54, 14204-14214 (2020).

24        Cai, Xingrui, Cai, Bofeng, Zhang, Haoran, Chen, Long, Zheng, Chaoyue, Tong, Peifeng, Lin, Huiming, Zhang, Qianru, Liu, Maodian, Tong, Yindong & Wang, Xuejun. Establishment of high-resolution atmospheric mercury emission inventories for Chinese cement plants based on the mass balance method. Environmental Science & Technology 54, 13399-13408 (2020).

23        Zhang, Haoran, Li, Ruixiong, Chen, Bin, Lin, Huiming, Zhang, Qianru, Liu, Maodian, Chen, Long & Wang, Xuejun. Evolution of the life cycle primary PM2. 5 emissions in globalized production systems. Environment International 131, 104996 (2019).

22        Xie, Han, Liu, Maodian*, He, Yipeng, Lin, Huiming, Yu, Chenghao, Deng, Chunyan & Wang, Xuejun*. An experimental study of the impacts of solar radiation and temperature on mercury emission from different natural soils across China. Environmental Monitoring and Assessment 191, 1-13 (2019).

21        Liu, Maodian, Zhang, Qianru, Ge, Shidong, Mason, Robert P, Luo, Yao, He, Yipeng, Xie, Han, Sa, Rina, Chen, Long & Wang, Xuejun*. Rapid increase in the lateral transport of trace elements induced by soil erosion in major karst regions in China. Environmental Science & Technology 53, 4206-4214 (2019).

20        Liu, Maodian, Zhang, Qianru, Cheng, Menghan, He, Yipeng, Chen, Long, Zhang, Haoran, Cao, Hanlin, Shen, Huizhong, Zhang, Wei, Tao, Shu & Wang, Xuejun*. Rice life cycle-based global mercury biotransport and human methylmercury exposure. Nature Communications 10, 5164 (2019).

19        Liu, Maodian, Xie, Han, He, Yipeng, Zhang, Qianru, Sun, Xuejun, Yu, Chenghao, Chen, Long, Zhang, Wei, Zhang, Qianggong & Wang, Xuejun*. Sources and transport of methylmercury in the Yangtze River and the impact of the Three Gorges Dam. Water Research 166, 115042 (2019).

18        Liu, Maodian, Baumann, Zofia, He, Yipeng, Mason, Robert P & Wang, Xuejun*. Reply to Comment on “Traditional Tibetan Medicine Induced High Methylmercury Exposure Level and Environmental Mercury Burden in Tibet, China”. Environmental Science & Technology 53, 12956-12958 (2019).

17        Chen, Yuanchen, Zang, Lu, Shen, Guofeng, Liu, Maodian, Du, Wei, Fei, Jie, Yang, Liyang, Chen, Long, Wang, Xuejun, Liu, Weiping & Zhao, Meirong. Resolution of the ongoing challenge of estimating nonpoint source neonicotinoid pollution in the Yangtze River Basin using a modified mass balance approach. Environmental Science & Technology 53, 2539-2548 (2019).

16        Chen, Yuanchen, Zang, Lu, Liu, Maodian, Zhang, Chunlong, Shen, Guofeng, Du, Wei, Sun, Zhe, Fei, Jie, Yang, Liyang, Wang, Yonghui, Wang, Xuejun & Zhao, Meirong. Ecological risk assessment of the increasing use of the neonicotinoid insecticides along the east coast of China. Environment International 127, 550-557 (2019).

15        Chen, Long, Liang, Sai, Liu, Maodian, Yi, Yujun, Mi, Zhifu, Zhang, Yanxu, Li, Yumeng, Qi, Jianchuan, Meng, Jing, Tang, Xi, Zhang, Haoran, Tong, Yindong, Zhang, Wei, Wang, Xuejun, Shu, Jiong & Yang, Zhifeng. Trans-provincial health impacts of atmospheric mercury emissions in China. Nature Communications 10, 1484 (2019).

14        Zhang, Haoran, Chen, Long, Tong, Yindong, Zhang, Wei, Yang, Wen, Liu, Maodian, Liu, Laibao, Wang, Huanhuan & Wang, Xuejun. Impacts of supply and consumption structure on the mercury emission in China: an input-output analysis based assessment. Journal of Cleaner Production 170, 96-107 (2018).

13        Liu, Maodian, Zhang, Qianru, Luo, Yao, Mason, Robert P, Ge, Shidong, He, Yipeng, Yu, Chenghao, Sa, Rina, Cao, Hanlin & Wang, Xuejun*. Impact of water-induced soil erosion on the terrestrial transport and atmospheric emission of mercury in China. Environmental Science & Technology 52, 6945-6956 (2018).

12        Liu, Maodian, He, Yipeng, Ge, Shidong, Cheng, Menghan, Xie, Han, Yu, Chenghao & Wang, Xuejun*. Chemical form and bioaccessibility of mercury in traditional Tibetan medicines. Environmental Science & Technology Letters 5, 552-557 (2018).

11        Liu, Maodian, He, Yipeng, Baumann, Zofia, Yu, Chenghao, Ge, Shidong, Sun, Xuejun, Cheng, Menghan, Shen, Huizhong, Mason, Robert P, Chen, Long, Zhang, Qianggong & Wang, Xuejun*. Traditional Tibetan medicine induced high methylmercury exposure level and environmental mercury burden in Tibet, China. Environmental Science & Technology 52, 8838-8847 (2018).

10        Liu, Maodian, Du, Peng, Yu, Chenghao, He, Yipeng, Zhang, Haoran, Sun, Xuejun, Lin, Huiming, Luo, Yao, Xie, Han, Guo, Junming, Tong, Yindong, Zhang, Qianggong, Chen, Long, Zhang, Wei, Li, Xiqing & Wang, Xuejun*. Increases of total mercury and methylmercury releases from municipal sewage into environment in China and implications. Environmental Science & Technology 52, 124-134 (2018).

9          Liu, Maodian, Chen, Long, He, Yipeng, Baumann, Zofia, Mason, Robert P, Shen, Huizhong, Yu, Chenghao, Zhang, Wei, Zhang, Qianggong & Wang, Xuejun*. Impacts of farmed fish consumption and food trade on methylmercury exposure in China. Environment International 120, 333-344 (2018).

8          Chen, Long, Zhang, Wei, Zhang, Yanxu, Tong, Yindong, Liu, Maodian, Wang, Huanhuan, Xie, Han & Wang, Xuejun. Historical and future trends in global source-receptor relationships of mercury. Science of the Total Environment 610, 24-31 (2018).

7          Chen, Long, Meng, Jing, Liang, Sai, Zhang, Haoran, Zhang, Wei, Liu, Maodian, Tong, Yindong, Wang, Huanhuan, Wang, Wei, Wang, Xuejun & Shu, Jiong. Trade-induced atmospheric mercury deposition over China and implications for demand-side controls. Environmental Science & Technology 52, 2036-2045 (2018).

6          Chen, Long, Liang, Sai, Zhang, Yanxu, Liu, Maodian, Meng, Jing, Zhang, Haoran, Tang, Xi, Li, Yumeng, Tong, Yindong, Zhang, Wei, Wang, Xuejun & Shu, Jiong. Atmospheric mercury outflow from China and interprovincial trade. Environmental Science & Technology 52, 13792-13800 (2018).

5          Tong, Yindong, Bu, Xiaoge, Chen, Junyue, Zhou, Feng, Chen, Long, Liu, Maodian, Tan, Xin, Yu, Tao, Zhang, Wei, Mi, Zhaorong, Ma, Lekuan, Wang, Xuejun & Ni, Jing. Estimation of nutrient discharge from the Yangtze River to the East China Sea and the identification of nutrient sources. Journal of Hazardous Materials 321, 728-736 (2017).

4          Tong, Yindong, Bu, Xiaoge, Chen, Cen, Yang, Xi, Lu, Yiren, Liang, Huijiao, Liu, Maodian, Lin, Huiming, Zhang, Haoran, Lin, Yan, Zhou, Feng, Zhao, Shen, Wu, Tianyu, Mao, Guozhu, Zhang, Wei & Wang, Xuejun. Impacts of sanitation improvement on reduction of nitrogen discharges entering the environment from human excreta in China. Science of the Total Environment 593, 439-448 (2017).

3          Liu, Maodian, Zhang, Wei*, Wang, Xuejun*, Chen, Long, Wang, Huanhuan, Luo, Yao, Zhang, Haoran, Shen, Huizhong, Tong, Yindong, Ou, Langbo, Xie, Han, Ye, Xuejie & Deng, Chunyan. Mercury release to aquatic environments from anthropogenic sources in China from 2001 to 2012. Environmental Science & Technology 50, 8169-8177 (2016).

2          Liu, Maodian, Chen, Long, Wang, Xuejun*, Zhang, Wei*, Tong, Yindong, Ou, Langbo, Xie, Han, Shen, Huizhong, Ye, Xuejie, Deng, Chunyan & Wang, Huanhuan. Mercury export from mainland China to adjacent seas and its influence on the marine mercury balance. Environmental Science & Technology 50, 6224-6232 (2016).

1          Deng, Chunyan, Xie, Han, Ye, Xuejie, Zhang, Haoran, Liu, Maodian, Tong, Yindong, Ou, Langbo, Yuan, Wen, Zhang, Wei & Wang, Xuejun. Mercury risk assessment combining internal and external exposure methods for a population living near a municipal solid waste incinerator. Environmental Pollution 219, 1060-1068 (2016).