当前位置: X-MOL首页全球导师 国内导师 › 王鹤鸣

个人简介

2021.1-至今 东北大学 国家环境保护生态工业重点实验室 教授/博士生导师 2015.1-2020.12 东北大学 国家环境保护生态工业重点实验室 副教授/硕士生导师(2015)/博士生导师(2020) 2018.10-2019.10 澳大利亚 CSIRO Visiting Scientist(合作导师:Heinz Schandl教授) 2012.01-2014.12东北大学 国家环境保护生态工业重点实验室 讲师 2011.10-2012.01东北大学 热能工程专业 工业生态学方向 工学博士学位(博士生导师:陆钟武院士) 2010.10-2011.09日本 国立环境研究所 工业生态学方向 联合培养博士研究生(博士生导师:Yuichi Moriguchi教授) 2007.03-2010.09东北大学 热能工程专业 工业生态学方向 博士研究生(博士生导师:陆钟武院士) 2005.09-2007.02东北大学 工程热物理专业 硕士研究生(硕士生导师:李宝宽教授) 2001.09-2005.07东北大学 热能工程专业 获工学学士学位

研究领域

新能源与碳中和大数据分析、绿色一带一路、关键矿产物质流与循环经济、可持续发展目标(SDGs)

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

(1) Wang, H.#; Wang, P. #; Zhang, X. #; Chen, W.-Q.*; Tzachor, A. *; Fishman, T.; Schandl, H.; Acuto, M.; Yang, Y.; Lu, Y.; Böcher, C.; Ma, F.; Zhang, C.; Yue, Q.; Du, T.; Liu, J.*; Zhu, Y.-G. Substantial Increase in China’s Manufactured Sand Supply since 2010. Nature Geoscience. 2024, 1–4. https://doi.org/10.1038/s41561-024-01501-6. (2) Tzachor, A.#*; Wang, H.#*; Richards, C. E#. Addressing the Excessive Water Consumption of Materials Manufacturing. Nature Water 2024, 2 (1), 4–7. https://doi.org/10.1038/s44221-023-00179-1. (3) Huang, Y.#; Wang, P.#; Wang, Y.*; Wang, H.*; Zhang, Y.; Xu, X.; Wang, C.; Yue, Q.; Du, T.; Chen, W.-Q. Criticality Assessment of Minerals Associated with China’s Battery Technologies. Journal of Cleaner Production 2024, 448, 141577. https://doi.org/10.1016/j.jclepro.2024.141577. (4) Wang, Y.; Guo, J.*; Yue, Q.; Chen, W.; Du, T.; Wang, H*. Total CO2 Emissions Associated with Buildings in 266 Chinese Cities : Characteristics and Influencing Factors. Resources, Conservation and Recycling 2023, 188 (September 2022), 106692. https://doi.org/10.1016/j.resconrec.2022.106692. (5) Wang, Y.#; Ma, F.#; Tzachor, A.; Wang, P.; Wang, H.*; Lyu, J.*; Yue, Q.; Du, T.; Chen, W.-Q.; Liang, S. Quantifying Economic Sectoral Iron Commodity Use and Related Vulnerability in China’s Supply Chains. Resources, Conservation and Recycling 2023, 198, 107150. https://doi.org/10.1016/j.resconrec.2023.107150. (6) Zhong, Q.; Zhang, Z.; Wang, H.*; Zhang, X.; Wang, Y.; Wang, P.; Ma, F.; Yue, Q.; Du, T.; Chen, W.-Q.; Liang, S. Incorporating Scarcity into Footprints Reveals Diverse Supply Chain Hotspots for Global Fossil Fuel Management. Applied Energy 2023, 349, 121692. https://doi.org/10.1016/j.apenergy.2023.121692. (7) Wang, Y.; Wang, X.; Wang, H.*; Zhang, X.; Zhong, Q.; Yue, Q.; Du, T.; Liang, S. Human Health and Ecosystem Impacts of China ’ s Resource Extraction. Science of the Total Environment 2022, 847 (April), 157465. https://doi.org/10.1016/j.scitotenv.2022.157465. (8) Wang, H.*; Li, X.; Tian, X.; Ma, L.; Wang, G.; Wang, X.; Wang, Z.; Wang, J.; Yue, Q. Socioeconomic Drivers of China ’ s Resource Efficiency Improvement : A Structural Decomposition Analysis for 1997 – 2017. Resources, Conservation and Recycling 2022, 178 (October 2021), 106028. https://doi.org/10.1016/j.resconrec.2021.106028. (9) Wang, H.; Wang, X.; Zhang, X.; Liu, G.; Chen, W. Q.; Chen, S.; Du, T.; Shi, L*. The Coupling between Material Footprint and Economic Growth in the “ Belt and Road ” Countries. Journal of Cleaner Production 2022, 359 (December 2021), 132110. https://doi.org/10.1016/j.jclepro.2022.132110. (10) Ma, F.; Wang, H.*; Schandl, H.; Fishman, T.; Tan, X.; Li, Y.; Shi, L.; Wang, P.; Chen, W. Exploring the Relationship between Economic Complexity and Resource Efficiency. Resources, Conservation & Recycling 2022, 186 (11), 106530. https://doi.org/10.1016/j.resconrec.2022.106530. (11) Chen, C.; Qi, J.; Li, N.*; Ji, T.; Wang, H.*; Huang, Y.; Guo, J.; Lu, X.; Han, R.; Wei, J.; Chen, W. China Economy-Wide Material Flow Account Database from 1990 to 2020. Scientific Data 2022, 1–15. https://doi.org/10.1038/s41597-022-01611-z. (12) Zhang, Z.; Jiang, Z.; Chen, C.; Zhang, X.; Wang, H.*; Li, N.; Wang, P.; Zhang, C.; Ma, F.; Huang, Y.; Qi, J.; Chen, W.-Q*. Advancing UN Comtrade for Physical Trade Flow Analysis: Addressing the Issue of Missing Values. Resources, Conservation and Recycling 2022, 186, 106525. https://doi.org/10.1016/j.resconrec.2022.106525. (13) Zhang, J.; Wang, H.*; Ma, L.; Wang, J.; Wang, J.; Wang, Z.; Yue, Q. Structural Path Decomposition Analysis of Resource Utilization in China, 1997–2017. Journal of Cleaner Production 2021, 322 (11), 129006. https://doi.org/10.1016/j.jclepro.2021.129006. (14) Wang, H.*; Wei, Y.; Wu, Y.; Wang, X.; Wang, Y.; Wang, G.; Yue, Q. Spatiotemporal Dynamics and Influencing Factors of the Global Material Footprint. Environmental Science and Pollution Research 2021. https://doi.org/10.1007/s11356-021-16923-7. (15) Wang, H. M.*; Wei, Y.; Zhao, S.; Liu, G. X.; Ma, F.; Wang, G. Q.; Wang, Y.; Wang, X. Z.; Yang, D.; Liu, J. R.; Wang, H. T.; Shi, F.; Chen, W. Q. Temporal and Spatial Variation in the Environmental Impacts of China’s Resource Extraction at the Provincial Scale. Ecosystem Health and Sustainability 2020, 6 (1). https://doi.org/10.1080/20964129.2020.1812434. (16) Wang, H.; Wang, G.; Qi, J.; Schandl, H.; Li, Y.; Feng, C.; Yang, X.; Wang, Y.; Wang, X.; Liang, S*. Scarcity-Weighted Fossil Fuel Footprint of China at the Provincial Level. Applied Energy 2020, 258, 114081. https://doi.org/10.1016/j.apenergy.2019.114081. (17) Wang, H.*; Schandl, H.; Wang, X.; Ma, F.; Yue, Q.; Wang, G.; Wang, Y.; Wei, Y.; Zhang, Z.; Zheng, R. Measuring Progress of China’s Circular Economy. Resources, Conservation and Recycling 2020, 163 (11), 105070. https://doi.org/10.1016/j.resconrec.2020.105070. (18) Du, T.; Wang, J.; Wang, H.*; Tian, X.; Yue, Q.; Tanikawa, H. CO2 Emissions from the Chinese Cement Sector: Analysis from Both the Supply and Demand Sides. Journal of Industrial Ecology 2020, n/a (n/a). https://doi.org/10.1111/jiec.12986. (19) Wang, H.*; Schandl, H.; Wang, G.; Ma, L.; Wang, Y. Regional Material Flow Accounts for China: Examining China’s Natural Resource Use at the Provincial and National Level. Journal of Industrial Ecology 2019, 23 (6), 1425–1438. https://doi.org/10.1111/jiec.12933. (20) Wang, J.; Du, T.; Wang, H.*; Liang, S.; Xu, M. Identifying Critical Sectors and Supply Chain Paths for the Consumption of Domestic Resource Extraction in China. Journal of Cleaner Production 2019, 208, 1577–1586. https://doi.org/10.1016/j.jclepro.2018.10.151. (21) Zhao, S.; Wang, H.-M.*; Chen, W.-Q.; Yang, D.; Liu, J.-R.; Shi, F. Environmental Impacts of Domestic Resource Extraction in China. Ecosystem Health and Sustainability 2019, 1–12. https://doi.org/10.1080/20964129.2019.1577703. (22) Ma, F.; Wang, H.*; Zhu, B.; Chen, D.; Dai, H.; Wang, J.; Zhao, S.; Yue, Q.; Zhang, G.; Xie, Y.; Geng, Y.; Du, T. Material Footprint of a Fast-Industrializing Region in China, Part 1: Exploring the Materialization Process of Liaoning Province. Resources, Conservation and Recycling 2018, 134, 228–238. https://doi.org/10.1016/j.resconrec.2018.03.015. (23) Wang, H.; Dai, H.*; Dong, L.; Xie, Y.; Geng, Y.; Yue, Q.; Ma, F.; Wang, J.; Du, T. Co-Benefit of Carbon Mitigation on Resource Use in China. Journal of Cleaner Production 2018, 174, 1096–1113. https://doi.org/10.1016/j.jclepro.2017.11.070. (24) Lu, Z.; Wang, H.*; Yue, Q. Decoupling Analysis of the Environmental Mountain-with Case Studies from China. Journal of Industrial Ecology 2015, 19 (6), 1082–1090. https://doi.org/10.1111/jiec.12226. (25) Wang, H. M.; Tian, X.*; Tanikawa, H.; Chang, M.; Hashimoto, S.; Moriguchi, Y.; Lu, Z. W. Exploring China’s Materialization Process with Economic Transition: Analysis of Raw Material Consumption and Its Socioeconomic Drivers. Environmental Science & Technology 2014, 48 (9), 5025–5032. https://doi.org/10.1021/es405812w. (26) Wang, H.*; Yue, Q.; Lu, Z.; Schuetz, H.; Bringezu, S. Total Material Requirement of Growing China: 1995–2008. Resources 2013, 2 (3), 270–285. https://doi.org/10.3390/resources2030270. (27) Wang, H.*; Hashimoto, S.; Yue, Q.; Moriguchi, Y.; Lu, Z. Decoupling Analysis of Four Selected Countries. Journal of Industrial Ecology 2013, 17 (4), 618–629. https://doi.org/10.1111/jiec.12005. (28) Wang, H.*; Hashimoto, S.; Moriguchi, Y.; Yue, Q.; Lu, Z. Resource Use in Growing China. J Ind Ecol 2012, 16 (4), 481–492. https://doi.org/10.1111/j.1530-9290.2012.00484.x. (29) 陆钟武*; 蔡九菊; 杜涛; 岳强; 高成康; 王鹤鸣*. 论钢铁行业能耗、物耗、排放的宏观调控. 中国工程科学 2015, 17 (5), 126–132. (30) 王鹤鸣; 岳强*; 陆钟武. 中国1998年-2008年资源消耗与经济增长的脱钩分析. 资源科学 2011, 33 (9), 1757–1767. (31) 赵连征, 汪鹏*, 汤林彬, 王鹤鸣*, 岳强, 陈伟强, 杜涛. 中国锂元素动态物质流及关键驱动因素分析. 科技导报 2022, 40 (21), 100–109. https://doi.org/10.3981/j.issn.1000-7857.2022.21.010. (32) 黄亚伟, 汤林彬, 王鹤鸣*, 汪鹏, 岳强, 杜涛, 陈伟强*. 能源转型背景下的中国镍动态物质流分析. 科技导报 2022, 40 (21), 110–119. https://doi.org/10.3981/j.issn. (33) 王昕;黄亚伟;张君华;李新宇;王鹤鸣*. “ 一带一路 ” 国家金属资源的稀缺性分析. 北京师范大学学报(自然科学版) 2021, 57 (05), 718–724. (34) 邢欣然, 汤林彬*, 汪鹏, 王鹤鸣*, 岳强, 陈伟强, 杜涛. 基于物质流分析的中国钴资源供需形势. 科技导报 2022, 40 (21), 120–128. https://doi.org/10.1541/ieejpes.142.nl8_1. (35) 李新宇, 汪鹏*, 王路, 王鹤鸣*, 岳强, 杜涛, 陈伟强. 中国稀土镨元素的供需失衡问题——基于镨的物质流分析. 科技导报 2022, 40 (21), 201–207. https://doi.org/10.1515/9783112623206-051.

推荐链接
down
wechat
bug