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江南娱乐网页版入口官网

吴旭东

作者:来源:发布日期:2022-09-29

基础信息

吴旭东,男,汉族,1991年生,现任江南的注册网址水土保持学院副教授。博士毕业于北京大学,获评德国洪堡学者、中国科协青年托举人才、江南的注册网址高层次引进人才、北林学者、北京大学博雅博士后等人才称号。已主持国家自然科学基金、中国科协青年人才托举工程、中国博士后科学基金等项目,在Renewable and Sustainable Energy ReviewsJournal of HydrologyLand Use Policy等领域内权威期刊发表论文四十余篇,其中以第一/通讯作者发表SCI一区/TOP期刊论文25篇,并被授予爱思唯尔大力神奖。另与翻译界著名学者、北京大学力学系李植先生合译有《自然三定律:热力学简说》等书。联系邮箱:wuxudong@bjfu.edu.cn


学习工作经历

20207月至今,江南的注册网址,水土保持学院,副教授

20187月—20206月,北京大学,经济学院,博雅博士后

20139月—20187月,北京大学,力学系,理学博士

20109月—20137月,华中科技大学,外国语言文学系,文学学士

20099月—20137月,华中科技大学,热能与动力工程专业,工学学士


研究方向

农田系统碳排放与林业碳汇、热力学与生态系统服务功能评价、GIS与高精度土壤侵蚀模拟、灾害风险与经济损失评价、神经网络算法与土地利用模拟等


科研项目

2021—2023年,中国科协青年人才托举工程项目,主持

2021—2022年,中央高校基本业务费专项资金项目,主持

2020—2022年,国家自然科学基金青年基金项目,主持

2018—2020年,中国博士后科学基金一等面上项目,主持


教学课程

本科生课程:《生态水文模型》、《经济地理学》

研究生课程:《Hydrology and Water Resources


成果奖励

20227月,德国洪堡学者

20221月,北林学者青年拔尖人才计划

20213月,中国科协青年人才托举工程计划

20206月,江南的注册网址高层次引进人才计划

20196月,爱思唯尔Atlas奖(大力神奖)

20181月,北京大学博雅博士后计划


发表论文

第一/通讯作者身份

  1. Li CH,Wu XD1, Chen K, Chen GQ*, 2022.Global pastureland use as reflected in inter-regional supply chain.Journal of Environmental Management322, 116016. (Contributed equally as the 1stauthor; SCI, TOP, IF=8.910)

  2. Wang X, Tian WJ, Guan CH,Wu XD*, Sun XD, Zhang B*, 2022.Global temporal evolution of CH4emissions via geo-economic integration.Journal of Environmental Management305, 114377. (SCI, TOP, IF=8.910)

  3. Wu XD, Li CH, Shao L, Meng J, Zhang LX*, Chen GQ*, 2021.Is solar power renewable and carbon-neutral: Evidence from a pilot solar tower plant in China under a systems view.Renewable and Sustainable Energy Reviews138, 110655. (SCI, TOP, IF=16.799)

  4. Li CH,Wu XD1, Chen GQ, Han MY, Chen K, Yangzong CZ, Lo Dan, Alsaedi A, Hayat T, 2021.Pastureland use of China: Accounting variations from different input-output analyses.Land Use Policy109, 105597. (Contributed equally as the 1stauthor; SSCI, TOP, IF=6.189)

  5. Wu XD*, Li CH, Guo JL, Wu XF, Meng J, Chen GQ*, 2021.Extended carbon footprint and emission transfer of world regions: With both primary and intermediate inputs into account.Science of The Total Environment775, 145578. (SCI, TOP, IF=10.753)

  6. Zhang Y,Wu XD*, Guan CH, Zhang B*, 2021.Methane emissions of major economies in 2014: A household-consumption-based perspective.Science of The Total Environment768, 144523. (Corresponding author; SCI, TOP, IF=10.753)

  7. Wu XD*, Shao L, Chen GQ*, Han MY, Chi YY, Yang Q, Alhodaly M, Wakeel M, 2021.Unveiling land footprint of solar power: A pilot solar tower project in China.Journal of Environmental Management280, 111741. (SCI, TOP, IF=8.910)

  8. Fan Y,Wu XD1, Shao L, Han MY, Chen B, Meng J, Wang P, Chen GQ, 2021.Can constructed wetlands be more land efficient than centralized wastewater treatment systems? A case study based on direct and indirect land use.Science of The Total Environment770, 144841. (Contributed equally as the 1stauthor; SCI, TOP, IF=10.753)

  9. Xie YJ, Zeng L, Wang P*,Wu XD*, Feng TJ, 2021.Water cost for water purification: Renewability assessment of a typical wastewater treatment plant in China.Journal of Cleaner Production349, 131474. (SCI, TOP, IF=11.072)

  10. Wu XD*, Guo JL, Chen GQ*, Wu XF, Meng J, Alhodaly M, Wakeel M, 2021.Energy use flows in the supply chains of the world economy: A full account of both primary and intermediate inputs.Journal of Cleaner Production320, 128621.(SCI, TOP, IF=11.072)

  11. Fan Y,Wu XD1, Wu XF, Li CH, Yang Q, Hayat T, Alsaedi A, Wang P*, Chen GQ*, 2020.A unified ecological assessment of a solar concentrating plant based on an integrated approach joining cosmic exergy analysis with ecological indicators.Renewable and Sustainable Energy Reviews129, 109934. (Contributed equally as the 1stauthor; SCI, TOP, IF=16.799)

  12. Ji X*, Liu YF, Meng J,Wu XD*, 2020.Global supply chain of biomass use and the shift of environmental welfare from primary exploiters to final consumers.Applied Energy276, 115484. (Corresponding author; SCI, TOP, IF=11.446)

  13. Wu XD, Guo JL, Li CH, Chen GQ*, Ji X, 2020.Carbon emissions embodied in the global supply chain: Intermediate and nal trade imbalances.Science of the Total Environment707, 134670. (SCI, TOP, IF=10.753)

  14. Wu XD, Guo JL, Li CH, Shao L, Han MY, Chen GQ*, 2019.Global socio-hydrology: An overview of virtual water use by the world economy from source of exploitation to sink of final consumption.Journal of Hydrology573, 794–810. (SCI, TOP, IF=6.708)

  15. Wu XD, Guo JL, Ji X, Chen GQ*, 2019.Energy use in world economy from household-consumption-based perspective.Energy Policy127, 287-298. (SSCI/SCI, TOP, IF=7.576)

  16. Chen GQ*,Wu XD*, Guo JL, Meng J, Li CH, 2019.Global overview for energy use of the world economy: Household-consumption-based accounting based on the world input-output database (WIOD).Energy Economics81, 835–847. (Corresponding author; SSCI, IF=9.252)

  17. Wu XD, Guo JL, Meng J, Chen GQ*, 2019.Energy use by globalized economy: Total-consumption-based perspective via multi-region input-output accounting.Science of the Total Environment662, 65–76. (SCI, TOP, IF=10.753)

  18. Wu XD,Ji X, Li CH, Xia XH, Chen GQ*., 2019.Water footprint of thermal power in China: Implications from the high amount of industrial water use by plant infrastructure of coal-fired generation system.Energy Policy132, 452–461. (SSCI/SCI, TOP, IF=7.576)

  19. Wu XD, Guo JL, Han MY, Chen GQ*, 2018.An overview of arable land use for the world economy: From source to sink via the global supply chain.Land Use Policy76: 201-214. (SSCI, TOP, IF=6.189;Elsevier Atlas Award; SeeElsevier news;Xinhua News;Science Daily)

  20. Wu XD, Guo JL, Chen GQ*, 2018.The striking amount of carbon emissions by the construction stage of coal-fired power generation system in China.Energy Policy117: 358-369. (SSCI/SCI, TOP, IF=7.576)

  21. Wei WD,Wu XD1, Li JS*, Jiang X, Zhang P, Zhou SL, Zhu H, Liu H, Chen H, Guo JL, Chen GQ*, 2018.Ultra-high voltage network induced energy cost and carbon emissions.Journal of Cleaner Production178: 276-292. (Contributed equally as the 1stauthor; SCI, TOP, IF=11.072)

  22. Wu XD, Chen GQ*, 2017.Energy and water nexus in power generation: The surprisingly high amount of industrial water use induced by solar power infrastructure in China.Applied Energy195: 125-36. (SCI, TOP, IF=11.446)

  23. Liu SY,Wu XD1, Han MY*, Zhang JJ, Chen B, Wu XF, Wei WW, Li Z, 2017.A three-scale input-output analysis of water use in a regional economy: Hebei province in China.Journal of Cleaner Production156: 962–974. (Contributed equally as the 1stauthor; SCI, TOP, IF=11.072)

  24. Wu XD, Yang Q, Chen GQ*, Hayat T, Alsaedi A, 2016.Progress and prospect of CCS in China: Using learning curve to assess the cost-viability of a 2×600MW retrofitted oxyfuel power plant as a case study.Renewable and Sustainable Energy Reviews60: 1274-85. (SCI, TOP, IF=16.799)

  25. Wu XD, Xia XH, Chen GQ*, Wu XF, Chen B, 2016.Embodied energy analysis for coal-based power generation system-highlighting the role of indirect energy cost.Applied Energy184: 936-50. (SCI, TOP, IF=11.446)


其他作者身份

  1. Mukisa N*, Zamora R, Tek Lie,Wu XD, Chen GQ, 2021.Multi criteria analysis ranking of solar photovoltaic modules manufacturing countries by an importing country: A case of Uganda.Solar Energy223, 326–345. (SCI, TOP, IF=7.188)

  2. Tian WJ,Wu XD, Zhao XL, Ma R, Zhang B*, 2019.Quantifying global CH4and N2O footprints.Journal of Environmental Management251: 109566. (SCI, TOP, IF=8.910)

  3. Guo JL,Wu XD, Jiang WQ*,Chen GQ*, 2018.Contaminant transport from point source on water surface in open channel flow with bed absorption.Journal of Hydrology561: 295-303. (SCI, TOP, IF=6.708)

  4. Xia XH*, Chen B,Wu XD, Hu Y, Liu DH, Hu CY, 2017.Coal use for world economy: Provision and transfer network by multi-region input-output analysis.Journal of Cleaner Production143: 125–144. (SCI, TOP, IF=11.072)

  5. Wei WD,Wu XD, Wu XF, Xi QM, Ji X, Li GP, 2017.Regional study on investment for transmission infrastructure in China based on the State Grid data.Frontiers of Earth Science11: 162–183.

  6. Li Z, Wang P, Sun T, An YR, Wu XD, 2016.Critical Length of Contaminant Cloud in a Three-Layer Wetland: Multi-scale Analysis for Environmental Dispersivity.Wetlands36, 193–203.

  7. Han MY, Chen GQ*, Meng J,Wu XD, Alsaedi A, Ahmad B, 2016.Virtual water accounting for a building construction engineering project with nine sub-projects: a case in E-town, Beijing.Journal of Cleaner Production112: 4691-700. (SCI, TOP, IF=11.072)

  8. Liu SY, Han MY,Wu XD, Wu XF, Li Z, Xia XH, Ji X, 2016.Embodied water analysis for Hebei Province, China by input-output modelling.Frontiers of Earth Science12: 72-85.

  9. Wu XF, Chen GQ*,Wu XD, Yang Q, Alsaedi A, Hayat T, Ahmad B, 2015.Renewability and sustainability of biogas system: Cosmic exergy based assessment for a case in China.Renewable and Sustainable Energy Reviews51: 1509-24. (SCI, TOP, IF=16.799)

  10. Li X, Lin C*, Wang Y, Zhao LY, Duan N,Wu XD, 2015.Analysis of rural household energy consumption and renewable energy systems in Zhangziying town of Beijing.Ecological Modelling318: 184–193. (SCI, IF=3.512)

  11. Xia XH*, Hu Y, Chen GQ, Alsaedi A, Hayat T,Wu XD, 2015.Vertical specialization, global trade and energy consumption for an urban economy: A value added export perspective for Beijing.Ecological Modelling318: 49–58. (SCI, IF=3.512)

  12. Wang P., Li, Z., Wu, X., An, Y., 2015.Taylor dispersion in a packed pipe with wall reaction: Based on the method of Gill’s series solution.International Journal of Heat and Mass Transfer91, 89–97. (SCI, IF=5.431)

  13. Xia XH*, Hu Y*, Alsaedi A, Hayat T,Wu XD, Chen GQ, 2015.Structure decomposition analysis for energy-related GHG emission in Beijing: Urban metabolism and hierarchical structure.Ecological Informatics26: 60–69. (SCI, IF=4.498)

  14. Wu XF, Yang Q*, Xia XH, Wu TH,Wu XD, Shao L, Hayat T, Alsaedi A, Chen GQ*, 2015.Sustainability of a typical biogas system in China: Emergy-based ecological footprint assessment.Ecological Informatics26, 78–84. (SCI, IF=4.498)

  15. Wu XF,Wu XD, Li JS, Xia XH, Mi T, Yang Q, Chen GQ*, Chen B, Hayat T, Alsaedi A, 2014.Ecological accounting for an integrated “pig–biogas–fish” system based on emergetic indicators.Ecological Indicators47: 189–197. (SCI, IF=6.263)

  16. Han MY, Sui X, Huang ZL*,Wu XD, Xia XH, Hayat T, Alsaedi A, 2014.Bibliometric indicators for sustainable hydropower development.Ecological Indicators47, 231–238. (SCI, IF=6.263)




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