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侯德义
2023-05-12 11:35
  • 侯德义
  • 侯德义 - 教授-清华大学-环境学院-个人资料

近期热点

资料介绍

个人简历


教育背景\r
1998.09 – 2002.06 清华大学 环境科学与工程系 环境工程学士\r
2002.09 – 2003.06 斯坦福大学 土木与环境工程系 土木与环境工程硕士\r
2003.06 – 2005.09 斯坦福大学 土木与环境工程系 土木与环境工程 Degree of Engineer\r
2011.10 – 2014.11 剑桥大学 工程系 环境工程博士\r
收起\r
工作经历\r
2015.11 – 今 清华大学 环境学院 准聘/长聘副教授、长聘教授、博导\r
2006.04 – 2015.11 Parsons公司 注册工程师、项目经理\r
2005.10– 2006.04 美国加州东湾水利局 实习工程师\r
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学术兼职\r
现任Soil Use and Management(影响因子3.67)主编\r
现任Science of the Total Environment(影响因子10.7)副主编\r
曾任Journal of Hazardous Materials(影响因子14.2)副主编\r
联合国粮农署国际土壤污染合作组织(International Network on Soil Pollution)副主席;中国生态学学会污染生态专业委员会副主任委员;中国环境保护产业协会标准化委员会委员;中国水利学会地下水科学与工程专委会委员;中国质量检验协会水环境工程技术与装备专家委员;英国土壤学会理事(Council Member);中国土壤学会国际合作与交流工作专委会委员;中国土壤学会土壤环境专委会委员;中国土壤学会土壤修复专委会委员;曾承担欧盟玛丽居里学者评审、香港研究资助局项目评审、新加坡国家环境局项目评审、中国国家自然基金委人才项目和研究项目评审、中国教育部人才项目和博士生论文评审、中国生态环境部项目评审等;Nature Sustainability,EST, JHM, EI等50余个SCI期刊审稿人 \r
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奖励与荣誉\r
科睿唯安2022年度全球“高被引科学家”\r
北京市教育教学成果二等奖,2022,北京市教育委员会\r
广东省科技进步一等奖,2022,广东省人民政府\r
科睿唯安2021年度全球“高被引科学家”\r
第一届首都生态文明奖,2021,北京市委生态文明建设委员会\r
《环境科学研究》2020年度最佳论文,2021,《环境科学研究》杂志社\r
2020 Environmental Science & Technology Best Paper Awards, 2021, ES&T杂志\r
环境技术进步奖一等奖,2020,中国环保产业协会\r
北京市科学技术进步奖二等奖,2020,北京市人民政府\r
环境保护科学技术奖二等奖,2019,中国环境科学学会\r
教学成果一等奖,2019,清华大学\r
中国环境科学学会青年科学家奖,2019

研究领域


污染土壤和地下水的绿色及可持续修复技术开发,包括基于生物质废弃物循环利用的生物炭材料、纳米修复、缓释长效修复、多相抽提等\r
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重金属、挥发性有机污染物、微塑料等在自然状态及人为干扰下的迁移与归趋,包括地下水污染迁移模型及取样优化、氯代烃非平衡态迁移等\r
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铅、砷、汞、四氯化碳等重点污染物的健康风险及防治策略,包括区域污染物分布、污染源削减方法、风险管控及修复优化策略等\r
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环境修复/生态修复的全生命周期建模,环境政策与环境管理对污染场地修复的影响,固体废物资源化及其可持续性评估""

近期论文


2022\r
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Hou, Deyi (*), China: protect black soil for biodiversity. Nature. 604:40-40. 链接:https://www.nature.com/articles/d41586-022-00942-6\r
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He, M., Xu, Z., Hou, Deyi, Gao, B., Cao, X., Ok, Y.S., Rinklebe, J., Bolan, N.S., Tsang, D.C.W., Waste-derived biochar for water pollution control and sustainable development. Nature Reviews Earth & Environment. 2022. 3:444–460. 链接:https://www.nature.com/articles/s43017-022-00306-8\r
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Wang, L., Gao, J., Wang, H., Luo, J., Hou, Deyi (*), Stimulated leaching of metalloids along 3D-printed fractured rock vadose zone. Water Research, 2022. 226:119224.\r
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Gao, J. (#), Wang, L. (#), Ok, Y.S., Bank, M.S., Luo, J., Wu, W.M., Hou, Deyi (*), Nanoplastic stimulates metalloid leaching from historically contaminated soil via indirect displacement, Water Research, 2022. 218:118468.\r
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Wang, C., David O'Connor, Liuwei Wang, Wei-Min Wu, Jian Luo, Hou, Deyi (*). Microplastics in urban runoff: Global occurrence and fate. Water Research, 2022. 225:119129.\r
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侯德义,我国工业场地地下水污染防治十大科技难题,环境科学研究,2022. 35(09). https://doi.org/10.13198/j.issn.1001-6929.2022.04.18\r
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Wang, C., L Wang, YS Ok, DCW Tsang, Hou, Deyi (*), Soil plastisphere: Exploration methods, influencing factors, and ecological insights, Journal of Hazardous Materials, 2022. 430:128503.\r
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Hou, R., L Wang, D O'Connor, J Rinklebe, Hou, Deyi (*), Natural field freeze-thaw process leads to different performances of soil amendments towards Cd immobilization and enrichment, Science of The Total Environment, 2022. 831:154880\r
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2021\r
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1. O’Connor, D. (*), Hou, Deyi (*), Manage the environmental risks of perovskites. One Earth. 2021. 4: 1534-1537. 链接:https://www.sciencedirect.com/science/article/abs/pii/S2590332221006126\r
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Hou, Deyi (*), Sustainable remediation in China: Elimination, immobilization, or dilution. Environmental Science & Technology. 2021. 55: 15572–15574.\r
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Jin, Y., Wang, L., Song, Y., Zhu, J., Qin, M., Wu, L., Hu, P., Li, F., Fang, L., Chen, C., Hou, Deyi (*), Integrated Life Cycle Assessment for Sustainable Remediation of Contaminated Agricultural Soil in China. Environmental Science & Technology, 2021. 55:12032-12042.\r
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Wang, L. (#), Li, P. (#), Zhang, Q., Wu, W., Luo, J., Hou, Deyi (*), Modeling the Conditional Fragmentation-Induced Microplastic Distribution. Environmental Science & Technology. 2021. 55:6012-6021.\r
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Qi, S. (#), Wang, Y. (#), Wang, L., Luo, J., Hou, Deyi (*). Impact of Atmospheric Pressure Fluctuations on Nonequilibrium Transport of Volatile Organic Contaminants in the Vadose Zone: Experimental and Numerical Modeling. Water Resources Research, 2021. 57:e2020WR029344.\r
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Zhu, J., Song, Y., Wang, L., Zhang, Z., Gao, J., Tsang, D.C.W., Ok, Y.S., Hou, Deyi (*), Green remediation of benzene contaminated groundwater using persulfate activated by biochar composite loaded with iron sulfide minerals. Chemical Engineering Journal, 2021. 429:132292.\r
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Shen, Z., Zhang, Z., Zhang, M., Rinklebe, J., Ma, Y., Hou, Deyi (*), Effect of production temperature and particle size of rice husk biochar on mercury immobilization and erosion prevention of a mercury contaminated soil, Journal of Hazardous Materials, 2021, 420:126646.\r
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Wang, L., Jin, Y., Weiss, D.J., Schleicher, N.J., Wilcke, W., Wu, L., Guo, Q., Chen, J., O'Connor, D., Hou, Deyi (*). Possible application of stable isotope compositions for the identification of metal sources in soil. Journal of Hazardous Materials. 2021. 407:124812\r
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2020\r
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Hou, Deyi, O'Connor, D., Igalavithana, A., Alessi, D.S., Luo, J., Tsang, D.C.W., Sparks, D.L., Yamauchi, Y., Rinklebe, J., Ok, Y.S. (*), Metal contamination and bioremediation of agricultural soils for food safety and sustainability. Nature Reviews Earth & Environment, 2020. 1:366-381. 链接: https://www.nature.com/articles/s43017-020-0061-y\r
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O'Connor, D., Hou, Deyi (*), Ok, Y.S., Lanphear, B.P., The effects of iniquitous lead exposure on health. Nature Sustainability. 2020, 3:77-79. 链接:https://www.nature.com/articles/s41893-020-0475-z\r
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Wang, L., O'Connor, D., Rinklebe, J., Ok, Y.S., Tsang, D.C.W., Shen, Z., Hou, Deyi (*). Biochar Aging: Mechanisms, Physicochemical Changes, Assessment, And Implications for Field Applications. Environmental Science and Technology. 2020. 54: 14797–14814.\r
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Qi, S., Luo, J., O'Connor, D., Cao, X., Hou, Deyi (*). Influence of groundwater table fluctuation on the non-equilibrium transport of volatile organic contaminants in the vadose zone. Journal of Hydrology. 2020. 580:124353.\r
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Jia, X., Hou, Deyi (*), Wang, L., O'Connor, D., Luo, J., The development of groundwater research in the past 40 years: A burgeoning trend in groundwater depletion and sustainable management. Journal of Hydrology. 2020. 587:125006.\r
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Wang, L., Hou, Deyi (*), Shen, Z., Zhu, J., Jia, X., Ok, Y.S., Tack, F.M.G., Rinklebe, J., Field trials of phytomining and phytoremediation: A critical review of influencing factors and effects of additives. Critical Reviews in Environmental Science and Technology. 50:2724-2774.\r
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Jia, H., Hou, Deyi (*), O'Connor, D., Pan, S., Zhu, J., Bolan, N.S., Mulder, J., Exogenous phosphorus treatment facilitates chelation-mediated cadmium detoxification in perennial ryegrass (Lolium perenne L.). Journal of Hazardous Materials. 2020. 389:121849.\r
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Wang, L., Li, X., Tsang, D.C.W., Jin, F., Hou, Deyi (*). Green remediation of Cd and Hg contaminated soil using humic acid modified montmorillonite: immobilization performance under accelerated ageing conditions. Journal of Hazardous Materials. 2020. 387:122005.\r
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2019\r
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Hou, Deyi, Ok, Y.S. (*), Speed up mapping of soil pollution, Nature. 2019, 566:455-455. 链接:https://www.nature.com/articles/d41586-019-00669-x\r
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Hou, Deyi (*), O’Connor, D., Sonne, C., Ok, Y.S. (*), Trade war threatens sustainability. Science. 2019. 364:1242-1243. 链接:https://science.sciencemag.org/content/364/6447/1242.2\r
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O’Connor, D., Hou, Deyi (*), Risks of replenishing China's groundwater, Nature. 2019, 569:487-487. 链接:https://www.nature.com/articles/d41586-019-01617-5\r
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Shen, Z., Jin, F., O'Connor, D., Hou, Deyi (*), Solidification/Stabilization for Soil Remediation: An Old Technology with New Vitality. Environmental Science & Technology. 2019. 53:11615-11617.\r
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O'Connor, D., Hou, Deyi (*), Ok, Y.S., Mulder, J., Duan, L., Wu, Q., Wang, S., Tack, F.M.G., Rinklebe, J., Mercury speciation, transformation, and transportation in soils, atmospheric flux, and implications for risk management: A critical review. Environment International. 2019. 126: 747-761. \r
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Shen, Z., Zhang, J., Hou, Deyi (*), Tsang, D., Ok, Y.S., Alessi, D., Synthesis of MgO-coated corncob biochar and its application in lead stabilization in a soil washing residue. Environment International. 2019, 122: 357-362.\r
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Jin, Y., O'Connor, D., Ok, Y.S., Tsang, D., Liu, A., Hou, Deyi (*), Assessment of sources of heavy metals in soil and dust at children’s playgrounds in Beijing using GIS and multivariate statistical analysis. Environment International. 2019. 124: 320-328.\r
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Hou, Deyi (*), Luo, J. (*), Proof-of-Concept Modeling of a New Groundwater Sampling Approach. Water Resource Research. 2019. 55:5135-5146.\r
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2018\r
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Hou, Deyi (*), Ding, Z., Li, G., Wu, L., Hu, P., Guo, G., Wang, X., Ma, Y., O'Connor, D., Wang, X., A Sustainability Assessment Framework for Agricultural Land Remediation in China. Land Degradation & Development. 2018, 29:1005-1018.\r
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Hou, Deyi (*), Yinan Song, Junli Zhang, Min Hou, O'Connor, D., Melissa Harclerode, Climate change mitigation potential of contaminated land redevelopment: a city-level assessment method. Journal of Cleaner Production. 2018, 171:1396-1406.\r
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O'Connor, D., Hou, Deyi (*), Ye, J., Zhang, Y., Ok, Y.S., Song, Y., Coulon, F., Peng, T., Tian, L., Lead-Based Paint Remains a Major Public Health Concern: A Critical Review of Global Production, Trade, Use, Exposure, Health Risk, and Implications. Environmental International. 2018, 121:85-101.\r
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Zhang, P., Hou, Deyi (*), O'Connor, D., Li, X., Pehkonen, S., Varma, R., Wang, X. Green and Size-Specific Synthesis of Stable Fe-Cu Oxides as Earth-Abundant Adsorbents for Malachite Green Removal. ACS Sustainable Chemistry & Engineering. 2018, 6:9229-9236.\r
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Shen, Z., Hou, Deyi (*), Xu, W., Zhang., J., Jin, F., Zhao, B., Pan, S., Peng, T., Alessi, D., Assessing Long-term stability of cadmium and lead in a soil washing residue amended with MgO-based binders using quantitative accelerated ageing. Science of the Total Environment. 2018, 643: 1571-1578.\r
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Zhang, Y., Hou, Deyi (*), Xiong, G., Duan, Y., Cai, C., Wang, X., Li, J., Tao, S., Liu, W. (*) Structural equation modeling of PAHs in ambient air, dust fall, soil, and cabbage in vegetable bases of Northern China. Environmental Pollution. 2018, 239:13-20.\r
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O’Connor, D., Peng, T., Zhang, J., Tsang, D.C.W., Alessi, D.S., Shen, Z., Bolan, N.S., Hou, Deyi (*), Biochar application for the remediation of heavy metal polluted land: A review of in situ field trials. Science of the Total Environment. 2018, 619-620: 815-826.\r
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Zhao, B. 1, O’Connor, D. 1, Zhang, J., Peng, T., Shen, Z., Tsang, D.C.W., Hou, Deyi (*), Effect of pyrolysis temperature, heating rate, and residence time on rapeseed stem derived biochar. Journal of Cleaner Production. 2018, 174:977-987.\r
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2017及以前\r
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Hou, Deyi (*), O'Connor, D., Nathanail, P., Tian, L., Ma, Y., Integrated GIS and multivariate statistical analysis for regional scale assessment of heavy metal soil contamination: a critical review. Environmental Pollution. 2017, 231:1188-1200.\r
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Hou, Deyi (*), Qi, S., Zhao, B., Rigby, M., O'Connor, D., Incorporating life cycle assessment with health risk assessment to select the ‘greenest’ cleanup level for Pb contaminated soil. Journal of Cleaner Production. 2017, 162:1157-1168.\r
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Qi, S., Hou, Deyi (*), Luo, J. (*), Optimization of groundwater sampling approach under various hydrogeological conditions using a numerical simulation model. Journal of Hydrology. 2017, 552:505-515. \r
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Hou, Deyi (*) and Al-Tabbaa, A., Sustainability: A new imperative in contaminated land remediation, Environmental Science and Policy, 2014, 39: 25-34. \r
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Hou, Deyi (*), Luo, J., and Al-Tabbaa, A., Shale Gas Can be a Double Edged Sword for Climate Change, Nature Climate Change, 2012, 2 (6): 385-387. 链接:https://www.nature.com/articles/nclimate1500\r
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Hou, Deyi (*), Al-Tabbaa, A., Guthrie, P., and Watanabe, K. Sustainable Waste and Materials Management: National Policy and Global Perspective, Environmental Science and Technology, 2012, 46 (5): 2494?2495.\r
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Hou, Deyi (*), Vision 2020: More Needed in Materials Reuse and Recycling to Avoid Land Contamination, Environmental Science and Technology, 2011, 45 (15), 6227-6228.\r
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Hou, Deyi, Rabinovici, S. J., Boehm, A. B. (*). Enterococci Predictions from Partial Least Squares Regression Models in Conjunction with a Single-Sample Standard Improve the Efficacy of Beach Management Advisories. Environmental Science and Technology. 2006, 40 (6): 1737 1743.

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