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王顺利,所级研究员,硕士、博士生导师,中国农科院所级青年英才,畜牧环境科学与工程团队骨干成员。2010年和2015年分别毕业于美国俄亥俄州立大学和佐治亚大学,获得硕士和博士学位。现主要从事农业废弃物资源化利用方面的研究。
主持和参与畜禽废弃物转化利用,可降解塑料环境降解技术,生物质能源以及畜禽舍环境评估等项目。获得授权发明专利两项。近五年发表SCI论文16篇,其中包括《Science Advances》(Science子刊,IF=14.136),《Environmental Science&Technology》(IF=9.028),《Energy Conversion and Management 》(IF=9.709)等期刊。美国农业与生物工程师学会(ASABE)会员,多次在ASABE年会做学术报告。多个国际学术期刊审稿人,如《Nature Reviews Earth & Environment》, 《Environmental Science&Technology》, 《Energy Conversion and Management》, 《Bioresource Technology》,《Science of The Total Environment》等。曾获得国际空气与废弃物管理学会(AWMA)奖学金(2011)。
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg1) 畜禽清洁生产与废弃物转化利用研究。项目资助金额:100万人民币。项目来源:中国农业科学院农业环境与可持续发展研究所青年英才候选人科研启动经费。2019年。
2) 绿色屋顶材料沥出物研究(Leaching study of Root-A-VertTM from bituminous membranesinstalled for roof tops)。项目资助金额:88万美元。项目来源:Lanxess,德国。项目主要执行人(Project Manager) 。2013年–2018年。
3) 开发自动Respirometer测试聚合物的可降解性。项目资助:30万美元。项目来源:UGA Foundation。项目主要执行人 (ProjectManager) 。2016年–2020年。
4) 可降解塑料在不同环境下降解研究(Biodegradable Polymer Assessment andEvaluation)。项目资助金额:5万美元。项目来源:Danimer Scientific, 美国佐治亚州。项目主要执行人(Project Manager) 。2016–2017年。
5) 藻类能源化研究(Partnershipfor a Research Center for Algae Biofuels)。资助金额:120万美元。项目来源:美国国防部 (US DOD) 。项目参与人。2011年-2015年。
6) 生物质生物炼制研究(Biorefinery Demonstration Project )。资助金额:119万美元。项目来源:美国能源部 (US DOE) 。项目参与人。2010年-2014年。
7) 俄亥俄州奶牛舍垫料系统评估(Evaluating the Effectivenessof Bedded Dairy Pack Systems for Ohio )。美国农业部自然环境转化中心(USDA Natural Resource Conversion Service)。资助金额:3.5万美元。项目主要执行人 (Project Manager) 。2009年–2010年。
8) 一种新的动物粪便氨气挥发和氮分管理方法(An on-farm tool formanagement of nitrogen nutrient loss and NH3 emission from animal manure)。资助金额:10万美元。项目来源:俄亥俄农业研究和发展中心(OARDC)。项目主要执行人 (Project Manager) 。2007年-2010年。
期刊论文:
White*,M.E., J. Horn, S. Wang, B. Crawford,B.W. Ritchie, D. Carraway, and J. Locklin. 2021. Comparative Study of theBiological Degradation of Poly(3-Hydroxybutyrate- co -3-Hydroxyhexanoate)Microbeads in Municipal Wastewater in Environmental and Controlled LaboratoryConditions. Environmental Science&Technology 55(17), 11646–11656.
Lian#,T.,W. Zhang#, Q. Cao, S. Wang, F. Yin,Y. Chen, T. Zhou, and H. Dong*. 2021. Optimization of lactate production fromco-fermentation of swine manure with apple waste and dynamics of microbialcommunities. Bioresource Technology 336(2), 125307.
Yue,C., H. Dong*, Y. Chen, B. Shang, Y. Wang, S.Wang, and Z. Zhu. 2021. Direct purification of digestate using ultrafiltrationmembranes: influence of pore size on filtration behavior and foulingcharacteristics. Membranes 11(3), 179.
Wang,Y., H. Guo, S. Wang, J. Zhang, Z.Zhu, X. Li, and H. Dong*. 2021. Sulfuric acid modified expanded vermiculitecover for reducing ammonia emissions from animal slurry storage. Journal ofHazardous Materials 403, 123954.
Wang, S., K. Sahoo*, U. Jena, H. Dong,R. Bergman, and T. Runge. 2021. Life-cycle assessment of treating slaughterhousewaste using anaerobic digestion systems. Journal of Cleaner Production 292,126038.
Cao,Q., W. Zhang, T. Lian, S. Wang, andH. Dong*. 2021. Short chain carboxylic acids production and dynamicity ofmicrobial communities from co-digestion of swine manure and corn silage.Bioresource Technology 320 (Pt B), 124400.
Lian,T., W. Zhang, Q. Cao, S. Wang, andH. Dong*. 2020. Enhanced lactic acid production from the anaerobic co-digestionof swine manure with apple or potato waste via ratio adjustment. BioresourceTechnology 318(6), 124237.
Zhang#,W., F. Yin#, H. Dong*, Q. Cao, S. Wang, J. Xu, and Z. Zhu. 2020.Bioconversion of swine manure into high-value products of medium chain fattyacids. Waste Management 113(8), 478–487.
Yue,C., H. Dong*, W. Zhang, Z. Zhu, F. Yin, and S. Wang. 2020. Effects of Membrane Concentration Processes on Flux,Nutrient Recovery, and Antibiotic Isolation for Anaerobically Digested Slurryfrom Swine Manure. Transactions of the ASABE 63(6), 1639–1647.
Wang,L., Q. Huang, S. Wang, G. Li, X.Yang*. 2019. Relationships among the raw material, grinding ratio, and moisturecontent during composting process. Polish Journal of Environmental Studies28(1), 1– 6.
Wang*, S., U. Jena, and K.C. Das. 2018.Biomethane Production Potential of Slaughterhouse Waste in The United States.Energy Conversion and Management 173, 143–157.
Wang*, S., K.A. Lydon, E.M. White, J.B.Grubbs III, E.K. Lipp, J. Locklin, and J.R. Jambeck. 2018. Biodegradation ofPoly(3-hydroxybutyrate-co-3-hydroxyhexanoate) Plastic under Anaerobic Sludgeand Aerobic Seawater Conditions: Gas Evolution and Microbial Diversity.Environmental Science& Technology 52 (10), 5700–5709.
Wang*, S., G.L. Hawkins, B.H. Kiepper,and K.C. Das. 2018. Treatment of Slaughterhouse Blood Waste Using Pilot ScaleTwo-stage Anaerobic Digesters for Biogas Production. Renewable Energy 126,552–562.
Wang, S., L.Y. Zhao*, X. Wang, R.Manuzon, M. Darr, H. Li, and H.M. Keener. 2014. Estimation of Ammonia Emissionfrom Manure Belt Poultry Layer Houses Using an Alternative Mass Balance Method.Transactions of the ASABE 57 (3), 937–947.
Brooks,A., S. Wang, and J. Jambeck*. 2018.The Chinese Import Ban and Its Impact on Global Plastic Scrap Trade. ScienceAdvances 4(6), eaat0131.
White*,E.M., S. Clark, C.A. Manire, B. Crawford, S.Wang, J. Locklin and B. Ritchie. 2018. Ingested Micronizing Plastic ofFloridian Wash Back Sea Turtles. Environmental Science&Technology 52 (18),10307–10316.
Wang, S., G.L. Hawkins, B.H. Kiepper,and K.C. Das*.2016. Struvite precipitation as a means of recovering nutrientsand mitigating ammonia toxicity in a two-stage anaerobic digester treatingprotein-rich feedstocks. Molecules 21(8), 1011.
王顺利,许廷武,王爱伟,孟繁锡.2007.鸡粪槽式动态堆肥物料理化性质变化研究. 江苏农业科学 2007(3):219-222.
王顺利,孟繁锡.2006.设施有机种植模式浅析.北方园艺2006(1):68-70.
会议论文:
Wang, S., K.Lydon, E.White, J. Grubbs, E. Lipp, J. Locklin and J. Jambeck. 2018.Biodegradation of PHA Plastic under Anaerobic Sludge and Aerobic Seawater.IUCRC PLANNING GRANT MEETING UGA Site Addition. Poster Presentation.
Wang, S., G. Crane,E. White, J. Locklin and J. Jambeck. 2018. Advanced Automatic Respirometer for BiodegradationTests. IUCRC PLANNING GRANT MEETING UGA Site Addition. Poster Presentation.
Wang, S., K.C.Das, B.H. Kiepper, and G.L. Hawkins. 2015. Co-digestion of SlaughterhouseWastes through the Operation of a Pilot Two-stage AnaerobicReactor. Bioenergy Systems Research Institute. Annual Retreat. Poster No. 120.
Wang, S., K.C.Das, B.H. Kiepper, and G.L. Hawkins. 2014. Anaerobic Co-digestion of Poultry Processing Liquid Wastes. Bioenergy Systems ResearchInstitute Annual Retreat.
Wang, S., K.C.Das, B.H. Kiepper, and G.L. Hawkins. 2012. Performance Assessment of VariousPacking Media for Use in Anaerobic Digestion of Poultry Processing Wastewater.ASABE meeting paper No. 121338378. St. Joseph, Mich.: ASABE. Presented thispaper in 2012 ASABE annual meeting at July, 2012.
Zhao, L.Y., H. Keener, M. Wicks, S. Wang, J. Rausch, A. Meddles, M. Kilngman, R. Manuzon. 2012. Indoor Environment Quality of Compost Bedded Dairy PackSystem in Ohio. ASABE meeting paper No. 121338465. St. Joseph, Mich.: ASABE.Presented this paper in 2012 ASABE annual meeting at July, 2012.
Wang, S., L.Y.Zhao, R. Manuzon, H. Keener, and A. Heber. 2010. Prediction of Ammonia Emissionfrom Large Dairy Barns Using an Alternative Mass-Balance Method. ASABE meetingpaper No. 1009409. St. Joseph, Mich.: ASABE. Presented this paper in 2010annual ASABE meeting at June, 2010.
Wang, S., L.Y.Zhao, X. Wang, R. Manuzon, M. Darr, H. Li, H. Keener, A. Heber, and J.Q. Ni.2009. Estimation of Ammonia Emission from Manure Belt PoultryLayer Houses Using an Alternative Mass-Balance Method. ASABE meeting paper No. 096723. St. Joseph,Mich.: ASABE. Presented this paper in 2009 ASABE annual meeting at June, 2009.
执业证书:
在培工程师 (Engineer In-Training), Georgia, No. 025168
期刊审稿人:
Nature Reviews Earth & Environment, Environmental Science&Technology, Energy Conversion and Management, Bioresource Technology, Science of The Total Environment, ACS Sustainable Chemistry & Engineering,Transcations of The ASABE, Environmental Science and Pollution Research, Peer J, 等
其他:
国际空气与废弃物管理学会(AWMA)奖学金 (2011)
美国农业与生物工程师学会 (ASABE)会员 (2008-现在)
中国青年志愿者服务铜奖 (2006)
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