魏佳

职称职务:教授,博士生导师

E-mail:weij@bjut.edu.cn

基本信息

教授,博士生导师,weij@bjut.edu.cn

研究方向

主要从事水污染治理研究(高级氧化水处理技术、功能化材料制备及在水处理方面的应用、废弃生物质资源化及应用等)。

教育简历

Ÿ本科、硕士:北京化工大学

Ÿ博士:加拿大里贾纳大学

工作履历

现任北京工业大学城市建设学部市政工程系副主任

课程教学

Ÿ本科生教学:《水分析化学》、《综合化学实验2(水分析化学)》、《现代水质分析综合实践》

Ÿ研究生教学:《高等水质工程学理论与技术》

科研项目

•国家自然科学基金面上项目(2022-2025)负责人60万

•国家自然科学基金面上项目(2018-2021)负责人60万

•北京市自然科学基金面上项目(2020-2022)负责人20万

•水体污染与控制治理重大专项(2019-2020)子任务负责人30万

•水体污染与控制治理重大专项(2017-2020)子任务负责人150万

•国家青年自然科学基金负责人20万

•中国博士后基金负责人5万

•北京博士后基金负责人6万

•北京市教委科技计划一般项目负责人15万

•“十二五”国家科技重大专项子课题(2/8)

•“十二五”国家科技重大专项子课题(2/13)

•北京市教委科技创新平台(3/8)

主要论文论著

已发表SCI论文五十余篇,申请专利7项,授权发明专利6项

ŸJiang, ZJ;Wei, J*; Zhang, YF; Niu, XR; Li, JM; Li, YN; Pan, GP; Xu, MD; Cui, XR; Cui, N; Li, J, Electron transfer mechanism mediated nitrogen-enriched biochar encapsulated cobalt nanoparticles catalyst as an effective persulfate activator for doxycycline removal, (2022) Journal of Cleaner Production, DOI: 10.1016/j.jclepro.2022.135641 (IF=11.072, Q1)

ŸXu, MD;Wei, J*; Cui XR; Li JM; Pan GP; Li YN; Jiang ZJ; Niu XR; Cui N; Li J, High-efficiency electro-Fenton process based on in-situ grown CoFeCe-LDH@CFs free-standing cathodes: Correlation of cerium and oxygen vacancies with H2O2, (2022) Chemical Engineering Journal, DOI: 10.1016/j.cej.2022.140922 (IF=16.744, Q1)

ŸPan, GP;Wei, J*; Xu, MD; Li, JM;Wang, LH; Li, YN; Cui N; Li J; Wang, ZX, Insight into boron-doped biochar as efficient metal-free catalyst for peroxymonosulfate activation: important role of -O-B-O- moieties, (2022) Journal of Hazardous Materials, DOI: 10.1016/j.jhazmat.2022.130479 (Q1, IF=14.224)

ŸLi, JM;Wei, J*; Xu, MD; Pan, GP; Zhang, YF; Xing, LY; Li, YN; Li, J; Jiang, ZJ, A porous graphitic biochar wrapped Co9S8core-shell composite enables pH-universal activation of peroxymonosulfate for highly efficient and rapid antibiotics degradation, (2022) Environmental science. Nano., DOI: 10.1039/d2en00418f (Q1, IF=9.473)

ŸXing, LY;Wei, J*; Zhang, YF; Xu, MD; Pan, GP; Li, JM; Li, J; Li, YN, Boosting active sites of protogenetic sludge-based biochar by boron doping for electro-Fenton degradation towards emerging organic contaminants, (2022) Separation and Purification Technology, DOI: 10.1016/j.seppur.2022.12116 (Q1, IF=9.136)

ŸXu MD;Wei J*; Chen XJ; Pan GP; Li JM;Xing LY;Zhang YF;Li YN;Wang ZX;Li J, Satisfactory degradation of tetracycline by a pH-universal MnFe-LDH@BC cathode in electric Fenton process: Performances, mechanisms and toxicity assessments, (2022) Journal of Environmental Chemical Engineering, DOI: 10.1016/j.jece.2022.108409 (Q1, IF=7.968)

ŸZhang, YF;Wei, J*; Xing, LY; Li, JM; Xu, MD; Pan, GP; Li, J, Superoxide radical mediated persulfate activation by nitrogen doped bimetallic MOF (FeCo/N-MOF) for efficient tetracycline degradation, (2021) Separation and Purification Technology, DOI: 10.1016/j.seppur.2021.120124 (Q1, IF=9.136)

ŸLiu, XH;Wei, J*; Wu, YD; Zhang, J; Xing, LY; Zhang, YF; Pan, GP; Li, JM; Xu, MD; Li, J, Performances and mechanisms of microbial nitrate removal coupling sediment-based biochar and nanoscale zero-valent iron, (2021) Bioresource Technology, DOI: 10.1016/j.biortech.2021.126523 (Q1, IF=11.889)

ŸXing, LY;Wei, J*; Liu, XH; Zhang, YF; Xu, MD; Li, JM; Pan, GP; Li, J, Application of energy sustainable utilization strategy for highly efficient electro-Fenton treatment of antibiotics, (2021) Journal of Environmental Chemical Engineering, DOI: 10.1016/j.jece.2021.107059 (Q1, IF=7.968)

学校地址:北京市朝阳区平乐园100号
邮政编码:100124

  • 北京工业大学
    研究生招生

  • 北京工业大学
    研究生教育

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