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浙江工业大学环境学院导师教师师资介绍简介-胡俊

本站小编 Free考研考试/2021-04-10

胡俊,男,浙江衢州人,中共党员
中国科学院博士研究生,浙江工业大学副研究员
联系方式:邮箱:hujun1988@zjut.edu.cn;
通讯地址:浙江省杭州市下城区潮王路18号
研究方向:饮用水消毒与深度净化技术
科研项目
[1]主持国家自然科学基金“供水管网输配过程中微生物胞外聚合物转化生成消毒副产物机制研究
[2]主持中国博士后科学基金“典型管垢作用下胞外聚合物转化生成消毒副产物机制研究”
期刊论文
[1]Hu J.*, Xu Y.R., Chen Y., Chen J., Dong H.Y., Yu J.M., Qiang Z.M., Qu J.J., Chen J.M.*, Formation of carbonaceous and nitrogenous iodinated disinfection byproducts from biofilm extracellular polymeric substances by the oxidation of iodide-containing waters with lead dioxide. Water Res.2021, 188: 116551.
[2]Hu J., Chen H., Dong H.Y., Zhu L.L., Qiang Z.M., Yu J.M.*, Transformation of iopamidol and atrazine by peroxymonosulfate under catalysis of a composite iron corrosion product (Fe/Fe3O4): electron transfer,active species and reaction pathways. J. Hazard. Mater.2021, 403, 123553.
[3]Hu J., Bian X.Z., Xia Y., Weng M.L., Zhou W., Dai Q.Z.*, Application of response surface methodology in electrochemical degradation of amoxicillin with Cu-PbO2electrode: optimization and mechanism. Sep. Purif. Technol.2020, 117109.
[4]Hu J., Wang C., Shao B.J., Fu L.X., Yu J.M., Qiang Z.M., Chen J.M.*, Enhanced formation of carbonaceous and nitrogenous disinfection byproducts from biofilm extracellular polymeric substances under catalysis of copper corrosion products. Sci. Total Environ.2020, 723, 138160.
[5]Hu J., Wang C., Ye Z., Dong H.Y., Li M.K., Chen J.M., Qiang Z.M.*, Degradation of iodinated disinfection byproducts by VUV/UV process based on a mini-fluidic VUV/UV photoreaction system. Water Res.2019, 158: 417?423.
[6]Hu J., Huang Z.Y., Yu J.M.*, Highly-effective mechanochemical destruction of hexachloroethane and hexachlorobenzene with Fe/Fe3O4mixture as a novel additive. Sci. Total Environ.2019, 659: 578?586.
[7]Hu J., Dong H.Y., Xu Q., Ling W.C., Qu J.H., Qiang Z.M.*, Impacts of water quality on the corrosion of cast iron pipes for water distribution and proposed source water switch strategy. Water Res.2018, 129: 428?435.
[8]Hu J., Dong H.Y., Qu J.H., Qiang Z.M.*, Enhanced degradation of iopamidol by peroxymonosulfate catalyzed by two pipe corrosion products (CuO and δ-MnO2). Water Res.2017, 112: 1?8.
[9]Hu J., Qiang Z.M.*, Dong H.Y., Qu J.H., Enhanced formation of bromate and brominated disinfection byproducts during chlorination of bromide-containing waters under catalysis of copper corrosion products.Water Res.2016, 98: 302?308.
[10]Hu J., Zhang L.L.*, Chen J.M., Luo Y., Sun B.C., Chu G.G., Performance and microbial analysis of a biotrickling filter inoculated by a specific bacteria consortium for removal of a simulated mixture of pharmaceutical volatile organic compounds. Chem. Eng. J. 2016, 304: 757?765.
[11]Yu J.M., Wu M., Tang Y.W., Shi J.Q., Hu J.?, Yu Z.L. Chen J.M., Enzyme-electrolytic degradation of dichloromethane: Efficiency, kinetics and mechanism. J. Environ. Sci. 2019, 86, 187?194.







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