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更新时间:2026.04.02
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於建明

| 硕士 高校教授 博士生导师

单位: 环境学院

职务:

研究方向:

办公地址: 邵科馆204

办公电话: 0571-88320881

电子邮箱: yjm@zjut.edu.cn

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  • 个人简介

    历:

    1999  8 月,浙江工业大学生物化工本科毕业后留校工作,获得省级优秀毕业生

    2002  9 -2005  6 月,攻读浙江工业大学环境化工硕士研究生,获硕士学位

    2008  9 -2013  1 月,攻读浙江工业大学环境化工博士研究生,获博士学位

    2008  9 月,晋升为浙江工业大学市政工程副教授

    2015  12 月,晋升为浙江工业大学环境科学与工程教授


  • 教学与课程

    教材与教学任务

    1.於建明,成卓韦编著,《制药工程安全与环保概论》,科学出版社,2018

    2.承担《大气污染控制工程》《制药安全与环保概论》等本科教学任务


  • 育人成果

    1.已培养毕业研究生15名,目前正指导研究生13名,其中硕博连读生2名,

    2.指导学生获得浙江省第九届挑战杯泰嘉大学生创业设计竞赛三等奖,2014

    3.获浙江省高等教育教学成果二等奖,面向卓越工程师培养的化工制药类专业实践教学体系的重构与实施,排名 5/102016


  • 科研项目

    研究(情况)项目:

    1. 重大环保技术装备创新任务揭榜挂帅:高浓度生物除臭技术装备,2026.1-2028.12,项目负责人;

    2. 国家自然科学基金区域创新发展联合基金:含氯挥发性有机物乳液-微生物电解耦合强化生物降解效能与机制研究(项目编号:U23A201102),2024.1-2027.12,280万,项目负责人;

    3. 国家重点研发计划子课题:典型工业园区难降解VOCs物化-生物耦合处理技术研发(项目编号:2022YFC3702003-03),2022.10-2025.09,140万,课题负责人;

    4.浙江省重点研发计划:基于还原脱卤法的含卤有机危废资源化与无害化处理关键技术研究及应用示范(项目编号:2020C03085),2020.1-2023.12,120 万,项目负责人;

    5. 国家自然科学基金面上项目:电化学强化酶催化二氯甲烷生物脱氯的行为及分子机理研究(项目编号:21576241),2016.1-2019.12,77.2 万,项目负责人;

    6.“挂牌揭榜”项目:典型行业污水处理站恶臭废气多级耦合净化技术开发,2020.6-2023.12,500万,项目负责人

    7. 浙江省自然科学基金:基于机械力化学原理的含卤芳香烃脱卤降解研究(项目编号: LY15E080022),2015.1-2017.12,10 万,项目负责人;

    8. 浙江省重大专项:典型气态污染物复合强化降解菌剂研制及其应用(项目编号: 2011C13023),50 万,2011.1-2013.12,项目负责人;

    9. 浙江省自然科学基金:生物负载电极降解氯苯类化合物的机理研究(项目编号: Y5080223),2008.1-2010.12,8 万,项目责负责人;

    10. 重大横向项目:含VOCs制药恶臭废气化学与生物耦合技术开发,2020.06-2023.12,206 万,项目负责人;

    11. 重大横向项目:印染废水深度处理工艺及关键技术开发,2018.12-2020.12,200 万,项目负责人;

    12. 重大横向项目:含硫含氯制药废气综合回收利用及协同净化技术开发,2014.4-2015.12, 283 万,项目负责人;

    13. 重大横向项目:制药废水处理站恶臭废气高效协同净化技术开发, 2014.6-2015.12, 370 万,项目负责人;

    14. 863 计划课题:制药工业含氯含硫废气生物净化技术及示范(课题编号: 2012AA063102),2012.1-2014.12,793 万,排名第二;

    15. 973 计划前期研究专项课题:基于机械化学理论的不活泼卤代芳烃偶联及脱卤反应机制与应用基础研究(课题编号:2014CB460608),2015.1-2016.12,80 万,排名第二;

    16. 浙江省环保厅计划项目:紫外(UV)-生物耦合净化含苯乙烯废气技术研究(2011B15), 2011.1-2013.12,9 万,项目负责人;

    17. 杭州市科技计划项目:降解典型 VOCs 及恶臭复合微生物菌剂研发(项目编号: 20070314),2007.1-2010.1,8 万,项目负责人;

  • 科研成果

    发表的论文(第一或通讯)、专著、教材:

    1.Lou ZM, Song LD, Zhang XL, Wen XF, Cheng D, Yu JM*, Xu XH*, Pre-oxidized zerovalent iron creates reactive Fe(II) species for continuous self-driven depassivation: Implications for contaminant removal[J]. Chem. Eng. J, 2025, 507:160770.

    2.Ren SB, Wen XF, Lu T, Zhang HYLou ZM, Xu XH, Li JSYu JM*Efficient valorization of textile white mud to MIL-101(Fe) with abundant coordinatively unsaturated centers for enhanced fenton-like catalysis[J]. Chem. Eng. J, 2025, 514:163323.

    3.Sun ZY, Xu CC, Wu M, Cao YY, Yu ZL, Yu JM*, Molecular interactions-promoted mass transfer in polymer-stabilized emulsions for the biotransformation of chlorinated volatile organic compounds[J]. Ind. Eng. Chem. Res, 2025, 64(14): 7399-7406

    4.Sun ZY, Wang MY, Shen NX, Ren LX, Chen XF, Yu JM*, Emulsion interfacial nanoarchitectonics with a biomimetic channel-architected polymer for enhanced biocatalysis[J]. AlChE J, 2026, 72: e70092.

    5.Wen XF, Chen HX, Yang SQ, Ni C, Xu XH, Lou ZM, Yu JM*Oriented near-surface catalytic oxidation through strengthening surface-localized radical generation over CoFe bimetallic sites: Synergistic mechanism and electro-assisted regeneration[J]. J. Colloid Interface Sci, 2026, 702: 138890.

    6.Ma QS, Ning H, Cao YY, Zhang YJ, Zhang RX, Yu LJ, Wang WY, Deng SW, Xia QE, Li LF, Yu JM*Hydrogen-bond-mediated C-N coupling enables efficient electrocatalytic urea synthesis from CO2 and N2[J]. Ind. Eng. Chem. Res, 2025, 65(2): 1161-1173.

    7.Hu J, Chen QN, Liu F, Qiang ZM*Yu JM*, Copper ion affects oxidant decay and combined aspartic acid transfoemation during chlorination in water pipes: Differentiated action on the yield of trihalomethanes and haloacetonitriles[J]. Water Res. 2024,251 :121153.

    8.Lou ZM, Wen XF, Song LD, Yu JM*, Xu XH*, Li JS*, Oxygen vacancy engineered molecular imprinted TiO2 for preferential florfenicol remediation by electro-reductive approach: Enhanced dehalogenation performance and elimination of antibiotic resistance genes[J].Applied Catalysis B: Environ.2023,336 :122923.

    9.Lou ZM, Song LD, Liu WQ, Yu JM*, Xu XH*, Sulfite as a green co-milling agent for mechanochemical destruction of polychlorinated aromatics: Working mechanism and structural dependence[J].ACS ES&T Engg.2023,3 :944-954

    10.Lou ZM, Chaohao Yu, Xiaofei Wen, Jianming Yu*, Xinhua Xu*, Construction of Pd nanoparticles/two-dimensional Co-MOF nanosheets heterojunction for enhanced electrocatalytic hydrodechlorination[J]. Applied Catalysis B: Environ.2022,317 :121730.

    11.Lou ZM, Wang JZ, Wang SB, Xu YH, Wang JG, Liu B, Yu CC, Yu JM*, Strong hydrophobic affinity and enhanced •OH generation boost energy-efficient electrochemical destruction of perfluorooctanoic acid on robust ceramic/PbO2-PTFE anode. Sep[J]. Purif. Technol. 2022, 280: 119919.

    12.Lou ZM, Song LD, Liu WQ, Wu SH, He F, Yu JM*, Deciphering CaO-induced peroxydisulfate activation for destruction of halogenated organic pollutants in a low energy vibrational mill[J]. Chem. Eng. J. 2021, 431(2):134090

    13.Wu M, Hu J. Wu XY. Tang YW. Zhang Y. Guan YH. Lou ZM, Yu ZL. Yu JM*, Enhanced dechlorination of an enzyme-catalyzed electrolysis system by ionic liquids: Electron transfer, enzyme activity and dichloromethane diffusion, Chemosphere, 2021, 281:130913.

    14.Hu J, Zhang Y, Wu YX. Zheng JJ, Yu ZL. Qian HF, Yu JM*, Cheng ZW, Chen JM, Heterologous expression of bacterial cytochrome P450 from Microbacterium keratanolyticum ZY and its application in dichloromethane dechlorination[J]. Environ. Pollut. 2021, 287:117597.

    15.Hu J, Chen H, Dong HY, Zhu LL, Qiang ZM, Yu JM*, 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]. Journal of Hazardous Materials, 2021, 403: 123553.

    16.Cheng ZW, Wang JJ, Chen DZ, Yu JM*, Zhang SH, Wang S, Dai YF, Insights into efficient removal of gaseous p-xylene using cerium-doped ZnO nanoparticles through photocatalytic oxidation[J]. Catalysis Science & Technology, 2021, 11: 612-623.

    17.Lou ZM, Song, YQ, Shao BJ, Hu J, Wang JZ, Yu JM*. Pre-electrochemical treatment combined with fixed bed biofilm reactor for pyridine wastewater treatment: From performance to microbial community analysis[J]. Bioresource Technology, 2021, 319: 124110.

    18.Hu J, Feng ZH, Huang ZY, Huang ZY, Yu JM*, Liu JS. Mechanical destruction of 4-bromochlorobenzene with CaO: Efficiency, kinetics, and mechanism[J]. Environmental Protection Engineering, 2020, 46: 63-77.

    19.Hu J, Huang ZY, Yu JM*. Highly-effective mechanochemical destruction of hexachloroethane and hexachlorobenzene with Fe/Fe3O4 mixture as a novel additive[J]. Science of the Total Environment, 2019, 659: 578-586.

    20.Yu JM, Wu M, Tang YW, Shi JQ, Hu J*, Yu ZL, Chen JM. Enzyme-electrolytic degradation of dichloromethane: Efficiency, kinetics and mechanism[J]. Journal of Environmental Sciences, 2019, 86: 187-194.

    21.Yu JM*, Shi JQ, Zhang Y, Yu ZL. Molecular Docking and Site-Directed Mutagenesis of Dichloromethane Dehalogenase to Improve Enzyme Activity for Dichloromethane Degradation[J]. Applied Biochemistry and Biotechnology, 2019, 190: 487-505.

    22.Zhou JH, Yu HC, Ye KQ, Wang H Y, Yu JM*. Optimized aeration strategies for nitrogen removal efficiency: application of end gas recirculation aeration in the fixed bed biofilm reactor[J]. Environmental Science and Pollution Research, 2019, 26: 28216-28227.

    23.Cheng, ZW, Xu P, Feng, ZH, Li C Yu, JM*. Gaseous cyclohexanone catalytic oxidation by a self-assembled Pt/γ-Al2O3 catalyst: process optimization, mechanistic study, and kinetic analysis[J]. RSC Advances, 2017, 7: 46958–46968.

    24.Yu, JM, Hu J*, Liu Q, Feng, ZH. Degradation of o-xylene by a novel strain, Zoogloearesiniphila HJ1: Identification, kinetics and metabolic pathway. Global NEST Journal. 2017, 19: 241-250.

    25.Yu, JM, Liu Q,Liu L,Chen JM.Cloning and characterization of dichloromethane dehalogenase from Methylobacterium rhodesianum for dichloromethane degradation. Bioremediation Journal. 2017, 21: 71–80.

    26.Yu, JM, Liu, W, Cheng, ZW, Jiang, YF, Cai, WJ, Chen, JM.Dichloromethane removal and m icrobial variations in a combination of UV pretreatment and biotrickling filtration. Journal of Hazardous Materials. 2014, 268: 14-22.

    27.Yu JM, Sun PF, Chen JM*, Feng L, Jiang YF, Cheng ZW*. Conversion characteristics and m echanism analysis of gaseous dichloromethane degraded by a VUV light in different reaction media. Journal of Environmental Sciences. 2012, 24: 1777-1784.

    28.Yu JM, Cai WJ, Cheng ZW. Degradation of dichloromethane by an isolated strain Pandora ea pnomenusa and its performance in a biotrickling filter. Journal of Environmental Sciences. 2014, 26: 1108-1117.

    29.Yu JM, Song XX, Wang JD*, Chen JM, Liu Q*. Bioelectrocatalytic Dechlorination of Trich loroacetic Acid by Hemoglobin Modified Graphite Electrode in Aqueous Solutions of Different p H and Temperature. International Journal of Electrochemical Science, 2012, 7: 10519-10529.

    30.Yu JM, Cai WJ, Zhao SL, Wan Y, Chen JM*. Aerobic biodegradation of chlorinated hydrocar bons by bacillus circulans WZ-12 CCTCC M 207006 under saline conditions. Chinese Journal of Chemical Engineering. 2013, 21: 781-786.

    31.Yu JM, Chen JM*, Wang JD. Removal of dichloromethane from waste gases by a biotrickling filter[J]. Journal of Environmental Sciences, 2006, 6: 1073-1076.

    32.胡俊,吴朦,汤育炜,於建明*,董慧峪,强志民,蒽醌-2,6-二磺酸盐强化酶电解池还原脱氯性能的研究,环境科学学报,42(5):1-8, 2022.

    33.於建明,刘建胜,冯卓焕,彭旭高效生物滴滤反应器处理制药废水站含VOCS恶臭废气中国给水排水,32(14):79-82, 2016.

    34.於建明褚淑祎王家德生物过滤填料层的温湿度场分布环境科学学报, 28(4):688-694, 2008. 4.

    35.於建明,刘靓蔡文吉成卓韦陈建孟蒋轶锋一株苯乙烯高效降解菌的分离鉴定及降解特性研究中国环境科学, 34(6):1564-1571, 2014.

    36.於建明吴成明陈哲沙昊雷宁波市中塘河支流黑臭河道治理与生态修复中国给水排水, 29(4): 64-70, 2013.

    37.成卓韦周灵俊,於建明*,陈建孟镧掺杂 TiO2 纳米管对 α-蒎烯光催化性能及催化机理研究高校化学工程学报, 29(2):320-327, 2015.

    38.魏莹莹孙鹏飞孙永强蒋轶锋於建明*真空紫外光解二氯甲烷特性研究浙江工业大学学报, 40(4):414-417, 2012.


    科研成果及专利:

    科研奖励

    1. VOCs及恶臭废气多级耦合净化机制研究,获得中华环保联合会自然科学特等奖,2021年,1/7

    2.复杂有机废气生物净化过程强化技术及应用,获教育部高等学校科学技术进步一等奖,2020年,4/13

    3.多组分工业废气高效生物净化新技术及工程应用,获得浙江省科学技术奖一等奖,2009 年,9/11

    4.“真菌-细菌”复合微生态制剂、其制备方法及其在VOCs混合废气处理中的应用,获中国专利优秀奖,2022年,4/4

    5.高级氧化-生物净化耦合处理技术被国家环境保护部入选《2016 年国家先进污染防治技术目录》(VOCs 防治领域)


    授权专利

    1.於建明, 章献钊胡俊楼子墨宋卢迪. Fe/Na2SO3机械研磨剂高效降解地茂散的方法,中国发明专利,ZL 202311429664.5

    2.於建明, 王鹏举姜理英, 高佳俊, 楼子墨. 基于球磨降解剩余物的催化剂及其制备方法与应用,中国发明专利,ZL 202311104435.6

    3.楼子墨,闻小飞,於建明,陈虹旭,颜琛. 印染碱减量白泥衍生的钛基MOF多孔碳及其制备方法与应用,中国发明专利,ZL 202311569940.8

    4.於建明,张燕,胡俊,余志良。具有二氯甲烷降解性能的微杆菌ZY及其应用,中国发明专利,ZL201911289908.8

    5.於建明,张燕,余志良,胡俊,楼子墨。重组细胞色素P450酶及其应用,中国发明专利,CN202011048249.1

    6.於建明,黄志勇,胡俊,成卓韦,冯卓焕一种利用机械化学方法制备聚合氯化铁的方法,中国发明专利,ZL201810325203.6

    7.於建明,成卓韦,陈建孟,蔡文吉.一株具有邻二甲苯降解能力的动胶菌及其应用,中国发明专利,ZL201310181412.2

    8.於建明,徐立新,成卓韦,蔡文吉,陈建孟.一种高效固态复合菌剂的制备方法及其在 VOCs 生物净化中的应用,中国发明专利,ZL201410296224.1

    9.於建明,陈建孟,蒋轶锋,周珍雄,孙永强.紫外光解处理废气的箱式光反应器及其方法,中国发明专利,ZL201210360697.4

    10.於建明,陈建孟,蒋轶锋,周珍雄,孙永强.紫外光降解废气的管式反应器及其方法,中国发明专利,ZL201210360529.5 5

    11.陈建孟,刘建宗,於建明,王毓仁,王家德,陈效,朱润晔,刘长宝,周珍雄.用于废气生物处理的培菌方法及其专用装置,中国发明专利,ZL200410066809.0

    12.王家德,许伟军,於建明,颜静佳,一种多级厌氧废水处理方法及专用装置,中国发明专利,ZL201210239531.7

    13.成卓韦,陈建孟,於建明,一种液态复合菌剂的制备方法及其应用,中国发明专利, ZL201410581621.3

    14.成卓韦,陈建孟,於建明,一株有乙酸降解能力的巴斯德葡萄球菌及其应用,中国发明专利,ZL201410582189.X

    15.成卓韦,陈建孟,於建明,镧系元素掺杂纳米管 TiO2 复合光催化剂的制备及其应用,中国发明专利,ZL201310324226.2

    16.於建明,蒋轶锋,周珍雄,陈建孟,孙永强.一种具有自旋功能的废气处理生物填料实用新型专利,ZL201120439593.3

    17.於建明 , 周珍雄 , 刘奇 . 一种具有自动升降功能的吸风装置 , 实用新型专利,ZL201120439601.4

    18.於建明,成卓韦,陈建孟,刘建胜.带有积炭去除装置的光解反应器,实用新型专利, ZL201520024022.1

     



  • 社会服务

    1.将吸收、吸附等资源回收技术,以及废气光催化、生物净化等治理技术推广应用到医化行业,承担挂牌揭榜等一批企业重大横向项目,建立数十项重点示范工程,并长期稳定运行,积累了丰富的实践经验

    2.承担多次医化企业高级管理人员和工程技术骨干关于废气治理的培训任务


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更新时间:2026.04.02
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