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赵志伟(博士生导师)


姓 名

赵志伟

出生年月

1976年10月

技术职务

教授

行政职务

电子邮箱

hit_zzw@163.com

通信地址

重庆市沙北街83号重庆大学B区城市建设与环境工程学院

1.主要研究方向:

(1)饮用水生物预处理技术,(2)水处理功能纳米材料研发及应用

2.社会兼职、国内外学术团体任职情况:

2013.05-至今 国际水协(IWA)会员

2014.09-至今 国际水协青年委员会会员

2016.11-至今 中国土木工程学会水工业分会水系统智能化技术研究会理事

3.学习及工作经历

(1)学习经历

1995.09-1999.07 哈尔滨建筑大学 环境工程 工学学士

2002.09-2004.07 哈尔滨工业大学 市政工程 工学硕士

2004.09-2007.07 哈尔滨工业大学 市政工程 工学博士

(2)工作经历

2017.07-今 重庆大学城市建设与环境工程学院 教授、博导

2015.09-2017.06 解放军后勤工程学院建环系 教授、博导、学科带头人

2014.09-2015.08 解放军后勤工程学院建环系 副教授、博导、学科带头人

2013.06-2014.07 哈尔滨工业大学市政环境工程学院 副教授、系主任、博导

2010.01-2013.06 哈尔滨工业大学市政环境工程学院 副教授、副主任

2008.10-2009.12 哈尔滨工业大学市政环境工程学院 副教授

2001.07-2008.10 哈尔滨工业大学市政环境工程学院 助教、讲师

1999.07-2001.06 哈尔滨工业大学市政环境工程学院 辅导员、学生工作秘书

4.主持的科学研究项目

(1) 国家科技重大专项“给水系统运行特性与工艺设计技术研究”(2012ZX07408001,214万元),,任务负责人;

(2) 国家科技重大专项“化学预氧化和生物预处理组合前处理技术研究”(2008ZX07 421003,70万元),任务负责人;

(3) 国家自然科学基金“饮用水生物预处理工艺快速启动及微观机制研究” (50908061,30万元),项目负责人;

(4) 总后勤部、司令部科研项目“******深度处理技术与设备研究”(BY***,200万元),项目负责人;

(5) 中央军委后勤保障部科研项目“******净水技术与装置研究”(BY***,353万元),项目负责人;

(6) 重庆市科学技术委员会前沿与应用基础项目“磺胺类抗生素氯化生成亚硝胺类消毒副产物的潜能评价与规律研究”(cstc2015jcyjA20024,2.5万元),项目负责人

(7) 南海发展股份有限公司自主项目“城市饮用水氨氮/亚硝酸氮控制技术研究”,(JSB2013-04(06),27.5万元),项目负责人

5.主要学术论文与代表作

在Appl. Catal. B- Environ.、J. Mater. Chem.、Bioresource Technol.、Chem. Eng. J.、J. Hazard. Mater.和中国给水排水等专业知名期刊发表论文70余篇,其中SCI文章40余篇(第一或通讯作者共20余篇),授权国家发明专利10余项。

部分代表性研究论文:

(1) Zhao, J., Nan, J.,Zhao, Z.*, Li, N., Liu, J., & Cui, F. Energy-efficient fabrication of a novel multivalence Mn3O4-MnO2, heterojunction for dye degradation under visible light irradiation.Applied Catalysis B: Environmental, 2017, 202, 509-517.(SCI,中科院一区[Top]IF=9.446)

(2) Zhao, J., Liu, J., Li, N., Wang, W., Nan, J., &Zhao, Z.*, Cui F. Highly efficient removal of bivalent heavy metals from aqueous systems by magnetic porous Fe3O4-MnO2: adsorption behavior and process study.Chemical Engineering Journal, 2016, 304, 737-746.(SCI,中科院一区[Top]IF=6.216)

(3) Liu, J., Zhou, J., Ding, Z.,Zhao, Z.*, Xu, X., & Fang, Z. Ultrasound irritation enhanced heterogeneous activation of peroxymonosulfate with Fe3O4for degradation of azo dye.Ultrasonics Sonochemistry, 2017, 34, 953-959.(SCI,中科院二区[Top]IF=4.218)

(4) Sun, T.,Zhao, Z.*, Liang, Z., Liu, J., Shi, W., & Cui, F. Efficient As(III) removal by magnetic CuO-Fe3O4nanoparticles through photo-oxidation and adsorption under light irradiation.Journal of Colloid and Interface Science, 2017, 495, 168-177.(SCI,中科院二区, IF=4.233)

(5) Sun T., Zhao Z.*,Liang Z., Liu J., Shi W., Cui F.. Efficient removal of arsenite through photocatalytic oxidation and adsorption by ZrO2-Fe3O4 magnetic nanoparticles.Applied Surface Science, 2017, 416: 656-665. (SCI,中科院二区[Top], IF=3.387)

(6) Liang, Z.,Zhao, Z.*, Sun, T., Shi, W., & Cui, F. Enhanced adsorption of the cationic dyes in the spherical CuO/meso-silica nano composite and impact of solution chemistry.Journal of Colloid and Interface Science, 2017, 485, 192-200.(SCI,中科院二区, IF=4.233)

(7) Liang Z., Shi W.,Zhao Z.*, Sun T., Cui F.. The retained templates as “helpers” for spherical meso-silica in adsorption of heavy metals and impacts of solution chemistry.Journal of Colloid and Interface Science, 2017, 496, 382-390.(SCI,中科院二区, IF=4.233)

(8) Liang, Z., Shi, W.,Zhao, Z.*, Sun, T., & Cui, F. Enhanced removal and adsorption characters of aniline by the inorganically modified mesoporous silica nano-spheres.Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2017, 513, 250-258.(SCI,中科院三区, IF=2.714)

(9) Liu, J.,Zhao, Z.*, Ding, Z., Fang, Z., & Cui, F. Degradation of 4-chlorophenol in a Fenton-like system using Au–Fe3O4 magnetic nanocomposites as the heterogeneous catalyst at near neutral conditions.RSC Advances, 2016, 6(58), 53080-53088.( SCI,中科院二区,IF=3.108)

(10) Liang, Z.,Zhao, Z.*, Sun, T., Shi, W., & Cui, F. Adsorption of quinolone antibiotics in spherical mesoporous silica: Effects of the retained template and its alkyl chain length.Journal of Hazardous Materials, 2016, 305, 8-14.( SCI,中科院一区[Top]IF=6.065)

(11) Shi, J., Fang, Z.,Zhao, Z.*, Sun, T., & Liang, Z. Comparative study on Pb (II), Cu (II), and Co (II) ions adsorption from aqueous solutions by arborvitae leaves.Desalination and Water Treatment, 2016, 57(10), 4732-4739. ( SCI,中科院四区,IF=1.631)

(12) Shi, J.,Zhao, Z.*, Liang, Z., & Sun, T. Adsorption characteristics of Pb (II) from aqueous solutions onto a natural biosorbent, fallen arborvitae leaves.Water Science and Technology, 2016, 73(10), 2422-2429.( SCI,中科院四区,IF=1.197)

(13) Liu, J.,Zhao, Z.*, Shao, P., & Cui, F. Activation of peroxymonosulfate with magnetic Fe3O4-MnO2 core-shell nanocomposites for 4-chlorophenol degradation.Chemical Engineering Journal, 2015, 262, 854-861.( SCI,中科院一区[Top]IF=6.216)

(14) Feng, H., Cui, F. Y., Xie, Y. Z., Wei, Y. &Zhao, Z. W*. Improved efficiency of reactor startup in biological aerated filter by poly(lactic acid).Water Science and Technology-Water Supply, 2015, 15(2), 348-355.( SCI,中科院四区,IF=1.197)

(15) Liu, J., Wang, W., Shen, T.,Zhao, Z.*, Feng, H., & Cui, F. One-step synthesis of noble metal/oxide nanocomposites with tunable size of noble metal particles and their size-dependent catalytic activity.RSC Advances, 2014, 4(58), 30624-30629.( SCI,中科院二区,IF=3.108)

(16) Han, M.,Zhao, Z. W.*, Gao, W., & Cui, F. Y. Study on the factors affecting simultaneous removal of ammonia and manganese by pilot-scale biological aerated filter (BAF) for drinking water pre-treatment.Bioresource Technology, 2013. 145, 17-24.( SCI,中科院一区[Top]IF=5.651)

(17) Zhao, Z., Wang, S., Shi, W., & Li, J. Recovery of Stored Aerobic Granular Sludge and Its Contaminants Removal Efficiency under Different Operation Conditions.BioMed research international, 2013. 1-8.( SCI,中科院三区,IF=2.459)

(18) Han, M.,Zhao, Z. W.*, Gao, W., Liu, J., & Cui, F. Y.* Evaluation of a novel double-layer biological aerated filter (BAF) for drinking water bio-pretreatment: comparison with a single-layer BAF.Desalination and Water Treatment, 2013, 51(7-9), 1881-1886.( SCI,中科院四区,IF=1.631)

(19) Zhao, Z.*, Liu, J., Cui, F.*, Feng, H., & Zhang, L. One pot synthesis of tunable Fe3O4-MnO2 core-shell nanoplates and their applications for water purification.Journal of Materials Chemistry, 2012, 22(18), 9052-9057.( SCI,中科院一区,IF=6.171)

(20) Liu, J.,Zhao, Z.*, Feng, H., & Cui, F. One-pot synthesis of Ag-Fe3O4 nanocomposites in the absence of additional reductant and its potent antibacterial properties.Journal of Materials Chemistry, 2012, 22(28), 13891-13894.( SCI,中科院一区,IF=6.171)

(21) Han, M.,Zhao, Z. W.*, Cui, F. Y., Gao, W., Liu, J., & Zeng, Z. Q. Pretreatment of contaminated raw water by a novel double-layer biological aerated filter for drinking water treatment.Desalination and Water Treatment, 2012, 37(1-3), 308-314.( SCI,中科院四区,IF=1.631)

(22) Lin, M. L.,Zhao, Z. W.*, Cui, F. Y., & Xia, S. Modeling of equilibrium and kinetics of chlorobenzene (CB) adsorption onto powdered activated carbon (PAC) for drinking water treatment.Desalination and Water Treatment, 2012, 44(1-3), 245-254.( SCI,中科院四区,IF=1.631)

(23) Lin, M. L.,Zhao, Z. W.*, Cui, F. Y., Wang, Y., & Xia, S. Effects of initial chlorobenzene concentration, air flowrate and temperature on mass transfer of chlorobenzene by air stripping.Desalination and Water Treatment, 2012, 40(1-3), 215-223.( SCI,中科院四区,IF=1.631)

(24) Zhao, Z. W. *, & Cui, F. Y. . Multivariate statistical analysis for the surface water quality of the Luan River, China.Journal of Zhejiang University SCIENCE A, 2009, 10(1), 142-148.( SCI,中科院四区,IF=1.214)

部分代表性专利

(1) 一种稳压井及用其处理水源突发挥发性物质污染的方法,ZL200910072857.3

(2) 吹脱与粉末活性炭吸附联合去除原水中氯苯的方法,ZL200910306573.6

(3) MnO2/Fe3O4复合吸附剂的制备方法及其去除水中砷(III)的方法,ZL201110091212.1

(4) MnO2/Fe3O4复合吸附剂去除水中砷(ⅴ)的方法,ZL201110091180.5

(5) MnO2/Fe3O4复合吸附剂的制备方法,ZL201110082321.7

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