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丁魏


姓名

丁魏

出生年月

1990年4月

技术职务

suncitygroup太阳新城客户端,副教授

行政职务

电子邮箱

weiding@cqu.edu.cn

通信地址

太阳成集团B区生态与环境学院

1. 主要研究方向:

水质净化与水污染控制技术:高级氧化技术,强化混凝技术等。

2. 社会兼职、国内外学术团体任职情况:

3. 教育及工作经历

教育经历:

[1] 2012.09-2018.06,武汉大学,环境科学,博士(硕博连读)

[2] 2008.09-2012.06,武汉大学,环境科学,学士

工作经历:

[1] 2021.07-今,suncitygroup太阳新城客户端,讲师

[2] 2018.12-2021.07,太阳成集团,博士后(助理研究员)

[3] 2018.08-2018.10,重庆市碧桂园房地产开发有限公司,高级工程经理

4. 主持或主研的科学研究项目

近五年主持的项目包括:

[1]铁基电混凝体系中无机铁砷配合物的电化学反应及其对三价砷去除的贡献(项目批准号:21906012),国家青年自然科学基金项目2020.01-2022.12

[2] Fe-电混凝/亚硫酸盐体系去除污染物的过程与机制(项目批准号:BX20190047),国家博士后创新人才计划,2019.06-2021.06。

[3]磁性纳米材料-亚硫酸盐体系降解污染物的过程和机理(项目批准号:2019M653340),中国博士后科学基金面上项目,2019.05-2021.05。

[4]负载型铜氧化物材料活化亚硫酸盐降解有机污染物的效能和机制(项目批准号:cstc2019jcyj-bsh0034),重庆市博士后科学基金项目,2019.11-2021.10。

近五年参加的项目包括:

[1]无机铜砷配合物的形成与光化学反应对砷及铜形态转化的影响(项目批准号:21777125),国家自然科学基金面上项目2018.01-2021.12。

5. 科研成果

近五年已在Water Research(中科院I区,Top期刊,IF 11.236)、Chemical Engineering Journal(中科院I区,Top期刊,IF 13.273)、Journal of Hazardous Materials(中科院I区,Top期刊,IF 10.588)、Journal of Cleaner Production(中科院I区,Top期刊,IF 9.297)等行业主流国际知名期刊发表论文二十余篇。

作为第一作者和通讯作者发表的部分代表性论文:

[1]Wei, Ding; Xinyuan Wan; Huaili Zheng*; Yuyang Wu; Salam Muhammad, Sulfite-assisted oxidation/adsorption coupled with a TiO2supported CuO composite for rapid arsenic removal: Performance and mechanistic studies,Journal of Hazardous Materials, 2021, 413: 125449.SCI收录, I区)

[2] Yanyan An; Mengxin Han; Huaili Zheng*;Wei Ding*; Qiang Sun; Chao Hu;, Liushi Zheng, Hollow structured copper-loaded self-floating catalyst in sulfite-induced oxidation of arsenic(III) at neutral pH: Kinetics and mechanisms investigation,Chemical Engineering Journal, 2021, 407: 127193.SCI收录, I区)

[3]Wei Ding; Huaili Zheng*; Yongjun Sun; Zhiwei Zhao; Xinyu Zheng; Yuyang Wu; Weilong Xiao, Activation of MnFe2O4by sulfite for fast and efficient removal of arsenic (III) at circumneutral pH: Involvement of Mn(III),Journal of Hazardous Materials, 2021, 403: 123623.SCI收录, I区)

[4]Wei Ding; Hui Tong; Dan Zhao; Huaili Zheng; Chengshuai Liu*; Jinjun Li; Feng Wu*, A novel removal strategy for copper and arsenic by photooxidation coupled with coprecipitation: Performance and mechanism,Chemical Engineering Journal, 2020, 401: 126102.SCI收录, I区)

[5]Wei Ding; Weilong Xiao; Huaili Zheng*; Shixin Zhang; Hongxia Liu; Yanyan An; Rui Zhao, Electro-assisted sulfite activation by a silica supported cobalt catalyst for the degradation of organic pollutants in near-neutral pH condition,Chemical Engineering Journal, 2020, 402: 126168.SCI收录, I区)

[6]Wei Ding*; Weilong Xiao; Wenxuan Huang; Qiang Sun; Huaili Zheng*, Sulfite activation on a silica-supported well-dispersed cobalt catalyst via an electron transfer complex path,Journal of Cleaner Production, 2020, 257: 120457.SCI收录, I区)

[7]Wei Ding; Xingyun Huang; Weidong Zhang; Feng Wu*; Jinjun Li*, Sulfite activation by a low-leaching silica-supported copper catalyst for oxidation of As(III) in water at circumneutral pH,Chemical Engineering Journal, 2019, 359: 1518-1526.SCI收录, I区)

[8]Wei Ding; Jing Xu; Tao Chen; Chengshuai, Liu*; Jinjun Li; Feng Wu*, Co-oxidation of As(III) and Fe(II) by oxygen through complexation between As(III) and Fe(II)/Fe(III) species,Water Research, 2018, 143, 599-607.SCI收录, I区)

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