王 俏

浏览量: 发布日期:2025-06-13

姓名:王俏(Wang Qiao)

职称:副教授

职务:无

导师类别:硕士研究生导师

电子邮箱: wq1406886900@126.comwangqiao@gdut.edu.cn

研究方向:

1)水污染深度处理与再生水回用;

2)高级氧化/还原过程及深度学习优化;

3)水处理纳米技术与功能材料;

4)海洋牧场尾水治理与新能源驱动污染控制

招生专业:土木工程(0814);土木水利(085905)

1.个人简介(300字内)

王俏,女,工学博士。连续多次入选斯坦福大学全球2%顶尖科学家榜单(2022-2025),目前已在国内外高水平学术期刊发表SCI/EI论文50余篇,其中包括ESI高被引论文2篇、授权发明专利12项、登记软件著作权2项、获国家级/省级协会奖7项。现主持国家自然科学基金青年项目、广东省自然科学基金、国家重点实验室开放基金、校企合作项目等纵横向课题7项。

2.学习与工作经历

教育背景:

2015.09-2019.07 哈尔滨工业大学 市政工程 工学博士

2013.09-2015.07 哈尔滨工业大学 市政工程 工学硕士

2009.09-2013.07 哈尔滨工业大学 给排水科学与工程 工学学士

工作经历:

2024.01-至今 广东工业大学土木与交通工程学院 副教授

2021.05-2023.12 广东工业大学土木与交通工程学院 特聘副教授

2019.09-2021.04 广东工业大学土木与交通工程学院 讲师

3.近五年荣誉与奖励

个人科技奖励(代表性):

[1] 中华环保联合会自然科学二等奖,2025,排名2/5

[2] 广东省工程勘察设计行业科学技术二等奖,2025,排名1/10

[3] 广东省工程勘察设计行业科学技术二等奖,2023,排名1/10

[4] 广东省优秀工程勘察设计科技创新专项二等奖,2023,排名1/10

[5] 中国复合材料学会科学技术二等奖,2021排名7/10

指导学生获奖:

[1] 广工大研究生卓越计划(2026年度:彭伊雯

[2] 广东工业大学优秀毕业生(2023年度:曹怡婷)

[3] 研究生国家奖学金(2022年度:姜燕,肖梦瑶)

[4] 第六届深水杯全国大学生给排水科技创新大赛,二等奖,2023

[5] 第五届深水杯全国大学生给排水科技创新大赛,三等奖,2023

[6] 第四届深水杯全国大学生给排水科技创新大赛,三等奖,2021

4.近五年发表期刊论文(部分)

[1] He A, Li Z, Lin X, Wan J, Xu H, Peng Y, Huang M, Han Y, Wang Q*. Non-radical dominated peroxymonosulfate activation via perovskite-CNTs nanocomposites: kinetics insights in high-salinity conditions and structure-dependent selective oxidation behaviors [J]. Separation and Purification Technology, 2026, 385: 136382.

[2] Yu M, Li Z, Xu H, He A, Han Y, Huang M, Peng Y, Wang Q*, Zhao Z. Periodate assisted visible photocatalysis over AgIO3-BiOIO3 S-scheme heterojunction toward phenolic pollutants: kinetics enhancement and quantitative structure-activity relationship insights [J]. Separation and Purification Technology, 2026, 385: 136503.

[3] Xu W, Li Z, Peng Y, He A, Huang M, Han Y, Zheng Z, Wang Q*. Synergistic adsorption–catalysis by dual-site Co3O4-ZrO2 for PMS activation: Efficient phenylphosphonic acid degradation with concurrent phosphate recovery [J]. Chemical Engineering Journal, 2026, 529: 172479.

[4] Wang Q, Yu M, et al. Photo-generation of hole dominated selective degradation of hydrophobic organic pollutants with tetracyanoquinodimethane (TCNQ)-modified BiOIO3 catalyst [J]. Chemical Engineering Journal, 2025, 504: 159036.

[5] Wang Q, Peng Y, et al. A well-constructed Bi3O4Br/PANI composite: elevation of visible-light photocatalytic degradation performance through the synergistic mechanism of oxygen vacancies and heterojunctions [J]. Surfaces and Interfaces, 2025, 70: 106866.

[6] Li Z, Peng Y, Xu H, He A, Xu W, Liu Y, Wang Q*, Yu Y, Zhang Z. Bi3O4Br/Ce-based-MOF Z-scheme heterojunction enhanced chloroquine phosphate degradation under visible light irradiation: Key role of targeted adsorption-photocatalytic synergistic effect [J]. Journal of Environmental Chemical Engineering, 2025, 13: 119497.

[7] Wang Q, Lin X, et al. Insight into the nonradical selective oxidation mechanism for versatile organic pollutants removal by perovskite activated peroxymonosulfate system [J]. Chemical Engineering Journal, 2024, 499: 156074.

[8] Wang Q, Xiao M, et al. Enhancing manganese removal through pre-deposition of powdered activated carbon-manganese oxide (PAC-MnOx) film on gravity-driven ceramic membrane: The impact of biofilm integrity and fluid dynamics [J]. Separation and Purification Technology, 2024, 342: 127051.

[9] Wang Q, Jiang Y, et al. Insight into novel Fe3C/Mo2C@carbonized polyaniline activated PMS for parachlorophenol degradation: Key roles of Mo2+, C=O bonds and N-doping [J]. Separation and Purification Technology, 2023, 322: 124359.

[10] Wang Q, Lu J, et al. Sulfur vacancy rich MoS2/FeMoO4 composites derived from MIL-53(Fe) as PMS activator for efficient elimination of dye: Nonradical 1O2 dominated mechanism [J]. Environmental Pollution, 2023, 333: 121990.

[11] Wang Q, Xu Z, et al. Two-dimensional ultrathin perforated Co3O4 nanosheets enhanced PMS-Activated selective oxidation of organic micropollutants in environmental remediation [J]. Chemical Engineering Journal, 2022, 427: 131953.

[12] Wang Q, Xu Z, et al. Efficient peroxymonosulfate activation and less metallic leaching through kaolin@MnCo2O4 for bisphenol A degradation in environmental remediation [J]. Applied Surface Science, 2022, 585: 152705.

[13] Wang Q, Xiao M, et al. Visible LED photocatalysis combined with ultrafiltration driven by metal-free oxygen-doped graphitic carbon nitride for sulfamethazine degradation [J]. Journal of Hazardous Materials, 2022, 439: 129632.

[14] Wang Q, Lv G, et al. Rational design of 2D ultrathin BiO(HCOO)xI1-x composite nanosheets: The synergistic effect of ultrathin structure and hybridization in the effective elimination of BPA under visible light irradiation [J]. Separation and Purification Technology, 2022, 282: 120153.

[15] Wang Q, Lu J, et al. FeCo bimetallic metal organic framework nanosheets as peroxymonosulfate activator for selective oxidation of organic pollutants [J]. Chemical Engineering Journal, 2022, 443: 136483.

[16] Wang Q, Jiang Y, et al. Selective degradation of parachlorophenol using Fe/Fe3O4@CPPy nanocomposites via the dual nonradical/radical peroxymonosulfate activation mechanisms [J]. Chemical Engineering Journal, 2022, 445: 136806.

[17] Wang Q, Cao Y, et al. Enhanced visible-light driven photocatalytic degradation of bisphenol A by tuning electronic structure of Bi/BiOBr [J]. Chemosphere, 2022, 308: 136276.

[18] Wang Q, Cao Y, et al. Facile construction of Z-scheme AgBr/BiO(HCOO)0.75I0.25 photocatalyst for visible-light-driven BPA degradation: Catalytic kinetics, selectivity and mechanism [J]. Separation and Purification Technology, 2022, 302: 122087.

[19] Wang Q, Xiao M, et al. Electro-coagulation coupled with solid carrier enhanced GDCMBR as pretreatment for NF dual membrane system during surface brackish water treatment [J]. Journal of Cleaner Production, 2022, 380: 135021.

[20] Wang Q, Xu Z, et al. Rapid synthesis of amorphous CoO nanosheets: Highly efficient catalyst for parachlorophenol degradation by peroxymonosulfate activation [J]. Separation and Purification Technology, 2021, 263: 118369.

[21] 许泽涛, 曹怡婷, 王俏*, 王志红. 固相钴基催化剂活化过一硫酸盐在水处理中的研究进展 [J]. 化工进展, 2022, 41: 730-739.

5.近三年知识产权(部分)

[1] 王俏,朱青,等.一种过一硫酸盐非自由基降解体系中快速预测有机污染物催化降解速率的方法,发明专利,ZL202410931826.3,授权日期:2025.03.18

[2] 王俏,石家琦,等. 一种有机高分子/卤氧化铋光催化剂及其制备方法和应用,发明专利,ZL202310466010.3,授权日期:2024.03.12

[3] 王俏,曹怡婷,等.一种铋量子点/卤氧化铋复合材料及其制备方法和应用,发明专利,ZL2022101710159,授权日期:2024.01.30

[4] 王俏,张超,等:一种复合材料及其制备方法和应用,发明专利,ZL202211538585.3,授权日期:2023.06.12

[5] 王俏,姜燕,等.一种含有过渡金属碳化物的复合材料及其制备方法,发明专利,ZL2022108841940,授权日期:2023.06.27

6.项目情况(主持)

[1] 国家自然科学基金青年项目(No. 22006022),主持

[2] 广东省自然科学基金面上项目(No. 2022A1515012063),主持

[3] 城市水资源与水环境国家重点实验室开放项目(No. HC202154),主持

[4] 广州市基础与应用基础研究项目(No. 202102020348),主持

[5] 广东工业大学青年百人计划科研启动(No. 220413320),主持

[6] 校企合作项目,广东省九域工程技术咨询有限公司,主持

[7] 校企合作项目,中建三局集团有限公司,主持

7.我的团队

本课题组科研氛围注重劳逸结合、团结互助、鼓励探索,研究方向关注多学科交叉研究,诚挚邀请具有给排水、环境工程、海洋工程、化学化工、材料科学、计算机等相关背景的同学积极联系加入。



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