基本情况介绍
方晶云(Jingyun Fang),女,教授,博士生导师。国家杰出青年基金获得者,国家重点研发项目首席科学家,Water Research编辑,英国皇家化学学会会士。1999-2010在哈尔滨工业大学市政环境工程学院获得本科、硕士和博士学位,2010-2012在香港科技大学土木与环境工程系从事博士后研究。主要从事水污染控制理论和技术研究,包括自由基化学、高级氧化/消毒技术等。曾担任ACS ES&T Engineering副主编,发表SCI论文100余篇,获得国家自然科学杰出青年基金(2023)和优秀青年基金(2019),获得2020 James J. Morgan ES&T Early Career Award、“首创水星奖” 科学创新类银奖和南京大学紫金全兴“青年学者奖”,入选“全球高被引科学家”(2020、2022、2024)。
欢迎具有环境、化学、生物等背景的人才加入课题组(课题组网站://cg-91.com/fangjingyun/)
联系方式
- 广州市大学城外环东路132号91吃瓜
- e-mail:[email protected]
教育经历
- 2006/09 – 2010/04,哈尔滨工业大学,市政环境工程学院,博士
- 2007/10 – 2008/04,香港科技大学,土木与环境工程系,交流博士生
- 2003/09 – 2006/07,哈尔滨工业大学,市政环境工程学院,硕士
- 1999/09 – 2003/07,哈尔滨工业大学,市政环境工程学院,学士
工作经历
- 2020 – 至今,91吃瓜 ,91吃瓜 ,教授
- 2013 – 2019,91吃瓜 ,91吃瓜 ,“百人计划”副教授
- 2010 – 2012,香港科技大学,土木与环境工程系,博士后
讲授课程
水环境学、环境生物学、水环境与人类健康(通识课)、论文写作与学术规范、环境有机化学
研究方向
面向水质净化和资源化/能源化的水化学机理与技术,主要包括:
- 水污染控制卤素自由基化学机理与界面调控
- 水中病原微生物与抗性基因的控制机理与技术
- 面向水质净化和资源化/能源化的界面机制与技术
科研项目
- 中华人民共和国科学技术部,国家重点研发项目,2024YFC3712500,地下水污染风险管控与绿色低碳修复关键技术,2024-12 ~ 2028-11
- 国家自然科学基金杰出青年基金,水污染控制化学,2024-2028
- 国家自然科学基金面上项目,典型高级氧化体系中含氮自由基的生成转化机理及其毒性风险控制,2022-2025
- 国家自然科学基金优秀青年基金,水污染控制卤素自由基化学,2020-2022
- 国家自然科学基金面上项目,典型高级氧化体系中含氯自由基的生成转化规律及其降解PPCPs的机理,2017-2020
- 国家自然科学基金面上项目,基于硫酸根自由基的高级氧化工艺中溴酸盐的形成机理和控制,2014-2017
- 国家自然科学基金青年基金,UV与UV/过硫酸盐技术对新兴含氮消毒副产物降解的效能与机理研究,2012-2014
- 91吃瓜 青年教师重点培育项目,水污染控制中卤素自由基的生成转化规律和应用,2017-2018
- “广东省特支计划”广东省科技创新青年拔尖人才项目,2016-2019
- 广州市科技创新委员会,新型紫外/氯高级氧化体系对饮用水中典型抗生素的控制机制和调控,2017-2019
- 国家重点研发计划课题,珠江三角洲城市群生态安全保障技术——城市群生态安全格局网络设计与生态安全保障技术,2016-2020
学术兼职:
- 期刊Water Research编辑
- 期刊ACS ES&T Engineering副主编
- 期刊Environmental Science: Water Research & Technology编委
- 期刊Journal of Hazardous Materials客座编辑
- 期刊Separation and Purification Technology客座编辑
- 中国化学会应用化学委员会委员
- 国际水协会(IWA)中国青年委员会委员
获奖及荣誉:
- 2024,Environmental Science & Technology期刊Best Reviewer Award
- 2023,国家杰出青年科学基金
- 2022,英国皇家化学会会士
- 2020、2022、2024,全球高被引科学家(环境与生态领域)
- 2022,紫金全兴青年学者奖
- 2020 James J. Morgan ES&T Early Career Award
- 2019,国家自然科学基金优秀青年基金
- 2019,国际水协会中国青年委员会(IWA-China YWP)“首创水星奖”银奖
- 2021,91吃瓜 优秀博士论文指导教师
- 2018,发表于ES&T Letters论文获得ACS Editors’ Choice Award
- 2018年,英国皇家化学学会(RSC) 期刊Environmental Science: Water Research & Technology“Emerging Investigator”
- 2015,“广东特支计划”科技创新青年拔尖人才(广东省科技厅)
主要代表作
- Shaoxiong He; Zhuofeng Hu; Chun He; Shuanghong Tian; Gangfeng Ouyang; Zhiqun Lin*; Jingyun Fang*; Nanoconfinement-Enabled Resistance to Water Matrix Components for Selective Degradation of Micropollutants, Angew. Chem. Int. Ed., 2025, e202424827
- Shaoxiong He; Yanxi Chen; Jingyun Fang*; Yijiang Liu; Zhiqun Lin ; Optimizing photocatalysis via electron spin control, Chemical Society Reviews, 2025, 54: 2154-2187.
- Kaiheng Guo; Sining Wu; Wenlei Qin; Ruijie Xie; Yuxin Wu; Xuchun Li; Gangfeng Ouyang; Jingyun Fang*; Overlooked Generation of Reactive Oxidative Species from Water and Dioxygen by Far UV Light, Environmental Science & Technology, 2024, 58(50): 22431-22441.
- Wei Qu; Zhuoyun Tang; Su Tang; Hailin Wen; Jingyun Fang*; Qiyu Lian,; Dong Sh*u; Chun He*; Cation Substitution Induced d-Band Center Modulation on Cobalt-Based Spinel Oxides for Catalytic Ozonation, Advanced Functional Materials, 2023, 33: 2301677.
- Kaiheng Guo; Yifei Zhang; Sining Wu; Wenlei Qin; Yuge Wang; Zhechao Hua; Chunyan Chen; Jingyun Fang*; Comprehensive Assessment of Reactive Bromine Species in Advanced Oxidation Processes: Differential Roles in Micropollutant Abatement in Bromide-Containing Water, Environmental Science & Technology, 2023, 57(48): 20339-20348.
- Shaoxiong He; Li Ling; Yuxin Wu; Shiming Yang; Zhechao Hua; Kejin Tang; Mengye Wang; Mingshan Zhu*; Jingyun Fang*; Roles of Activated Carbon in UV/Chlorine/Activated Carbon–TiO2 Process for Micropollutant Abatement and DBP Control, Environmental Science & Technology, 2023, 57(24): 9055-9063.
- Zhechao Hua; Jieying Liang; Ding Wang; Zhihong Zhou; Jingyun Fang*; Formation Mechanisms of Nitro Products from Transformation of Aliphatic Amines by UV/Chlorine Treatment, Environmental Science & Technology, 2023, 57(47): 18754-18764.
- Liping Wang, Yingwen Mai, Shenzhou Li, Longfei Shu, Jingyun Fang*. Breakpoint Chlorination Enhances the Disinfection of Amoeba Spores and Their Intraspore Bacteria. Environmental Science & Technology Letters 2023, 10(3), 267-273.
- Anna Wang, Ben-Zhan Zhu, Chun-Hua Huang, Wei-Xian Zhang, Mengye Wang, Xuchun Li, Li Ling, Jun Ma, Jingyun Fang*. Generation mechanism of singlet oxygen from the interaction of peroxymonosulfate and chloride in aqueous systems. Water Research 2023, 235, 119904.
- Yang X., Wang A., Hua Z., Wei W., Cao Y., Fu B., Chen S., Dong Z., Fang J.* Overlooked roles of Cl2O and Cl2 in micropollutant abatement and DBP formation by chlorination. Water Research 2023, 229, 119449.
- Guo, K., Wu, Z., Chen, C., Fang J.* UV/Chlorine process: An efficient advanced oxidation process with multiple radicals and functions in water treatment. Accounts of Chemical Research 2022, 55, 286-297.
- Tao Yang, Jiamin Mai, Mengyang Zhu, Qiqi Peng, Cui Huang, Sisi Wu, Qinying Tan, Jianbo Jia, Jingyun Fang*, Jun Ma* Enhanced Permanganate Activation under UVA-LED Irradiation: Unraveled Mechanism Involving Manganese Species and Hydroxyl Radical. Environmental Science & Technology 2022, 56, 17720−17731.
- Hua, Z., Li, J., Zhou, Z., Zheng, S., Zhang, Y., Fang J.* Exploring Pathways and Mechanisms for Dichloroacetonitrile Formation from Typical Amino Compounds during UV/Chlorine Treatment. Environmental Science & Technology2022, 56, 9712-9721.
- Chen, C., Wu, Z., Hou, S., Wang, A., Fang J.* Transformation of gemfibrozil by the interaction of chloride with sulfate radicals: Radical chemistry, transient intermediates and pathways. Water Research2023, 209, 117944.
- Wei, W., Wang, A., Guo, K., He, S., Li, A., Kang, X., Fang J.* Enhanced degradation of micropollutants by UV/freshly formed colloidal MnO2: Reactive species, kinetics and pathways. Applied Catalysis B: Environmental2022, 313, 121441.
- Wang L., Ye C., Guo L., Chen C., Kong X., Chen Y., Shu L., Wang P., Yu X.*, Fang J.* (2021) Assessment of the UV/Chlorine Process in the Disinfection of Pseudomonas aeruginosa: Efficiency and Mechanism. Environmental Science & Technology 55(13), 9221-9230.
- Wang A., Hua Z., Wu Z., Chen C., Hou S., Huang B., Wang Y., Wang D., Li X., Li C., Fang J.* (2021) Insights into the effects of bromide at fresh water levels on the radical chemistry in the UV/peroxydisulfate process. Water Research 197 (117042).
- Chen C., Wu Z., Hua Z., Guo K., Zhou Y., Wang D., Xia B., Fang J.* (2021) Mechanistic and kinetic understanding of micropollutant degradation by the UV/NH2Cl process in simulated drinking water. Water Research 204 (117569).
- Chen C., Du Y., Zhou Y., Wu Q., Zheng S., Fang J.* (2021) Formation of nitro(so) and chlorinated products and toxicity alteration during the UV/monochloramine treatment of phenol. Water Research 194, 116914.
- Chen C., Du Y., Zhou Y., Wu Q., Zheng S., Fang J.* (2021) Formation of nitro(so) and chlorinated products and toxicity alteration during the UV/monochloramine treatment of phenol. Water Research 194, 116914.
- Hua Z., Li D., Wu Z., Wang D., Cui Y., Huang X., Fang J.*, An T. (2021) DBP formation and toxicity alteration during UV/chlorine treatment of wastewater and the effects of ammonia and bromide. Water Research 188, 116549.
- Chen C., Wu Z., Zheng S., Wang L., Niu X., Fang J.* (2020) Comparative study for interactions of sulfate radical and hydroxyl radical with phenol in the presence of nitrite. Environmental Science & Technology 54(13), 8455-8463.
- Guo K., Zheng S., Zhang X., Zhao L., Ji S., Chen C., Wu Z., Wang D., Fang J.* (2020) Roles of bromine radicals and hydroxyl radicals in the degradation of micropollutants by the UV/bromine process. Environmental Science & Technology 54(10), 6415-6426.
- Kong X., Wang L., Wu Z., Zeng F., Sun H., Guo K., Hua Z., Fang J.* (2020) Solar irradiation combined with chlorine can detoxify herbicides. Water Research 177, 115784.
- Zhou Y., Chen C., Guo K., Wu Z., Wang L., Hua Z., Fang J.* (2020) Kinetics and pathways of the degradation of PPCPs by carbonate radicals in advanced oxidation processes. Water Research 185, 116231.
- Wu, Z., Chen, C., Zhu, B., Huang, C., An, T., Meng, F., Fang J.* (2019) Reactive nitrogen species are also involved in the transformation of micropollutants by the UV/monochloramine Process. Environmental Science & Technology 53(19), 11142-11152.
- Hua, Z., Guo, K., Kong, X., Lin, S., Wu, Z., Wang, L., Huang, H. and Fang J.* (2019) PPCP degradation and DBP formation in the solar/free chlorine system: Effects of pH and dissolved oxygen. Water Research 2019, 150, 77-85.
- Hua Z., Kong X., Hou S., Zou S., Xu X., Huang H., Fang J.* (2019) DBP alteration from NOM and model compounds after UV/persulfate treatment with post chlorination. Water Research 158, 237-245.
- Guo K., Zhang J., Li A., Xie R., Liang Z., Wang A., Ling L., Li X., Li C., Fang J.* (2018) Ultraviolet irradiation of permanganate enhanced the oxidation of micropollutants by producing HO• and reactive manganese species. Environmental Science & Technology Letters. 5, 750-756. (ACS Editors’ Choice, cover article)
- Hou S., Ling L., Dionysiou D.D., Wang Y., Huang J., Guo K., Li X., Fang J.*(2018) Chlorate formation mechanism in the presence of sulfate radical, chloride, bromide and natural organic matter. Environmental Science & Technology 52(11), 6317-6325.
- Guo K., Wu Z., Yan S., Yao B., Song W., Hua Z., Zhang X., Kong X., Li X., Fang J.* (2018) Comparison of the UV/chlorine and UV/H2O2 processes in the degradation of PPCPs in simulated drinking water and wastewater: Kinetics, radical mechanism and energy requirements. Water Research147, 184-194.
- Kong X., Wu Z., Ren Z., Guo K., Hou S., Hua Z., Li X., Fang J.* (2018) Degradation of lipid regulators by the UV/chlorine process: Radical mechanisms, chlorine oxide radical (ClO•)-mediated transformation pathways and toxicity changes. Water Research 137, 242-250.
- Ling L., Li Z., Fang J.*, Shang C.* (2018) Controlling bromate formation in the Co(II)/peroxymonosulfate process by ammonia, chlorine-ammonia and ammonia-chlorine pretreatment strategies. Water Research 139, 220-227.
- Li A., Wu Z., Wang T., Hou S., Huang B., Kong X., Li X., Guan Y., Qiu R., Fang J.* (2018) Kinetics and mechanisms of the degradation of PPCPs by zero-valent iron (Fe°) activated peroxydisulfate (PDS) system in groundwater. Journal of Hazardous Materials 357, 207-216.
- Guo, K., Wu, Z., Shang, C., Yao, B., Hou, S., Yang, X., Song, W.* and Fang J.*(2017) Radical chemistry and structural relationships of PPCP degradation by UV/chlorine treatment in simulated drinking water.Environmental Science & Technology 51(18), 10431–10439.
- Wu Z., Guo K., Fang J.*, Yang X., Xiao H., Hou S., Kong X., Shang C., Yang X., Meng F., Chen L. (2017) Factors affecting the roles of reactive species in the degradation of micropollutants by the UV/chlorine process. Water Research 126, 351-360.
- Wu Z., Fang J.*, Xiang Y., Shang C., Li X., Meng F., Yang X. (2016) Roles of reactive chlorine species in trimethoprim degradation in the UV/chlorine process: Kinetics and transformation pathways. Water Research 104, 272-282.
- Xiang Y., Fang J.*, Shang C.* (2016) Kinetics and pathways of ibuprofen degradation by the UV/chlorine advanced oxidation process. Water Research 90, 301-308.
- Ling, L., Sun, J., Fang J.*, Shang, C.* (2016) Kinetics and mechanisms of degradation of chloroacetonitriles by the UV/H2O2 process. Water Research 99, 209-215.
- Li Z., Chen Z., Xiang Y., Ling L., Fang J.*, Shang C.*, Dionysiou D.D. (2015) Bromate formation in bromide-containing water through the cobalt-mediated activation of peroxymonosulfate. Water Research 83, 132-140.
- Fang J.*, Fu Y., Shang C.* (2014) The roles of reactive species in micropollutant degradation in the UV/free chlorine system. Environmental Science & Technology 48(3), 1859-1868.
- Fang J., Ling L., Shang C. (2013) Kinetics and mechanisms of pH-dependent degradation of halonitromethanes by UV photolysis. Water Research 47(3), 1257-1266.
- Xie P., Ma J.*, Fang J.*, Guan Y., Yue S., Li X., Chen L. (2013) Comparison of permanganate preoxidation and preozonation on algae containing water: Cell integrity, characteristics, and chlorinated disinfection byproduct formation. Environmental Science & Technology 47(24), 14051-14061.
- Fang J., Shang C. (2012) Bromate formation from bromide oxidation by the uv/persulfate process. Environmental Science & Technology 46(16), 8976-8983.
- Fang J., Yang X., Ma J., Shang C., Zhao Q. (2010) Characterization of algal organic matter and formation of DBPs from chlor(am)ination. Water Research 44(20), 5897-5906.
- Fang J., Ma J., Yang X., Shang C. (2010) Formation of carbonaceous and nitrogenous disinfection by-products from the chlorination of Microcystis aeruginosa. Water Research 44(6), 1934-1940.
发明专利
- 方晶云等,一种测定不同自由氯与反应物的二级反应速率常数的方法,2023-11-24,中国,CN202210361257.4,授权号:ZL 2022 1 0361257.4
- 方晶云等,一种去除水体中重金属的方法. 国家发明专利,公开号:CN110803752A, 2020
- 方晶云等,一种活化过硫酸盐去除微污染物的水处理方法. 国家发明专利,公开号:CN108946908A,授权号:ZL 2018 1 0805160.1
- 方晶云等,一种去除微污染物的水处理方法. 国家发明专利,公开号:CN108911025A, 2018
- 方晶云等,一种去除水体中微污染物的方法. 国家发明专利,公开号:CN108358274A, 2018
- 方晶云等,一种基于ABTS的二氧化氯和亚氯酸盐快速分析方法. 国家发明专利,公开号:CN107036991A, 2017
- 方晶云等,一种紫外光去除水中卤代硝基甲烷的水处理方法. 国家发明专利,公开号:CN106219839A, 2016
- 方晶云等,一种紫外光和自由氯联用降低水质综合毒性的方法. 国家发明专利,公开号:CN106082390A, 2016
- 方晶云等,控制基于硫酸根自由基高级氧化体系中溴酸盐生成的方法. 国家发明专利,公开号:CN106082423A, 2016
- 方晶云等,一种强化零价铁除砷的水处理方法. 国家发明专利,公开号:CN103342410A,授权号:ZL 2013 1 0315731.0
- 方晶云等,一种零价铁-铜双金属活化过硫酸盐的水处理方法. 国家发明专利,申请号:201510635587.8.
- 方晶云等,一种零价铁-镍双金属活化过硫酸盐的水处理方法. 国家发明专利,申请号:201510635779.9.
- 方晶云,商启. 一种紫外光和自由氯联用去除水中微污染物的方法. 国家发明专利,公开号:CN103523900A, 2014
学生培养
- 魏文瑞,2019年度全国高校环境类专业本科生优秀毕业设计(论文)
- 向滢颖(2014)、崔永琳(2014)、郭恺恒(2015)、林瑞琪(2017)、魏文瑞(2019)、邢琳(2019)、张月琪(2020)、梁捷颖(2022)、吴雨昕(2023):91吃瓜 校级优秀本科毕业论文
- 郭恺恒,广东省优秀学生(研究生阶段)、“钱易环境奖”一等奖、高廷耀“青年博士杰出人才”、“奥加诺奖学金”一等奖、91吃瓜 2018大学生年度人物提名奖、4th IWA conference of Science Summit on Urban Water – Doctoral Forum最佳口头报告奖(2018年)、国家奖学金(2017年、2018年)
- 吴梓昊,第十四届全国水处理化学大会优秀口头报告奖(2018年)、中国环境科学会年会优秀论文二等奖(2015年)、国家奖学金(2017年)
- 王安娜,国际水协会亚太会议(IWA-ASPIRE)优秀墙报奖入围奖(2019年)