吴非,女,1990年9月生,湖北黄冈人,博士、武汉纺织大学技术研究院纺织印染清洁生产教育部工程研究中心七级副教授、硕士生导师。
2013年毕业于长江大学环境工程专业,获工学学士学位。2016年毕业于华南理工大学环境科学专业,获工学硕士学位。2022年毕业于中国科学院大学环境科学专业,获工学博士学位。作为负责人先后主持国家自然科学基金青年基金及博士后面上基金各1项、在Environmental Science & Technology、Water Research等国际著名学术期刊以及国内重要学术刊物上发表SCI检索论文20多篇,收录论文被引用次数达500多次。获国家授权发明专利8件,国际专利2件。
研究方向介绍
1. 铁矿物结构转化耦合重金属环境行为
2. 重金属高温结构固定
3. 稳定同位素分馏
研究项目
1. 国家自然科学基金委员会,青年科学基金项目,42207314,厌氧环境绿锈晶相转化过程耦合重金属环境行为机制研究,2023-01-01~2025-12-31,主持;
2. 博士后科学基金会,博士后科学基金面上项目,2022M713125,Cd在绿锈上的赋存行为及晶相转化过程中的再分配机制, 2023-01~2024-12,主持;
3. 国家自然科学基金委员会,重点项目,42330712,碳酸盐岩地质高背景区土壤镉形态演化过程及其关键影响因素,2024-01-01~2029-06-30,骨干;
4. 贵州省科技厅,贵州省自然科学基金,电解锰渣堆原位治理修复关键技术研究,2024-05-16~2027-10-01,参与;
5. 国家自然科学基金委员会,面上项目,42177238,湿地好氧-微氧-厌氧交替过程中浮游铁氧化膜形成机制及其砷固定效应,2022-01-01~ 2025-12-31,参与;
6. 国家自然科学基金委员会,面上项目,42177183, 地质高背景区碳酸盐岩风化成土过程中镉的形态转化与表生富集机制, 2022-01-01~2025-12-31,参与;
7. 国家自然科学基金委员会,地区科学基金项目,41967045,稻田锰循环对铁锰氧化物形成的影响及捕获砷的生物化学机制, 2020-01-01~2023-12-31,参与;
8. 国家自然科学基金委员会,青年科学基金项目,41701560,次锕系核素在钙钛锆石基玻璃陶瓷中的固化机制,2018-01-01~2020-12-31,参与。
主要发表的高水平论文
1. Wu F, Sun J, Zhou J, Meng F, Lu X, Xia D, Liu C*, Redox-driven Fe atom exchange at the magnetite-water interface: Insights from 57Fe-Mössbauer spectroscopy and first-principles molecular dynamics simulations. Environmental Science & Technology, 2025, 59(37): 19846–19855.
2. Wu F, Sun J, Meng F, Zhou J, Qi M, Lu X, Liu C*, Cysteine-facilitated Cr(VI) reduction by Fe(II/III)-bearing phyllosilicates: Enhancement from in-situ Fe(II) generation. Water Research, 2024, 267: 122548.
3. Wu F, Liu F, Zhou J, Meng F, Liu C*, Structural incorporation of aluminum into goethite and its impact on selenium adsorption. Chemical Engineering Journal, 2025, 505: 159517.
4. Meng F, Tong H, Feng C, Huang Z, Wu P, Zhou J, Hua J, Wu F*, Liu C*, Structural Fe(II)-induced generation of reactive oxygen species on magnetite surface for aqueous As(III) oxidation during oxygen activation. Water Research, 2024, 252: 121232.
5. Wu F, Hua J, Zhou J, Liu Y, Long S, Fei Y, Liu C*, Facet-specific reactivity of hematite nanocrystals during Fe(II)-catalyzed recrystallization. Chemical Geology, 2021, 583: 120460.
6. Wu F, Tang Y, Lu X, Liu C*, Tong H, Ning Z, Liao C, Li F, Simultaneous immobilization of Zn(II) and Cr(III) in spinel crystals from beneficial utilization of waste brownfield-site soils. Clays and Clay Minerals, 2019, 67(4): 315–324.
7. Liu Y, Liu C*, Wu F, Xia Y, Qi M, Gao T, Zinc isotope fractionation during coprecipitation with amorphous iron (hydr)oxides. Geochimica et Cosmochimica Acta, 2024, 379: 158–171.
8. Liang J, Duan X, Xu X*, Chen K, Wu F, Qiu H, Liu C, Wang S, Cao X, Biomass-derived pyrolytic carbons accelerated Fe(III)/Fe(II) redox cycle for persulfate activation: Pyrolysis temperature-depended performance and mechanisms. Applied Catalysis B: Environmental, 2021, 297: 120446.
9. Gong L, Chen J, Shen L, Zhang Z, Xia C, Wu F, Yao Y, Liu C, Li L, He F*, Unveiling the mechanistic role of surface nitrogen and sulfur in boosting the dechlorination performance of zero-valent iron. ACS ES&T Engineering, 2024, 4(9): 2284–2293.
10. Zhang G, Tang Y, Lin J*, Xu J, Yuan Z, Chen L, Wu F, Liu C, Zhu Z, Bi X, Zou W, Cao Z, Jiang K, Pan Y, Chernikov R, Jia Y, Wang S*, Magnetic and structural characteristics associated with the transformation of As(V)-coprecipitated ferrihydrite to hematite: Implications for magnetic enhancement in soils and sediments. Environmental Science: Nano, 2024, 11(5): 1985–1999.
11. Zhou J, Liu Y, Bu H, Liu P, Sun J, Wu F, Hua J, Liu C*, Effects of Fe(II)-induced transformation of scorodite on arsenic solubility. Journal of Hazardous Materials, 2022, 429: 128274.
12. Tong J, Li R, Zhang J, Ma X, Wu F, Suo H, Liu C*, Coupled dynamics of As-containing ferrihydrite transformation and As desorption/re-adsorption in presence of sulfide. Journal of Hazardous Materials, 2020, 384: 121287.