发文时间:2025-05-14 撰稿人:

[1] Wang, Lihong1, Ruan J1, Zhang F, Zhang Z, Zhang T*. Ozonation of dioxolanes in water: Kinetics, transformation mechanism, and toxicity. Separation and Purification Technology. 2024, 337, 126380.

[2] Wang, Lihong, Jiang N, Xu H, Luo Y, Zhang T*. Trace Cu(II)-Mediated Selective Oxidation of Benzothiazole: The Predominance of Sequential Cu(II)-Cu(I)-Cu(III) Valence Transition and Dissolved Oxygen. Environmental Science & Technology. 2023, 57: 12523-12533. 

[3] Wang, Lihong, Jiang J, Ma J, Pang S*, Zhang T*. A review on advanced oxidation processes homogeneously initiated by copper(II). Chemical Engineering Journal. 2022, 427, 131721.

[4] Wang, Lihong, Xu H, Jiang N, Pang S, Jiang J*, Zhang T*. Effective activation of peroxymonosulfate with natural manganese-containing minerals through a nonradical pathway and the application for the removal of bisphenols. Journal of Hazardous Materials. 2021, 417: 126152.

[5] Wang, Lihong, Xu H, Jiang N, Wang Z, Jiang J*, Zhang T*. Trace Cupric Species Triggered Decomposition of Peroxymonosulfate and Degradation of Organic Pollutants: Cu(III) Being the Primary and Selective Intermediate Oxidant. Environmental Science & Technology. 2020, 54: 4686-4694. (ESI高被引)

[6] Wang, Lihong, Jiang J*, Pang S, Gao Y, Zhou Y, Li J, Yang Y, Ma J, Zhang T. Further insights into the combination of permanganate and peroxymonosulfate as an advanced oxidation process for destruction of aqueous organic contaminants. Chemosphere. 2019, 228: 602-610.

[7] Wang, Lihong, Jiang J*, Pang S, Zhou Y, Li J, Sun S, Gao Y, Jiang C. Oxidation of bisphenol A by nonradical activation of peroxymonosulfate in the presence of amorphous manganese dioxide. Chemical Engineering Journal. 2018, 352: 1004-1013. (ESI被引)

[8] 张涛; 王丽红,一种利用背景污染物促进痕量铜离子生成Cu(III)的水处理方法,2021-7-20,ZL. 202010230655.3 (中国专利)。

[9] 程巍;张涛; 王丽红,一种基于醚类自由基的聚酰胺复合膜高通量改性方法,2022-11-15,ZL. 202111357051.6(中国专利)。

[10] 程巍;张涛; 王丽红,选择性截留二价盐离子的聚酰胺复合纳滤膜的改性方法,2022-10-04,ZL. 202111351850.2(中国专利)。

 

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