生物污染
催化作用
化学
对偶(语法数字)
膜
化学工程
有机化学
生物化学
文学类
工程类
艺术
作者
Huasheng Yang,Yingying Xiao,Qi Chen,Meiyan Li,Qian Xiang,Jingjing Ren,Yanzong Zhang,Gang Yang,Fei Shen,Yan Liu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-03-04
卷期号:25 (11): 4242-4251
被引量:5
标识
DOI:10.1021/acs.nanolett.4c05683
摘要
Combining the photo-Fenton catalytic reaction with membrane separation technology can effectively treat oils and dyes in water. However, single iron-based catalysts suffer from limited photogenerated carrier utilization and slow Fe 3+ /Fe 2+ redox reactions, leading to membrane contamination. In this study, iron oxyhydroxide and Prussian blue were grown on a PVDF membrane, optimizing electron transfer to improve the catalytic efficiency (the methylene blue degradation efficiency was nearly 50% in 10 min and the reaction rate constant was 0.094 min –1 ). The membrane flux for multicomponent oily wastewater reached 965.3 L·m –2 h –1, with an over 99.9% dye removal rate. The flux of actual printing and dyeing wastewater after continuous filtration for 60 min reached 373.6 L·m –2 h –1 . Moreover, the catalytic and filtration mechanisms were explained in detail. The strategy provided in this study has certain practical application value in printing and dyeing wastewater treatment.
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