Self-cleaning photoelectrocatalytic filtration based on Ca(OH)2/Ti3C2T composite nanofiltration membranes for synergistically enhanced separation and degradation of phenolic compounds

纳滤 降级(电信) 化学 苯酚 双酚A 激进的 化学工程 催化作用 核化学 色谱法 有机化学 环氧树脂 电信 生物化学 计算机科学 工程类
作者
Huiqi Zheng,Xiaorong Meng,Danghao Liu,Jiao Wu,Shanshan Huo
出处
期刊:Journal of water process engineering [Elsevier BV]
卷期号:55: 104084-104084 被引量:12
标识
DOI:10.1016/j.jwpe.2023.104084
摘要

Combining photoelectrocatalytic (PEC) and nanofiltration (NF) membranes has emerged as an attractive technology for removing organic pollutants in wastewater treatment, however, the separation and degradation performance are still challenging. Herein, novel composite NF membranes were constructed by cross-linking a Ca(OH)2/Ti3C2Tx (CT) catalyst to a polyamide membrane using tannic acid (TA). In these CT@TA (CTTP) membranes, Ti3C2Tx reduces the charge-transfer resistance and recombination rate of CT, leading to enhanced PEC activity. The optimal CTTP membrane had a high water flux (27.9 L·m−2·h−1·bar−1) and excellent rejection rates for phenolic compounds (phenol: 85.1 %, 4-nitrophenol: 91.1 %, and bisphenol A (BPA): 94.6 %). Under visible-light irradiation with electrical assistance (3 V), the BPA degradation rate (92.2 %) was 13.7 % higher than that under light irradiation alone, and a higher flux recovery rate was achieved (94.1 %). Superoxide (O2−) and hydroxyl (OH) radicals were critical active species in catalytic BPA degradation, and the observed intermediates suggested that the degradation pathway involves oxidation, hydroxylation, and aromatic ring cracking. The developed NF membranes, which exhibit synergistic separation and degradation effects and self-cleaning properties, provide an innovative solution for the treatment of organic pollutants in wastewater.
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