Ultra-highly photocatalytic removal of pollutants by polypyrrole/cadmium sulfide/polyether sulfone hybrid porous membrane in single-pass mode

光催化 化学工程 污染物 聚吡咯 材料科学 聚合 水处理 过滤(数学) 硫化镉 化学 环境工程 无机化学 聚合物 有机化学 催化作用 环境科学 工程类 统计 生物化学 数学
作者
Jian Zhao,Shengnan Tian,Qinglin Huang,Linpeng Fan,Changfa Xiao
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:432: 134300-134300 被引量:24
标识
DOI:10.1016/j.cej.2021.134300
摘要

A hybrid porous membrane of polypyrrole, cadmium sulfide and polyether sulfone (CdS/[email protected]), which is suitable for dynamic photocatalytic process, has been designed to resolve distressing issues of nanoscale CdS recovery and membrane fouling as well as fast water purification. CdS/[email protected] membrane was fabricated by the deposition of CdS on PES substrate, followed by PPy polymerization. As-prepared CdS/[email protected] membrane was used for the dynamic removal of pollutants (e.g. methylene blue, tetracycline) by a combination of photocatalysis and separation process under visible light illumination. 55%∼82% dynamic pollutants removal can be constantly achieved for hourly single flow (13 ∼ 19 L·m2·h−1, exclusion of interception) in a reaction unit, and such high efficiency is sustainable, which is also confirmed by total organic carbon testing. Furthermore, almost 100% pollutants removal can be fulfilled by 2 or 3 sequential repeated units in flow-through mode. Additionally, the photocorrosion and leakage of CdS were significantly hindered with the protection and promotion of PPy. Compare to conventional cross-flow mode (a large of prefiltered water was pumped out as the concentrated solution and low net output of clean water), all in-put water can be purified in single-pass mode by simple repeated cells. With great and sustainable capacity of photocatalysis degradation and filtration, our membrane becomes a promising candidate for pollutants removal from all income to all clean output.
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