光催化
废水
膜
领域(数学)
化学
材料科学
化学工程
纳米技术
环境科学
环境工程
催化作用
有机化学
工程类
生物化学
纯数学
数学
作者
Wei Li,Guocheng Liao,Wen Duan,Fanfan Gao,Yusen Wang,Rongxia Cui,Xuechuan Wang,Chuanyi Wang
标识
DOI:10.1016/j.apcatb.2024.124108
摘要
Solar-driven wastewater purification technology is a promising candidate to solve the hazards of water contaminants. However, it is difficult for most of particulate photocatalysts to maintain durable photoactivity due to its micro/nano size. Herein, a synergistically electronic interacted membrane catalyst with large extending area and high pollutant capture capacity was processed based on a highly active CdS/TiO2 heterojunction and ferroelectric polyvinylidene fluoride for achieving highly efficient Cr6+-to-Cr3+ (CTC) reduction (1.6×10-2 min-1) and synchronous decomposition of organic matters (methylene blue (1.2×10-2 min-1) and bisphenol A (0.6×10-2 min-1)) under simulated sunlight (SSL, 74.1 mW·cm-2) irradiation following a durably steady photoactivity even being recycled for 20 times, which effectively avoided the hazards of secondary pollution. Subsequently, a tailor-made panel wastewater purification system was first built based on this membrane catalyst to drive CTC reduction and synchronous organic matter degradation, and high-efficiency purification performance was presented on this panel system under multi-field drive of light-activation and piezoelectric polarization. This work provides an insight for photocatalytic wastewater purification through membrane catalyst assisted panel technology.
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