光催化
卟啉
可见光谱
双酚A
化学
化学工程
盐(化学)
金属有机骨架
离子键合
降级(电信)
催化作用
材料科学
光化学
吸附
有机化学
离子
光电子学
环氧树脂
工程类
电信
计算机科学
作者
Zhiwei Wang,Qian Li,Ruidian Su,Guochun Lv,Zhining Wang,Baoyu Gao,Weizhi Zhou
标识
DOI:10.1016/j.cej.2021.132106
摘要
The efficient degradation of organic contaminants in practical water treatment is a challenge for advanced oxidation processes via such as semiconductor photocatalysis due to interference from the inhibiting influence due to the reactions between radicals and coexisting anions in the actual water column. Herein, a porphyrinic zirconium metal–organic framework (PCN-223) is used in a visible light system to effectively decompose bisphenol F (BPF) in saline water. The PCN-223/visible-light system can effectively resist the influence of environmental coexisting anions and natural organic matter (NOM), thus demonstrating excellent performance in decomposing pollutants. Furthermore, the catalytic system is able to maintain stable contaminant degradation over a wide pH range and in five water matrices. Coexisting anions promote the conductivity of electrons by forming ionic bonds with Zr, which enhances light-induced electron transfer under visible light. This work illustrates the mechanism and conditions under which porphyrin-MOF can resist high salt environments in photocatalysis, and provides a new perspective on the practical application of photocatalysis to overcome complex environmental disturbances.
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