废水
苯酚
化学
对苯二酚
苯醌
酚类
阳极
纳滤
有机化学
膜
环境工程
环境科学
电极
生物化学
物理化学
作者
Fuqiang Liu,Hongyu Dong,Shifa Zhong,Xuechen Wu,Tong Wang,Xuelu Wang,Yanbiao Liu,Mingshan Zhu,Irene M.C. Lo,Sihui Zhan,Xiaohong Guan
出处
期刊:Water Research
[Elsevier BV]
日期:2024-01-03
卷期号:251: 121106-121106
被引量:14
标识
DOI:10.1016/j.watres.2024.121106
摘要
The selective transformation of organics from wastewater to value-added chemicals is considered an upcycling process beneficial for carbon neutrality. Herein, we present an innovative electrocatalytic oxidation (ECO) system aimed at achieving the selective conversion of phenols in wastewater to para-benzoquinone (p-BQ), a valuable chemical widely utilized in the manufacturing and chemical industries. Notably, 96.4% of phenol abatement and 78.9% of p-BQ yield are synchronously obtained over a preferred carbon cloth-supported ruthenium nanoparticles (Ru/C) anode. Such unprecedented results stem from the weak Ru–O bond between the Ru active sites and generated p-BQ, which facilitates the desorption of p-BQ from the anode surface. This property not only prevents the excessive oxidation of the generated p-BQ but also reinstates the Ru active sites essential for the rapid ECO of phenol. Furthermore, this ECO system operates at ambient conditions and obviates the need for potent chemical oxidants, establishing a sustainable avenue for p-BQ production. Importantly, the system efficacy can be adaptable in actual phenol-containing coking wastewater, highlighting its potential practical application prospect. As a proof of concept, we construct an electrified Ru/C membrane for ECO of phenol, attaining phenol removal of 95.8% coupled with p-BQ selectivity of 73.1%, which demonstrates the feasibility of the ECO system in a scalable flow-through operation mode. This work provides a promising ECO strategy for realizing both phenols removal and valuable organics recovery from phenolic wastewater.
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