The electrocatalytic degradation of 1,4-dioxane by Co–Bi/GAC particle electrode

Author:

Wang Rui1ORCID,Dai Zhineng12ORCID,Zhang Wenqi1,Ma Chao1

Affiliation:

1. a School of Environmental Science and Technology, Xiamen University of Technology, Xiamen, 361024, China

2. b Key Laboratory of Environmental Biotechnology (XMUT), Fujian Province University, Xiamen, China

Abstract

ABSTRACT Efficient degradation of industrial organic wastewater has become a significant environmental concern. Electrochemical oxidation technology is promising due to its high catalytic degradation ability. In this study, Co–Bi/GAC particle electrodes were prepared and characterized for degradation of 1,4-dioxane. The electrochemical process parameters were optimized by response surface methodology (RSM), and the influence of water quality factors on the removal rate of 1,4-dioxane was investigated. The results showed that the main influencing factors were the Co/Bi mass ratio and calcination temperature. The carrier metals, Co and Bi, existed mainly on the GAC surface as Co3O4 and Bi2O3. The removal of 1,4-dioxane was predominantly achieved through the synergistic reaction of electrode adsorption, anodic oxidation, and particle electrode oxidation, with ·OH playing a significant role as the main active free radical. Furthermore, the particle electrode was demonstrated in different acid–base conditions (pH = 3, 5, 7, 9, and 11). However, high concentrations of Cl− and NO3- hindered the degradation process, potentially participating in competitive reactions. Despite this, the particle electrode exhibited good stability after five cycles. The results provide a new perspective for constructing efficient and stable three-dimensional (3D) electrocatalytic particle electrodes to remove complex industrial wastewater.

Funder

Fujian provincial industry-university-research collaborative innovation

Fujian Educational and Scientific Research Project for Young and Middle-aged Teachers

Publisher

IWA Publishing

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