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Heterogeneous activation of persulfate by ZnCoxFe2−xO4 loaded on rice hull carbon for degrading bisphenol A
Authors:Yirui Shu  Pan Zhang  Yanjun Zhong  Xiangyang Xu  Genkuan Ren  Wei Wang  Hengli Xiang  Zhiye Zhang  Xiushan Yang  Xinlong Wang
Affiliation:School of Chemical Engineering, Sichuan University, Chengdu 610065 P R China ; Engineering Research Center of Comprehensive Utilization and Clean Processing of Phosphorus Resources, Ministry of Education, School of Chemical Engineering, Sichuan University, Chengdu 610065 PR China.; Suntime Environmental Remediation Co., Ltd, Changzhou 213000 P R China ; College of Chemistry and Chemical Engineering, Yibin University, Yibin 64000 P R China
Abstract:A new low-cost composite of ZnCoxFe2−xO4 loaded on rice hull carbon (ZnCoxFe2−xO4-RHC) was synthesized via waste ferrous sulfate (the industrial waste produced in the process of producing titanium dioxide) and rice hull as raw materials, which was applied for the degradation of bisphenol A (BPA) by heterogeneous activated peroxodisulfate (PS). A series of characterizations including XRD, SEM, FTIR, and BET analysis were carried out to analyze the structure and morphology of the materials. It is confirmed that the ZnCoxFe2−xO4-RHC composites show better catalytic activity and performance than other control samples, which can be attributed to the synergistic effect of Fe and Co, ZnCoxFe2−xO4 and RHC based on these analyses. The degradation rate of BPA by ZnCo1.3Fe0.7O4-50%RHC reached 100% within 15 min, and it can still maintain good catalytic efficiency after 5 cycles. ESR test and XPS results showed that free radical and non-free radical processes were involved in BPA degradation. These findings offer a novel, low cost and simple strategy for rational design and modulation of catalysts for the industrial degradation of organic pollutants, and provide a new idea for the utilization of waste ferrous sulphate in titanium dioxide industry.

Mechanism of the activation on PS by ZnCo1.3Fe0.7O4-RHC for the degradation of BPA.
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