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零价铁活化过氧乙酸降解水中双酚A的效果与机制

李琢宇 金鹏 陈孝彦 赵泽玉 王庆宏 陈春茂 詹亚力

化工学报2024,Vol.75Issue(3):987-999,13.
化工学报2024,Vol.75Issue(3):987-999,13.DOI:10.11949/0438-1157.20231341

零价铁活化过氧乙酸降解水中双酚A的效果与机制

Effect and mechanism on the degradation of aqueous bisphenol A by zero valent iron activated peroxyacetic acid system

李琢宇 1金鹏 1陈孝彦 2赵泽玉 1王庆宏 1陈春茂 1詹亚力1

作者信息

  • 1. 中国石油大学(北京)化学工程与环境学院,重质油全国重点实验室,北京 102249
  • 2. 中国石油化工集团有限公司健康安全环保管理部,北京 100728
  • 折叠

摘要

Abstract

Bisphenol A(BPA)is a representative pollutant in phenolic industrial wastewater.Zero valent iron(ZVI)was used to activate peroxyacetic acid(PAA)to remove BPA from water.The effects of ZVI and PAA dosage,pH value,and typical coexisting anions in industrial wastewater on PAA activation and BPA degradation were investigated,and the reaction mechanism of ZVI activation of PAA was analyzed by exploring the reactive species and active sites.Under the optimal process conditions of adding 50 mg/L ZVI,1.00 mmol/L PAA and an initial pH of 3.4,the ZVI/PAA system can remove 99.24%of BPA in water for 30 minutes.HCO3-and SO42-showed inhibitory effects on BPA degradation,while Cl-(0-20.0 mmol/L)accelerated the degradation of BPA in ZVI/PAA system.Soluble Fe(Ⅱ)and Fe(Ⅲ)were released from ZVI and its surface oxide layer,respectively,during the reaction.The released Fe(Ⅱ)activation of PAA contributed 26.46%of BPA degradation,while heterogeneous ZVI activation of PAA played a major role in BPA degradation.Scavenging experiment showed that CH3 C(O)OO·,CH3 C(O)O·,·OH and FeⅣO2+ were produced in ZVI/PAA system,among which CH3 C(O)OO·and FeⅣO2+ were the major reactive species contributing to BPA degradation.This study provided data and theoretical support for the effective removal of bisphenol A in industrial wastewater.

关键词

含酚废水/双酚A/过氧乙酸/零价铁/高级氧化

Key words

phenolic wastewater/bisphenol A/peroxyacetic acid/zero valent iron/advanced oxidation processes

分类

能源科技

引用本文复制引用

李琢宇,金鹏,陈孝彦,赵泽玉,王庆宏,陈春茂,詹亚力..零价铁活化过氧乙酸降解水中双酚A的效果与机制[J].化工学报,2024,75(3):987-999,13.

基金项目

国家自然科学基金青年基金项目(22308382) (22308382)

国家自然科学基金面上项目(22278436,22278434) (22278436,22278434)

化工学报

OA北大核心CSTPCD

0438-1157

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