E-Mn2+-PMS体系非自由基路径去除水中双氯芬酸
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作者:
作者单位:

1.重庆大学 环境与生态学院,重庆 400045;2.重庆大学附属肿瘤医院 消化内科,重庆 400030

作者简介:

斯婷(1999- ),女,主要从事基于过硫酸盐的高级氧化研究,E-mail:13032868189@163.com。
SI Ting (1999- ), main research interest: AOPs based on persulfate, E-mail: 13032868189@163.com.

通讯作者:

赵纯(通信作者),男,教授,博士生导师,E-mail:pureson@163.com。

中图分类号:

X703.1

基金项目:

国家自然科学基金(22076015、52370126)


Removal of diclofenac in solution by the E-Mn2+-PMS process via non-radical pathways
Author:
Affiliation:

1.College of Environment and Ecology, Chongqing University, Chongqing 400045, P. R. China;2.Department of Gastroenterology, Chongqing University Cancer Hospital, Chongqing 400030, P. R. China

Fund Project:

National Natural Science Foundation of China (Nos. 22076015, 52370126)

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    摘要:

    随着水质标准和检测技术的提高,新污染物的控制逐渐成为研究热点。通过引入电场提高Mn2+对过一硫酸盐(PMS)的活化能力,构建E-Mn2+-PMS协同体系去除水中难降解有机污染物双氯芬酸(DCF)。探究电流密度、PMS浓度、Mn2+浓度、溶液pH值以及水体背景物质(NO3-、Cl-、HA)等对水中DCF去除的影响。结果表明,当电流密度为11.42 mA/cm2、PMS浓度为1 mmol/L、Mn2+浓度为150 μmol/L时,反应20 min内E-Mn2+-PMS体系协同系数为10.88,反应速率常数为19.250×10-2 min-1,反应180 min对DCF的矿化率为67.4%,酸性条件比碱性条件更有利于DCF去除,最佳pH值为3。NO3-对DCF的去除几乎没有影响,Cl-、HA对DCF的去除有明显促进作用。通过自由基捕获实验、电子顺磁共振(EPR)测试以及锰中间价态物质分析证明,E-Mn2+-PMS体系中非自由基路径(Mn(Ⅲ)氧化和1O2氧化)占据主导地位。与Mn2+-PMS体系相比,电场条件下原位生成的无定形MnO2可快速活化PMS,产生1O2,实现对污染物的高效去除。

    Abstract:

    As water quality standards have improved and detection technology has advanced, the control of new pollutants has gradually become a research focus. The activation ability of divalent manganese toward peroxymonosulfate (PMS) was enhanced by the introduction of an electric field. The E-Mn2+-PMS synergistic process was developed for the removal of the refractory organic pollutant diclofenac (DCF) from water. Firstly, the effects of current density, PMS concentration, Mn2+ concentration, solution pH value and water matrix (NO3-、Cl-、HA) on the removal of DCF in water were discussed, respectively. The results indicated that the synergy index of the E-Mn2+-PMS process was 10.88 within 20 min of reaction, and its reaction rate constant was 19.250×10-2 min-1. The mineralization rate of DCF was 67.4% within 180 min under the experimental conditions: current density was 11.42 mA/cm2, PMS concentration was 1 mmol/L and Mn2+ concentration was 150 μmol/L. Acidic conditions facilitated the removal of DCF, and the optimal pH value was 3. NO3- had almost no effect on the removal of DCF, while Cl- and HA promoted the removal of DCF significantly. Subsequently, it was demonstrated by radical scavenger experiments, electron paramagnetic resonance (EPR) tests, and analysis of manganese intermediate valence substances. The non-radical pathways (Mn(Ⅲ) oxidation and 1O2 oxidation) dominated in the E-Mn2+-PMS process. In comparison with the Mn2+-PMS process, the amorphous MnO2 generated in situ under electric field conditions could quickly activate PMS to produce 1O2, achieving efficient removal of pollutants.

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斯婷,盘其鑫,杨帅帅,张健,樊佳慧,钟艺华,赵纯.E-Mn2+-PMS体系非自由基路径去除水中双氯芬酸[J].土木与环境工程学报(中英文),2026,48(3):228-237. SI Ting, PAN Qixin, YANG Shuaishuai, ZHANG Jian, FAN Jiahui, ZHONG Yihua, ZHAO Chun. Removal of diclofenac in solution by the E-Mn2+-PMS process via non-radical pathways[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(3):228-237.10.11835/j. issn.2096-6717.2024.038

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  • 收稿日期:2024-03-31
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  • 在线发布日期: 2026-06-10
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