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通过 EO-PS-EF 三偶联系统的均相和非均相双催化共产生羟基和硫酸根自由基,用于有效去除难处理的有机污染物。

Co-generation of hydroxyl and sulfate radicals via homogeneous and heterogeneous bi-catalysis with the EO-PS-EF tri-coupling system for efficient removal of refractory organic pollutants.

机构信息

School of Materials Science and Engineering, State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, PR China.

School of Materials Science and Engineering, State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, PR China.

出版信息

Water Res. 2023 Sep 1;243:120312. doi: 10.1016/j.watres.2023.120312. Epub 2023 Jul 5.

DOI:10.1016/j.watres.2023.120312
PMID:37453402
Abstract

Advanced oxidation processes are commonly considered one of the most effective techniques to degrade refractory organic pollutants, but the limitation of a single process usually makes it insufficient to achieve the desired treatment. This work introduces, for the first time, a highly-efficient coupled advanced oxidation process, namely Electro-Oxidation-Persulfate-Electro-Fenton (EO-PS-EF). Leveraging the EO-PS-EF tri-coupling system, diverse contaminants can be highly efficiently removed with the help of reactive hydroxyl and sulfate radicals generated via homogeneous and heterogeneous bi-catalysis, as certified by radical quenching and electron spin resonance. Concerning degradation of tetracycline (TC), the EO-PS-EF system witnessed a fast pseudo-first-order reaction kinetic constant of 2.54 × 10 s, ten times that of a single EO system and three-to-four times that of a binary system (EO-PS or EO-EF). In addition, critical parameters (e.g., electrolyte, pH and temperature) are systematically investigated. Surprisingly, after 100 repetitive trials TC removal can still reach 100% within 30 min and no apparent morphological changes to electrode materials were observed, demonstrating its long-term stability. Finally, its universality was demonstrated with effective degradation of diverse refractory contaminants (i.e., antibiotics, dyes and pesticides).

摘要

高级氧化工艺通常被认为是降解难处理有机污染物最有效的技术之一,但单一工艺的局限性通常使其不足以达到预期的处理效果。本工作首次引入了一种高效的耦合高级氧化工艺,即电氧化-过硫酸盐-电芬顿(EO-PS-EF)。借助 EO-PS-EF 三耦合系统,通过均相和非均相双催化产生的反应性羟基和硫酸根自由基,可高效去除多种污染物,自由基猝灭和电子自旋共振对此进行了验证。就四环素(TC)的降解而言,EO-PS-EF 体系表现出快速的准一级反应动力学常数 2.54×10 s,是单一 EO 体系的 10 倍,是二元体系(EO-PS 或 EO-EF)的 3 至 4 倍。此外,还系统研究了关键参数(例如电解质、pH 和温度)。令人惊讶的是,经过 100 次重复试验,在 30 分钟内 TC 的去除率仍可达到 100%,且电极材料没有明显的形态变化,证明其具有长期稳定性。最后,其通用性通过有效降解多种难处理污染物(即抗生素、染料和农药)得到了证明。

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