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研究 E/Ce(IV)/PMS 体系对 RB19 增强去除的性能效率、机制、能耗和生化特性。

Study on the performance efficiency, mechanism, power consumption and biochemical properties of E/Ce(IV)/PMS on the enhanced removal of RB19.

机构信息

School of Civil and Transportation Engineering, Guangdong University of Technology, Higher Education Mega Center, Panyu District, No100, Waihuan Xi Road, Guangzhou, Guangzhou, 510006, Guangdong, PR China.

School of Civil and Transportation Engineering, Guangdong University of Technology, Higher Education Mega Center, Panyu District, No100, Waihuan Xi Road, Guangzhou, Guangzhou, 510006, Guangdong, PR China.

出版信息

Environ Res. 2023 Sep 1;232:116271. doi: 10.1016/j.envres.2023.116271. Epub 2023 Jun 5.

Abstract

In this study, an advanced oxidation process with E/Ce(IV) synergistic PMS (E/Ce(IV)/PMS) was established for the efficient removal of Reactive Blue 19 (RB19). The catalytic oxidation performance of different coupling systems was examined and the synergistic effect of E/Ce(IV) with PMS in the system was substantiated. The oxidative removal of RB19 in E/Ce(IV)/PMS was excellent, achieving a removal efficiency of 94.47% and a reasonable power consumption (EE/O value was 3.27 kWh·m). The effect of pH, current density, Ce(IV) concentration, PMS concentration, initial RB19 concentration and water matrix on the removal efficiency of RB19 were explored. Additionally, quenching and EPR experiments showed that the solution contains different radicals such as SO, HO∙ and O, where O and SO played key roles, but HO∙ just acted a weaker role. Ce ion trapping experiment confirmed that Ce(IV) was involved in the reaction process and played a major role (29.91%). RB19 was subject to three possible degradation pathways, and the intermediate products displayed well biochemical properties. To conclude, the degradation mechanism of RB19 was explored and discussed. In the presence of current, E/Ce(IV)/PMS performed a rapid Ce(IV)/Ce(III) cycle, continuously generating strong catalytic oxidation Ce(IV), The reactive radicals derived from the decomposition of PMS, in conjunction with Ce(IV) and direct electro-oxidation, efficiently destroyed the molecular structure of RB19 and showed an efficient removal rate.

摘要

在本研究中,建立了一种基于 E/Ce(IV)协同过一硫酸盐(E/Ce(IV)/PMS)的高级氧化工艺,用于高效去除活性蓝 19(RB19)。考察了不同耦合体系的催化氧化性能,并证实了 E/Ce(IV)与 PMS 在体系中的协同作用。E/Ce(IV)/PMS 体系对 RB19 的氧化去除效果极佳,去除效率达到 94.47%,且能耗合理(EE/O 值为 3.27 kWh·m)。考察了 pH、电流密度、Ce(IV)浓度、PMS 浓度、初始 RB19 浓度和水基质对 RB19 去除效率的影响。此外,猝灭和 EPR 实验表明,溶液中含有不同的自由基,如 SO、HO∙和 O,其中 O 和 SO 起关键作用,但 HO∙仅起较弱的作用。Ce 离子捕获实验证实 Ce(IV)参与了反应过程并起主要作用(29.91%)。RB19 经历了三种可能的降解途径,中间产物表现出良好的生化特性。总之,探讨并讨论了 RB19 的降解机制。在电流存在的情况下,E/Ce(IV)/PMS 快速进行 Ce(IV)/Ce(III)循环,持续生成强催化氧化 Ce(IV),由 PMS 分解产生的活性自由基,与 Ce(IV)和直接电氧化协同作用,有效地破坏 RB19 的分子结构,表现出高效的去除率。

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