铬催化均相 Fenton-Like 反应降解共存有机物的综合评估与机理比较

IF 13.3 1区 工程技术 Q1 ENGINEERING, CHEMICAL
Sijing Yao, Jianqing Ma, Di Ma, Mika Erik Tapio Sillanpää, Minghua Zhou, Qing Ye, Huixia Jin, Kefeng Zhang
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引用次数: 0

摘要

铬作为一种广泛使用的过渡金属,对废水的毒性高,处理难度大。迄今为止,有关铬在均相类芬顿反应中应用的探索还很有限。本研究旨在探索六价铬和三价铬激活过氧化氢(H2O2)和过硫酸盐(PMS)的潜力,以降解均相溶液中共存的污染物。研究发现,六价铬/PMS 系统最为有效,对偶氮染料酸性红 73 (AR73) 的去除率高达 95.58%。其次是 Cr(VI)/H2O2 系统,去除率为 72.35%,而 Cr(III)/H2O2 和 Cr(III)/PMS 系统的去除率较低,分别为 25.65% 和 16.95%。为了深入研究铬活化的机理,研究人员采用了多种技术。结果表明,六价铬和三价铬都能激活 H2O2 生成羟基自由基 (HO-)。此外,铬(VI)在 pH 值为 3 ∼ 11 的范围内可激活 PMS,产生 HO-、硫酸根(SO-- 4)和单线态氧(1O2),而铬(III)则与 PMS 发生螯合反应,导致反应停止。此外,本研究还揭示了螯合剂 EDTA 与 Cr(III) 复配后可有效激活 PMS 生成 1O2,并通过 DFT 计算阐明了 EDTA-Cr(III) 激活 PMS 的机制。通过对类似芬顿反应中铬的性能进行综合评估,为去除含铬废水中的污染物提供了新的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comprehensive evaluation and Mechanistic comparison of Cr-Catalyzed homogeneous Fenton-Like reactions for coexisting organics degradation

Comprehensive evaluation and Mechanistic comparison of Cr-Catalyzed homogeneous Fenton-Like reactions for coexisting organics degradation
Chromium, as a widely utilized transition metal, presents wastewater with high toxicity and challenging treatment. To date, there has been limited exploration regarding the application of chromium in homogeneous Fenton-like reactions. This study aims to explore the potential of Cr(VI) and Cr(III) to activate hydrogen peroxide (H2O2) and permonosulfate (PMS) for degrading coexisting pollutants in homogeneous solutions. The Cr(VI)/PMS system was found to be the most effective, with a 95.58 % removal efficiency for the azo dye Acid Red 73 (AR73). The Cr(VI)/H2O2 system followed with 72.35 %, while the Cr(III)/H2O2 and Cr(III)/PMS systems showed lower efficiencies at 25.65 % and 16.95 %, respectively. Various techniques were employed to delve into the mechanisms underlying chromium activation. The results indicate that both Cr(VI) and Cr(III) can activate H2O2 to generate hydroxyl radical (HO). Moreover, Cr(VI) can activate PMS in the pH range of 3 ∼ 11, producing HO, sulfate radical (SO•- 4), and singlet oxygen (1O2), while Cr(III) engages in chelation with PMS, causing the reaction to cease. Additionally, this study reveals that the chelating agent EDTA, upon complexing with Cr(III), efficiently activates PMS to generate 1O2, and the mechanism behind EDTA-Cr(III) activation of PMS was elucidated through DFT calculations. An integrated evaluation of Cr performance in the Fenton-like reaction provides new research directions for the removal of pollutants from chromium-containing wastewater.
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来源期刊
Chemical Engineering Journal
Chemical Engineering Journal 工程技术-工程:化工
CiteScore
21.70
自引率
9.30%
发文量
6781
审稿时长
2.4 months
期刊介绍: The Chemical Engineering Journal is an international research journal that invites contributions of original and novel fundamental research. It aims to provide an international platform for presenting original fundamental research, interpretative reviews, and discussions on new developments in chemical engineering. The journal welcomes papers that describe novel theory and its practical application, as well as those that demonstrate the transfer of techniques from other disciplines. It also welcomes reports on carefully conducted experimental work that is soundly interpreted. The main focus of the journal is on original and rigorous research results that have broad significance. The Catalysis section within the Chemical Engineering Journal focuses specifically on Experimental and Theoretical studies in the fields of heterogeneous catalysis, molecular catalysis, and biocatalysis. These studies have industrial impact on various sectors such as chemicals, energy, materials, foods, healthcare, and environmental protection.
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