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TEMPO 在增强高锰酸盐氧化有机物中的作用。

Role of TEMPO in Enhancing Permanganate Oxidation toward Organic Contaminants.

机构信息

College of Environment and Ecology, Chongqing University, Chongqing 400045, P. R. China.

Environment Monitoring Center of Jiangsu Province, Nanjing 210036, P. R. China.

出版信息

Environ Sci Technol. 2021 Jun 1;55(11):7681-7689. doi: 10.1021/acs.est.1c01824. Epub 2021 May 19.

Abstract

Permanganate (Mn(VII)) has been widely applied as an oxidant in water treatment plants. However, compared with ozone, Fenton, and other advanced oxidation processes, the reaction rates of some trace organic contaminants (TrOCs) with Mn(VII) are relatively low. Therefore, further studies on the strategies for enhancing the oxidation of organic contaminants by Mn(VII) are valuable. In this work, 2,2,6,6-tetramethylpiperidine--oxyl (TEMPO), as an electron shuttle, enhanced Mn(VII) oxidation toward various TrOCs (i.e., bisphenol A (BPA), phenol, estrone, sulfisoxazole, etc.). TEMPO sped up the oxidative kinetics of BPA by Mn(VII) greatly, and this enhancement was observed at a wide pH range of 4.0-11.0. The exact mechanism of TEMPO in Mn(VII) oxidation was described briefly as follows: (i) TEMPO was oxidized by Mn(VII) to its oxoammonium cation (TEMPO) by electron transfer, which was the reactive species responsible for the accelerated degradation of TrOCs and (ii) TEMPO could decompose TrOCs rapidly with itself back to TEMPO or TEMPOH (TEMPO hydroxylamine). To further illustrate the interaction between TEMPO and target TrOCs, we explored the transformation pathways of BPA in Mn(VII)/TEMPO oxidation. Compared to Mn(VII) alone, adding TEMPO into the Mn(VII) solution significantly suppressed BPA's self-coupling and promoted hydroxylation, ring-opening, and decarboxylation. Moreover, the Mn(VII)/TEMPO system was promising for the abatement of TrOCs in real waters for humic acid, and ubiquitous cations/anions had no adverse or even beneficial impact on the Mn(VII)/TEMPO system.

摘要

过锰酸盐(Mn(VII))已广泛应用于水处理厂的氧化剂。然而,与臭氧、芬顿等高级氧化工艺相比,一些痕量有机污染物(TrOCs)与 Mn(VII)的反应速率相对较低。因此,进一步研究增强 Mn(VII)氧化有机污染物的策略是有价值的。在这项工作中,2,2,6,6-四甲基哌啶-1-氧基(TEMPO)作为电子穿梭体,增强了 Mn(VII)对各种 TrOCs(如双酚 A(BPA)、苯酚、雌酮、磺胺甲噁唑等)的氧化作用。TEMPO 大大加快了 Mn(VII)氧化 BPA 的氧化动力学,这种增强作用在 pH 值为 4.0-11.0 的较宽范围内都能观察到。TEMPO 在 Mn(VII)氧化中的确切机制简要描述如下:(i) TEMPO 通过电子转移被 Mn(VII)氧化为其氧铵阳离子(TEMPO),这是负责加速 TrOCs 降解的反应性物质,(ii) TEMPO 可以与自身快速分解 TrOCs,然后回到 TEMPO 或 TEMPOH(TEMPO 羟胺)。为了进一步说明 TEMPO 与目标 TrOCs 之间的相互作用,我们探讨了 BPA 在 Mn(VII)/TEMPO 氧化中的转化途径。与单独的 Mn(VII)相比,在 Mn(VII)溶液中加入 TEMPO 会显著抑制 BPA 的自偶联,促进羟化、开环和脱羧。此外,Mn(VII)/TEMPO 体系有望用于去除实际水样中的 TrOCs,腐殖酸和普遍存在的阳离子/阴离子对 Mn(VII)/TEMPO 体系没有不利影响,甚至有益。

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