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天然多酚增强了 Cu(II)/过一硫酸盐(PMS)氧化:Cu(III)和 HO 的贡献

Natural polyphenols enhanced the Cu(II)/peroxymonosulfate (PMS) oxidation: The contribution of Cu(III) and HO

机构信息

School of Environmental Science and Engineering, Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology, Sun Yat-sen University, Guangzhou, 510275, China.

Department of Chemistry, Aristotle University of Thessaloniki, Thessaloniki, 54124, Greece.

出版信息

Water Res. 2020 Nov 1;186:116326. doi: 10.1016/j.watres.2020.116326. Epub 2020 Aug 20.

Abstract

Copper ion (Cu(II)) in water or wastewater has been reported to trigger peroxymonosulfate (PMS) oxidation of organic contaminants (OCs). However, this process can only work in alkaline condition, which limits its potential application. In this study, we found that the introduction of natural polyphenols in the Cu(II)/PMS process can significantly promote the degradation of tetrabromobisphenol A (TBBPA), one of the most widely used brominated flame retardants, in the pH range of 4.3-9.0. With gallic acid (GA) as a representative natural polyphenol, the degradation of TBBPA by GA/Cu(II)/PMS process reached 84.6% in 10 min at initial pH of 4.3 (without pH adjustment), which was 2.2 times higher than that by Cu(II)/PMS process. Multiple reactive oxidants, including Cu(III), hydroxyl radical (HO) and singlet oxygen, were generated in this process among which Cu(III) and HO contributed to TBBPA degradation with Cu(III) playing the dominant role. GA accelerated the reduction of Cu(II) to Cu(I) due to the strong chelation and electron-donating capacity of ortho-hydroxyl groups in GA, and then Cu(I) was quickly oxidized by PMS to Cu(III) which can be further acid-catalyzed to produce HO. TBBPA transformation mainly proceeded through electron abstraction, oxidative debromination and ring-opening reaction pathways. The feasibility of in-situ utilizing natural organic matter (NOM, enriched with polyphenol moieties) to accelerate the degradation of TBBPA by Cu(II)/PMS process in surface water and wastewater was confirmed. The findings of this study indicate that the coupling of NOM and Cu(II), which are present in contaminated water or wastewater, can potentially improve PMS oxidation of OCs in a wide range of pH.

摘要

水中或废水中的铜离子 (Cu(II)) 已被报道能引发过一硫酸盐 (PMS) 氧化有机污染物 (OCs)。然而,这个过程只能在碱性条件下进行,这限制了其潜在的应用。在本研究中,我们发现,在 Cu(II)/PMS 过程中引入天然多酚可以显著促进最广泛使用的溴系阻燃剂之一四溴双酚 A (TBBPA) 在 pH 值为 4.3-9.0 的范围内的降解。以没食子酸 (GA) 作为代表性的天然多酚,在初始 pH 值为 4.3(无需 pH 调节)时,GA/Cu(II)/PMS 过程在 10 分钟内可使 TBBPA 的降解率达到 84.6%,比 Cu(II)/PMS 过程高 2.2 倍。在此过程中生成了多种活性氧化剂,包括 Cu(III)、羟基自由基 (HO) 和单线态氧,其中 Cu(III)和 HO 对 TBBPA 的降解有贡献,Cu(III)起主要作用。GA 由于其邻位羟基的强螯合和供电子能力,加速了 Cu(II)向 Cu(I)的还原,然后 Cu(I)被 PMS 迅速氧化为 Cu(III),Cu(III)可进一步被酸催化生成 HO。TBBPA 的转化主要通过电子攫取、氧化脱溴和开环反应途径进行。本研究证实了在地表水中和废水中,利用天然有机物 (NOM,富含多酚基团) 原位加速 Cu(II)/PMS 过程中 TBBPA 降解的可行性。本研究的结果表明,在受污染的水或废水中存在的 NOM 和 Cu(II)的耦合,可能会在广泛的 pH 值范围内提高 PMS 对 OCs 的氧化。

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