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废水在冷等静压等离子体处理过程中双酚 A 和 S 的降解。

Degradation of bisphenol A and S in wastewater during cold atmospheric pressure plasma treatment.

机构信息

Department of Environmental Sciences O2, Jožef Stefan Institute, Jamova 39, 1000 Ljubljana, Slovenia.

Laboratory for Gaseous Electronics F6, Jožef Stefan Institute, Jamova 39, 1000 Ljubljana, Slovenia.

出版信息

Sci Total Environ. 2022 Sep 1;837:155707. doi: 10.1016/j.scitotenv.2022.155707. Epub 2022 May 9.

Abstract

Developing novel, fast and efficient ecologically benign processes for removing organic contaminants is important for the continued development of water treatment. For this reason, this study investigates the implementation of Cold Atmospheric pressure Plasma (CAP) generated in ambient air as an efficient tool for the removal of Bisphenol A (BPA) and Bisphenol S (BPS)-known endocrine disrupting compounds in water and wastewater, by monitoring degradation kinetics and its transformation products. The highest removal efficiencies of BPA (>98%) and BPS (>70%) were obtained after 480 s of CAP exposure. A pseudo-first-order kinetic revealed that BPA (-k = 4.4 ̶ 9.0 ms) degrades faster than BPS (-k = 0.4 ̶ 2.4 ms) and that the degradation is also time- and CAP power-dependent, while the initial concentration or matrix type had a negligible effect. This study also tentatively identified three previously reported and one novel transformation product of BPA and four novel transformation products of BPS. Their postulated structures suggested similar breakdown mechanisms, i.e., hydroxylation followed by ring cleavage. The results demonstrate that CAP technology is an effective process for the degradation of both BPA and BPS without the need for additional chemicals, indicating that CAP is a promising technology for water and wastewater remediation worthy of further investigation and optimization.

摘要

开发新颖、快速、高效且生态友好的去除有机污染物的方法对于水处理的持续发展非常重要。出于这个原因,本研究调查了在环境空气中产生的冷大气压等离子体(CAP)作为去除水中和废水中双酚 A(BPA)和双酚 S(BPS)(已知的内分泌干扰物)的有效工具的应用,通过监测降解动力学及其转化产物。在 CAP 暴露 480 秒后,获得了 BPA(>98%)和 BPS(>70%)的最高去除效率。准一级动力学表明,BPA(-k = 4.4 ̶ 9.0 ms)的降解速度快于 BPS(-k = 0.4 ̶ 2.4 ms),并且降解也与 CAP 功率和时间有关,而初始浓度或基质类型的影响可以忽略不计。本研究还初步鉴定了 BPA 的三种先前报道的和一种新的转化产物以及 BPS 的四种新的转化产物。它们的假定结构表明了相似的分解机制,即羟基化后环断裂。结果表明,CAP 技术是一种有效去除 BPA 和 BPS 的方法,无需额外的化学物质,这表明 CAP 是一种有前途的水和废水修复技术,值得进一步研究和优化。

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