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螯合态二价铁激活过硫酸钠降解水溶液中三氯乙烯的表面活性剂作用机制。

Mechanism of surfactant in trichloroethene degradation in aqueous solution by sodium persulfate activated with chelated-Fe(II).

机构信息

State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, East China University of Science and Technology, Shanghai 200237, China.

Shanghai Environment Green Ecological Restoration Technology Co. Ltd., Shanghai 200232, China.

出版信息

J Hazard Mater. 2021 Apr 5;407:124814. doi: 10.1016/j.jhazmat.2020.124814. Epub 2020 Dec 10.

DOI:10.1016/j.jhazmat.2020.124814
PMID:33338809
Abstract

The mechanism of surfactants in surfactant-in situ chemical oxidation (S-ISCO) coupled process for trichloroethene (TCE) degradation was firstly reported. The performance of TCE solubilization and inhibition of TCE degradation in three nonionic surfactants (TW-80, Brij-35, TX-100) in PS/Fe(II)/citric acid (CA) system was compared and TW-80 was evaluated to be the optimal surfactant in S-ISCO coupled process due to the best TCE solubilizing ability and minimal inhibition for TCE degradation (only 31.8% TCE inhibition in the presence of 1 g L TW-80 surfactant). The inhibition mechanism in TCE degradation was also demonstrated by comparing the strength of ROSs and PS utilization. In the presence of TW-80 (1 g L), over 97.5% TCE was removed at the PS/Fe(II)/CA/TCE molar ratio of 30/4/4/1, in which more than 86.7% TCE was dechlorinated. The result of scavenger experiments revealed that the dominant radicals were HO• and SO• in PS/Fe(II)/CA system in TW-80 containing aqueous solution, among which SO• performed a greater role in TCE removal. Moreover, over 85.3% TCE degradation in actual groundwater revealed the potential of PS/Fe(II)/CA process for actual groundwater remediation in containing TW-80 of TCE contaminant. This research provided a novel alternative technology for groundwater remediation with TCE contaminant when containing surfactants.

摘要

首次报道了表面活性剂在表面活性剂原位化学氧化(S-ISCO)耦合工艺中降解三氯乙烯(TCE)的作用机制。比较了三种非离子表面活性剂(TW-80、Brij-35、TX-100)在 PS/Fe(II)/柠檬酸(CA)体系中对 TCE 增溶和抑制 TCE 降解的性能,由于 TW-80 具有最佳的 TCE 增溶能力和最小的 TCE 降解抑制作用(在 1 g/L TW-80 表面活性剂存在下,仅抑制 31.8%的 TCE 降解),因此被评估为 S-ISCO 耦合工艺中的最佳表面活性剂。通过比较 ROSs 和 PS 利用率的强度,也证明了 TCE 降解中的抑制机制。在 TW-80(1 g/L)存在下,当 PS/Fe(II)/CA/TCE 的摩尔比为 30/4/4/1 时,超过 97.5%的 TCE 被去除,其中超过 86.7%的 TCE 被脱氯。清除剂实验的结果表明,在含有 TW-80 的水溶液中,PS/Fe(II)/CA 体系中的主导自由基是 HO•和 SO•,其中 SO•在 TCE 去除中起更大的作用。此外,实际地下水中超过 85.3%的 TCE 降解表明 PS/Fe(II)/CA 工艺在含有 TCE 污染物的 TW-80 时具有实际地下水修复的潜力。这项研究为含有 TCE 污染物的地下水修复提供了一种新型替代技术。

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