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过碘酸盐通过冷冻激活以降解水中有机污染物。

Activation of Periodate by Freezing for the Degradation of Aqueous Organic Pollutants.

机构信息

Department of Environmental Sciences and Biotechnology , Hallym University , Chuncheon , Gangwon-do 24252 , Republic of Korea.

Korea Polar Research Institute (KOPRI) , Incheon 21990 , Republic of Korea.

出版信息

Environ Sci Technol. 2018 May 1;52(9):5378-5385. doi: 10.1021/acs.est.8b00281. Epub 2018 Apr 19.

DOI:10.1021/acs.est.8b00281
PMID:29648451
Abstract

A new strategy (i.e., freezing) for the activation of IO for the degradation of aqueous organic pollutants was developed and investigated. Although the degradation of furfuryl alcohol (FFA) by IO was negligible in water at 25 °C, it proceeded rapidly during freezing at -20 °C. The rapid degradation of FFA during freezing should be ascribed to the freeze concentration effect that provides a favorable site (i.e., liquid brine) for the proton-coupled degradation process by concentrating IO, FFA, and protons. The maximum absorption wavelength of cresol red (CR) was changed from 434 nm (monoprotonated CR) to 518 nm (diprotonated CR) after freezing, which confirms that the pH of the aqueous IO solution decreases by freezing. The degradation experiments with varying experimental parameters demonstrate that the degradation rate increases with increasing IO concentration and decreasing pH and freezing temperature. The application of the IO/freezing system is not restricted to FFA. The degradation of four other organic pollutants (i.e., tryptophan, phenol, 4-chlorophenol, and bisphenol A) by IO, which was negligible in water, proceeded during freezing. In addition, freezing significantly enhanced the IO-mediated degradation of cimetidine. The outdoor experiments performed on a cold winter night show that the IO/freezing system for water treatment can be operated without external electrical energy.

摘要

开发并研究了一种新的策略(即冷冻)来激活 IO 以降解水相有机污染物。尽管在 25°C 的水中 IO 对糠醇(FFA)的降解可忽略不计,但在-20°C 冷冻时却迅速进行。FFA 在冷冻过程中的快速降解应归因于冷冻浓缩效应,该效应通过浓缩 IO、FFA 和质子为质子偶联降解过程提供了有利的场所(即液体盐水)。甲酚红(CR)的最大吸收波长从 434nm(单质子化 CR)变为 518nm(双质子化 CR),这证实了冷冻会降低水相 IO 溶液的 pH 值。通过改变实验参数进行的降解实验表明,降解速率随 IO 浓度的增加、pH 值的降低和冷冻温度的降低而增加。IO/冷冻系统的应用不仅限于 FFA。在水中可忽略的四种其他有机污染物(即色氨酸、苯酚、4-氯苯酚和双酚 A)的 IO 降解在冷冻过程中进行。此外,冷冻显著增强了 IO 介导的西咪替丁降解。在一个寒冷的冬夜进行的户外实验表明,无需外部电能即可运行水处理的 IO/冷冻系统。

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