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紫外活化过硫酸盐氧化苯酚的可行性研究。

Feasibility study of ultraviolet activated persulfate oxidation of phenol.

机构信息

Department of Environmental Engineering, National Chung Hsing University 250 Kuo-kuang Road, Taichung 402, Taiwan.

出版信息

Chemosphere. 2011 Feb;82(8):1168-72. doi: 10.1016/j.chemosphere.2010.12.027. Epub 2011 Jan 8.

Abstract

Using ultraviolet photolytic persulfate activation to produce two sulfate radicals (SO(4)(-)) exhibits a potential for destroying organic contaminants in wastewater treatment applications. This study investigated both the feasibility of using a UV/SPS (sodium persulfate) process to treat phenol in aqueous phase and the effect of pH on degradation efficiency and TOC removal. The results revealed that a high initial persulfate concentration (i.e., 84 mM) and a lower initial phenol concentration (i.e., 0.5mM) resulted in rapid and complete phenol degradation within 20 min. For all three pHs evaluated (i.e., 3, 7 and 11), complete phenol degradation was also achieved after 30 min of treatment by UV/SPS oxidation processes (i.e., under an SPS/phenol molar ratio of 84/0.5) with pseudo-first-order rate constants (k(obs, phenol)) of 0.14-0.16 min(-1) (average half-life (t(1/2)) = 4.5 min). UV-Vis spectrum scanning of the aqueous solution during treatment identified the development of brown color in the wavelength range of 400-460 nm. The colored intermediate compounds that formed were suspiciously similar to those observed during Fenton treatment. However, a more aggressive oxidation at pH 11 showed a rapid and more complete removal of TOC in aqueous phase. Therefore, it is recommended that UV photolytic persulfate activation under basic pH be a preferred condition for treatment of phenol.

摘要

采用紫外光解过硫酸盐法产生的两个硫酸根自由基(SO4(-))在废水处理应用中具有破坏有机污染物的潜力。本研究考察了 UV/SPS(过硫酸钠)工艺处理水相中苯酚的可行性以及 pH 值对降解效率和TOC 去除的影响。结果表明,高初始过硫酸盐浓度(即 84mM)和低初始苯酚浓度(即 0.5mM)可在 20 分钟内实现快速且完全的苯酚降解。对于评价的三种 pH 值(即 3、7 和 11),在 30 分钟的 UV/SPS 氧化处理后(即 SPS/苯酚摩尔比为 84/0.5),也实现了完全的苯酚降解,准一级速率常数(k(obs, phenol))为 0.14-0.16 min(-1)(平均半衰期(t(1/2))= 4.5 分钟)。处理过程中对水溶液进行的紫外可见光谱扫描确定了在 400-460nm 波长范围内出现棕色。形成的有色中间化合物与芬顿处理中观察到的化合物非常相似。然而,在 pH 值为 11 时,更剧烈的氧化作用显示出在水相中迅速且更完全地去除 TOC。因此,建议在碱性 pH 值下采用紫外光解过硫酸盐法作为处理苯酚的首选条件。

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