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臭氧、过氧化氢和 UV 基高级氧化工艺去除水中邻苯二甲酸二乙酯的比较研究。

A comparative study on ozone, hydrogen peroxide and UV based advanced oxidation processes for efficient removal of diethyl phthalate in water.

机构信息

Laboratoire de Traitement des Eaux Usées, Centre de Recherches et Technologies des Eaux, CERTE Technopole Borj Cédria, BP 273, Soliman, 8020, Tunisia.

Systems and Process Engineering Research Centre, College of Engineering, Bay Campus, Swansea University, Swansea, SA1 8EN, UK.

出版信息

J Hazard Mater. 2019 Feb 5;363:401-411. doi: 10.1016/j.jhazmat.2018.10.003. Epub 2018 Oct 6.

Abstract

Several Advanced Oxidation Processes (AOPs) including O/HO, O/TiO, O/activated carbon (AC), O/AlO, O/Fe/HO and UV/TiO have been investigated and compared for the removal of diethyl phthalate (DEP), an endocrine disrupting compound, in aqueous solutions. Hydroxyl radicals were the main species responsible for DEP degradation and this was supported by computational chemistry calculation, scavenger experiments, and LC/MS/MS analysis. The change of the abundance of reaction products over time was determined. Organic acids as well as anhydride and hydroxylated products were found to accumulate in solution even after long reaction time (2 h). Careful choice of the operating parameters (pH, ozone concentration and catalyst dosage) was crucial to achieve enhanced performance of the combined processes above what each oxidant and catalyst can achieve alone. O/AC process was found to reduce the oxidation efficiency of O at high ozone concentrations. Heterogeneous catalytic ozonation with AlO was the most effective process for DEP removal (∼100% removal in about 15 min) and based on pseudo-first-order kinetics at pH7, the studied oxidation processes followed the order: O/AlO(0.093 min)>O/HO/Fe(0.076 min)>O/AC(0.069 min)>O/HO(0.053 min)>O/TiO(0.050 min)> O alone (0.039 min)>UV/TiO(0.009 min).

摘要

几种高级氧化工艺(AOPs),包括 O/HO、O/TiO、O/活性炭(AC)、O/AlO、O/Fe/HO 和 UV/TiO,已被研究并比较用于去除水中的邻苯二甲酸二乙酯(DEP),一种内分泌干扰化合物。羟基自由基是 DEP 降解的主要物种,这得到了计算化学计算、猝灭实验和 LC/MS/MS 分析的支持。确定了随时间变化的反应产物的丰度变化。发现即使在长时间反应(2 h)后,溶液中也会积累有机酸以及酐和羟基化产物。仔细选择操作参数(pH、臭氧浓度和催化剂用量)对于实现组合工艺的增强性能至关重要,超过每种氧化剂和催化剂单独所能达到的性能。在高臭氧浓度下,AC 处理会降低 O 的氧化效率。用 AlO 进行的多相催化臭氧化是去除 DEP 的最有效工艺(约 15 分钟内去除率接近 100%),并且基于 pH7 下的拟一级动力学,研究的氧化工艺按以下顺序进行:O/AlO(0.093 min) > O/HO/Fe(0.076 min) > O/AC(0.069 min) > O/HO(0.053 min) > O/TiO(0.050 min) > O 单独(0.039 min)> UV/TiO(0.009 min)。

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