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紫外线/过氧化氢(UV/H2O2)和紫外线/二氧化钛(UV/TiO2)对甲基叔丁基醚(MTBE)的光降解作用

Photodegradation of methyl tert-butyl ether (MTBE) by UV/H2O2 and UV/TiO2.

作者信息

Hu Qinhai, Zhang Chunlong, Wang Zhirong, Chen Yan, Mao Kehui, Zhang Xingqing, Xiong Yunlong, Zhu Miaojun

机构信息

Department of Environmental Engineering, Zhejiang University, Hangzhou 310029, People's Republic of China.

出版信息

J Hazard Mater. 2008 Jun 15;154(1-3):795-803. doi: 10.1016/j.jhazmat.2007.10.118. Epub 2007 Nov 13.

Abstract

Two UV-based advanced oxidation processes (AOPs), UV/H2O2 and UV/TiO2, were tested in batch reactor systems to evaluate the removal efficiencies and optimal conditions for the photodegradation of methyl tert-butyl ether (MTBE). The optimal conditions at an initial MTBE concentration of 1 mM ([MTBE]0=1 mM) were acidic and 15 mM H2O2 in UV/H2O2 system, and pH 3.0 and 2.0 g/l TiO2 in UV/TiO2 suspended slurries system under 254-nm UV irradiation. Under the optimal conditions, MTBE photodegradation during the initial period of 60 min in UV/H2O2 and UV/TiO2 systems reached 98 and 80%, respectively. In both systems, MTBE photodegradation decreased with increasing [MTBE]0. While MTBE photodegradation rates increased with increasing dosage of H2O2 (5-15 mM) and TiO2 (0.5-3 g/l), further increase in the dosage of H2O2 (20 mM) or TiO2 (4 g/l) adversely reduced the MTBE photodegradation. Pseudo first-order kinetics with regard to [MTBE] can be used to describe the MTBE photodegradation in both systems. The pseudo first-order rate constants linearly increased with the increase in the molar ratio of [H2O2]0 to [MTBE]0 in UV/H2O2 system and linearly increased with the decrease in [MTBE]0 in UV/TiO2 system.

摘要

在间歇式反应器系统中测试了两种基于紫外线的高级氧化工艺(AOPs),即UV/H2O2和UV/TiO2,以评估甲基叔丁基醚(MTBE)光降解的去除效率和最佳条件。在初始MTBE浓度为1 mM([MTBE]0 = 1 mM)时,UV/H2O2系统的最佳条件为酸性且H2O2浓度为15 mM,在254 nm紫外线照射下,UV/TiO2悬浮浆液系统的最佳条件为pH 3.0且TiO2浓度为2.0 g/l。在最佳条件下,UV/H2O2和UV/TiO2系统中MTBE在初始60分钟内的光降解率分别达到98%和80%。在这两种系统中,MTBE的光降解率均随[MTBE]0的增加而降低。虽然MTBE的光降解率随H2O2剂量(5 - 15 mM)和TiO2剂量(0.5 - 3 g/l)的增加而提高,但H2O2剂量(20 mM)或TiO2剂量(4 g/l)的进一步增加会对MTBE的光降解产生不利影响。关于[MTBE]的伪一级动力学可用于描述这两种系统中MTBE的光降解。在UV/H2O2系统中,伪一级速率常数随[H2O2]0与[MTBE]0摩尔比的增加而线性增加,在UV/TiO2系统中,伪一级速率常数随[MTBE]0的降低而线性增加。

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