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Kinetic and degradation efficiency of trichloroethylene (TCE) via photochemical process from contaminated water

机译:污水中三氯乙烯(TCE)的光化学过程动力学和降解效率

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摘要

Trichloroethylene (TCE) is a common pollutant in groundwater and one of the priority pollutants listed by the U.S. EPA. With regard to concentration ranges in previous studies exceeding environmental levels by far with millimolar concentrations of TCE, this study deals with the degradation of TCE at micromolar concentrations by UV/H2O2. The degradation rate of TCE at different dilute solution levels, 30, 300 and 3000 g L-1 (0.22, 2.28 and 22.83 micromolar) at different initial pHs was examined. In addition, samples were taken from four contaminated wells to measure the degradation rate of TCE. It was shown that thedegradation rate of TCE increased due to the reduction of initial concentration in both aqueous solution and groundwater samples. The TCE degradation constants in groundwater samples increased by a factor of 2.05, while the initial concentration reduced from 1345.7 to 97.7 μg1 L-1. By increasing the molar ratios of H2O2 to TCE from 13 to 129, caused the degradation rates to increase in aqueous solutions. No harmful byproducts such as aloacetic acids (HAAs) were detected at these low levels of initial concentration of TCE during process. This study confirmed that application of UV/H2O2 process could be an effective method in treating contaminated groundwater by TCE at low concentrations.
机译:三氯乙烯(TCE)是地下水中的常见污染物,也是美国EPA列出的优先污染物之一。关于先前研究中的浓度范围,远远超过环境浓度(以三氯甲烷的毫摩尔浓度计),这项研究处理的是紫外线/过氧化氢以微摩尔浓度降解三氯乙烯。在不同的初始pH值下,检测了在30、300和3000μgL-1(0.22、2.28和22.83微摩尔)的不同稀释溶液水平下TCE的降解率。另外,从四个受污染的孔中取样以测量TCE的降解率。结果表明,TCE的降解速率由于水溶液和地下水样品中初始浓度的降低而增加。地下水样品中三氯乙烯的降解常数增加了2.05倍,而初始浓度从1345.7降至97.7μg1L-1。通过将H2O2与TCE的摩尔比从13增加到129,导致水溶液中的降解速率增加。在此过程中,TCE的初始浓度如此低,因此没有检测到有害副产物,例如卤乙酸(HAA)。这项研究证实,紫外线/过氧化氢工艺的应用可能是低浓度三氯乙烯处理污染地下水的有效方法。

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