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Degradation of 1,2-dichloroethane with advanced reduction processes (ARPs): Effects of process variables and mechanisms

机译:用高级还原工艺(ARPs)降解1,2-二氯乙烷:工艺变量和机理的影响

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摘要

1,2-Dichlroroethane (1,2-DCA) is a widely used chemical with potential to harm the environment and human health. In this study, successful degradation of 1,2-DCA was achieved with various advanced reduction processes (ARPs) that combine ultraviolet (UV) irradiation with various reagents (dithionite, sulfite, sulfide, ferrous iron). The degradation kinetics in the sulfite/UV ARP was found to follow a pseudo-first-order decay model and the effects on kinetics of several factors were studied. More than 90% of initial 1,2-DCA was removed within 20 min in alkaline conditions (pH 8.2, 9.0 and 11.0) while it took 130 min to reach same removal at pH 7.0. Increasing the sulfite dose and UV light intensity caused the rate constant to increase linearly, but higher initial 1,2-DCA concentrations resulted in lower rate constants. Scavenging experiments with nitrate and nitrous oxide demonstrated the aqueous electron is the major species causing 1,2-DCA degradation in the sulfite/UV ARP, while the sulfite radical appears to be more important in degradation of vinyl chloride. The dechlorination of 1,2-DCA to chloride ion was enhanced by raising the solution pH with more than 90% dechlorination obtained at pH 11. This work supports application of ARPs to degradation of other chlorinated organics.
机译:1,2-二氯乙烷(1,2-DCA)是一种广泛使用的化学物质,有可能危害环境和人类健康。在这项研究中,通过各种先进的还原工艺(ARPs)将紫外线(UV)辐射与各种试剂(连二亚硫酸盐,亚硫酸盐,硫化物,亚铁)结合起来,成功降解了1,2-DCA。发现亚硫酸盐/ UV ARP中的降解动力学遵循拟一阶衰减模型,并研究了几个因素对动力学的影响。在碱性条件下(pH 8.2、9.0和11.0)在20分钟内去除了90%以上的初始1,2-DCA,而在pH 7.0下需要130分钟才能达到相同的去除率。亚硫酸盐剂量和紫外线强度的增加导致速率常数线性增加,但是较高的初始1,2-DCA浓度导致速率常数较低。用硝酸盐和一氧化二氮进行的清除实验表明,水性电子是导致亚硫酸盐/ UV ARP中1,2-DCA降解的主要物质,而亚硫酸根似乎在氯乙烯的降解中更重要。通过在pH值为11时获得90%的脱氯率来提高溶液的pH值,可以增强1,2-DCA的脱氯反应,从而将ARPs用于降解其他氯化有机物。

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