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Persistent organic pollutant lindane degradation by alkaline cold-brew green tea

机译:持久性有机污染物林丹含碱性冷泡绿茶的降解

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The environmental persistence of hazardous organochlorine pesticides (OCPs) such as lindane has resulted in a need for the development of reliable remediation technology for the removal of OCPs. Green tea extract/Fe2+ under alkaline conditions is a potential green chemistry technology proven to be effective in reducing lindane. This study investigated the feasibility of directly using green tea leaves (GT-leaf) or cold-brew tea solution (GT-sol) with Fe2+ additives at (bi)carbonate buffered pH 10 to treat lindane in the aqueous phase. The polyphenol was gradually released in the GT-leaf system and reached a similar concentration as that in the GT-sol system (similar to 800 mg L-1 at pH 6.5). Based on the analytical results of lindane degradation byproducts, it was recognized that the reductive mechanism acts as a major pathway and alkaline hydrolysis is a minor pathway. However, physical adsorption rapidly removes lindane from the GT-leaf system. A comprehensive evaluation of lindane degradation, chlorobenzene formation, degradation kinetics, and chloride liberation were conducted for the alkaline GT-sol/Fe2+ system. The nonlinear simulations of the models developed showed good fits, with R-2 0.96. This study highlights the potential for GT-sol/Fe2+ systems to remediate OCPs contamination. (C) 2019 Published by Elsevier Ltd.
机译:诸如林奈的危险有机氯杀虫剂(OCP)的环境持续存在导致需要开发可靠的修复技术,用于去除OCP。碱性条件下的绿茶提取物/ Fe2 +是一种潜在的绿色化学技术,可有效地减少林丹。本研究调查了在(Bi)碳酸盐缓冲的pH10中使用Fe2 +添加剂直接使用绿茶叶(Gt-Leaf)或冷啤酒茶溶液(GT-溶胶),以处理水相中的林烷。在GT-叶片系统中逐渐释放多酚,达到与GT-溶胶系统中的相似浓度(类似于800mg L-1在pH6.5时)。基于林丹降解副产物的分析结果,认识到还原机制作为主要途径和碱性水解是一种小途径。然而,物理吸附迅速从GT叶系统中除去林丹。对碱GT-溶胶/ Fe2 +系统进行林丹降解,氯苯形成,降解动力学和氯化物释放的综合评价。开发的模型的非线性模拟显示出良好的配合,R-2> 0.96。本研究突出了GT-SOL / FE2 +系统来修复OCP污染的可能性。 (c)2019年由elestvier有限公司发布

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