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Chlorination and chloramination of bisphenol A, bisphenol F, and bisphenol A diglycidyl ether in drinking water

机译:饮用水中双酚A,双酚F和双酚A二缩水甘油醚的氯化和氯化

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Bisphenol A (BPA), bisphenol F (BPF), and bisphenol A diglycidyl ether (BADGE) are common components of epoxy coatings used in food packaging and in drinking water distribution systems. Thus, leachates from the epoxy may be exposed to the disinfectants free chlorine (Cl-2/HOCl/OCl-) and monochloramine (MCA, NH2Cl). Bisphenols are known endocrine disrupting chemicals (EDC) with estrogenic activity. Chlorination by-products have the potential to have reduced or enhanced estrogenic qualities, and are, therefore, of interest. In this work, chlorination reactions for bisphenols and BADGE were explored (via LC/MS/MS) and kinetic modeling (using a pseudo-first order approach) was conducted to predict the fate of these compounds in drinking water. The half-lives of BPA and BPF with 1 mg/L of free chlorine ranged from 3 to 35 min over the pH range from 6 to 11 and the temperature range of 10-25 degrees C. Half-lives for reactions of BPA and BPF with a nominal MCA concentration of 3.5 mg/L as Cl-2 were from 1 to 10 days and were greater at higher pH and lower temperature. Formation of chlorinated bisphenol A by-products was observed during the kinetic studies. BADGE was found unreactive with either oxidant. (C) 2015 Published by Elsevier Ltd.
机译:双酚A(BPA),双酚F(BPF)和双酚A二缩水甘油醚(BADGE)是食品包装和饮用水分配系统中使用的环氧涂料的常见成分。因此,来自环氧树脂的浸出液可能会暴露于消毒剂中游离氯(Cl-2 / HOCl / OC1-)和一氯胺(MCA,NH2Cl)。双酚是已知的具有雌激素活性的内分泌干扰化学物质(EDC)。氯化副产物具有降低或增强雌激素品质的潜力,因此受到关注。在这项工作中,探索了双酚和BADGE的氯化反应(通过LC / MS / MS),并进行了动力学建模(使用拟一级方法)以预测饮用水中这些化合物的命运。 BPA和BPF与1 mg / L游离氯的半衰期在pH范围6至11和温度范围10-25摄氏度之间为3至35分钟。BPA和BPF反应的半衰期Cl-2的标称MCA浓度为3.5 mg / L,反应时间为1至10天,在较高的pH和较低的温度下则更高。在动力学研究期间,观察到了氯化双酚A副产物的形成。发现BADGE与任何一种氧化剂均无反应。 (C)2015年由Elsevier Ltd.出版

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