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Transformation of bisphenol A by electrochemical oxidation in the presence of nitrite and formation of nitrated aromatic by-products

机译:在亚硝酸盐存在下通过电化学氧化转化双酚A并形成硝化的芳族副产物

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In this contribution, the electrocatalytic abatement of bisphenol A (BPA) with boron-doped diamond (BDD) anode had been conducted in NaNO2 electrolytes. Central composite design was used as statistical multivariate method to optimize the operating parameters adopted (applied current density, flow rate, concentration of NaNO2 and initial pH). The results from response surface analysis indicated that pH was the most influential factor for TOC decay, and a maximum TOC decay of 63.7% was achieved under the optimized operating conditions (9.04 mA cm(-2) of applied current density, 400 mL min(-1) of flow rate, 10 mM of NaNO2, 4.0 of initial pH and 60 min of electrolysis time). Besides, LC/MS technique was applied to identify the main reaction intermediates, and plenty of nitrated oligomers were detected at the end of the degradation. These by-products were generated via the coaction of coupling reaction of nitrated phenol and electrophilic substitution mediated by nitrogen dioxide radicals. Moreover, our results showed that the degree of nitration depended heavily on the employed initial nitrite concentration. This was one of the very few investigations dealing with nitrophenolic by-products in nitrite medium, and thus the findings exhibited important implications for electrochemical degradation of BPA and its related phenolic pollutants. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这一贡献中,已在NaNO2电解质中用掺硼金刚石(BDD)阳极对双酚A(BPA)进行了电催化消除。使用中央复合设计作为统计多元方法来优化所采用的操作参数(施加的电流密度,流速,NaNO2浓度和初始pH)。响应面分析的结果表明,pH是TOC衰减的最大影响因素,在最佳操作条件下(施加电流密度为9.04 mA cm(-2),400 mL min( -1)的流速,10 mM的NaNO2、4.0的初始pH和60分钟的电解时间。此外,采用LC / MS技术鉴定了主要的反应中间体,在降解结束时检测到大量的硝化低聚物。这些副产物是通过硝化酚与二氧化氮自由基介导的亲电取代反应的偶联作用而产生的。而且,我们的结果表明硝化程度在很大程度上取决于所采用的初始亚硝酸盐浓度。这是在亚硝酸盐介质中处理硝基酚副产物的极少数研究之一,因此,该发现对BPA及其相关酚类污染物的电化学降解具有重要意义。 (C)2019 Elsevier Ltd.保留所有权利。

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