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Electro-oxidation of amoxicillin trihydrate in continuous reactor by Ti/RuO_2 anode

机译:Ti / RuO_2阳极在连续反应器中对三水合阿莫西林进行电氧化

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摘要

Electro-oxidation (EO) of synthetic wastewater containing amoxicillin (AMT) antibiotic as a model pollutant was performed using dimensionally stable Ti/RuO2 electrodes in a continuous reactor set-up. Response surface methodology (RSM) was used for optimization of continuous EO process. Individual and interactive effects of initial pH of synthetic wastewater (2-10), applied current, I (0.25-1.25 A), elapsed time, t (20-180 min) and retention time, R-T (15-195 min) on AMT removal, total organic carbon (TOC) removal and specific energy consumption (SEC. kWh (g TOC removed)-(1)) were investigated. At optimum conditions (pH = 7.53, I = 0.7 A, R-T 175.6 min, t = 128.89 min), 51.64% and 37.82% AMT and TOC removal was achieved, with SEC value of 0.408 kWh (g TOC removed) - AMT and TOC removal at optimum conditions was found to follow pseudo-first order kinetics. Mineralization current efficiency for optimum run of continuous EO came out to be 9.81%. Furthermore, 8 transformation products/reaction intermediates of AMT (ARIs) were determined by UPLC-Q-TOF-MS analysis, and subsequently, a plausible degradation scheme of AMT by anodic oxidation and cathodic reduction using Ti/RuO2 electrodes was proposed. (C) 2019 Elsevier B.V. All rights reserved.
机译:在连续反应器装置中,使用尺寸稳定的Ti / RuO2电极对含有阿莫西林(AMT)抗生素作为模型污染物的合成废水进行了电氧化(EO)。响应面法(RSM)用于优化连续EO工艺。合成废水的初始pH(2-10),施加电流I(0.25-1.25 A),经过时间t(20-180分钟)和保留时间RT(15-195分钟)对AMT的个体和交互作用去除,总有机碳(TOC)去除和比能耗(SEC。kWh(g TOC去除)-(1))。在最佳条件下(pH = 7.53,I = 0.7 A,RT 175.6 min,t = 128.89 min),AMT和TOC去除率分别为51.64%和37.82%,SEC值为0.408 kWh(g TOC被去除)-AMT和TOC发现在最佳条件下的去除遵循伪一级动力学。连续EO最佳运行的矿化电流效率为9.81%。此外,通过UPLC-Q-TOF-MS分析确定了8种AMT的转化产物/反应中间体,然后提出了使用Ti / RuO2电极通过阳极氧化和阴极还原对AMT进行降解的可行方案。 (C)2019 Elsevier B.V.保留所有权利。

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