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Precise control of iron activating persulfate by current generation in an electrochemical membrane reactor

机译:电化学膜反应器中电流产生的铁激活过硫酸盐的精确控制

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摘要

Activated persulfate (PS) oxidation is promising for contaminant removal but a lack of controllable activation can lead to a loss of reagents and thus low contamination degradation. Herein, we have proposed and investigated an innovative method to control PS activation by introducing ion exchange membrane into electrochemically activated PS. This electrochemical membrane reactor (EMR) could precisely control PS activation by adjusting electrical current for slow release of Fe2+, and also avoid direct contact between PS and a sacrificial anode electrode (iron electrode)/an alkaline cathode solution. It was found that the PS decomposition rate constant was linearly increased by increasing the applied current (R2 = 0.988). The rate of the released Fe2+ also exhibited a linear relationship with the applied current (R2 = 0.995). Compared to one-time dosage of Fe2+, the EMR-based slow-release process had higher contamination degradation and better PS utilization (molar ratio of the decomposed PS to the migrated Fe, 1.04 ± 0.01:1), thereby minimizing the waste of both reaction reagents and generated radicals. The EMR was also employed to degrade a representative dye contaminant in a controllable manner and achieved 95.7 ± 0.7% removal percentage with PS dosage of 3.0 g L−1 within 20 min. This study is among the earliest to explore effective approaches for precisely controlling PS activation and subsequent oxidation of contaminants. Keywords: Persulfate activation, Precise control, Current generation, Electrochemical membrane reactor, Advanced oxidation process
机译:活化过硫酸盐(PS)氧化是对污染物去除的承诺,但缺乏可控激活会导致试剂的丧失,从而导致低污染降解。在此,我们已经提出并研究了通过将离子交换膜引入电化学活化的PS中来控制PS活化的创新方法。该电化学膜反应器(EMR)可以通过调节Fe2 +缓慢释放的电流来精确控制PS激活,并且还避免PS和牺牲阳极(铁电极)/碱性阴极溶液之间的直接接触。发现通过增加施加的电流(R2 = 0.988),PS分解速率常数被线性增加(R2 = 0.988)。释放Fe2 +的速率也表现出与施加电流的线性关系(R2 = 0.995)。与FE2 +的一次性剂量相比,基于EMR的慢释放过程具有更高的污染降解和更好的PS利用(迁移Fe的分解PS的摩尔比,从而最大限度地减少两者的浪费反应试剂和产生的自由基。还使用EMR以可控的方式降解代表性染料污染物,并在20min内以3.0gL-1的PS剂量达到95.7±0.7%的去除百分比。本研究最早探索精确控制PS激活和随后氧化污染物的有效方法。关键词:过硫酸盐活化,精确控制,电流发电,电化学膜反应器,先进的氧化过程

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