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Reactor design as a critical input in the electrochemical production of peroxoacetic acid

机译:反应器设计作为过氧乙酸电化学生产中的关键输入

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BACKGROUND In the present work, the influence of the most critical inputs affecting reactor design for the simultaneous electrochemical production of peroxoacetic acid (PAA) and hydrogen peroxide are studied. Based on our previous findings, we studied the role of the ratio between the volume of the solution (related to the chemical equilibrium between PAA and hydrogen peroxide) and the intensity (related to the rate and efficiency of the electrochemical processes) for a reactor equipped with a boron-doped diamond anode and a gas diffusion cathode (GDE reactor). Moreover, we tested the performance of a jet-based reactor for the production of PAA. RESULTS According to the results, it can be stated that the production of PAA is robust and stable when working at volume:intensity ratios equal or higher than 8.12 L A(-1). Moreover, it was found that current densities approximate to 27 A m(-2) are suitable for both reactor designs. Finally, it was observed that the production rate of PAA is higher for the GDE reactor due to the higher value of the volume:intensity ratio, the higher relative cathode versus anode area and the reactor configuration (anode-cathode). CONCLUSION This complex scenario demonstrates the key role of the reactor design and clarifies the future research lines that have to be further developed towards the efficient electrochemical production of peroxoacetic acid. (c) 2019 Society of Chemical Industry
机译:背景技术在本作的工作中,研究了影响反应器设计的最关键输入的影响,用于同时电化学生产过氧乙酸(PAA)和过氧化氢。基于我们之前的发现,我们研究了溶液体积(与PAA和过氧化氢之间的化学平衡有关)的比例的作用以及配备的反应器的强度(与电化学过程的速率和效率有关)具有硼掺杂的金刚石阳极和气体扩散阴极(GDE反应器)。此外,我们测试了射流基反应器的性能,用于生产PAA。结果根据结果,可以说PAA的生产在体积上工作时具有稳健且稳定:强度比等于或高于8.12 L A(-1)。此外,发现电流密度近似为27A m(-2)适用于两个反应器设计。最后,观察到由于体积的值越高,GDE反应器的PAA的生产速率较高:强度比,更高的相对阴极与阳极面积和反应器构型(阳极 - 阴极)。结论这种复杂的情景表明了反应堆设计的关键作用,并阐明了未来的研究线,必须进一步发展过氧乙酸的有效电化学生产。 (c)2019年化学工业协会

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