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Assisted reverse electrodialysis for CO2 electrochemical conversion and treatment of wastewater: A new approach towards more eco-friendly processes using salin2ity gradients

机译:辅助反向电渗析CO2电化学转换和废水处理:使用Salin2度梯度更加环保过程的新方法

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In this paper, the utilization of assisted reverse electrodialysis (A-RED), recently used for pre-desalination, is proposed as a general method to reduce the energy requirements of electrolysis processes and evaluated for two model processes: (i) the cathodic conversion of carbon dioxide to formic acid; (ii) the anodic treatment of water contaminated by organics. In A-RED, two solutions with different salt content and an external potential difference, applied in the direction of the natural salinity gradient, are both used to drive redox processes. It was shown, for the first time, that the cathodic conversion of CO 2 to formic acid can be performed by both reverse electrodialysis (RED) and A-RED, saving electric energy with respect to electrolysis processes. A-RED allows to increase significantly the production of formic acid with respect to RED (after 4 h, 2 and 6.3 mM were produced for RED and A-RED with an additional external cell potential of 0.8 V, respectively, for a salinity ratio SR = 3300). For the anodic treatment of wastewater, A-RED allowed to accelerate the removal of organics and/or to use smaller salinity gradients with respect to RED (as an example, after 2 h with a SR of 4.4, an abatement of TOC of 55 and 92% was obtained with RED and A-RED with 1.5 V, respectively) and to save electrical energy with respect to electrolysis. A simplified economic analysis performed for the anodic treatment of the adopted synthetic wastewater has shown that A-RED presents the most appealing economic data with respect to both electrolysis and RED in most of investigated cases. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在本文中,辅助反电渗析(A-RED)的利用率,最近用于预脱盐,提出了以降低电解过程的能量需求的一般方法,并评价两个示范的过程:(i)所述阴极转换二氧化碳甲酸; (ii)通过有机物污染的水在阳极处理。在A-RED,两种溶液具有不同的盐含量和外部的电势差,在自然盐度梯度的方向上施加,两者都用来驱动氧化还原过程。结果表明,在第一次,即CO 2的甲酸阴极转化可以通过两个反电渗析(RED)和A-RED来执行,从而节省电能相对于电解过程。 A-RED允许相对于分别显著增加生产甲酸到RED(4小时,2和6.3毫制作用于RED和A-RED与0.8 V,的附加的外部电池电势之后,用于盐度比SR = 3300)。用于废水的阳极处理,A-RED允许加速除去有机物和/或使用更小的盐度梯度相对于RED(作为一个例子,在2小时后用4.4 SR,55 TOC的消除和分别得到92%的红色和A-RED与1.5 V)和保存电能相对于电解。对于所采用的合成废水的阳极处理进行的简化经济分析表明,A-RED呈现最有吸引力的经济数据相对于两个电解和RED在大多数的调查案件。 (c)2020 elestvier有限公司保留所有权利。

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