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Effect of Pretreatment of Carbon Based Electrodes in Their Adsorption Performance in Capacitive Deionization

机译:碳基电极预处理在电容去离子吸附性能下的影响

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Capacitive deionization (CDI) is a novel technology that removes ions from water using electrical field and electro-adsorption. CDI offers to be an energy efficient and less chemical residue producing alternative to contemporary deionization technologies such as reverse osmosis or multistage flash in case of low saline water. Carbon based porous electrodes have been a popular choice as electrode in CDI due to their high surface area and inertness in low applied voltages. Recent researchers have focused on improving the adsorption capacity of carbon based electrodes through various surface treatment processes. The focus of recent work is to improve key parameters such as the electrical double layer effect, porosity, and wettability of electrodes for increased adsorption capacity. Here in this work, electrodes made of carbon aerogel and commercially available carbon blocks were used and their respective adsorption performances in CDI applications were compared to study the effect of surface treatment with acetone and nitric acid separately. The cumulative effect of carbon surface treatment with both acetone and nitric acid was also studied.
机译:电容式去离子(CDI)是一种新的技术,可以使用电场和电吸收从水中除去离子。 CDI提供了一种能源效率和更少的化学残留物,可以替代现代的去离子技术,如低盐水,在低渗透或多级闪光灯。由于其高表面积和低施加电压的惰性,碳基多孔电极是CDI中的电极。最近的研究人员专注于通过各种表面处理过程提高碳基电极的吸附容量。最近作品的重点是改善电极的电气双层效应,孔隙度和润湿性等关键参数,以增加吸附能力。在此工作中,使用由碳气凝胶和市售碳嵌段制成的电极,并将其在CDI应用中的各自吸附性能进行了比较,以分别使用丙酮和硝酸的表面处理的影响。还研究了碳表面处理与丙酮和硝酸的累积效果。

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