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Enhancing capacitive deionization technology as an effective method for water treatment using commercially available graphene

机译:增强电容式去离子技术用市售石墨烯的水处理方法

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In recent years, capacitive deionization (CDI) has been reported as one of the emerging technologies developed with the purpose of water desalination. This work is aimed at the integration of supercapacitor electrodes for efficient removal of ions from water, and thus to achieve an energy efficient, and cost-effective water treatment process. Our objective is to transfer the vast knowledge of supercapacitors and advanced materials in area of water treatment to enhance the knowledge of the CDI process. Towards the main purpose, graphene-based supercapacitor electrodes were developed from commercially available, cost-effective graphene and the use of these new materials for deionization was explored in detail. The porosity, morphology and electrochemical characteristics of the active materials were confirmed by Brunauer-Emmett-Teller method, scanning electron microscopy, Raman spectroscopy and chronoamperometry. Furthermore, the deionization performances of the graphene electrodes were evaluated by a laboratory scale CDI unit. The ion sorption behavior of the electrode was analyzed at different electrical potentials and flow rates. Impact of operating parameters on the sorption capacity was determined. At 20 mL/min flow rate and 2.0 V potential, the electrosorptive capacity of commercially available graphene electrodes could reach 12.5 mu mol/g. Our results indicated the ability to use commercially available graphene for deionization purpose.
机译:近年来,据报道,电容去离子化(CDI)作为具有水海水淡化目的开发的新兴技术之一。这项工作旨在整合超级电容器电极以便于从水中高效地除去离子,从而实现能量效率和经济高效的水处理过程。我们的目标是在水处理区域转移超级电容器和先进材料的知识,以提高CDI过程的知识。朝向主要目的,基于石墨烯的超级电容器电极由可商购的,经济高效的石墨烯开发,并详细探讨了这些新材料的去离子。通过Brunauer-Emmett-Treater方法,扫描电子显微镜,拉曼光谱和计时术来证实活性材料的孔隙率,形态和电化学特性。此外,通过实验室测量CDI单元评估石墨烯电极的去离子性能。在不同的电位和流速下分析电极的离子吸附行为。确定了操作参数对吸附能力的影响。在20mL / min流速和2.0V电位下,市售石墨烯电极的电络电容能力达到12.5μmmol/ g。我们的结果表明了使用市售石墨烯的能力。

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