首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Relationship between capacitance of activated carbon composite electrodes measured at a low electrolyte concentration and their desalination performance in capacitive deionization
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Relationship between capacitance of activated carbon composite electrodes measured at a low electrolyte concentration and their desalination performance in capacitive deionization

机译:在低电解质浓度下测量的活性炭复合电极的电容与其在电容去离子中的脱盐性能之间的关系

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摘要

Capacitive deionization (CDI) has attracted attention as a novel desalination process, which would be one of solutions to global water scarcity. In this process, a porous electrode is the most important component, providing high capacitance and subsequent large desalination capacity. Activated carbon satisfies this requirement and is an economically competitive material over other types of carbon, so that lots of studies have been carried using various activated carbons. However, the relationship between capacitance and desalination performance remains unclear, especially at low electrolyte concentrations. In this study, we investigated the relationship between capacitance and desalination performance using various activated carbon composite electrodes. Capacitance was specifically measured at a low electrolyte concentration (0.01 M NaCl), in which condition the CDI works effectively, and was transformed to charge capacity, assuming that 1.2 V was applied to the system. The results showed that deionization capacity had a good linear relationship to the charge capacity evaluated from capacitance. In particular, we found out that 60–80% of the charge capacity (0.01 M) could be utilized in deionization. Also, the ratio became 50–60% with the charge capacity evaluated by capacitance measured at a high electrolyte concentration (1 M NaCl). This approach allows simple estimation of desalination performance from capacitance of electrodes, which would eventually make the systematic design and characterization of CDI electrodes convenient.
机译:电容去离子(CDI)作为一种新型的脱盐工艺已引起了人们的关注,这将是解决全球水资源短缺的一种方法。在此过程中,多孔电极是最重要的组件,可提供高电容并随后具有较大的脱盐能力。活性炭满足了这一要求,并且是经济上比其他类型的碳更具竞争力的材料,因此,使用各种活性炭进行了大量的研究。然而,电容与脱盐性能之间的关系仍然不清楚,尤其是在低电解质浓度下。在这项研究中,我们研究了使用各种活性炭复合电极的电容与脱盐性能之间的关系。电容是在低电解质浓度(0.01 M NaCl)下专门测量的,在这种情况下,CDI有效工作,并假设将1.2 V施加到系统上,则CDI转换为充电容量。结果表明,去离子容量与通过电容评估的充电容量具有良好的线性关系。特别是,我们发现60%至80%的充电容量(0.01 M)可用于去离子。同样,该比率变为50–60%,通过在高电解质浓度(1 M NaCl)下测得的电容评估充电容量。这种方法允许根据电极的电容简单地评估脱盐性能,这最终将使CDI电极的系统设计和表征变得方便。

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