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The characteristics of resin/carbon composite electrode and application in selective adsorption of vanadium(IV) by capacitive deionization

机译:树脂/碳复合电极的特性及其在钒(IV)对钒(IV)的应用中的特点

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The characteristics and adsorption performances of three kinds of resin/mineral active carbon (Resin/AC-m) composite electrodes, the pure AC-m electrode and the resins were comparatively investigated. The Resin/AC-m composite electrodes have lower specific capacitance and higher resistance than the AC-m electrode, but their hydrophilia, specific surface areas and microspores content can be largely improved due to the addition of the resins, which is beneficial to the ions adsorption on the electrodes. The hydrated radius of VO2+ is smaller than that of Fe3+ and Al3+, then VO2+ is easier to pass through the microspores of the D860/AC-m electrode and adsorbed by the composite electrode. Thus, the D860/AC-m electrode presents the highest adsorption capacity and the strongest selectivity for VO2+, which may be resulted from the combined actions of the ion-sieve effect of the composite electrode material and the affinity of the resin for VO2+. Multiple adsorption-regeneration cycles proved that the performance of the D860/AC-m electrode can remain stable in longterm operation, indicating it may be suitable for cycle use in CDI. This study may provide a promising method for separation and recovery of ions from complex solutions. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:相对研究了三种树脂/矿物活性炭(树脂/ AC-M)复合电极,纯AC-M电极和树脂的特性和吸附性能。树脂/ AC-M复合电极具有较低的特定电容和比AC-M电极更高的电阻,但由于添加树脂,它们的卧室,比表面积和微微孢子含量可以很大改善,这对离子有益在电极上吸附。 VO2 +的水合半径小于Fe3 +和Al3 +,然后VO2 +更容易通过D860 / AC-M电极的幼儿孢子并由复合电极吸附。因此,D860 / AC-M电极具有最高的吸附容量和对VO2 +的最强选择性,这可以是由复合电极材料的离子筛效应的组合动作和树脂用于VO2 +的亲和力导致。多种吸附再生循环证明了D860 / AC-M电极的性能在Longterm操作中可以保持稳定,表明它可以适用于CDI中的循环使用。该研究可以提供与复合溶液分离和恢复离子的有希望的方法。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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