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用于离子色谱的在线无气电解KOH淋洗液发生器

Online Gas-Free Electrodialytic KOH Eluent Generator for Ion Chromatography.

作者信息

Lu Yifei, Zhou Liting, Yang Bingcheng, Huang Shujun, Zhang Feifang

机构信息

Shanghai Key Laboratory of New Drug Design, School of Pharmacy , East-China University of Science and Technology , Shanghai 200237 , China.

出版信息

Anal Chem. 2018 Nov 6;90(21):12840-12845. doi: 10.1021/acs.analchem.8b03365. Epub 2018 Oct 12.

Abstract

An online gas-free KOH electrodialytic eluent generator (EDG) with two-membrane configuration is described for ion chromatography (IC). A central eluent channel is separated from two outer regenerant channels bearing KOH solution (or one is water) by stacked cation-exchange membranes (sCEMs) and a bipolar membrane (BPM) plus stacked CEMs (BPM-sCEMs), in which the anion-exchange membrane (AEM) of BPM is facing the central channel (the anode direction). Independent fluid input or output ports address all channels. One platinum screen electrode is put in each outer channel, and the sCEM side is anode with respect to the cathode of the BPM-sCEM side. Under the electric field, enhanced water splitting at the intermediate layer of BPM will occur, offering hydroxide and hydronium; hydroxide electromigrates through AEM into the central channel, while the potassium of KOH feed solution at the anode migrates into the central channel to combine with hydroxide to form a solution of KOH. Because the central eluent channel is spatially isolated from both electrodes, the generated KOH solution is gas-free and no gas-removal device is required. More important, the AEM side of BPM is contactless with the alkaline solution, nearly avoiding possible AEM degradation when immersed into concentrated alkaline solution. This ensures long-term running stability of the EDG and high purity of the produced KOH solution (as indicated by the typical suppressed background conductance of 0.28 μS/cm). The EDG has a pressure tolerance (at least 21 MPa), and the produced KOH concentration is up to 101 μeq/min with near-unity faradaic efficiency. When operated in both isocratic and gradient modes, the EDG demonstrates excellent reproducibility, as indicated by the retention time of RSD ≤ 0.08% and the peak area of RSD ≤ 0.6%. To the best of our knowledge, this is the first description of gas-free EDG matched conventional IC system.

摘要

本文描述了一种用于离子色谱(IC)的具有双膜配置的在线无气氢氧化钾电渗析洗脱液发生器(EDG)。一个中央洗脱液通道通过堆叠的阳离子交换膜(sCEM)以及一个双极膜(BPM)加堆叠的CEM(BPM-sCEM)与两个承载氢氧化钾溶液(或一个是水)的外部再生剂通道隔开,其中BPM的阴离子交换膜(AEM)面向中央通道(阳极方向)。独立的流体输入或输出端口通向所有通道。在每个外部通道中放置一个铂筛电极,sCEM侧相对于BPM-sCEM侧的阴极是阳极。在电场作用下,BPM中间层会发生增强的水分解,产生氢氧根和水合氢离子;氢氧根通过AEM电迁移到中央通道,而阳极处氢氧化钾进料溶液中的钾迁移到中央通道与氢氧根结合形成氢氧化钾溶液。由于中央洗脱液通道在空间上与两个电极隔离,因此生成的氢氧化钾溶液无气体,无需气体去除装置。更重要的是,BPM的AEM侧与碱性溶液无接触,几乎避免了浸入浓碱性溶液时AEM可能的降解。这确保了EDG的长期运行稳定性以及所产生氢氧化钾溶液的高纯度(典型的抑制背景电导为0.28 μS/cm)。该EDG具有耐压性(至少21 MPa),所产生的氢氧化钾浓度高达101 μeq/min,法拉第效率接近100%。当以等度和梯度模式运行时,该EDG表现出出色的重现性,相对标准偏差(RSD)的保留时间≤0.08%,峰面积RSD≤0.6%。据我们所知,这是对与传统IC系统匹配的无气EDG的首次描述。

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