A gas-free electrodialytic pH modifier for ion chromatography
We for the first time describe a gas-free electrodialytic pH modifier deployed at the pump outlet side to manipulate carbonate eluent used for ion chromatography (IC). It is in sandwich configured, in which the central eluent channel is spatially isolated from two outer regenerant chambers by a stac...
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2021-02-01
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doaj-bcdc86d349724d078e2be3aabd0036672021-03-03T04:24:19ZengElsevierHeliyon2405-84402021-02-0172e06229A gas-free electrodialytic pH modifier for ion chromatographyYue Zhou0Yue Sun1Feifang Zhang2Bingcheng Yang3Engineering Research Center of Pharmaceutical Process Chemistry, Ministry of Education, School of Pharmacy, East China University of Science and Technology, Shanghai, 200237, ChinaEngineering Research Center of Pharmaceutical Process Chemistry, Ministry of Education, School of Pharmacy, East China University of Science and Technology, Shanghai, 200237, ChinaEngineering Research Center of Pharmaceutical Process Chemistry, Ministry of Education, School of Pharmacy, East China University of Science and Technology, Shanghai, 200237, ChinaCorresponding author.; Engineering Research Center of Pharmaceutical Process Chemistry, Ministry of Education, School of Pharmacy, East China University of Science and Technology, Shanghai, 200237, ChinaWe for the first time describe a gas-free electrodialytic pH modifier deployed at the pump outlet side to manipulate carbonate eluent used for ion chromatography (IC). It is in sandwich configured, in which the central eluent channel is spatially isolated from two outer regenerant chambers by a stacked cation exchange membranes (sCEM) and a bipolar membrane (BPM) plus a stacked anion exchange membranes (sAEM) (BPM-sAEM), the cation exchange side of BPM is facing the central channel (the cathode direction). One electrode is put in each regenerant chamber and the sCEM side is cathode with respect to the anode of BPM-sAEM side. When a potassium carbonate eluent is pumped into the central channel and a DC current is applied, a controlled amount of potassium ions will be removed by migrating across sCEM into cathodic chamber. Meanwhile, hydronium ions generated from enhanced water splitting at the intermediate layer of BPM will electromigrate into central channel to form bicarbonate. By controlling the current, the potassium carbonate eluent can be manipulated to obtain a mixed eluent with different ratio of carbonate and bicarbonate. At least 10 mM K2CO3 eluent can be online changed modified into 10 mM KHCO3 with near-ideal Faradaic efficiency (∼92%). The device demonstrated good reproducibility, as indicated by retention time of relative standard deviation (RSD) < 0.43% and the peak area of RSD <0.93%.http://www.sciencedirect.com/science/article/pii/S2405844021003340Ion chromatographyElectrodialytic pH modifierPotassium carbonatePotassium bicarbonate |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yue Zhou Yue Sun Feifang Zhang Bingcheng Yang |
spellingShingle |
Yue Zhou Yue Sun Feifang Zhang Bingcheng Yang A gas-free electrodialytic pH modifier for ion chromatography Heliyon Ion chromatography Electrodialytic pH modifier Potassium carbonate Potassium bicarbonate |
author_facet |
Yue Zhou Yue Sun Feifang Zhang Bingcheng Yang |
author_sort |
Yue Zhou |
title |
A gas-free electrodialytic pH modifier for ion chromatography |
title_short |
A gas-free electrodialytic pH modifier for ion chromatography |
title_full |
A gas-free electrodialytic pH modifier for ion chromatography |
title_fullStr |
A gas-free electrodialytic pH modifier for ion chromatography |
title_full_unstemmed |
A gas-free electrodialytic pH modifier for ion chromatography |
title_sort |
gas-free electrodialytic ph modifier for ion chromatography |
publisher |
Elsevier |
series |
Heliyon |
issn |
2405-8440 |
publishDate |
2021-02-01 |
description |
We for the first time describe a gas-free electrodialytic pH modifier deployed at the pump outlet side to manipulate carbonate eluent used for ion chromatography (IC). It is in sandwich configured, in which the central eluent channel is spatially isolated from two outer regenerant chambers by a stacked cation exchange membranes (sCEM) and a bipolar membrane (BPM) plus a stacked anion exchange membranes (sAEM) (BPM-sAEM), the cation exchange side of BPM is facing the central channel (the cathode direction). One electrode is put in each regenerant chamber and the sCEM side is cathode with respect to the anode of BPM-sAEM side. When a potassium carbonate eluent is pumped into the central channel and a DC current is applied, a controlled amount of potassium ions will be removed by migrating across sCEM into cathodic chamber. Meanwhile, hydronium ions generated from enhanced water splitting at the intermediate layer of BPM will electromigrate into central channel to form bicarbonate. By controlling the current, the potassium carbonate eluent can be manipulated to obtain a mixed eluent with different ratio of carbonate and bicarbonate. At least 10 mM K2CO3 eluent can be online changed modified into 10 mM KHCO3 with near-ideal Faradaic efficiency (∼92%). The device demonstrated good reproducibility, as indicated by retention time of relative standard deviation (RSD) < 0.43% and the peak area of RSD <0.93%. |
topic |
Ion chromatography Electrodialytic pH modifier Potassium carbonate Potassium bicarbonate |
url |
http://www.sciencedirect.com/science/article/pii/S2405844021003340 |
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