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On-Line Gas-Free Electrodialytic Eluent Generator for Capillary Ion Chromatography

机译:毛细管离子色谱在线无气体电渗析洗脱液发生器

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Both low-and high-pressure,gas-free,capillary-scale electrodialytic generators for eluents in ion chromatography are described.While the low-pressure devices rely on planar or tubular membranes,the high-pressure devices rely on ion-exchange beads used both as one-way ionic gates and as ball-on-seat valves to provide sealing.The high-pressure device is easily implemented in the form of a commercial cross fitting and can withstand at least 1400 psi.By design these devices do not produce gas in the eluent channel;hence,it is not necessary to remove gas afterward.With appropriate electrolytes and electrode polarities,such devices can produce either acid or base or salt In regard to ionic transport,the behavior of these devices fully corresponds to that of a semiconductor diode.To our knowledge,this is the first time such complete equivalence of ion transport through ion-exchange media and with the more familiar example of electron transport through a semiconductor diode under both forward-and reverse-biased conditions have been demonstrated.Reverse bias can be applied to minimize/ prevent Donnan-forbidden leakage or ion exchange.Even with 4 M KOH in the electrode compartments and 4 mu L/ min water flowing through the eluent channel,with a reverse bias of-12 V,the leakage KOH concentration is <30 mu M,whereas the KOH concentration with zero voltage applied,hereinafter termed open circuit penetration (OCP),is 1600 mu M.It is suggested that this OCP occurs not as much through Donnan-forbidden leakage but via ion exchange.Chromatograms and reproducibility data are presented for both isocratic and gradient chromatography,using ion-exchange,latex-modified,open tubular and packed monolithic columns.
机译:描述了用于离子色谱法中洗脱液的低压和高压,无气,毛细管规模的电渗析发生器。虽然低压设备依赖于平面或管状膜,但高压设备依赖于所用的离子交换珠既可以用作单向离子闸门,也可以用作座球阀以提供密封。高压设备可以通过商业交叉接头轻松实现,并且可以承受至少1400 psi。根据设计,这些设备不会产生洗脱液通道中的气体;因此无需随后除去气体。具有适当的电解质和电极极性,此类设备可产生酸或碱或盐。在离子迁移方面,这些设备的行为完全符合据我们所知,这是第一次通过离子交换介质完全等效的离子传输,并且是在正向和反向两种情况下通过半导体二极管进行电子传输的更熟悉的例子。反向偏置可用于最小化/防止Donnan禁止的泄漏或离子交换。即使在电极隔室中使用4 M KOH,并且在淋洗液通道中流过4μL / min的水时,反向偏置电压为12 V,泄漏KOH浓度<30μM,而施加零电压的KOH浓度为1600μM,以下称为开路穿透(OCP),建议此OCP发生的次数不多通过离子交换,乳胶改性,开放管式和填充式整体式色谱柱,给出了等度和梯度色谱的色谱图和重现性数据。

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