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Ion exchanger based ion generation and removal devices. Behavior and applications.

机译:基于离子交换器的离子产生和去除装置。行为和应用程序。

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摘要

Ion exchangers have many important applications. In Ion chromatography (IC), ion exchangers are used as stationary phase and used in some of the key components. The innovations that make the modern IC the most popular techniques for ion analysis are closely related to ion exchangers.;Using the ion exchangers and inspired by some of the innovations in electrolytic devices of IC, the research in this dissertation mainly consists of four parts:;A charge detector (ChD) is a flow-through device where a cation exchange membrane (CEM) and anion exchange membrane (AEM) separating three channels. One electrode is disposed in each of the outer channels. A constant electric field is applied to the electrodes with the one on CEM side is positive relative to the one on AEM side, and the current is monitored. Any injected ions in the water carrier passing through the device produce a current signal that is directly related to the charge the ions carry, regardless of their electrochemical properties. The ChD provides a new technique for measurement of ionic solutes in solution phase.;Essentially ChD is a "deionizer", which removes ions from the central channel into the outer channels. Based on the same principle, a capillary-scale salt remover (SR) was developed to desalt the proteins prior to their entering into ESI-MS. The SR effectively removes salt ions but not the proteins, which have poorer electrophoretic mobility relative to the salts, guaranteeing the good quality of ESI-MS spectra of the salt-free proteins. Three common proteins were tested, and > 99.8% salt removal in 154 mM NaCl continuous flow at 1 muL/min with > 80% of concurrently present 20 muM proteins transmission was achieved.;The Self-Regenerating Suppressors (SRS) in IC were first time demonstrated to be used as electrodialytical buffer generator (EBG). Buffers of constant concentration but variable pH can be generated by feeding the salts of weak acids or salts of weak bases into the central channels of Anion Self-Regenerating Suppressor (ASRS) and Cation Self-Regenerating Suppressor (CSRS). Linear pH gradients with excellent linearity and reproducibility are produced by feeding the buffer reagent mixture and varying the current applied to the device.;A three-electrode EBG was developed in a configuration similar to ChD, except that a electrode is introduced into the central channel to constitute the ground while the electrode in CEM side outer channel is positive and the electrode in AEM side outer channel is negative. With chosen feed in the outer channels, the device is operated in "additive mode", where buffers of variable composition can be generated in the central channel with both controllable concentration and pH. When the polarity is reversed, the device can be operated in a "subtractive mode", where buffer components are removed from the central channel. The device can be operated in a mixed mode which incorporates both additive and subtractive mode, providing a better versatility of generating buffer pH gradients.
机译:离子交换剂有许多重要的应用。在离子色谱(IC)中,离子交换剂用作固定相,并用于某些关键组件中。使现代IC成为离子分析最流行的技术的创新与离子交换器密切相关。在离子交换器的启发下,受IC电解装置的一些创新启发,本论文的研究主要包括四个部分:电荷检测器(ChD)是一种流通设备,其中阳离子交换膜(CEM)和阴离子交换膜(AEM)分隔三个通道。一个电极设置在每个外部通道中。向电极施加恒定的电场,其中CEM侧的电极相对于AEM侧的电极为正,并监控电流。穿过设备的水载体中的任何注入离子都会产生一个电流信号,该电流信号与离子所携带的电荷直接相关,而与它们的电化学性质无关。 ChD提供了一种用于测量溶液相中离子溶质的新技术。;基本上,ChD是一种“去离子剂”,可将离子从中央通道移至外部通道。基于同样的原理,在蛋白质进入ESI-MS之前,已开发出毛细管规模的除盐剂(SR)来对蛋白质进行脱盐处理。 SR有效去除了盐离子,但没有去除蛋白质,相对于盐而言,它们的电泳迁移率较差,从而保证了无盐蛋白质的ESI-MS光谱质量良好。测试了三种常见的蛋白质,并在154 mM NaCl连续流动中以1μL/ min的速率去除了99.8%的盐,同时存在80%的同时存在的20 muM蛋白质的传递。时间证明可以用作电渗析缓冲液发生器(EBG)。通过将弱酸的盐或弱碱的盐进料到阴离子自再生抑制剂(ASRS)和阳离子自再生抑制剂(CSRS)的中央通道中,可以生成浓度恒定但pH可变的缓冲液。通过进料缓冲试剂混合物并改变施加到设备的电流,可产生具有出色线性度和重现性的线性pH梯度。;三电极EBG的结构类似于ChD,不同之处在于将电极引入中央通道当CEM侧外部通道中的电极为正而AEM侧外部通道中的电极为负时,接地。选择外部通道中的进料后,该设备将以“加性模式”运行,在该模式中,可在中央通道中以可控制的浓度和pH值生成组成可变的缓冲液。当极性相反时,该设备可以在“减法模式”下操作,在该模式下,从中央通道中删除缓冲区组件。该设备可在混合模式下操作,该模式结合了加法和减法两种模式,提供了生成缓冲液pH梯度的更好的通用性。

著录项

  • 作者

    Chen, Yongjing.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:24

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