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Sample component trapping, release, and separation with membrane assemblies interfaced to electrospray mass spectrometry

机译:样品组分通过与电喷雾质谱联用的膜组件进行捕获,释放和分离

摘要

The invention provides a method and apparatus for trapping, releasing and/or separating sample components in solution passing through a channel with or without packing material present by passing ion current through the channel driven by an electric field. A portion of the ion current comprises cation and/or anion species generated from second solution flows separated from the sample solution flow path by semipermeable membranes. Cation and/or Anion ion species generated in the second solution flow regions are transferred into the sample solution flow path through ion selective semipermeable membranes. Ion current moving along the sample solution flow path is controlled by varying the composition of the second solutions and/or changing the voltage between membrane sections for a given sample solution composition. The sample composition may also be varied separately or in parallel to enhance trapping, release and/or separation efficiency and range. The invention when interfaced to an Atmospheric Pressure Ion Source, that may include Electrospray Ionization, with mass spectrometric analysis enables independent control of the on-line sample separation process and the Atmospheric Pressure Ion Source or Electrospray ionization processes.
机译:本发明提供了一种方法和设备,其通过使离子流通过电场驱动的通道,来捕获,释放和/或分离通过通道的溶液中的样品成分,该溶液中存在或不存在填充材料。离子电流的一部分包括由第二溶液流产生的阳离子和/或阴离子种类,第二溶液流通过半透膜与样品溶液流路分开。在第二溶液流动区域中产生的阳离子和/或阴离子种类通过离子选择性半透膜转移到样品溶液流动路径中。通过改变第二溶液的组成和/或对于给定的样品溶液组成改变膜部分之间的电压来控制沿着样品溶液流动路径移动的离子电流。样品组成也可以单独或平行变化,以提高捕获,释放和/或分离的效率和范围。当本发明与可以包括电喷雾电离的大气压离子源接口时,通过质谱分析,能够独立地控制在线样品分离过程和大气压离子源或电喷雾电离过程。

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