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Atmospheric pressure, glow discharge, optical emission source for the direct sampling of liquid media

机译:大气压,辉光放电,用于直接采样液体介质的光发射源

摘要

A glow discharge spectroscopy (GDS) source operates at atmospheric pressure. One of the discharge electrodes of the device is formed by an electrolytic solution 27 containing the analyte specimen. The passage of electrical current (either electrons or positive ions) across the solution/gas phase interface causes local heating and the volatilization of the analyte species. Collisions in the discharge region immediately above the surface of the solution results in optical emission and ionization that are characteristic of the analyte elements. As such, these analyte elements can be identified and quantified by optical emission spectroscopy (OES) or mass spectrometry (MS). The device uses the analyte solution as either the cathode or anode. Operating parameters depend on the electrolyte concentration (i.e. solution conductivity) and the gap 35 between the solution surface and the counter electrode. Typical conditions include discharge currents of about 10 to about 60 mA and potentials of about 200 to about 1000 volts. Electrolyte solutions of pH, pNa or pLi values of about 0.5 to about 2 and interelectrode gaps of about 0.5 to about 3 mm produce stable plasmas where the analyte solutions are totally consumed at flow rates of up to about 2.0 mL/min.
机译:辉光放电光谱(GDS)源在大气压下运行。装置的放电电极之一由包含分析物样本的电解液 27 形成。电流(电子或正离子)通过溶液/气相界面的通过会引起局部加热和分析物种类的挥发。紧靠溶液表面上方的放电区域中的碰撞会导致光发射和电离,这是分析物元素的特征。因此,这些分析物元素可以通过光发射光谱法(OES)或质谱(MS)进行识别和定量。该设备将分析物溶液用作阴极或阳极。操作参数取决于电解质浓度(即溶液电导率)和溶液表面与对电极之间的间隙 35 。典型的条件包括约10至约60 mA的放电电流和约200至约1000伏的电势。 pH,pNa或pLi值约为0.5至2的电解质溶液以及电极间间隙约为0.5至3 mm的溶液产生稳定的血浆,其中分析物溶液以最高约2.0 mL / min的流速被完全消耗。

著录项

  • 公开/公告号US6852969B2

    专利类型

  • 公开/公告日2005-02-08

    原文格式PDF

  • 申请/专利权人 R. KENNETH MARCUS;W. CLAY DAVIS;

    申请/专利号US20030636177

  • 发明设计人 R. KENNETH MARCUS;W. CLAY DAVIS;

    申请日2003-08-07

  • 分类号H01J49/10;G01N21/69;

  • 国家 US

  • 入库时间 2022-08-21 22:19:08

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