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Computerized data treatment for an HPLC-GFAAS system for the identification and quantification of trace element compounds

机译:HPLC-GFAAS系统的计算机数据处理用于痕量元素化合物的鉴定和定量

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摘要

Liquid chromatographs, coupled with graphite furnace atomic absorption spectrometers, have been widely used for the identification and quantification of trace element compounds. The quantification of the discontinuous signals from the spectrometer defining a chromatographic band is very much a matter of judgement and therefore prone to error. This paper describes a system which links a high-performance liquid chromatograph via a ‘Brinckman’ flowthrough cup to a Hitachi Zeeman graphite furnace atomic absorption spectrometer equipped with an autosampler. The introduction of aliquots from the column effluent and the analysis sequence is computer-controlled through a home-built interface. The signals from the spectrometer are passed through an analoguedigital converter and processed by selectable algorithms. The software offers a variety of options for processing the chromatographic data, such as data smoothing, Gaussian or spline interpolation, and trapezium or Simpson integration.This system was used to separate and determine selenite and selenate in aqueous solution with absolute detection limits (3 σ) of 23 ng Se for selenite and 16 ng Se for selenate. This system can be adapted to other spectrometers, provided that the required connections to the electronics can be made.
机译:液相色谱仪与石墨炉原子吸收光谱仪结合已广泛用于痕量元素化合物的鉴定和定量。来自限定色谱带的光谱仪的不连续信号的量化在很大程度上是判断问题,因此容易出错。本文介绍了一种系统,该系统通过“ Brinckman”流通杯将高性能液相色谱仪与配备有自动进样器的Hitachi Zeeman石墨炉原子吸收光谱仪相连。从色谱柱流出液中引入等分试样和分析序列是通过家用界面由计算机控制的。来自光谱仪的信号通过模拟数字转换器并由可选算法处理。该软件提供了多种处理色谱数据的选项,例如数据平滑,高斯或样条插值以及梯形或Simpson积分。该系统用于分离和测定水溶液中的亚硒酸盐和硒酸盐,具有绝对检测限(3σ )的亚硒酸盐为23 ng Se,硒酸盐为16 ng Se。该系统可以适用于其他光谱仪,前提是可以建立到电子设备的所需连接。

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