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A Graphite Furnace Electrothermal Vaporization System for Inductively Coupled Plasma Atomic Emission Spectrometry

机译:用于电感耦合等离子体原子发射光谱法的石墨炉电热汽化系统

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摘要

An improved graphite furnace electrothermal vaporization device equipped with an autosampler for inductively coupled plasma atomic emission spectrometry is presented. The transport losses of eight selected analytes in the individual segments of the device were determined by means of the radiotracer technique by applying amounts traced comparable to those to be determined in real samples. The results obtained from the radiotracer study were the basis for further improvement of the interface design, leading to considerable increase of the total transport efficiency, which finally was found to be between 26 (for Cr) and 57% (for Ga). The whole system consists of a graphite furnace vaporizer, a power supply, a gas flow box, and an autosampler with incorporated microbalance. The temperature program, gas flows, and autosampler functions are controlled by a data station which also provides the data acquisition and processing of the transient signals. The performance parameters of the developed system were evaluated using aqueous standard solutions. Absolute limits of detection for most analytes were between 0.1 and 1 ng, and for As, K, Ni and Pb, they were between 2 and 3.2 ng.
机译:提出了一种改进的配有自动进样器的石墨炉电热汽化装置,用于电感耦合等离子体原子发射光谱法。借助于放射性示踪技术,通过施加与在真实样品中确定的可比量相媲美的痕量,确定了设备各个部分中八种选定分析物的传输损失。从放射性示踪剂研究获得的结果是进一步改进界面设计的基础,从而导致总传输效率的显着提高,最终发现总传输效率在26(Cr)和57%(Ga)之间。整个系统由一个石墨炉蒸发器,一个电源,一个气流箱和一个带有微量天平的自动进样器组成。温度程序,气流和自动进样器功能由数据站控制,该数据站还提供瞬态信号的数据采集和处理。使用水性标准溶液评估了开发系统的性能参数。大多数分析物的绝对检测极限在0.1到1 ng之间,而As,K,Ni和Pb的绝对极限在2到3.2 ng之间。

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