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火焰原子吸收分光光度法(AAS)与分子吸收分光光度法(MAS)的比较灵敏度

Comparative sensitivities of flame atomic absorption spectrophotometry (AAS) and molecular absorption spectrophotometry (MAS).

作者信息

Zak B, Karcher R E, Baginski E S, Epstein E

出版信息

Ann Clin Lab Sci. 1976 Sep-Oct;6(5):430-9.

PMID:970929
Abstract

A sensitivity comparison was made between conventional atomic absorption spectrophotometry (AAS) and conventional molecular absorption spectrophotometry (MAS) for the serum trace metals, copper, iron, and zinc. The sensitivity aspect considered was absorbances was obtained for concentrations in the solutions analyzed using unit lightpaths of 1 cm and 10 cm for MAS and AAS, respectively. A distinction was made between procedural sensitivity and measurement sensitivity where the latter represents molar absorptivity. Some was given to the concepts of procedural sensitization by concentration of the analyte through the use of lyophilization, extraction or ashing. The misuse of data obtained with scale expanders is described as a commonly occurring phenomenon of both AAS and MAS and a source of confusion in the understanding of measurement sensitivity.

摘要

对传统原子吸收分光光度法(AAS)和传统分子吸收分光光度法(MAS)测定血清中的痕量金属铜、铁和锌的灵敏度进行了比较。所考虑的灵敏度方面是分别使用MAS和AAS的1 cm和10 cm单位光程,对分析溶液中的浓度获得吸光度。在程序灵敏度和测量灵敏度之间做了区分,其中后者代表摩尔吸光系数。还讨论了通过冻干、萃取或灰化对分析物进行浓缩从而实现程序增敏的概念。描述了使用量程扩展器获得的数据被误用这一AAS和MAS中常见的现象,以及它在理解测量灵敏度方面造成混淆的情况。

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