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用于石墨炉分子吸收光谱法测定氟的生物样品矿化方法的评估

Evaluation of biological sample mineralisation methods for the determination of fluorine by graphite furnace molecular absorption spectrometry.

作者信息

Gómez M, Rodríguez I, Cámara C, Palacios M A

机构信息

Departamento de Química Analítica, Facultad de Ciencias Químicas, Universidad Complutense, Madrid, Spain.

出版信息

Analyst. 1990 May;115(5):553-7. doi: 10.1039/an9901500553.

Abstract

Various mineralisation methods were evaluated as means of treating different liquid and solid biological samples for the determination of fluorine by the formation of aluminium monofluoride in an electrothermal graphite furnace and molecular absorption spectrometry (AIF-MAS). Simple sample dilution and the use of 0.01 M Al3+ + 0.01 M Sr2+ solution as a matrix modifier are sufficient to determine the fluorine content in most liquid samples, although some require the addition of 0.3 M ammonium nitrate to the matrix modifier solution in order to diminish background absorbance. In solid samples, treatment methods routinely used with fluoride ion-selective electrodes such as microdiffusion, furnace ashing - microdiffusion and oxygen flask combustion, were tested for compatibility with AIF-MAS. The results were compared with those obtained with a fluoride ion-selective electrode. The proposed mineralisation methods were checked for applicability to different plants, foodstuffs and other biological materials. Some of the methods gave an over-all precision of better than 10%, which is often acceptable, and all methods gave recoveries above 80%. Differences between labile + ionic fluoride and total fluorine can be established by sample treatment.

摘要

评估了各种矿化方法,作为处理不同液体和固体生物样品的手段,通过在电热石墨炉中形成一氟化铝并采用分子吸收光谱法(AIF-MAS)来测定氟。简单的样品稀释以及使用0.01 M Al3+ + 0.01 M Sr2+溶液作为基体改进剂足以测定大多数液体样品中的氟含量,不过有些样品需要在基体改进剂溶液中添加0.3 M硝酸铵以降低背景吸收。对于固体样品,测试了常规用于氟离子选择电极的处理方法,如微扩散、炉内灰化 - 微扩散和氧瓶燃烧,以检验其与AIF-MAS的兼容性。将结果与使用氟离子选择电极获得的结果进行比较。检查了所提出的矿化方法对不同植物、食品和其他生物材料的适用性。其中一些方法的总体精密度优于10%,这通常是可以接受的,并且所有方法的回收率均高于80%。通过样品处理可以确定不稳定 + 离子氟与总氟之间的差异。

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