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用电热原子吸收光谱法测定骨中铝的快速可靠方法。

Rapid and reliable method for the determination of aluminium in bone by electrothermal atomic absorption spectrometry.

作者信息

Tang S, Parsons P J, Slavin W

机构信息

Department of Environmental Health and Toxicology, State University of New York at Albany 12201, USA.

出版信息

Analyst. 1996 Feb;121(2):195-200. doi: 10.1039/an9962100195.

Abstract

A reliable method for the determination of aluminium in bone by electrothermal atomic absorption spectrometry (ETAAS) is described. Bone samples were digested in concentrated HNO3 using a closed-vessel microwave digestion system. Accurate and precise results were obtained by calibration against aqueous Al standards prepared in solutions containing 1% v/v HNO3 and 1.0 g l-1 Ca, as Ca(NO3)2, as modifier. No modifier was needed for the bone digestate. A method detection limit (3 sigma) of 0.023 microgram g-1 for bone was obtained. The between-day precision for bone digestate was about 7% at a mean concentration of 10 micrograms l-1. The method was validated against the NIST standard reference materials SRM 1486 Bone Meal and SRM 1577b Bovine Liver. To help confirm the concept of the Al in bone method, essentially the same method, with some minor modifications, was used for the determination of Al in serum and dialysis fluid. The method performance was monitored by participation in two international interlaboratory comparison programmes for serum and dialysis fluid Al available from Canada (CHUL, Québec) and the UK (Robens Institute). The performance over a 10 month period was excellent for both serum and dialysis fluid proficiency test samples distributed by these programmes.

摘要

本文描述了一种用电热原子吸收光谱法(ETAAS)测定骨中铝的可靠方法。使用密闭容器微波消解系统在浓硝酸中消化骨样品。通过在含有1%(v/v)硝酸和1.0 g/L钙(以硝酸钙形式)作为改性剂的溶液中制备的铝水溶液标准品进行校准,获得了准确而精确的结果。骨消化液无需改性剂。骨的方法检测限(3σ)为0.023微克/克。在平均浓度为10微克/升时,骨消化液的日间精密度约为7%。该方法针对美国国家标准与技术研究院(NIST)标准参考物质SRM 1486骨粉和SRM 1577b牛肝进行了验证。为了帮助确认骨中铝测定方法的概念,采用了基本相同但有一些小修改的方法来测定血清和透析液中的铝。通过参与加拿大(魁北克省CHUL)和英国(罗文斯研究所)提供的两项血清和透析液铝国际实验室间比对计划来监测方法性能。在这两项计划分发的血清和透析液能力验证样品中,10个月期间的性能均非常出色。

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