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采用高分辨率连续光源一氧化二氮/乙炔火焰原子吸收分光光度法,通过铝单氟化物的分子吸收测定牙膏中的氟。

Method development for the determination of fluorine in toothpaste via molecular absorption of aluminum mono fluoride using a high-resolution continuum source nitrous oxide/acetylene flame atomic absorption spectrophotometer.

机构信息

Istanbul Technical University, Faculty of Arts and Sciences, Department of Chemistry, 34469 Maslak, Istanbul, Turkey.

出版信息

Talanta. 2012 May 30;94:246-50. doi: 10.1016/j.talanta.2012.03.034. Epub 2012 Mar 28.

DOI:10.1016/j.talanta.2012.03.034
PMID:22608443
Abstract

Fluorine was determined via the rotational molecular absorption line of aluminum mono fluoride (AlF) generated in C(2)H(2)/N(2)O flame at 227.4613 nm using a high-resolution continuum source flame atomic absorption spectrophotometer (HR-CS-FAAS). The effects of AlF wavelength, burner height, fuel rate (C(2)H(2)/N(2)O) and amount of Al on the accuracy, precision and sensitivity were investigated and optimized. The Al-F absorption band at 227.4613 nm was found to be the most suitable analytical line with respect to sensitivity and spectral interferences. Maximum sensitivity and a good linearity were obtained in acetylene-nitrous oxide flame at a flow rate of 210 L h(-1) and a burner height of 8mm using 3000 mg L(-1) of Al for 10-1000 mg L(-1)of F. The accuracy and precision of the method were tested by analyzing spiked samples and waste water certified reference material. The results were in good agreement with the certified and spiked amounts as well as the precision of several days during this study was satisfactory (RSD<10%). The limit of detection and characteristic concentration of the method were 5.5 mg L(-1) and 72.8 mg L(-1), respectively. Finally, the fluorine concentrations in several toothpaste samples were determined. The results found and given by the producers were not significantly different. The method was simple, fast, accurate and sensitive.

摘要

采用高分辨率连续光源火焰原子吸收光谱法(HR-CS-FAAS),在 C(2)H(2)/N(2)O 火焰中通过生成的单氟铝(AlF)的转动分子吸收线在 227.4613nm 处测定氟。研究并优化了 AlF 波长、燃烧器高度、燃料速率(C(2)H(2)/N(2)O)和 Al 量对准确性、精密度和灵敏度的影响。发现 227.4613nm 的 Al-F 吸收带在灵敏度和光谱干扰方面是最适合的分析线。在流速为 210L h(-1)、燃烧器高度为 8mm 的乙炔-氧化亚氮火焰中,使用 3000mg L(-1)的 Al 对 10-1000mg L(-1)的 F 进行测定,可获得最大灵敏度和良好的线性关系。通过分析加标样品和废水标准物质来测试该方法的准确性和精密度。结果与证书和加标量以及本研究期间几天的精密度(RSD<10%)非常吻合。该方法的检出限和特征浓度分别为 5.5mg L(-1)和 72.8mg L(-1)。最后,测定了几种牙膏样品中的氟浓度。发现和生产者给出的结果没有显著差异。该方法简单、快速、准确、灵敏。

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