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Manganese and zinc analysis in milk by microwave oven digestion and platform graphite furnace atomic absorption spectrometry

机译:微波消解-平台石墨炉原子吸收光谱法分析牛奶中的锰锌

摘要

A conventional microwave oven acid digestion system employing PTFE reactors was tested for sample digestion prior to the analysis of Mn and Zn in milk. The digestion procedure was based on sample dissolution with nitric acid using microwave heating in closed vessels. Sample treatment time in the microwave oven was reduced to 15 min. The resulting solutions, analyzed for Zn by flame atomic absorption spectrometry (FAAS) and by platform graphite furnace atomic absorption spectrometry with Zeeman background correction for Zn and Mn, showed good agreement with the certified milk values (SRM-1549 nonfat milk powder, National Institute of Standards and Technology), and results were comparable to those obtained by dry mineralization in real samples. The precision of the method was about 6% for Mn and 5% for Zn by graphite furnace atomic absorption spectrometry (GFAAS) with limits of detection of 0.07 and 0.28 μg L-1, respectively. The digestion procedure can be used to determine Zn by FAAS and Mn by GFAAS in milk analysis. Using GFAAS, Zn can also be measured in milk fractions where it is found in smaller concentrations. © 1995 American Chemical Society.
机译:在分析牛奶中的Mn和Zn之前,对采用PTFE反应器的常规微波炉酸消解系统进行了样品消解测试。消解程序是基于在封闭容器中使用微波加热,用硝酸溶解样品的结果。微波炉中的样品处理时间减少到15分钟。所得溶液通过火焰原子吸收光谱法(FAAS)和平台石墨炉原子吸收光谱法以及Zeeman背景校正法对Zn和Mn的锌进行分析,显示与认证的牛奶价值(SRM-1549脱脂奶粉,国家研究所的标准和技术),其结果与真实样品中通过干矿化获得的结果相当。通过石墨炉原子吸收光谱法(GFAAS),该方法的精密度对于锰约为6%,对于锌约为5%,检测极限分别为0.07和0.28μgL-1。该消解程序可用于牛奶分析中的FAAS测定锌和GFAS测定锰。使用GFAAS,还可以在牛奶中的锌含量较低的地方对其进行测量。 ©1995美国化学学会。

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