首页> 外文期刊>Journal of Agricultural and Food Chemistry >TRACE ELEMENT DETERMINATIONS IN FOODS AND BIOLOGICAL SAMPLES USING INDUCTIVELY COUPLED PLASMA ATOMIC EMISSION SPECTROMETRY AND FLAME ATOMIC ABSORPTION SPECTROMETRY
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TRACE ELEMENT DETERMINATIONS IN FOODS AND BIOLOGICAL SAMPLES USING INDUCTIVELY COUPLED PLASMA ATOMIC EMISSION SPECTROMETRY AND FLAME ATOMIC ABSORPTION SPECTROMETRY

机译:电感耦合等离子体原子发射光谱和火焰原子吸收光谱法测定食品和生物样品中的微量元素

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摘要

Elemental food composition data are important to both consumers and health professionals, and recent food labeling legislation has highlighted this need. Rugged, accurate, and precise analytical methods are needed for elemental analyses, and atomic spectroscopic techniques are the best choice because of their widespread availability and ease of use. Flame atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods were compared, focusing on the detection capability, precision, and accuracy obtainable with each technique. Ca, Cu, Cr, Fe, Mg, Mn, and Zn were determined by AAS, and Ca, Co, Cu, Cr, Fe, Mg, Mn, Ni, P, V, and Zn were determined simultaneously using ICP-AES. Detection limits for both techniques were typically in the part per billion range and in all cases were sufficient for the accurate quantitation of elements of nutritional interest. Precisions obtainable with both techniques were similar, and both provided accurate elemental food composition data based on the analysis of four certified reference materials and a variety of foods using either a wet ash or dry ash sample preparation procedure.
机译:食品中的基本成分数据对消费者和卫生专业人员均很重要,最近的食品标签立法强调了这一需求。元素分析需要坚固,准确和精确的分析方法,而原子光谱技术由于其广泛的可用性和易用性是最佳选择。比较了火焰原子吸收光谱法(AAS)和电感耦合等离子体原子发射光谱法(ICP-AES),着重介绍了每种技术可获得的检测能力,精度和准确性。通过AAS测定Ca,Cu,Cr,Fe,Mg,Mn和Zn,并使用ICP-AES同时测定Ca,Co,Cu,Cr,Fe,Mg,Mn,Ni,P,V和Zn。两种技术的检测极限通常在十亿分之一的范围内,并且在所有情况下都足以对营养元素进行精确定量。两种技术均可获得的精度相似,并且都基于湿灰或干灰样品制备程序对四种认证参考材料和多种食品的分析,从而提供了准确的基本食品成分数据。

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