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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Use of fractional factorial design for optimization of digestion procedures followed by multi-element determination of essential and non-essential elements in nuts using ICP-OES technique
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Use of fractional factorial design for optimization of digestion procedures followed by multi-element determination of essential and non-essential elements in nuts using ICP-OES technique

机译:使用分数阶乘设计优化消化程序,然后使用ICP-OES技术对坚果中的必需和非必需元素进行多元素测定

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摘要

Two digestion procedures have been tested on nut samples for application in the determination of essential (Cr, Cu, Fe, Mg, Mn, Zn) and non-essential (Al, Ba, Cd, Ph) elements by inductively coupled plasma-optical emission spectrometry (ICP-OES). These included wet digestions with HNO3/H2SO4 and HNO3/H2SO4/H2O2. The later one is recommended for better analytes recoveries (relative error < 11%). Two calibrations (aqueous standard and standard addition) procedures were studied and proved that standard addition was preferable for all analytes. Experimental designs for seven factors (HNO3, H2SO4 and H2O2 volumes, digestion time, pre-digestion time, temperature of the hot plate and sample weight) were used for optimization of sample digestion procedures. For this purpose Plackett-Burman fractional factorial design, which involve eight experiments was adopted. The factors HNO3 and H2O2 volume, and the digestion time were found to be the most important parameters. The instrumental conditions were also optimized (using peanut matrix rather than aqueous standard solutions) considering radio-frequency (rf) incident power. nebulizer argon gas flow rate and sample uptake flow rate. The analytical performance, such as limits of detection (LOD < 0.74 mu g g(-1)), precision of the overall procedures (relative standard deviation between 2.0 and 8.2%) and accuracy (relative errors between 0.4 and 11%) were assessed statistically to evaluate the developed analytical procedures. The good agreement between measured and certified values for all analytes (relative error < 11%) with respect to IAEA-331 (spinach leaves) and IAEA-359 (cabbage) indicates that the developed analytical method is well suited for further studies on the fate of major elements in nuts and possibly similar matrices. (c) 2006 Elsevier B.V. All rights reserved.
机译:已通过螺母样品上的两种消解程序测试,用于通过电感耦合等离子体光发射测定必需元素(Cr,Cu,Fe,Mg,Mn,Zn)和非必需元素(Al,Ba,Cd,Ph)光谱法(ICP-OES)。其中包括用HNO3 / H2SO4和HNO3 / H2SO4 / H2O2湿消化。建议使用后一种以提高分析物的回收率(相对误差<11%)。研究了两种校准方法(水性标准液和标准添加液),并证明标准添加液对所有分析物均适用。针对七个因素(HNO3,H2SO4和H2O2的体积,消解时间,预消化时间,热板温度和样品重量)的实验设计用于优化样品消解程序。为此,采用了涉及八项实验的Plackett-Burman分数阶乘设计。 HNO3和H2O2的体积因素以及消解时间是最重要的参数。考虑到射频(rf)入射功率,还优化了仪器条件(使用花生基质而不是水性标准溶液)。雾化器的氩气流速和样品吸收流速。对分析性能进行统计评估,例如检测限(LOD <0.74 mu gg(-1)),整个过程的精度(相对标准偏差在2.0和8.2%之间)和准确性(相对误差在0.4和11%之间)。评估开发的分析程序。相对于IAEA-331(菠菜叶)和IAEA-359(卷心菜),所有分析物的测量值和认证值(相对误差<11%)之间的良好一致性表明,开发的分析方法非常适合进一步研究命运坚果和可能相似基质中的主要元素含量。 (c)2006 Elsevier B.V.保留所有权利。

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