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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Optimisation of ICP-MS collision/reaction cell conditions for the determination of elements likely to be interfered (V, Cr, Fe, Co, Ni, As and Se) in foodstuffs
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Optimisation of ICP-MS collision/reaction cell conditions for the determination of elements likely to be interfered (V, Cr, Fe, Co, Ni, As and Se) in foodstuffs

机译:ICP-MS碰撞/反应池条件的优化,用于确定食品中可能干扰的元素(V,Cr,Fe,Co,Ni,As和Se)

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摘要

A strategy for the accurate determination in foodstuffs of seven elements liable to be interfered with (V, Cr, Fe, Co, Ni, As and Se), was successfully applied. Firstly, to reduce spectroscopic interferences, four influential factors (hexapole and quadrupole bias, helium and hydrogen flows) of the collision/reaction cell device were optimised through the experimental design methodology. Secondly, non-spectroscopic interferences, which may severely disturb the analysis of matrices containing large amounts of non-target elements, were significantly reduced by a limited decrease in the flow rate of the optimum initial nebuliser rather than with a specific time-consuming dilution. Finally, the optimised multi-element method was subjected to a full validation that demonstrated its acceptable analytical performance.
机译:成功应用了一种在食品中准确测定容易受到干扰的7种元素(V,Cr,Fe,Co,Ni,As和Se)的策略。首先,为减少光谱干扰,通过实验设计方法优化了碰撞/反应池装置的四个影响因素(六极和四极偏压,氦气和氢流)。其次,非光谱干扰可能会严重干扰包含大量非目标元素的基质的分析,这是通过最佳初始雾化器流速的有限降低而不是特定的费时稀释来显着降低的。最后,对经过优化的多元素方法进行了全面验证,证明了其可接受的分析性能。

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