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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Matrix effects during trace element analysis in plant samples by inductively coupled plasma atomic emission spectrometry with axial view configuration and pneumatic nebulizer
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Matrix effects during trace element analysis in plant samples by inductively coupled plasma atomic emission spectrometry with axial view configuration and pneumatic nebulizer

机译:具有轴向视图配置和气动雾化器的电感耦合等离子体原子发射光谱法在植物样品中微量元素分析过程中的基质效应

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Plant sample matrix effects have been investigated during trace element analysis by inductively coupled plasma atomic emission spectrometry with axial view and pneumatic nebulizer, Eight elements often analyzed in environmental samples were studied: As, Cd, Co, Cr, Cu, Ni, Pb and Se. To simulate the effects caused by digested plant samples, the spectral line profiles of analytes were measured on solutions containing various concentrations of elements encountered in plant matrix such as K, Ca and Mg. Depressions in the emission intensities occurred and were more dramatic with high concentrations of the concomitant species. The inter-element effects were found to be caused by the matrix amount entering into the central channel of the plasma. In fact, energy consumed for droplets desolvation and particles of salts vaporization leads to lower plasma temperatures and produce changes in excitation mechanisms. Ion emissions were especially affected. The matrix effects can be removed using a high generator power (1.4 kW) and a moderate uptake flow rate of solution into the plasma (pump speed: 15 rev. / min) The use of the natural plant sample led to the same conclusions. These operating conditions decreased the sensitivity but routine analyses of the plant material could be carried out.
机译:通过轴向耦合和气动雾化器电感耦合等离子体原子发射光谱法对痕量元素进行分析,研究了植物样品基质的影响。研究了环境样品中经常分析的八种元素:砷,镉,钴,铬,铜,镍,铅和硒。为了模拟由消化的植物样品引起的影响,在含有各种浓度的植物基质(例如钾,钙和镁)中遇到的元素的溶液中,测量了分析物的光谱线轮廓。伴随着高浓度的伴随物种,发射强度出现了降低,并且更加严重。发现元素间效应是由进入等离子体中心通道的基质量引起的。实际上,液滴去溶剂化和盐汽化颗粒所消耗的能量导致较低的等离子体温度并引起激发机理的变化。离子排放尤其受到影响。使用高发生器功率(1.4 kW)和中等吸收溶液进入血浆的流速(泵速:15转/分钟),可以消除基质效应。使用天然植物样品得出相同的结论。这些操作条件降低了灵敏度,但是可以对植物材料进行常规分析。

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