Abstract Preliminary survey of matrix effects in the Microwave-sustained, Inductively Coupled Atmospheric-pressure Plasma (MICAP)
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Preliminary survey of matrix effects in the Microwave-sustained, Inductively Coupled Atmospheric-pressure Plasma (MICAP)

机译:微波持续,电感耦合大气压等离子体(MICAP)中矩阵效应的初步调查

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AbstractMatrix effects caused by Na and Al in the nitrogen Microwave-sustained, Inductively Coupled, Atmospheric-pressure Plasma (MICAP) were investigated. Easily ionizable elements, such as Na, can suppress or enhance the analyte signal; Al is shown here to produce a similar effect. The influence of these matrices was examined for 18 emission lines of 8 analyte atoms and ions having a wide range of excitation and ionization energies. The plasma operating conditions were fixed during all experiments at a total nitrogen flow of 19.4Lmin?1and a microwave power of 1.5kW. An Fe solution was used to determine the excitation temperature of the plasma by the Boltzmann plot method at selected matrix concentrations. In addition, vertical emission profiles of the plasma were measured. The matrix effect becomes worse at higher concentrations of an easily ionizable element. The effect is caused not only by a shift in ionization equilibrium but also by a possible change in plasma ionization temperature. Correction methods to reduce the matrix effects were tested and are discussed.Graphical abstractDisplay OmittedHighlights
机译:<![cdata [ 抽象 研究了Na和Al在氮气微波持续,电感耦合,大气压等离子体(MICAP)中引起的矩阵效应。易于电离元素,如Na,可以抑制或增强分析物信号; Al在此显示以产生类似的效果。检查这些基质的影响为8个分析物原子的18条排放线,以及具有宽范围激发和电离能量的离子。在所有氮气流动的所有实验中固定等离子体操作条件19.4Lmin:sup =“post”>α1和1.5kw的微波功率。使用Fe溶液在选定的基质浓度下通过Boltzmann图谱法测定等离子体的激发温度。另外,测量血浆的垂直发射型材。基质效应在较高浓度的易于电离元件处变得更糟。效果不仅通过电离平衡的偏移而且通过等离子体电离温度的可能变化引起。测试了减少矩阵效应的校正方法并进行了讨论。 图形抽象 显示省略 亮点

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