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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Investigation of non-spectroscopic interference and internal standardization method in axially and radially viewed inductively coupled plasma optical emission spectrometry using cross-flow and ultrasonic nebulization
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Investigation of non-spectroscopic interference and internal standardization method in axially and radially viewed inductively coupled plasma optical emission spectrometry using cross-flow and ultrasonic nebulization

机译:横流和超声雾化在轴向和径向观察的电感耦合等离子体发射光谱中的非光谱干扰和内标方法的研究

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摘要

The matrix effects on radially and axially viewed inductively coupled plasma optical emission spectrometry (ICP-OES) equipped with cross-flow (CFN) and ultrasonic nebulizer (USN) were evaluated for the determination of multi-elements in various sample matrices. Na, Ca, Mg, Al, Mn, Cu, Si and Fe were used as matrix elements and the change in light intensities of selected analyte elements with a wide range of spectral lines differing in energy sum (summation of excitation energy and first ionization energy) were compared. From the correlation of the change in line intensity and energy sum of analyte elements and the second ionization energy of matrix elements, a novel observation on non-spectroscopic interference is described. Based on our experimental results, two types of non-spectroscopic interferences resulting from different matrix elements were observed, regardless of the sample introduction systems or observation modes. Moreover, besides the fact that the second ionization energy of matrix elements shows unique effect on the change in the analyte spectral lines, bigger matrix effect was found for analytical lines possessing energy sum larger than 14.03 eV in the presence of matrix elements with second ionization energy lower than 15.64 eV. The applicability of RF power adjustment and internal standardization were investigated for the compensation for matrix interferences. It was found that satisfactory corrected results can be achieved by the use of single internal standard as the second ionization energy of matrix element is higher than 15.75 eV. However, in view of the different depressive effect occurring in the analyte spectral lines, the the similarity in energy sum of analytical lines and internal standard has been confirmed by using two internal standards for compensating the matrix interferences caused by matrix elements with second ionization energy lower than 15.64 eV.
机译:评估了矩阵对配备了错流(CFN)和超声雾化器(USN)的径向和轴向观察的电感耦合等离子体发射光谱(ICP-OES)的影响,以确定各种样品基质中的多元素。将Na,Ca,Mg,Al,Mn,Cu,Si和Fe用作基质元素,选定的分析物元素的光强度变化具有大范围的谱线,其能量总和不同(激发能和第一电离能的总和) )进行比较。从分析物元素的线强度和能量总和的变化与基质元素的第二电离能的相关性,描述了一种对非光谱干扰的新观察。根据我们的实验结果,观察到两种类型的由不同基质元素引起的非光谱干扰,而与样品引入系统或观察模式无关。此外,除了基质元素的第二电离能对分析物谱线的变化具有独特的影响外,在存在具有第二电离能的基质元素的情况下,对于能量总和大于14.03 eV的分析线,发现更大的基质效应低于15.64 eV。研究了射频功率调整和内部标准化的适用性,以补偿矩阵干扰。发现使用单一内标可以达到满意的校正结果,因为基质元素的第二电离能高于15.75 eV。然而,鉴于分析物谱线中发生的不同抑制作用,已通过使用两个内标补偿第二离子化能量较低的基体元素引起的基体干扰,从而确认了分析线和内标在能量总和上的相似性。高于15.64 eV。

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