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Internal standardization in axially viewed inductively coupled plasma optical emission spectrometry (ICP OES) combined with pneumatic nebulization and aerosol desolvation

机译:轴向观察的电感耦合等离子体发射光谱(ICP OES)与气动雾化和气溶胶去溶剂化的内部标准化

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Internal standardization using axially viewed inductively coupled plasma optical emission spectrometry (ICP OES) combined with pneumatic nebulization/aerosol desolvation was evaluated in the present study. The sample and internal standard (IS) solutions were mixed on-line. Spectral lines of In, Y, Ga and Ar were evaluated for internal standardization under robust plasma conditions to overcome matrix effects on Ba, Cd, Co, Cr, Zn, Pb, Sr, Mn, Cu, Ni and V quantification in digests of plant materials. In(n)230.606 nm was only effective for Cd and Pb whereas Y(II)371.029 nm or Ga(I)417.206 nm or Ga(i)294.364 nm were effective for the other investigated elements. Argon was not effective, suggesting that matrix effects were related to aerosol generation and its transport to the ICP. By using internal standardization accurate results were obtained for certified reference samples of plant materials and the relative standard deviation (RSD) was lower than 1% even for solutions with high acid concentration. The limits of quantification (LOQ) of Cr(I)357.869, Cr(II)267.716, Cu(i)327.393, Cu(II)224.700, Cd(I)228.802, Cd(II) 214.440, Pb(I)217.000, Pb(II)220.353, Zn(I)213.857, Zn(II)206.200, Sr(n)407.771, Ba(II)233.527, V(II)292.464, Mn(II)257.610, Ni(II)232.003 and Co(n)228.616 nm were 0.070, 0.041, 0.065, 0.094, 0.033, 0.056, 1.33, 0.45, 0.065, 0.10, 0.005, 0.20, 0.12, 0.015, 0.10 and 0.047 ng g~(-1) respectively. It was concluded that the method is feasible for routine applications.
机译:在本研究中评估了使用轴向观察的电感耦合等离子体发射光谱法(ICP OES)结合气动雾化/气溶胶去溶剂化的内部标准化。在线混合样品和内标(IS)溶液。对In,Y,Ga和Ar的谱线在强大的等离子体条件下进行了内标评估,以克服基质对植物消化液中Ba,Cd,Co,Cr,Zn,Pb,Sr,Mn,Cu,Ni和V定量的影响材料。 In(n)230.606 nm仅对Cd和Pb有效,而Y(II)371.029 nm或Ga(I)417.206 nm或Ga(i)294.364 nm对其他元素有效。氩气无效,表明基质效应与气雾剂的产生及其向ICP的传输有关。通过使用内部标准化,即使对于高酸浓度的溶液,也能获得认证的植物材料参考样品的准确结果,相对标准偏差(RSD)仍低于1%。 Cr(I)357.869,Cr(II)267.716,Cu(i)327.393,Cu(II)224.700,Cd(I)228.802,Cd(II)214.440,Pb(I)217.000的定量限(LOQ) Pb(II)220.353,Zn(I)213.857,Zn(II)206.200,Sr(n)407.771,Ba(II)233.527,V(II)292.464,Mn(II)257.610,Ni(II)232.003和Co( n)228.616nm分别为0.070、0.041、0.065、0.094、0.033、0.056、1.33、0.45、0.065、0.10、0.005、0.20、0.12、0.015、0.10和0.047 ng g(-1)。结论是该方法对常规应用是可行的。

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