首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Multivariate study in chemical vapor generation for simultaneous determination of arsenic,antimony,bismuth,germanium,tin,selenium,tellurium and mercury by inductively coupled plasma optical emission spectrometry
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Multivariate study in chemical vapor generation for simultaneous determination of arsenic,antimony,bismuth,germanium,tin,selenium,tellurium and mercury by inductively coupled plasma optical emission spectrometry

机译:电感耦合等离子体发射光谱法同时测定化学蒸气产生的多变量研究同时测定砷,锑,铋,锗,锡,硒,碲和汞

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Chemical vapor generation(CVG)of arsenic,antimony,bismuth,germanium,tin,selenium,tellurium and mercury was investigated in a multivariate way.Similarities and differences between the elements were highlighted by principal component analysis and the combined effect of operating conditions on the analytical signals by CVG-ICP-OES studied according to empirical modeling and experimental design methods.In order to better understand the observed trends,variations of plasma excitation conditions while changing reductant concentration,sample acidity and carrier gas flow rate were investigated by using Pb II 220.353 nm to Pb I 217.000 nm line intensity ratio as diagnostic parameter.Changes in the vapor generation efficiencies were also evaluated by CVG-ETAAS measurements.In this way,it was possible to distinguish the effects on the vapor generation efficiency from those on the ICP source.Moreover,the results made it possible to select the operating conditions suitable for simultaneous multi-elemental determination.By using 2% NaBH_4,0.8 M HCl and Ar flow rate of 0.25 L min~(-1),optimal plasma robustness and excellent analytical performances were obtained for all the analytes,despite the different chemical conditions required for the vapor generation.Particularly,it was found that Sn and Ge can be reasonably determined together with the other elements,with satisfactory analytical performances,although with a notable decrease in sensitivity with respect to their optimum.Detection limits for simultaneous determination of As,Sb,Bi,Ge,Sn,Se,Te and Hg were 0.13,0.14,0.13,0.61,1.62,0.19,1.32 and 0.21 mug L~(-1),respectively.Finally,high time-correlation among the analytical and background signals was highlighted,thereby efficiently compensating for signal fluctuations by internal standardization and improving both repeatability and background stability.
机译:用多变量方法研究了砷,锑,铋,锗,锡,硒,碲和汞的化学蒸气生成(CVG)。根据经验模型和实验设计方法研究了CVG-ICP-OES的分析信号。为了更好地了解观察到的趋势,使用Pb II研究了等离子体激发条件随还原剂浓度,样品酸度和载气流速的变化。 220.353 nm与Pb I 217.000 nm的线强度比作为诊断参数。通过CVG-ETAAS测量还评估了蒸气产生效率的变化。通过这种方法,可以区分对蒸气产生效率的影响与对ICP的影响此外,结果使选择适用于同时多电芯的工作条件成为可能通过使用2%NaBH_4、0.8 M HCl和0.25 L min〜(-1)的Ar流速,尽管产生蒸汽所需的化学条件不同,但所有分析物均具有最佳的等离子体稳健性和出色的分析性能特别是,发现可以合理地确定Sn和Ge以及其他元素,具有令人满意的分析性能,尽管相对于它们的最佳灵敏度明显降低。同时测定As,Sb,Bi, Ge,Sn,Se,Te和Hg分别为0.13、0.14、0.13、0.61、1.62、0.19、1.32和0.21马克杯L〜(-1)。最后,分析和背景信号之间的高时间相关性得到了强调,从而通过内部标准化有效地补偿信号波动,并提高重复性和背景稳定性。

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