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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Investigation of a flat sheet membrane desolvator for aqueous solvent removal with inductively coupled plasma atomic emission spectrometry
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Investigation of a flat sheet membrane desolvator for aqueous solvent removal with inductively coupled plasma atomic emission spectrometry

机译:用于电感耦合等离子体原子发射光谱法去除水性溶剂的平板型膜脱溶剂剂的研究

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Results obtained from a preliminary investigation of the performance of a flat sheet membrane desolvator (FSMD) utilizing dual hydrophobic polypropylene membranes with an average pore size of 0.05 urn and a 50 ± 5 um thickness are reported. The membranes have a desolvation area of 241 cm~2. The volume-to-surface area ratio is 0.3 cm. Using the FSMD with an ultrasonic nebulizer (USN). aqueous solvent desolvation efficiencies of greater than 99.9% were obtained at all nebulizer gas flow rates investigated (0.8, 1.2, and 1.8 1 min~(-1)). This efficient desolvation occurred when the countercurrent gas flow rate was equal to or slightly greater than the applied nebulizer gas flow rate. Under these conditions preconcentration factors of 18. 44, and 590 were observed with flows of 0.8, 1.2 and 1.8 1 min~(-1), respectively. Operating with countercurrent gas flow rates much higher than the nebulizer gas flow rates leads to a significant reduction in analyte flux, thus increasing detection limits. Dependingon the nebulizer and countercurrent gas flow rate conditions, the FSMD contributed between 10-40% to the overall analyte loss in the system. The lowest detection limit observed for aqueous copper with the USN-FSMD system is 0.4 ppb at nebulizer and countercurrent gas flow rates of 1.2 and 1.4 1 min~(-1), respectively. At this nebulizer gas flow rate, replacing the FSMD in the system with a commercial tubular membrane desolvator. MDX100. gave a lowest Cu detection limit of 0.2 ppb at a countercurrent gas flow rate of 1.2 1 min~(-1). These detection limits represents improvements over the 0.7 and 8 ppb obtained with USN and pneumatic nebulization, respectively.
机译:报道了对使用平均孔径为0.05 urn,厚度为50±5 um的双疏水性聚丙烯膜的平板膜脱溶剂剂(FSMD)的性能进行初步研究获得的结果。膜的去溶剂化面积为241cm 2。体积与表面积之比为0.3cm。将FSMD与超声雾化器(USN)一起使用。在研究的所有雾化器气体流速(0.8、1.2和1.8 1 min〜(-1))下,获得的水性溶剂去溶剂效率均高于99.9%。当逆流气体流速等于或略大于所施加的雾化器气体流速时,就会发生这种有效的脱溶剂作用。在这些条件下,预浓缩因子分别为18、44和590,流量分别为0.8、1.2和1.8 1 min〜(-1)。在逆流气体流速远高于雾化器气体流速的情况下运行会导致分析物通量显着降低,从而提高了检测限。根据雾化器和逆流气体流速条件,FSMD对系统中总体分析物损失的贡献在10%至40%之间。在雾化器和逆流气体流速分别为1.2和1.4 1 min〜(-1)的条件下,使用USN-FSMD系统观察到的对含水铜的最低检测极限分别为0.4 ppb。在这种雾化器气体流速下,用商用管状膜脱溶剂器替换系统中的FSMD。 MDX100。在1.2 1 min〜(-1)的逆流气体流速下,铜的最低检出限为0.2 ppb。这些检测限分别代表了USN和气动雾化所获得的0.7 ppb和8 ppb的改进。

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