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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Parallel path nebulizer:Critical parameters for use with microseparation techniques combined with inductively coupled plasma mass spectrometry
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Parallel path nebulizer:Critical parameters for use with microseparation techniques combined with inductively coupled plasma mass spectrometry

机译:平行路径雾化器:与微分离技术和电感耦合等离子体质谱联用的关键参数

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Four different,low flow parallel path Mira Mist CE nebulizers were evaluated and compared in support of an ongoing project related to the use of microseparation techniques interfaced to inductively coupled plasma mass spectrometry for the quantification of cobalamin species(Vitamin B12).For the characterization of the different Mira Mist CE nebulizers,the nebulizer orientation as well as the effect of methanol on analytical response was the focus of the study.The position of the gas outlet on the nebulizer which consistently provided the maximum signal was when it was rotated to the 11 o'clock position when the nebulizer is viewed end-on.With this orientation the increased signal may be explained by the fact that the cone angle of the aerosol is such that the largest percentage of the aerosol is directed to the center of the spray chamber and consequently into the plasma.To characterize the nebulizer's performance,the signal response of a multielement solution containing elements with a variety of ionization potentials was used.The selection of elements with varying ionization energies and degrees of ionization was essential for a better understanding of observed increases in signal enhancement when methanol was used.Two different phenomena contribute to signal enhancement when using methanol:the first is improved transport efficiency and the second is the"carbon enhancement effect".The net result was that as much as a 30-fold increase in signal was observed for As and Mg when using a make-up solution of 20% methanol at a 15 muL/min flow rate which is equivalent to a net volume of 3 muL/min of pure methanol.
机译:对四种不同的低流量平行路径Mira Mist CE雾化器进行了评估和比较,以支持正在进行的项目,该项目涉及使用微分离技术与电感耦合等离子体质谱联用来定量钴胺素(维生素B12)。研究的重点是不同的Mira Mist CE雾化器,雾化器的方向以及甲醇对分析响应的影响。始终提供最大信号的雾化器上出气口的位置始终是旋转到11时雾化器末端观察时的时针位置。在这种方向上,信号的增加可以通过以下事实来解释:气雾剂的锥角使得最大量的气雾剂指向雾化室的中心为了表征雾化器的性能,包含元素的多元素溶液的信号响应为了更好地理解所观察到的使用甲醇时信号增强的增加,必须选择具有不同电离能和电离度的元素,这对于更好地理解所观察到的使用甲醇时信号增强的作用至关重要。使用甲醇时有两种不同的现象有助于信号增强:最终结果是,当在15℃下使用20%甲醇的补充溶液时,As和Mg的信号增加了30倍。 μL/ min的流速,相当于纯甲醇3μL/ min的净体积。

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