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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Use of a parallel path nebulizer for capillary-based microseparation techniques coupled with an inductively coupled plasma mass spectrometer for speciation measurements
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Use of a parallel path nebulizer for capillary-based microseparation techniques coupled with an inductively coupled plasma mass spectrometer for speciation measurements

机译:并行路径雾化器用于基于毛细管的微分离技术与感应耦合等离子体质谱仪的结合用于形态测量

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A low flow,parallel path Mira Mist CE nebulizer designed for capillary electrophoresis(CE)was evaluated as a function of make-up solution flow rate,composition,and concentration,as well as the nebulizer gas flow rate.This research was conducted in support of a project related to the separation and quantification of cobalamin(vitamin B-12)species using microseparation techniques combined with inductively coupled plasma mass spectrometry(ICP-MS)detection.As such,Co signals were monitored during the nebulizer characterization process.Transient effects in the ICP were studied to evaluate the suitability of using gradients for microseparations and the benefit of using methanol for the make-up solution was demonstrated.Co signal response changed significantly as a function of changing methanol concentrations of the make-up solution and maximum signal enhancement was seen at 20% methanol with a 15 mul/min flow rate.Evaluation of the effect of changing the nebulizer gas flow rates showed that argon flows from 0.8 to 1.2 1/min were equally effective.The Mira Mist CE parallel path nebulizer was then evaluated for interfacing capillary microseparation techniques including capillary electrophoresis(CE)and micro high performance liquid chromatography(muHPLC)to inductively coupled plasma mass spectrometry(ICP-MS).A mixture of four cobalamin species standards(cyanocobalamin,hydroxocobalamin,methylcobalamin,and 5'deoxyadenosylcobalamin)and the corrinoid analogue cobinamide dicyanide were successfully separated using both CE-ICP-MS and muHPLC-ICP-MS using the parallel path nebulizer with a make-up solution containing 20% methanol with a flow rate of 15 mul/min.
机译:设计了一种用于毛细管电泳(CE)的低流量平行路径Mira Mist CE雾化器,该雾化器是根据补充溶液流速,组成和浓度以及雾化器气体流速的函数进行评估的。微分离技术与电感耦合等离子体质谱(ICP-MS)检测相结合对钴胺素(维生素B-12)物种进行分离和定量的研究。因此,在雾化器表征过程中监测了Co信号。在ICP中进行了研究,以评估使用梯度进行微分离的适用性,并证明了使用甲醇作为补充溶液的好处.Co信号响应随改变补充溶液的甲醇浓度和最大信号而显着变化在20%的甲醇中,流速为15 mul / min时增强了。改变雾化器气体流速的效果评估表明:氩气流量从0.8到1.2 1 / min同样有效。然后评估Mira Mist CE平行路径雾化器的接口毛细管微分离技术,包括毛细管电泳(CE)和微型高效液相色谱(muHPLC)到电感耦合等离子体质谱( ICP-MS)使用平行路径成功地使用CE-ICP-MS和muHPLC-ICP-MS分离了四种钴胺素标准品的混合物(氰钴胺,氢钴胺素,甲基钴胺素和5'脱氧腺苷钴胺素)和类固醇类似物Cobinamide Dicyanide雾化器,其补充溶液含20%甲醇,流速为15 mul / min。

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