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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >The direct analysis of fuel ethanol by ICP-MS using a flow injection system coupled to an ultrasonic nebulizer for sample introduction
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The direct analysis of fuel ethanol by ICP-MS using a flow injection system coupled to an ultrasonic nebulizer for sample introduction

机译:ICP-MS使用与超声波雾化器耦合的流动注射系统通过样品进样直接分析燃料乙醇

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摘要

In this work, a method for the analysis of fuel ethanol by ICP-MS is proposed. The direct introduction of a 10% v/v ethanol solution through an ultrasonic nebulizer formed carbon deposits on the cones. Therefore, a flow injection system was used to introduce 250 mu L of the diluted sample or calibration solution. The optimized operational conditions were 1200 W RF power, 0.7 L min(-1) nebulizer gas flow rate and 140 degrees C and -3 degrees C heating and cooling temperatures of the USN desolvation system. External calibration against aqueous solutions, matrix matching and isotope dilution (ID) were compared. The limits of detection were, in mu g L-1, Ag: 0.08, Cd: 0.12, Co: 0.04, Cu: 0.4, Fe: 27, Mn: 0.7, Ni: 0.4 and Pb: 0.2, with calibration against aqueous solutions, and Ag: 0.02, Cd: 0.02, Cu: 0.2 and Pb: 0.04, with isotope dilution. Matrix matching was not recommended because of the carbon deposits formation. Both ID and calibration with aqueous solutions promoted speed, good precision, sensitivity and agreement with the results obtained by ETV-ICP-MS.
机译:在这项工作中,提出了一种通过ICP-MS分析燃料乙醇的方法。通过超声雾化器直接引入10%v / v乙醇溶液会在锥体上形成碳沉积物。因此,使用流动注射系统引入250μL的稀释样品或校准溶液。优化的操作条件是1200 W射频功率,0.7 L min(-1)雾化器气体流速以及USN去溶剂化系统的140摄氏度和-3摄氏度的加热和冷却温度。比较了针对水溶液的外部校准,基质匹配和同位素稀释(ID)。检测限为μg L-1,Ag:0.08,Cd:0.12,Co:0.04,Cu:0.4,Fe:27,Mn:0.7,Ni:0.4和Pb:0.2,并针对水溶液进行了校准,以及Ag:0.02,Cd:0.02,Cu:0.2和Pb:0.04,并经同位素稀释。由于碳沉积物的形成,不建议进行基体匹配。 ID和水溶液校准均可提高速度,精密度,灵敏度,并与ETV-ICP-MS获得的结果一致。

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