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首页> 外文期刊>Analytical chemistry >Inductively coupled plasma mass spectrometry with on-line leaching: A method to assess the mobility and fractionation of elements
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Inductively coupled plasma mass spectrometry with on-line leaching: A method to assess the mobility and fractionation of elements

机译:在线浸出的电感耦合等离子体质谱法:一种评估元素迁移率和分离度的方法

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A new technique has been developed to assess the mobility and site of specific elements in complex natural materials such as rocks. Concentration profiles during leaching were obtained by pumping reagents (water, 1% HNO3, 10% HNO3, 30% HNO3), either continuously or with flow injection, through a microcolumn of sample while continuously monitoring analyte signals by inductively coupled plasma mass spectrometry (ICPMS). Compared to batch extraction procedures normally used, the approach involves minimal sample preparation and reduced contamination since the leaching is performed in a closed system. Continuous on-line monitoring also allows a greater resolution of the various phases reacting with given reagent. Compared to continuous leaching, flow injection increased the resolution of the various phases using discrete injections of reagents while reducing reagent consumption and minimizing etching of the MS interface. Furthermore, sensitivity was preserved by injecting into air instead of an aqueous carrier. Whether in the continuous or flow injection modes, the proposed approach provides real-time data on what phases are breaking down and what metals are released. It can therefore be used to design effective leaching strategies and to trace isotopic compositions. However, the resulting spectra are complex and the correct determination of some elements requires high-resolution ICPMS. [References: 17]
机译:已经开发出一种新技术来评估复杂元素(例如岩石)中特定元素的迁移率和位置。浸出过程中的浓度分布是通过连续地或通过流动注射泵送试剂(水,1%HNO3、10%HNO3、30%HNO3)通过微柱样品而获得的,同时通过电感耦合等离子体质谱法(ICPMS)连续监测分析物信号)。与通常使用的批量提取程序相比,由于浸出是在封闭系统中进行的,因此该方法所需的样品制备量最少,污染减少。连续的在线监控还可以使与给定试剂反应的各个相的分离度更高。与连续浸提相比,流注使用离散注入试剂提高了各相的分辨率,同时减少了试剂消耗并最大程度地减少了MS接口的蚀刻。此外,通过注入空气而不是水性载体来保持敏感性。无论是在连续注入还是在流动注入模式下,所提出的方法都可以提供有关哪些相被分解以及哪些金属被释放的实时数据。因此,它可用于设计有效的浸出策略并追踪同位素组成。但是,所得光谱很复杂,某些元素的正确测定需要高分辨率ICPMS。 [参考:17]

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