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首页> 外文期刊>Analytical and bioanalytical chemistry >Recent advances in quantitative LA-ICP-MS analysis: challenges and solutions in the life sciences and environmental chemistry
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Recent advances in quantitative LA-ICP-MS analysis: challenges and solutions in the life sciences and environmental chemistry

机译:LA-ICP-MS定量分析的最新进展:生命科学和环境化学中的挑战和解决方案

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摘要

Laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) is a widely accepted method for direct sampling of solid materials for trace elemental analysis. The number of reported applications is high and the application range is broad; besides geochemistry, LA-ICP-MS is mostly used in environmental chemistry and the life sciences. This review focuses on the application of LA-ICP-MS for quantification of trace elements in environmental, biological, and medical samples. The fundamental problems of LA-ICP-MS, such as sample-dependent ablation behavior and elemental fractionation, can be even more pronounced in environmental and life science applications as a result of the large variety of sample types and conditions. Besides variations in composition, the range of available sample states is highly diverse, including powders (e.g., soil samples, fly ash), hard tissues (e.g., bones, teeth), soft tissues (e.g., plants, tissue thin-cuts), or liquid samples (e.g., whole blood). Within this article, quantification approaches that have been proposed in the past are critically discussed and compared regarding the results obtained in the applications described. Although a large variety of sample types is discussed within this article, the quantification approaches used are similar for many analytical questions and have only been adapted to the specific questions. Nevertheless, none of them has proven to be a universally applicable method.
机译:激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)是一种广泛接受的直接采样固体材料进行痕量元素分析的方法。报告的申请数量很多,适用范围广。除地球化学外,LA-ICP-MS还广泛用于环境化学和生命科学。本文着重介绍LA-ICP-MS在定量分析环境,生物和医学样品中痕量元素中的应用。 LA-ICP-MS的基本问题,例如取决于样品的烧蚀行为和元素分级分离,在环境和生命科学应用中由于样品类型和条件种类繁多而更加突出。除了组成上的变化外,可用样品状态的范围也多种多样,包括粉末(例如土壤样品,粉煤灰),硬组织(例如骨头,牙齿),软组织(例如植物,薄组织),或液体样本(例如全血)。在本文中,对过去提出的量化方法进行了严格的讨论,并就上述应用中获得的结果进行了比较。尽管本文讨论了多种样本类型,但是对于许多分析问题,所使用的定量方法相似,并且仅适用于特定问题。然而,没有一个被证明是普遍适用的方法。

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