Institute for Nuclear Research, Hungarian Academy of Sciences (MTA Atomki) , P.O. Box 51, H-4001 Debrecen, Hungary.
Anal Chem. 2017 Feb 7;89(3):1558-1564. doi: 10.1021/acs.analchem.6b03541. Epub 2017 Jan 6.
There are various liquid materials whose elemental composition is of interest in various fields of science and technology. In many cases, sample preparation or the extraction can be complicated, or it would destroy the original environment before the analysis (for example, in the case of biological samples). However, multielement direct analysis of liquid samples can be realized by an external PIXE-PIGE measurement system. Particle-induced X-ray and gamma-ray emission spectroscopy (PIXE, PIGE) techniques were applied in external (in-air) microbeam configuration for the trace and main element determination of liquid samples. The direct analysis of standard solutions of several metal salts and human blood samples (whole blood, blood serum, blood plasma, and formed elements) was realized. From the blood samples, Na, P, S, Cl, K, Ca, Fe, Cu, Zn, and Br elemental concentrations were determined. The focused and scanned ion beam creates an opportunity to analyze very small volume samples (∼10 μL). As the sample matrix consists of light elements, the analysis is possible at ppm level. Using this external beam setup, it was found that it is possible to determine elemental composition of small-volume liquid samples routinely, while the liquid samples do not require any preparation processes, and thus, they can be analyzed directly. In the case of lower concentrations, the method is also suitable for the analysis (down to even ∼1 ppm level) but with less accuracy and longer measurement times.
在科学和技术的各个领域中,都有各种对其元素组成感兴趣的液体材料。在许多情况下,样品制备或提取可能很复杂,或者在分析之前会破坏原始环境(例如,在生物样品的情况下)。然而,通过外部 PIXE-PIGE 测量系统可以实现液体样品的多元素直接分析。粒子诱导 X 射线和伽马射线发射光谱(PIXE、PIGE)技术应用于外部(空气中)微束配置中,用于液体样品的痕量和主要元素的测定。实现了几种金属盐标准溶液和人血样品(全血、血清、血浆和形成元素)的直接分析。从血液样本中,测定了 Na、P、S、Cl、K、Ca、Fe、Cu、Zn 和 Br 的元素浓度。聚焦和扫描离子束为分析非常小体积的样品(约 10 μL)提供了机会。由于样品基质由轻元素组成,因此可以在 ppm 水平进行分析。使用这种外部光束装置,发现可以常规地确定小体积液体样品的元素组成,而液体样品不需要任何制备过程,因此可以直接进行分析。在浓度较低的情况下,该方法也适用于分析(甚至低至约 1 ppm 水平),但准确性较低,测量时间较长。