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利用低温研磨和激光烧蚀光谱法对微克软材料进行快速微量元素分析。

Rapid trace element analysis of microgram soft materials with cryogenic milling and laser ablation spectroscopy.

出版信息

Appl Opt. 2020 Sep 10;59(26):7752-7759. doi: 10.1364/AO.395004.

Abstract

Trace element analysis of soft materials, to determine the content of low concentration elements, is important in many industries such as food quality control and medical biopsy analysis. Many of these applications would benefit from faster analysis with smaller sample requirements. Further, some natural samples are soft and have high water content, which brings challenges to element analysis. Here, we develop a cryogenic pelletization pretreatment to address those challenges. The soft samples are cryogenically milled, freeze-dried, and pelletized before elemental analysis. Analysis is performed by laser ablation spectroscopy, the combination of laser-induced breakdown spectroscopy (LIBS) and laser ablation inductively coupled plasma mass spectroscopy (LA-ICP-MS), to rapidly analyze light and heavy analytes. For this initial study, aluminum (Al) content in soft samples is determined by LIBS and lead (Pb) content by LA-ICP-MS. The standard addition method is performed to build calibration curves for element quantification. The measurements are compared with a Hong Kong government certified acid digestion and ICP-MS procedure. The experiment is performed on standard reference materials and selected food samples. The relative errors compared with certified measurements are less than 10% for all samples, with Al content ranging from 63-1466 µg/g and Pb content from 0.37-2.35 µg/g (dry mass). Microscopy of pellets shows that laser ablation spectroscopy can be performed with 100 µg of sample (dry mass). Total analysis time from raw sample to final measurement, including preparation, is under 1 h. The results indicate that the laser ablation spectroscopy with cryogenic pelletization is a promising technique for many applications such as screening of small food samples for toxic metals and trace element analysis of millimeter biopsies.

摘要

软物质的微量元素分析,用于确定低浓度元素的含量,在食品质量控制和医学活检分析等许多行业中都很重要。许多这样的应用都将受益于更快的分析速度和更小的样品需求。此外,一些天然样品柔软,含水量高,这给元素分析带来了挑战。在这里,我们开发了一种低温制粒预处理方法来解决这些挑战。在进行元素分析之前,将软样品进行低温粉碎、冷冻干燥和制成颗粒。通过激光烧蚀光谱法进行分析,该方法结合了激光诱导击穿光谱(LIBS)和激光烧蚀电感耦合等离子体质谱(LA-ICP-MS),可以快速分析轻元素和重元素。在这项初步研究中,通过 LIBS 测定软样品中的铝(Al)含量,通过 LA-ICP-MS 测定铅(Pb)含量。采用标准加入法建立元素定量校准曲线。将测量结果与香港政府认证的酸消解和 ICP-MS 程序进行比较。实验在标准参考物质和选定的食品样品上进行。与认证测量值相比,所有样品的相对误差均小于 10%,Al 含量范围为 63-1466µg/g,Pb 含量范围为 0.37-2.35µg/g(干重)。颗粒的显微镜观察表明,激光烧蚀光谱法可以用 100µg 样品(干重)进行。从原始样品到最终测量的总分析时间(包括准备时间)不到 1 小时。结果表明,低温制粒与激光烧蚀光谱法相结合是一种很有前途的技术,可用于筛选有毒金属的小食品样品,以及对毫米活检进行微量元素分析等许多应用。

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