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Radial line-scans as representative sampling strategy in dried-droplet laser ablation of liquid samples deposited on pre-cut filter paper disks

机译:径向线扫描作为在预切滤纸盘上沉积的液体样品的干滴激光烧蚀中的代表性采样策略

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摘要

Nebulising liquid samples and using the aerosol thus obtained for further analysis is the standard method in many current analytical techniques, also with inductively coupled plasma (ICP)-based devices. With such a set-up, quantification via external calibration is usually straightforward for samples with aqueous or close-to-aqueous matrix composition. However, there is a variety of more complex samples. Such samples can be found in medical, biological, technological and industrial contexts and can range from body fluids, like blood or urine, to fuel additives or fermentation broths. Specialized nebulizer systems or careful digestion and dilution are required to tackle such demanding sample matrices. One alternative approach is to convert the liquid into a dried solid and to use laser ablation for sample introduction. Up to now, this approach required the application of internal standards or matrix-adjusted calibration due to matrix effects. In this contribution, we show a way to circumvent these matrix effects while using simple external calibration for quantification. The principle of representative sampling that we propose uses radial line-scans across the dried residue. This compensates for centro-symmetric inhomogeneities typically observed in dried spots. The effectiveness of the proposed sampling strategy is exemplified via the determination of phosphorus in biochemical fermentation media. However, the universal viability of the presented measurement protocol is postulated. Detection limits using laser ablation-ICP-optical emission spectrometry were in the order of 40 mu g mL(-1) with a reproducibility of 10 % relative standard deviation (n = 4, concentration = 10 times the quantification limit). The reported sensitivity is fit-for-purpose in the biochemical context described here, but could be improved using ICP-mass spectrometry, if future analytical tasks would require it. Trueness of the proposed method was investigated by cross-validation with conventional liquid measurements, and by analyzing IAEA-153 reference material (Trace Elements in Milk Powder); a good agreement with the certified value for phosphorus was obtained
机译:雾化液体样品并使用由此获得的气溶胶进行进一步分析是许多当前分析技术中的标准方法,也适用于基于电感耦合等离子体(ICP)的设备。通过这样的设置,对于具有水性或接近水性基质成分的样品,通过外部校准进行定量通常很简单。但是,有许多更复杂的样本。此类样品可以在医学,生物学,技术和工业环境中找到,范围从血液或尿液等体液到燃料添加剂或发酵液。需要专门的雾化器系统或仔细的消化和稀释以解决此类苛刻的样品基质。一种替代方法是将液体转化为干燥的固体,并使用激光烧蚀法引入样品。到目前为止,由于基质效应,这种方法需要应用内部标准品或基质调整的校准。在这一贡献中,我们展示了一种在使用简单的外部校准进行定量时避免这些基质效应的方法。我们建议的代表性采样原理是对干燥的残留物进行径向线扫描。这补偿了通常在干燥斑点中观察到的中心对称不均匀性。通过测定生化发酵培养基中的磷可以举例说明所提出的采样策略的有效性。但是,假设了所提出的测量协议的普遍可行性。使用激光烧蚀-ICP-光发射光谱法的检测极限约为40μg mL(-1),相对标准偏差的重复性为10%(n = 4,浓度=定量极限的10倍)。报告的灵敏度在此处描述的生化环境中是适用的,但如果将来的分析任务需要使用ICP-质谱,则可以提高灵敏度。通过与常规液体测量值的交叉验证,以及通过分析IAEA-153参考物质(奶粉中的微量元素),研究了所提出方法的真实性。获得了与磷认证值的良好协议

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