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Piezoelectric Micro-dosing System for Spiking Quality Samples in Occupational Hygiene Laboratories

机译:用于职业卫生实验室中尖峰质量样品的压电微量剂量系统

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Quality control is crucially important in the arena of chemical analysis. Reference materials are essential for calibration and quality control processes, and for verification of the accuracy and reliability of the analytical results obtained. Owing to the complexity of their manufacture, reference materials for chemical agents occurring at workplaces are expensive and available only on a limited scale and for a small number of substances. Therefore, their cost-effective and fast production is an important aim. The Institute for Occupational Health and Safety (IFA) of the German Social Accident Insurance (DGUV) currently pursues different strategies for the production of reference materials. One strategy entails the use of a piezoelectric micro-dispensing system for non-contact spiking of extremely small quantities of substances with high reproducibility. The dispensing system is coupled to a semi-automated assembly unit for loading high numbers of samples. It is used for spiking phosphoric and sulphuric acid onto quartz fibre filters. Comparison of the results obtained on different days shows higher variability than results observed on the same day. However, after daily adjustment of the number of droplets to the current droplet volume, highly reproducible series with an adequate number of samples (>500) could be realized. The results of the internal quality control were verified in an interlaboratory comparison. Furthermore, storage stability was investigated systematically over a period of 2 years. The samples produced are suitable for use as reference materials for both inorganic acids.
机译:质量控制在化学分析领域至关重要。参考材料对于校准和质量控制过程以及验证所获得的分析结果的准确性和可靠性至关重要。由于其制造的复杂性,在工作场所出现的化学药品的参考材料很昂贵,并且仅在有限的规模和少量物质的情况下使用。因此,它们的成本效益和快速生产是一个重要的目标。德国社会事故保险(DGUV)的职业健康与安全研究所目前采取不同的策略来生产参考材料。一种策略需要使用压电微分解系统,以无接触量的极少量具有高可重复性的物质。分配系统耦合到半自动组装单元,用于加载大量样品。它用于将磷酸和硫酸刺激到石英纤维过滤器上。在不同日期获得的结果的比较显示出比同一天观察到的结果更高的变异性。但是,在每天将液滴数量调整为当前的液滴体积之后,可以实现具有足够数量的样品(> 500)的高度可重现的串联。内部质量控制的结果在实验室间比较中得到了验证。此外,在2年的时间内系统地研究了存储稳定性。所产生的样品适合用作两种无机酸的参考材料。

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