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Flow analysis with accuracy assessment

机译:流量分析和准确性评估

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The concept of accuracy assessment is exploited in flow analysis. The resulting system is based on multi-commutation because multiple sample processing is involved. The manifold includes different quasi-independent methods and permits recovery tests to be performed on every sample. Results are then intrinsically more accurate and additional information on the sample matrix is provided. The feasibility of the approach is demonstrated in the large scale determination of chloride in river water samples presenting high variability in matrix composition and/or in acidity. The spectrophotometric mercury thiocyanate-Fe(II) method and the turbidimetric method based on the precipitation with silver ions are implemented in a single manifold and a 40.00 mg l(-1) Cl- intermittent stream is added in-line to each sample for producing recovery data. Analysis of the four recorded analytical signals permits evaluation and eventual compensation of matrix effects. The final result is calculated after considering the results obtained by two different methods, and the eventual correction of matrix effects. The proposed system is very robust, handles 25 samples per hour and yields precise results between 0.50 and 10.0 mg l(-1) Cl-. Potentialities and limitations of the approach are discussed.
机译:流量分析中利用了准确性评估的概念。最终的系统基于多重换向,因为涉及多个样本处理。歧管包括不同的准独立方法,并允许对每个样品进行回收率测试。然后,结果本质上更加准确,并提供了有关样品基质的其他信息。该方法的可行性在大规模测定河水样品中氯离子的方法中得到了证明,该方法在基质成分和/或酸度方面表现出高度的可变性。分光光度法测定硫氰酸汞-Fe(II)方法和基于银离子沉淀的浊度法在单个歧管中实施,并向每个样品在线添加40.00 mg l(-1)Cl-间歇流恢复数据。对四个记录的分析信号的分析可以评估和最终补偿基质效应。在考虑通过两种不同方法获得的结果以及最终校正矩阵效应之后,计算最终结果。拟议的系统非常强大,每小时可处理25个样品,并产生0.50至10.0 mg l(-1)Cl-之间的精确结果。讨论了该方法的潜力和局限性。

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