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DETERMINATION OF METHOD UNCERTAINTY A PRACTICAL EXAMPLE FOR THE ANALYSIS OF TRIHALOMETHANES IN DRINKING WATER USING PURGETRAP GC-MS

机译:使用清除和陷阱GC-MS在饮用水中分析三卤代甲烷的方法不确定性的确定

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Johannesburg water is responsible for the supply and monitoring of drinking water supplied to the greater Johannesburg area. Part of this monitoring programme involves the determination of Trihalomethane (THM) levels and the comparison thereof against the limits stipulated in SANS 241. This paper demonstrates the approach used to determine the uncertainty of the analytical method associated with the determination of THM's, at ug/L levels, in drinking water using Purge and Trap (P&T) GC-MS. It indicates the five steps used namely: 1. Specification of the method; 2. Identifying the model; 3. Identification of sources of uncertainty using the Ishikawa approach; 4. Expanding and if needed combining the uncertainties of each of the chosen data sources; 5. Combining the expanded uncertainties and expressing the final method uncertainty. The paper also attempts an evaluation of the data obtained and recommends possible improvements, identified from the data obtained, which could be implemented to improve the uncertainty of the analytical method.
机译:约翰内斯堡水负责供应和监测提供给大约约翰内斯堡地区的饮用水。该监测程序的一部分涉及测定三卤代甲烷(THM)水平,并将其与SANS 241中规定的限制的比较。本文证明了用于确定与UG / CHM的测定相关的分析方法的不确定性的方法。 L级别,在饮用水中使用吹扫和陷阱(P&T)GC-MS。它表示所用的五个步骤:1。方法规格; 2.识别模型; 3.使用Ishikawa方法识别不确定性的来源; 4.扩展,如果需要,则结合每个所选数据源的不确定性; 5.结合扩展的不确定性并表达最终方法不确定性。本文还尝试评估所获得的数据并建议从所获得的数据中识别的可能改进,这可以实施以改善分析方法的不确定性。

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