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Evaluation of Variability in Radionuclide Measurements for the Radionuclide Rule

机译:评估放射性核素规则的放射性核素测量中的变异性

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In 2000, EPA promulgated a revised final regulation for radionuclides in drinking water. This Rule retained the maximum contaminant level (MCL) at 5 pCi/L for combined Ra226/Ra228 but requires separate monitoring requirements for Ra228. Previously, analysis for Ra228 was required only when Ra226 measurement was greater than 3 pCi/L.rnWith the promulgation of the Radionuclide Rule and completion of the first round of required monitoring, many utilities throughout the country who were previously in compliance have found themselves now uncertain of their compliance status as a result of the added compliance monitoring parameters. In some regions radionuclide activities from groundwater supplies at the same site appear to vary by more than two fold over time. This may be due to natural variability in concentrations of some of the radionuclides, but it is also likely due to issues related to method and laboratory variability. To address this issue MWH evaluated compliance data from a number of utilities who have done repeat monitoring over time and then designed and conducted a blind interlaboratory evaluation of performance for routine samples among 5 multi-state certified labs. This interlab study was designed to address both intralab variation among blind replicate samples at levels near the MCL for radium 226, radium 228 and gross alpha activity, along with assessing laboratory precision and accuracy, and equally important, to examine the interlab variability among well qualified laboratories for the same samples. Participating laboratories were not aware that the study was a blind proficiency test, so samples were processed in the same way that normal compliance samples were processed. A total of 14 samples were submitted to each laboratory in several discrete batches. Each batch consisted of several replicates and also some Youden pairs to determine the single lab precision at applicable concentration ranges for compliance assessment and historical data.rnResults of the interlab study demonstrate that while Radium-226 measurements appear to be both accurate and precise, even at low levels, radium-228 analysis and gross alpha is much less rugged, resulting in potential false positives and false negatives for compliance determinations.
机译:EPA在2000年颁布了修订后的饮用水中放射性核素最终法规。该规则将Ra226 / Ra228的组合最大污染物水平(MCL)保持在5 pCi / L,但对Ra228要求单独的监控要求。以前,仅当Ra226的测量值大于3 pCi / L时才需要对Ra228进行分析。随着放射性核素规则的颁布和所需的第一轮监测的完成,该国许多以前合规的公用事业公司现已发现自己由于添加了合规性监视参数,因此不确定其合规性状态。在某些地区,同一地点的地下水供应中的放射性核素活动似乎随时间变化了两倍以上。这可能是由于某些放射性核素浓度的自然变化,但也可能是由于与方法和实验室变化有关的问题。为了解决这个问题,MWH评估了许多公用事业公司的合规数据,这些公用事业公司经过一段时间的重复监测,然后设计并在5个多州认证实验室中对常规样品的性能进行了盲目实验室间评估。这项实验室间研究旨在解决在226镭,228镭和总α活性的MCL附近水平的盲重复样品之间的实验室内变异,以及评估实验室的精密度和准确性,同样重要的是,检验合格者之间的实验室间变异性相同样品的实验室。参与实验室并不了解这项研究是盲目的能力测试,因此样品的处理方法与处理正常合规性样品的方法相同。总共14个样品分几个批次分别提交给每个实验室。每批样品均由数个重复样品和一些尤登对组成,用于确定适用浓度范围内的单个实验室精密度,以进行合规性评估和历史数据。实验室间研究的结果表明,尽管Radium-226的测量结果看起来既准确又精确。低水平,镭228分析和总阿尔法的坚固程度要低得多,从而可能导致合规性确定的假阳性和假阴性。

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