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Assessment of Respirable Crystalline Silica Analysis Using Proficiency Analytical Testing Results from 2003–2013

机译:使用2003-2013年的能力分析测试结果评估可呼吸结晶二氧化硅分析

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摘要

Analysis of Proficiency Analytical Testing (PAT) results between 2003 and 2013 suggest that the variation in respirable crystalline silica analysis is much smaller today than it was in the period 1990–1998, partly because of a change in sample production procedure and because the colorimetric method has been phased out, although quality improvements in the x-ray diffraction (XRD) or infrared (IR) methods may have also played a role. There is no practical difference between laboratories using XRD or IR methods or between laboratories which are accredited or those which are not. Reference laboratory means (assigned values) are not different from the means of all participants across the current range of mass loading, although there is a small difference in variance in the ratios of all participants to reference laboratory means based on method because the reference laboratories are much more likely to use XRD than are the others. Matrix interference does not lead to biases or substantially larger variances for either XRD or IR methods. Data from proficiency test sample analyses that include results from poorly performing laboratories should not be used to determine the validity of a method. PAT samples are not produced below 40 μg and variance may increase with lower masses, although this is not particularly predictable. PAT data from lower mass loadings will be required to evaluate analytical performance if exposure limits are lowered without change in sampling method. Task-specific exposure measurements for periods shorter than a full shift typically result in lower mass loadings and the quality of these analyses would also be better assured from being within the range of PAT mass loadings. High flow rate cyclones, whose performance has been validated, can be used to obtain higher mass loadings in environments of lower concentrations or where shorter sampling times are desired.
机译:2003年至2013年的能力分析测试(PAT)结果分析表明,今天可呼吸的结晶二氧化硅分析的变化要比1990-1998年的变化小得多,部分原因是样品生产程序的变化和比色法尽管X射线衍射(XRD)或红外(IR)方法的质量改进也可能起到了一定作用,但已被淘汰。在使用XRD或IR方法的实验室之间,或者在经过认可的实验室与未经认可的实验室之间,没有实际差异。在当前的质量负载范围内,参考实验室均值(分配值)与所有参与者的均值没有区别,尽管基于方法的所有参与者与参考实验室均值之比的方差很小,因为参考实验室是与其他人相比,使用XRD的可能性更大。对于XRD或IR方法,矩阵干扰不会导致偏差或明显更大的方差。来自能力测试样本分析的数据(包括表现不佳的实验室的结果)不应用于确定方法的有效性。低于40μg时不会产生PAT样品,并且质量降低可能会增加方差,尽管这不是特别可预测的。如果在不改变采样方法的情况下降低暴露极限,则需要来自较低质量负载的PAT数据来评估分析性能。特定于任务的暴露测量的时间短于全班,通常会导致较低的质量负载,并且也可以确保这些分析的质量不在PAT质量负载范围内。性能经过验证的高流量旋风分离器可用于在较低浓度或需要较短采样时间的环境中获得较高的质量负载。

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