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Standardisation of a European measurement method for the determination of total gaseous mercury: Results of the field trial campaign and determination of a measurement uncertainty and working range

机译:确定总气态汞的欧洲测量方法的标准化:现场试验的结果以及测量不确定度和工作范围的确定

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摘要

Working Group 25 of the European Committee for Standardisation's (CEN) Technical Committee 264 'Air Quality' is currently finalising a standard method for the measurement of total gaseous mercury (TGM) in ambient air, in response to the requirements of the European Union's Fourth Air Quality Daughter Directive (4~(th) DD). We report the results of a programme of field measurements and the statistical analysis performed to assess the uncertainty of the proposed standard method, define its working range and determine its compliance with the required data quality objectives of the Fourth Air Quality Daughter Directive. The statistical analysis has shown that the maximum relative expanded uncertainty of 50% allowed by the 4~(th) DD is met down to a mercury mass concentration of approximately 0.75 ng m~(-3), and that the dominant contribution to this uncertainty is systematic bias between instruments, mainly arising from the uncertainty in the calibration of the instruments.
机译:欧洲标准化委员会(CEN)技术委员会264“空气质量”的第25工作组目前正在根据欧盟第四空气委员会的要求,最终确定一种用于测量环境空气中总气态汞(TGM)的标准方法。质量子母指令(第4个(第DD个))。我们报告了实地测量计划的结果,并进行了统计分析,以评估提议的标准方法的不确定性,定义其工作范围并确定其是否符合《第四项空气质量女儿指令》要求的数据质量目标。统计分析表明,在汞的质量浓度约为0.75 ng m〜(-3)时,可以满足第4个DD所允许的最大相对扩展不确定度50%,并且该不确定性起主要作用是仪器之间的系统偏差,主要是由于仪器校准过程中的不确定性所致。

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