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Measurements of atmospheric mercury species during an international study of mercury depletion events at Ny-Alesund, Svalbard, spring 2003. How reproducible are our present methods?

机译:在2003年春季在斯瓦尔巴特群岛的Ny-Alesund进行的一项关于汞耗竭事件的国际研究中,对大气中的汞物种进行了测量。我们现有的方法可重复性如何?

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摘要

Six groups participated in an international study of springtime atmospheric mercury depletion events (AMDEs) at Ny-Alesund in the Norwegian Arctic during April and May 2003 with the aim to compare analytical methods for measurements of atmospheric mercury species and study the physical and chemical processes leading to AMDEs. Five groups participated in the method comparison that was conducted at three different locations within Ny-Alesund. Various automated and manual instrumentation were used to sample, measure and compare gaseous elemental mercury (GEM), reactive gaseous mercury (RGM) and mercury associated with particles (Hg-P). The concentration of GEM was reproducible during background conditions. For the first time using ambient air, the statistics associated with round robin test procedures were applied. This was found to be an appropriate tool to investigate the reproducibility of GEM measurements in ambient air. The precision for each group measuring GEM concentrations was found to be consistently good (within 5%). Five AMDEs were recorded during the study. Using four different methods, including single and replicate samples, all groups recorded higher values of RGM and Hg-P during AMDEs. The results show that measuring comparable atmospheric mercury species at both the same and different locations (within the Ny-Alesund area) is difficult. Not only do site location and site characteristics create challenges when trying to intercompare results but there are difficulties, as well, in obtaining comparable results with similar sampling and analysis methods. Nevertheless, with our current procedures for atmospheric mercury identification we can differentiate with certainty between "high" and "low" concentration values of RGM and Hg-P.
机译:六个小组参加了2003年4月至2003年5月在挪威北极的Ny-Alesund进行的春季大气汞消耗事件(AMDE)的国际研究,目的是比较用于测量大气汞物种的分析方法并研究物理和化学过程到AMDE。五组参加了在Ny-Alesund内三个不同地点进行的方法比较。使用各种自动化和手动仪器来采样,测量和比较气态元素汞(GEM),反应性气态汞(RGM)和与颗粒相关的汞(Hg-P)。在背景条件下,GEM的浓度可重现。首次使用环境空气时,应用了与循环测试程序相关的统计数据。发现这是研究环境空气中GEM测量值可重复性的合适工具。发现每组测量GEM浓度的精度始终很好(在5%以内)。在研究期间记录了五个AMDE。使用四种方法,包括单一样品和重复样品,所有组在AMDE期间记录的RGM和Hg-P值较高。结果表明,很难在相同位置和不同位置(在Ny-Alesund区域内)测量可比较的大气汞物种。尝试将结果进行相互比较时,不仅地点和地点特征都构成挑战,而且在使用类似的采样和分析方法获得可比结果方面也存在困难。但是,通过我们当前的大气汞识别程序,我们可以确定RGM和Hg-P的“高”和“低”浓度值。

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