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Comparison of Particulate Mercury Measured with Manual and Automated Methods

机译:手动和自动方法测量的颗粒汞的比较

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A study was conducted to compare measuring particulate mercury (HgP) with the manual filter method and the automated Tekran system. Simultaneous measurements were conducted with the Tekran and Teflon filter methodologies in the marine and coastal continental atmospheres. Overall, the filter HgP values were on the average 21% higher than the Tekran HgP, and >85% of the data were outside of ±25% region surrounding the 1:1 line. In some cases the filter values were as much as 3-fold greater, with <5% of the points falling on the 1:1 line. A common characteristic in all seasons was that the Tekran only yielded a total of 6 data points above 1 part per quadrillion by volume (ppqv) (i.e., ∼4% of the observations), and had ∼25% of its measurements as below the limit of detection (<0.1–0.2 ppqv). In comparison, the filter always had HgP detectable above the blank level of 0.05 ppqv. The aerosol size distribution of HgP did not appear to be a major factor in the discrepancies between the two methods. The peaks in filter HgP were always concomitant with enhanced mixing ratios of selected hydrocarbons, halocarbons, and oxygenated compounds. Backward trajectories suggested that the peaks in all chemical compounds were primarily anthropogenic, and tracers indicated a combustion signature. Since the Tekran was typically unresponsive to these pollution episodes, detailed investigation of aerosol passing efficiency and the instrument response to different aerosol types should be investigated.
机译:进行了一项研究,比较了使用手动过滤方法和自动Tekran系统测量的汞颗粒(Hg P )。在海洋和沿海大陆大气中使用Tekran和Teflon过滤器方法进行了同时测量。总体而言,过滤器的Hg P 值平均比Tekran Hg P 高出21%,并且> 85%的数据超出了该值的±25% 1:1行。在某些情况下,滤波器值可能会高出3倍,其中<5%的点落在1:1线上。在所有季节中,一个共同的特征是,Tekran仅产生超过每百万分之一体积(ppqv)1份以上的6个数据点(即,约占观测值的4%),而其测量值的约25%低于以下值。检测限(<0.1–0.2 ppqv)。相比之下,过滤器始终在空白水平0.05 ppqv之上可检测到Hg P 。 Hg P 的气溶胶粒径分布似乎不是两种方法之间差异的主要因素。过滤器Hg P 中的峰始终与选定的碳氢化合物,卤代烃和含氧化合物的混合比提高。向后的轨迹表明,所有化合物中的峰主要是人为的,示踪剂表明有燃烧迹象。由于Tekran通常对这些污染事件没有反应,因此应详细调查气雾通过效率和仪器对不同气雾类型的响应。

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