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Fast Time Resolution Oxidized Mercury Measurements during the Reno Atmospheric Mercury Intercomparison Experiment (RAMIX)

机译:里诺大气汞比对实验(RAMIX)中的快速时间分辨氧化汞测量

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摘要

The Reno Atmospheric Mercury Intercomparison Experiment (RAMIX) was carried out from 22 August to 16 September, 2011 in Reno, NV to evaluate the performance of new and existing methods to measure atmospheric mercury (Hg). Measurements were made using a common sampling manifold to which controlled concentrations of Hg species, including gaseous elemental mercury (GEM) and HgBr_2 (a surrogate gaseous oxidized mercury (GOM) compound), and potential interferents were added. We present an analysis of Hg measurements made using the University of Washington's Detector for Oxidized Hg Species (DOHGS), focusing on tests of GEM and HgBr_2 spike recovery, the potential for interference from ozone (O_3) and water vapor (WV), and temporal variability of ambient reactive mercury (RM). The mean GEM and HgBr_2 spike recoveries measured with the DOHGS were 95% and 66%, respectively. The DOHGS responded linearly to HgBr_2. We found no evidence that elevated O_3 interfered in the DOHGS RM measurements. A reduction in RM collection and retention efficiencies at very high ambient WV mixing ratios is possible. Comparisons between the DOHGS and participating Hg instruments demonstrate good agreement for GEM and large discrepancies for RM. The results suggest that existing GOM measurements are biased low.
机译:2011年8月22日至9月16日,在内华达州里诺进行了里诺大气汞比对实验(RAMIX),以评估新的和现有的测量大气汞(Hg)的方法的性能。使用常见的采样歧管进行测量,在该采样歧管中添加包括气态元素汞(GEM)和HgBr_2(一种替代的气态氧化汞(GOM)化合物)在内的受控汞族浓度,并添加潜在的干扰物。我们提供了使用华盛顿大学氧化汞物种检测器(DOHGS)进行的汞测量的分析,重点是GEM和HgBr_2尖峰回收率的测试,臭氧(O_3)和水蒸气(WV)的潜在干扰以及时间环境反应性汞(RM)的变异性。用DOHGS测得的GEM和HgBr_2峰值平均回收率分别为95%和66%。 DOHGS对HgBr_2线性响应。我们没有发现升高的O_3干扰DOHGS RM测量的证据。在非常高的环境WV混合比下,可能会降低RM的收集和保留效率。 DOHGS与参与的汞仪器之间的比较表明,GEM具有良好的一致性,而RM则存在较大差异。结果表明,现有的GOM测量值偏低。

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  • 来源
    《Environmental Science & Technology》 |2013年第13期|7285-7294|共10页
  • 作者单位

    Science and Technology Program, University of Washington-Bothell, Bothell, Washington, 98011, United States;

    Science and Technology Program, University of Washington-Bothell, Bothell, Washington, 98011, United States,Energy Dynamics Laboratory, Eastern Utah Operations, Utah State University Research Foundation, Vernal, Utah, 84078;

    Department of Natural Resources and Environmental Science, University of Nevada-Reno, Reno, Nevada, 89557, United States;

    Department of Natural Resources and Environmental Science, University of Nevada-Reno, Reno, Nevada, 89557, United States;

    Science and Technology Program, University of Washington-Bothell, Bothell, Washington, 98011, United States,Department of Atmospheric Sciences, University of Washington, Seattle, Washington, 98195, United States,Energy Dynamics Laboratory, Eastern Utah Operations, Utah State University Research Foundation, Vernal, Utah, 84078;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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