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Uncertainties of Gaseous Oxidized Mercury Measurements Using KCI-Coated Denuders, Cation-Exchange Membranes, and Nylon Membranes: Humidity Influences

机译:使用KCI涂层的剥蚀器,阳离子交换膜和尼龙膜的气态氧化汞测量的不确定度:湿度的影响

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摘要

Quantifying the concentration of gaseous oxidized mercury (GOM) and identifying the chemical compounds in the atmosphere are important for developing accurate local, regional, and global biogeochemical cycles. The major hypothesis driving this work was that relative humidity affects collection of GOM on KCl-coated denuders and nylon membranes, both currently being applied to measure GOM. Using a laboratory manifold system and ambient air, GOM capture efficiency on 3 different collection surfaces, including KCl-coated denuders, nylon membranes, and cation-exchange membranes, was investigated at relative humidity ranging from 25 to 75%. Recovery of permeated HgBr_2 on KCl-coated denuders declined by 4-60% during spikes of relative humidity (25 to 75%). When spikes were turned off GOM recoveries returned to 60 ± 19% of permeated levels. In some cases, KCl-coated denuders were gradually passivated over time after additional humidity was applied. In this study, GOM recovery on nylon membranes decreased with high humidity and ozone concentrations. However, additional humidity enhanced GOM recovery on cation-exchange membranes. In addition, reduction and oxidation of elemental mercury during experiments was observed. The findings in this study can help to explain field observations in previous studies.
机译:量化气态氧化汞(GOM)的浓度并确定大气中的化合物对于开发准确的局部,区域和全球生物地球化学循环至关重要。推动这项工作的主要假设是,相对湿度会影响KCl涂层的剥蚀剂和尼龙膜上GOM的收集,目前这两种方法均用于测量GOM。使用实验室歧管系统和环境空气,在相对湿度为25%到75%的范围内,研究了GOM在3种不同收集表面上的捕获效率,包括KCl涂层的剥蚀剂,尼龙膜和阳离子交换膜。在相对湿度峰值(25%至75%)期间,KCl涂层剥蚀剂上渗透HgBr_2的回收率下降了4-60%。关闭尖峰后,GOM回收率恢复到渗透水平的60±19%。在某些情况下,在施加额外的湿度后,随着时间的推移,会逐渐钝化KCl涂层的剥蚀剂。在这项研究中,尼龙膜上的GOM回收率随高湿度和臭氧浓度而降低。然而,额外的湿度提高了阳离子交换膜上GOM的回收率。另外,观察到在实验期间元素汞的还原和氧化。这项研究中的发现可以帮助解释先前研究中的实地观察。

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  • 来源
    《Environmental Science & Technology》 |2015年第10期|6102-6108|共7页
  • 作者单位

    Department of Natural Resources and Environmental Sciences, University of Nevada-Reno, 1664 North Virginia Street, Reno, Nevada, 89557, United States;

    Department of Natural Resources and Environmental Sciences, University of Nevada-Reno, 1664 North Virginia Street, Reno, Nevada, 89557, United States;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 13:59:44

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