Department of Natural Resources and Environmental Science, University of Nevada, Reno, Nevada 89557, United States.
Appalachian Laboratory, University of Maryland Center for Environmental Science, Frostburg, Maryland 21532, United States.
Environ Sci Technol. 2020 Jul 7;54(13):7922-7931. doi: 10.1021/acs.est.0c02283. Epub 2020 Jun 23.
To advance our understanding of the mercury (Hg) biogeochemical cycle, concentrations and chemistry of gaseous oxidized Hg (GOM), particulate-bound Hg (PBM), and reactive Hg (RM = GOM + PBM) need to be known. The UNR-RMAS 2.0 provides a solution that will advance knowledge. From 11/2017 to 02/2019, the RMAS 2.0 was deployed in Hawai'i, Nevada, Maryland, and Utah to test system performance and develop an understanding of RM at locations impacted by different atmospheric oxidants. Mauna Loa Observatory, Hawai'i, impacted by the free troposphere and the marine boundary layer, had primarily -Br/Cl RM compounds. The Nevada location, directly adjacent to a major interstate highway and experiences inputs from the free troposphere, exhibited -Br/Cl, -N, -S, and organic compounds. In Maryland, compounds observed were -N, -S, and organic-Hg. This site is downwind of coal-fired power plants and located in a forested area. The location in Utah is in a basin impacted by oil and natural gas extraction, multiday wintertime inversion episodes, and inputs from the free troposphere. Compounds were -Br/Cl or -O, -N, and -Br/Cl. The chemical forms of RM identified were consistent with the air source areas, predominant ion chemistry, criterion air pollutants, and meteorology.
为了深入了解汞 (Hg) 的生物地球化学循环,需要了解气态氧化汞 (GOM)、颗粒态汞 (PBM) 和反应性汞 (RM = GOM + PBM) 的浓度和化学性质。UNR-RMAS 2.0 提供了一个可以推进相关知识的解决方案。从 2017 年 11 月到 2019 年 2 月,RMAS 2.0 在夏威夷、内华达州、马里兰州和犹他州进行了部署,以测试系统性能并了解不同大气氧化剂影响下的 RM。莫纳罗亚观测站位于夏威夷,受自由对流层和海洋边界层的影响,主要存在 -Br/Cl RM 化合物。内华达州的位置紧邻主要州际公路,受到自由对流层的输入影响,存在 -Br/Cl、-N、-S 和有机化合物。在马里兰州,观察到的化合物为 -N、-S 和有机汞。该地点位于燃煤电厂的下风处,位于森林地区。犹他州的位置在一个受到石油和天然气开采、多日冬季逆温事件以及自由对流层输入影响的盆地中。化合物为 -Br/Cl 或 -O、-N 和 -Br/Cl。确定的 RM 化学形式与空气源区、主要离子化学、标准空气污染物和气象条件一致。