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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Atmospheric mercury emissions from substrates and fumaroles associated with three hydrothermal systems in the western United States
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Atmospheric mercury emissions from substrates and fumaroles associated with three hydrothermal systems in the western United States

机译:大气汞排放的基质和火山有三个热液有关系统在美国西部

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This paper quantifies atmospheric mercury (Hg) emissions from substrates and fumaroles associated with three hydrothermal systems: Lassen Volcanic Center, California (LVC); Yellowstone Caldera, Wyoming (YC); and Dixie Valley, Nevada (DV). Substrate Hg fluxes were measured using field chamber methods at thermal and nonthermal sites. The highest Hg fluxes (up to 541 ng m~-2 h~-1) were measured at thermal active areas. Fluxes from altered and unaltered nonthermal sites were 98%). At YC, substrate Hg emissions were dominated (50 to 90%) by acidically altered thermal areas. Substrate emissions at DV were low and primarily from nonthermal areas (66% to 75%). Fumarole emissions at LVC (91–146 kg yr~-1) and YC (0.18–1.6 kg yr~-1 for Mud Volcano) were estimated by applying Hg:H2O and Hg:CO2 ratios in hydrothermal gas samples to H2O and CO2 emissions. Applying total area-average emissions from substrates and thermal features at LVC, YC, and DV to similar systems across the conterminous United States, yearly atmospheric Hg emissions from active hydrothermal systems are projected to be 1.3–2.1 Mg.
机译:本文量化大气汞(Hg)排放的基质和火山与三个热液系统:拉森火山中心,加州(LVC);怀俄明州黄石火山(YC);山谷,内华达(DV)。使用字段在热室方法测量和非热能的网站。541 ng m ~ 2 h ~ 1)测定热活跃的地区。非热能的网站 98%)。(50 - 90%) acidically改变为主的社会热的地区。和主要来自非热能的地区(66%到75%)。喷气孔排放LVC(91 - 146公斤年~ 1)YC(0.18 - -1.6公斤泥火山年~ 1)预计通过应用Hg:水和Hg:二氧化碳比例热液水和二氧化碳气体样品排放。从基板和热特性LVC YC,和DV相接的类似系统美国,每年大气汞排放热液系统预计将从活跃1.3 - -2.1毫克。

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