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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Frost flowers growing in the Arctic ocean - atmosphere - sea ice - snow interface: 2. Mercury exchange between the atmosphere, snow, and frost flowers
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Frost flowers growing in the Arctic ocean - atmosphere - sea ice - snow interface: 2. Mercury exchange between the atmosphere, snow, and frost flowers

机译:霜花在北冰洋-增长大气-海冰雪接口:2。之间的交流氛围,雪和霜花

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[1] Frost flowers are ice crystals that grow on refreezing sea ice leads in Polar Regions by wicking brine from the sea ice surface and accumulating vapor phase condensate. These crystals contain high concentrations of mercury (Hg) and are believed to be a source of reactive halogens, but their role in Hg cycling and impact on the fate of Hg deposited during atmospheric mercury depletion events (AMDEs) are not well understood. We collected frost flowers growing on refreezing sea ice near Barrow, Alaska (U. S. A.) during an AMDE in March 2009 and measured Hg concentrations and Hg stable isotope ratios in these samples to determine the origin of Hg associated with the crystals. We observed decreasing A~(199)Hg values in the crystals as they grew from new wet frost flowers (mean A~(199)Hg = 0.77±0.13%o, 1 s.d.) to older dry frost flowers(mean A~(199)Hg = 0.10 ± 0.05%o, 1 s.d.). Over the same time period, mean Hg concentrations in these samples increased from 131 6 ng/L (1 s.d.) to 180 + 28 ng/L(1 s.d.). Coupled with a previous study of Hg isotopic fractionation during AMDEs, these results suggest that Hg initially deposited to the local snowpack was subsequently reemitted during photochemical reduction reactions and ultimately accumulated on the frost flowers. As a result of this process, frost flowers may lead to enhanced local retention of Hg deposited during AMDEs and may increase Hg loading to the Arctic Ocean.
机译:[1]霜花是冰晶生长重新冻结在极地海冰导致毛细作用从海冰表面和盐水积累汽相冷凝。水晶含有高浓度的汞(Hg)和被认为是反应性的来源卤素,但他们的角色在Hg自行车和影响的命运在大气汞沉积汞消耗事件(amd)并不好理解。阿拉斯加巴罗附近重新冻结的海冰,(美国)在2009年3月在此外,Hg来衡量浓度和Hg稳定同位素比率这些样本以确定Hg的起源与晶体。减少一个~ (199)Hg值在晶体他们从新的湿霜花的意思~ (199) Hg o = 0.77±0.13%,南达科他州1)老干霜花(意味着~ (199)Hg o = 0.10±0.05%,1南达科他州)。在这些样品浓度增加南达科他州131 6 ng / L (1) 180 + 28 ng / L南达科他州(1)。加上先前研究汞同位素在amd分馏,这些结果显示Hg最初存入当地积雪随后在光化学核能还原反应,最终积累霜花。霜花可能导致增强的地方保留Hg沉积在amd和可能增加对北冰洋Hg加载。

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