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首页> 外文期刊>The Science of the Total Environment >Mercury in Arctic snow: Quantifying the kinetics of photochemical oxidation and reduction
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Mercury in Arctic snow: Quantifying the kinetics of photochemical oxidation and reduction

机译:北极雪中的汞:量化光化学氧化和还原的动力学

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摘要

Controlled experiments were performed with frozen and melted Arctic snow to quantify relationships between mercury photoreaction kinetics, ultra violet (UV) radiation intensity, and snow ion concentrations. Frozen (-10 ℃) and melted (4 ℃) snow samples from three Arctic sites were exposed to UV (280-400 nm) radiation (1.26-5.78 W • m~(-2)), and a parabolic relationship was found between reduction rate constants in frozen and melted snow with increasing UV intensity. Total photoreduced mercury in frozen and melted snow increased linearly with greater UV intensity. Snow with the highest concentrations of chloride and iron had larger photore-duction and photooxidation rate constants, while also having the lowest Hg(0) production. Our results indicate that the amount of mercury photoreduction (loss from snow) is the highest at high UV radiation intensities, while the fastest rates of mercury photoreduction occurred at both low and high intensities. This suggests that, assuming all else is equal, earlier Arctic snow melt periods (when UV intensities are less intense) may result in less mercury loss to the atmosphere by photoreduction and flux, since less Hg(0) is photoproduced at lower UV intensities, thereby resulting in potentially greater mercury transport to aquatic systems with snowmelt.
机译:对冷冻和融化的北极雪进行了对照实验,以量化汞光反应动力学,紫外线(UV)辐射强度和雪离子浓度之间的关系。将三个北极地区的冰冻(-10℃)和融化(4℃)的雪样品暴露于紫外线(280-400 nm)辐射(1.26-5.78 W•m〜(-2))下,发现两者之间存在抛物线关系紫外线强度增加时,冷冻和融化雪中的还原速率常数降低。冷冻和融化雪中的总光还原汞含量随着紫外线强度的增加而线性增加。氯化物和铁的浓度最高的雪具有更大的光还原和光氧化速率常数,同时产生的Hg(0)也最低。我们的结果表明,在高紫外线辐射强度下,汞的光还原量(从雪中损失)最高,而在低强度和高强度下,汞光还原速率最快。这表明,假设其他所有条件都相同,则北极雪融化的早期(紫外线强度较低时)可能会通过光还原和通量减少向大气中的汞损失,因为在较低紫外线强度下会产生较少的Hg(0),从而有可能使更多的汞通过融雪运到水生系统中。

著录项

  • 来源
    《The Science of the Total Environment》 |2015年第15期|115-132|共18页
  • 作者单位

    Department of Environmental Science, Acadia University, Wolfville, NS, Canada,Environmental Science Programme, Memorial University of Newfoundland, St. John's, NL, Canada;

    Department of Biology, Acadia University, Wolfville, NS, Canada;

    Environmental Science Programme, Memorial University of Newfoundland, St. John's, NL, Canada;

    Environment Canada, Dartmouth, NS, Canada;

    Department of Environmental Science, Acadia University, Wolfville, NS, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mercury; Photochemistry; Arctic; Snow; Kinetics; Snowmelt;

    机译:汞;光化学;北极;雪;动力学;融雪;

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