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首页> 外文期刊>The Science of the Total Environment >Preferential elution of ionic solutes in melting snowpacks: Improving process understanding through field observations and modeling in the Rocky Mountains
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Preferential elution of ionic solutes in melting snowpacks: Improving process understanding through field observations and modeling in the Rocky Mountains

机译:优先洗脱融化雪堆中的离子溶质:通过实地观察和落基山脉建模提高对过程的了解

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摘要

The preferential elution of ions from melting snowpacks is a complex problem that has been linked to temporary acidification of water bodies. However, the understanding of these processes in snowpacks around the world, including the polar regions that are experiencing unprecedented warming and melting, remains limited despite being instrumental in supporting climate change adaptation. In this study, data collected from a snowmelt lysimeter and snowpits at meadow and forest-gap sites in a high elevation watershed in Colorado were combined with the PULSE multi-phase snowpack chemistry model to investigate the controls of meltwater chemistry and preferential elution. The snowdepth at the meadow site was 64% of that at the forest-gap site, and the snowmelt rate was greater there (meadow snowpit) due to higher solar irradiance. Cations such as Ca~(2+) and NH_4~+ were deposited mostly within the upper layers of both the meadow and forest-gap snowpacks, and acid anions such as NO_3~- and SO_4~(2-) were more evenly distributed. The snow ion concentrations were generally greater at the forest-gap snowpit, except for NH_4~+, which indicates that wind erosion of wet and dry deposited ions from the meadow may have reduced concentrations of residual snow. Furthermore, at the forest-gap site, snow interception and scavenging processes such as sublimation, ventilation, and throughfall led to particular ion enrichment of Ca~(2+), Mg~(2+), K~+, CI~-, SO_4~(2-) and NO_3~-. Model simulations and observations highlight that preferential elution is enhanced by low snowmelt rates, with the model indicating that this is due to lower dilution rates and increased contact time and area between the percolating meltwater and the snow. Results suggest that low snowmelt rates can cause multiple early meltwater ionic pulses for ions subject to lower ion exclusion. Ion exclusion rates at the grain-size level have been estimated for the first time.
机译:从融化的积雪中优先洗脱离子是一个复杂的问题,与水体的暂时酸化有关。但是,尽管在支持气候变化适应方面发挥了重要作用,但对世界各地积雪,包括正在经历史无前例的变暖和融化的极地地区的这些过程的了解仍然有限。在这项研究中,从科罗拉多州一个高海拔流域的草甸融雪蒸散仪和雪场中的雪坑收集的数据与PULSE多相积雪化学模型相结合,研究了融水化学的控制和优先洗脱。草甸地点的积雪深度是森林缺口地点的积雪深度的64%,并且由于太阳辐射较高,那里的融雪率更高(草地积雪坑)。 Ca〜(2+)和NH_4〜+等阳离子主要沉积在草甸和森林间隙积雪的上层,而NO_3〜-和SO_4〜(2-)等酸性阴离子分布更均匀。除NH_4〜+以外,森林间隙雪坑中的雪离子浓度通常更高,这表明来自草地的湿的和干的沉积离子的风蚀可能降低了残留雪的浓度。此外,在森林缺口处,雪的拦截和清除过程(例如升华,通风和穿透)导致Ca〜(2 +),Mg〜(2 +),K〜+,Cl〜-, SO_4〜(2-)和NO_3〜-。模型仿真和观察结果突出表明,低融雪率可提高优先洗脱的效率,该模型表明这是由于较低的稀释率以及渗滤融水与雪之间的接触时间和接触面积增加所致。结果表明,较低的融雪速率会导致受到较低离子排斥的离子产生多个早期的融水离子脉冲。首次估计了晶粒大小的离子排斥率。

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  • 来源
    《The Science of the Total Environment 》 |2020年第25期| 136273.1-136273.15| 共15页
  • 作者

  • 作者单位

    Environment and Climate Change Canada National Hydrology Research Centre Saskatoon SK Canada Centre for Hydrology University of Saskatchewan Saskatoon SK. Canada Global Institute for Water Security University of Saskatchewan Saskatoon SK Canada;

    U.S. Geological Survey Colorado Water Science Center Denver CO USA;

    Centre for Hydrology University of Saskatchewan Saskatoon SK. Canada Global Institute for Water Security University of Saskatchewan Saskatoon SK Canada;

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

    Meltwater chemistry; Snow chemistry; Preferential elution; Snow ion exclusion; Snowmelt; Cryosphere; Numerical modeling;

    机译:融水化学;雪化学;优先洗脱;排除雪离子;融雪;冰冻圈;数值模拟;

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