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Organic Contaminant Release From Melting Snow. 2. Influence Of Snow Pack And Melt Characteristics

机译:融雪中的有机污染物释放。 2.积雪和融雪特性的影响

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摘要

Large reservoirs of organic contaminants in seasonal snowpack can be released in short pulses during spring snowmelt, potentially impacting the receiving ecosystems. Laboratory experiments using artificial snow spiked with organic target substances were conducted to investigate the behavior of six organic contaminants with widely variable distribution properties in melting snow. Whereas the influence of a chemical's equilibrium phase partitioning on the elution behavior is explored in a companion paper, we discuss here the impact of snow properties and melt features, including the snowpack depth, the temperature at the interface between soil and snow, the meltwater content, the internal ice surface area, and the existence of distinct snow layers. Water-soluble organic substances are released in high concentrations at the beginning of a melt period when a deep and aged snowpack undergoes intense melting. Warm ground can cause notable melting at the snow bottom leading to a delayed and dampened concentration peak. Hydraulic barriers in layered snow packs cause preferential meltwater flow which also mitigates the early contaminant flush. Hydrophobic organic pollutants that are associated with particles accumulate near the snow surface and are released at the end of melting. Dirt cones at the surface of a dense snowpack enhance this enrichment. The findings of this laboratory study will aid in the understanding of the behavior of organic pollutants during the melting of more
机译:在春季融雪期间,季节性积雪中的大量有机污染物库可能在短时间内释放出来,从而可能影响接收生态系统。进行了使用掺有有机目标物质的人造雪的实验室实验,以研究六种具有广泛变化的分布特性的有机污染物在融雪中的行为。尽管在同伴论文中探讨了化学物的平衡相分配对洗脱行为的影响,但我们在此讨论雪性质和融化特征的影响,包括雪堆深度,土壤与雪之间的界面温度,融水含量,内部冰的表面积以及明显的雪层的存在。当深而老化的积雪强烈融化时,在融化期开始时,水溶性有机物以高浓度释放。温暖的地面会导致雪底明显融化,从而导致浓度峰的延迟和衰减。分层积雪中的液压屏障会导致优先的融水流动,这也减轻了早期的污染物冲刷。与颗粒相关的疏水性有机污染物积聚在雪表面附近,并在融化结束时释放。密集积雪表面的污物锥增强了这种富集作用。这项实验室研究的结果将有助于了解更多污染物在融化过程中有机污染物的行为。

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  • 来源
    《Environmental Science & Technology》 |2009年第3期|663-668|共6页
  • 作者单位

    Department of Chemical Engineering and Applied Chemistryrnand Department of Physical and Environmental Sciences,rnUniversity of Toronto at Scarborough, 1265 Military Trail,rnToronto, Ontario, Canada, MIC 1A4;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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