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Conditions controlling atmospheric pollutant deposition via snowpack

机译:通过积雪控制大气污染物沉积的条件

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Solid precipitation represents a potentially important addition to other measures of deposition. However, an accurate estimate of snowfall amount and pollutant loading is not a trivial matter. There are obvious distinctions between regular precipitation collection and snowpack sampling that represent the cumulative chemistry of bulk deposition. The main goal is to show the most important processes and factors that may influence the rate and magnitude of pollutants deposition affected by the snowfalland snow cover: atmospheric pollutant enhancement of snowfall, pollutants deposition at snow cover surface, drifting and blowing snow, formation of the snow cover and its internal changes, as well as pollutants flow through the snowpack. These phenomenalead to continuous changes in the chemistry of the snow cover and the deposition calculated on the basis of pollutants concentrations in daily portions of atmospheric precipitation. The real deposition released from snowpack is strictly related to the number and depth of thaw episodes. If the amount of stored pollutants is large, first portions of ablation water flushing from the snowpack can carry the load of pollutants, and potentially affecting the environment in a detrimental way. Igneous bedrock isespecially sensitive to acidic ions because of its low buffering capacity.
机译:固体沉淀物是其他沉积方法的潜在重要补充。但是,准确估算降雪量和污染物含量并非易事。常规的降水收集和积雪采样之间有明显的区别,代表着大体积沉积的累积化学。主要目的是显示可能影响受降雪和积雪影响的污染物沉积速率和幅度的最重要过程和因素:大气降雪增强污染物,积雪表面的污染物沉积,积雪和吹雪,积雪的形成。积雪及其内部变化以及污染物流过积雪。这些现象导致积雪的化学成分和沉积物不断变化,而沉积物是根据大气降水的每日部分中的污染物浓度计算得出的。从积雪中释放出来的实际沉积物与解冻次数和深度密切相关。如果存储的污染物数量很大,则从积雪冲刷的消融水的第一部分可能会承载污染物,并可能以有害的方式影响环境。火成岩基岩对酸性离子特别敏感,因为其缓冲能力低。

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