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首页> 外文期刊>Environmental Science and Pollution Research >Do morphometric parameters and geological conditions determine chemistry of glacier surface ice? Spatial distribution of contaminants present in the surface ice of Spitsbergen glaciers (European Arctic)
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Do morphometric parameters and geological conditions determine chemistry of glacier surface ice? Spatial distribution of contaminants present in the surface ice of Spitsbergen glaciers (European Arctic)

机译:不同的参数和地质条件确定冰川表面冰的化学吗? Spitsbergen Glaciers表面冰中存在的污染物的空间分布(欧洲北极)

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The chemism of the glaciers is strongly determined by long-distance transport of chemical substances and their wet and dry deposition on the glacier surface. This paper concerns spatial distribution of metals, ions, and dissolved organic carbon, as well as the differentiation of physicochemical parameters (pH, electrical conductivity) determined in ice surface samples collected from four Arctic glaciers during the summer season in 2012. The studied glaciers represent three different morphological types: ground based (Blomlibreen and Scottbreen), tidewater which evolved to ground based (Renardbreen), and typical tidewater glacier (Recherchebreen). All of the glaciers are functioning as a glacial system and hence are subject to the same physical processes (melting, freezing) and the process of ice flowing resulting from the cross-impact force of gravity and topographic conditions. According to this hypothesis, the article discusses the correlation between morphometric parameters, changes in mass balance, geological characteristics of the glaciers and the spatial distribution of analytes on the surface of ice. A strong correlation (r = 0.63) is recorded between the aspect of glaciers and values of pH and ions, whereas dissolved organic carbon (DOC) depends on the minimum elevation of glaciers (r = 0.55) and most probably also on the development of the accumulation area. The obtained results suggest that although certain morphometric parameters largely determine the spatial distribution of analytes, also the geology of the bed of glaciers strongly affects the chemism of the surface ice of glaciers in the phase of strong recession.
机译:冰川的化学通过化学物质的长距离传输和冰川表面上的湿和干沉积强烈确定。本文涉及金属,离子和溶解的有机碳的空间分布,以及在2012年夏季从四个北极冰川收集的冰表面样本中测定的物理化学参数(pH值,电导率)的分化。学习冰川代表三种不同的形态类型:基于地面(Blomlibreen和Scottbreen),潮水,它被基于地面(雷达勒典)和典型的潮水冰川(rechercencreen)。所有冰川都用作冰川系统,因此受到相同的物理过程(熔化,冷冻)和由重力和地形条件的交叉冲击力产生的冰流程的过程。根据该假设,本文讨论了形态量参数,质量平衡变化,冰川地质特征的相关性,以及冰表面的分析物的空间分布。在冰川的方面和pH和离子的值之间记录强相关(r = 0.63),而溶解有机碳(DOC)取决于冰川的最小升高(r = 0.55),也可能也可能还对开发积聚区域。所得的结果表明,尽管某些形态学参数在很大程度上决定了分析物的空间分布,但冰川床的地质也强烈影响了冰川阶段的冰川表面冰的化学。

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