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Switch in chemical weathering caused by the mass balance variability in a Himalayan glacierized basin: a case of Chhota Shigri Glacier

机译:喜马拉雅冰川化盆地中质量平衡变化引起的化学风化转变:以乔达·希格里冰川为例

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摘要

Long-term data (2003-2015) on meltwater chemistry, mass balance and discharge of a benchmark glacier (Chhota Shigri Glacier, India) were studied to determine any association between these variables. To infer the factors governing the alteration of chemical weathering processes in glacierized basins, multi-annual records of the hydrochemical indices (Ca2++Mg2+/Na++K+) and the C-ratio were also examined. A succession of negative mass balance years has resulted in a decline in solute concentrations in the runoff, as discharge has increased. The (Ca2++Mg2+/Na++K+) and C-ratio are highest during periods of negative annual mass balance, when the spatial extent of the channelized drainage system increases. Conversely, these ratios are lowest in positive mass balance years, when the spatial extent of the channelized drainage system decreases, and chemical weathering in the distributed drainage system becomes more dominant. This paper is the first to show the inter-annual linkages between meltwater chemistry, mass balance and discharge for a valley glacier.
机译:研究了关于融化水化学,质量平衡和基准冰川(Chhota Shigri冰川,印度)的流量的长期数据(2003-2015年),以确定这些变量之间的任何关联。为了推断控制冰川化盆地中化学风化过程变化的因素,还对水化学指数(Ca2 ++ Mg2 + / Na ++ K +)和C值的多年记录进行了检查。随着排放量的增加,一系列连续的负质量平衡年导致了径流中溶质浓度的下降。当通道化排水系统的空间范围增加时,(Ca2 ++ Mg2 + / Na ++ K +)和C比在年度负质量平衡期间最高。相反,当正向质量平衡年中,当通道化排水系统的空间范围减小,而分布式排水系统中的化学风化变得更加占主导地位时,这些比率最低。本文是第一个显示山谷冰川融水化学,质量平衡和流量之间的年际联系的论文。

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