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Substantial proportion of global streamflow less than three months old

机译:少于三个月的全球流量中有相当大的比例

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Biogeochemical cycles, contaminant transport and chemical weathering are regulated by the speed at which precipitation travels through landscapes and reaches streams(1). Streamflow is a mixture of young and old precipitation(2), but the global proportions of these young and old components are not known. Here we analyse seasonal cycles of oxygen isotope ratios in rain, snow and streamflow compiled from 254 watersheds around the world, and calculate the fraction of streamflow that is derived from precipitation that fell within the past two or three months. This young streamflow accounts for about a third of global river discharge, and comprises at least 5% of discharge in about 90% of the catchments we investigated. We conclude that, although typical catchments have mean transit times of years or even decades(3), they nonetheless can rapidly transmit substantial fractions of soluble contaminant inputs to streams. Young streamflow is less prevalent in steeper landscapes, which suggests they are characterized by deeper vertical infiltration. Because young streamflow is derived from less than 0.1% of global groundwater storage, we conclude that this thin veneer of aquifer storage will have a disproportionate influence on stream water quality.
机译:生物地球化学循环,污染物迁移和化学风化受降水穿过景观并到达溪流的速度调节(1)。径流是新旧降水的混合体(2),但这些新旧成分的全球比例尚不明确。在这里,我们分析了来自全球254个集水区的雨,雪和水流中氧同位素比率的季节性周期,并计算了过去两三个月内来自降水的水流比例。这个年轻的流量约占全球河流流量的三分之一,在我们调查的约90%的集水区中至少占流量的5%。我们得出的结论是,尽管典型的集水区的平均渡越时间为数年甚至数十年(3),但它们仍可以将大部分可溶污染物输入快速传输至河流。较年轻的水流在较陡峭的景观中较不流行,这表明它们的特征在于较深的垂直渗透。因为年轻的水流来自不到全球地下水存储量的0.1%,所以我们得出的结论是,薄薄的含水层单板将对水流水质产生不成比例的影响。

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