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Runoff sources and land cover change in the Amazon: an end-member mixing analysis from small watersheds

机译:亚马逊地区的径流来源和土地覆盖变化:来自小流域的终端成员混合分析

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摘要

The flowpaths by which water moves from watersheds to streams has important consequences for the runoff dynamics and biogeochemistry of surface waters in the Amazon Basin. The clearing of Amazon forest to cattle pasture has the potential to change runoff sources to streams by shifting runoff to more surficial flow pathways. We applied end-member mixing analysis (EMMA) to 10 small watersheds throughout the Amazon in which solute composition of streamwater and groundwater, overland flow, soil solution, throughfall and rainwater were measured, largely as part of the Large-Scale Biosphere-Atmosphere Experiment in Amazonia. We found a range in the extent to which streamwater samples fell within the mixing space determined by potential flowpath end-members, suggesting that some water sources to streams were not sampled. The contribution of overland flow as a source of stream flow was greater in pasture watersheds than in forest watersheds of comparable size. Increases in overland flow contribution to pasture streams ranged in some cases from 0% in forest to 27-28% in pasture and were broadly consistent with results from hydrometric sampling of Amazon forest and pasture watersheds that indicate 17- to 18-fold increase in the overland flow contribution to stream flow in pastures. In forest, overland flow was an important contribution to stream flow (45-57%) in ephemeral streams where flows were dominated by stormflow. Overland flow contribution to stream flow decreased in importance with increasing watershed area, from 21 to 57% in forest and 60-89% in pasture watersheds of less than 10 ha to 0% in forest and 27-28% in pastures in watersheds greater than 100 ha. Soil solution contributions to stream flow were similar across watershed area and groundwater inputs generally increased in proportion to decreases in overland flow. Application of EMMA across multiple watersheds indicated patterns across gradients of stream size and land cover that were consistent with patterns determined by detailed hydrometric sampling.
机译:水从流域流向河流的流动路径对亚马逊盆地地表水的径流动力学和生物地球化学具有重要意义。通过将亚马逊河森林砍伐为牧场,有可能通过将径流转移到更表面的流动路径来将径流源改变为溪流。我们对整个亚马逊地区的10个小流域应用了末端成员混合分析(EMMA),其中流水和地下水,陆上水流,土壤溶液,贯通水和雨水的溶质组成被测量,这在很大程度上是大型生物圈-大气实验的一部分在亚马逊我们发现了水流样本落入混合空间的程度范围,该范围由潜在的流路末端成员确定,这表明未对水流的某些水源进行采样。牧场流域中,陆流作为河流流的来源的贡献要大于同等规模的森林流域。在某些情况下,陆上径流对牧场流的贡献从森林的0%到牧场的27-28%不等,与亚马逊森林和牧场流域的水文采样结果表明,旱地流量增加了17到18倍。陆流对牧场中水流的贡献。在森林中,陆上流量是短暂流量的重要贡献(45-57%),临时流量的流量以暴雨流量为主。随着流域面积的增加,陆流对水流的贡献的重要性降低,从小于21公顷的森林流域到21%至57%,小于10公顷的牧场流域从60%至89%到大于0%的森林流域和27%至28%的牧场中100公顷在流域地区,土壤溶液对水流的贡献相似,地下水输入量通常与陆上水流减少成比例增加。在多个流域上使用EMMA表示流尺寸和土地覆盖率的梯度上的模式与通过详细水文采样确定的模式一致。

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