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Isotopic insights on continental water sources and transport in the mountains and plains of Southern South America

机译:对南美洲南部山脉和平原的大陆水源和运输同位素见解

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Hosting the flattest sedimentary plains and highest Andean range of the continent, southern South America faces hydrological transformations driven by climate and land use changes. Although water stable isotopes can help understand these transformations, regional synthesis on their composition is lacking. We compiled for the first time a dataset of H and O isotopic composition for 1659 samples (precipitation, rivers, groundwater and lakes) along latitude (22.4 degrees S to 41.6 degrees S), longitude (55.3 degrees W to 71.5 degrees W), elevation (1-4700 m) and precipitation (similar to 50 to similar to 1500 mm/a) gradients encompassing the Chaco-Espinal-Pampas plains, their adjacent Andean Cordillera and smaller mountain ranges in-between. Emerging patterns reveal (i) only slight seasonal isotope trends in precipitation with no effects of event size, (ii) Atlantic/Amazonian vs. Pacific moisture supply to rivers north and south of the 'arid diagonal' of the continent, respectively, (iii) uniform isotopic composition in Atlantic/Amazonian-fed rivers vs. poleward isotope enrichment in Pacific-fed rivers caused by the elevation decline of the Andes, (iv) strong direct evaporation effect in rivers and shallow (1 m) phreatic groundwater of the plains. We provide the first integrated water isotope geographical patterns of southern South America helping to improve our understanding of its water cycling patterns at the atmosphere and the land.
机译:南部南美洲南部举办五大沉积平原和大陆的最高安第斯系列,面临着受气候和土地利用变化驱动的水文转型。虽然水稳定同位素可以有助于了解这些转化,但缺乏对其组成的区域合成。我们首次编制了H和O同位素组合物的第一次(降水,河流,地下水和湖泊)沿纬度(22.4度至41.6度),经度(55.3°W至71.5°W),高度(1-4700米)和沉淀(类似于50至相似的50毫米/ a)梯度,包括Chaco-espinal-pampas平原,其相邻的Andean Cordillera和较小的山脉之间。新兴模式显示(i)只有淡淡的季节性同位素趋势,没有事件规模的影响,(ii)Atlantic / Amazonian对大陆的“干旱对角线”的河北和南部的大西洋/亚马逊与太平洋水分供应。(III )在大西洋/亚马逊喂养河流的均匀同位素组成与波太平洋河流的极化同位素浓缩,由河流(IV)强烈直接蒸发效果的高度衰落,浅(<1米)的潜水地下水平原。我们提供南美洲的第一个综合水同位素地理图案,帮助改善我们对大气和土地的水循环模式的理解。

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