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The Niobrara Formation as a challenge to water quality in the Arkansas River, Colorado, USA

机译:Niobrara组是对美国科罗拉多州阿肯色河水质的挑战

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Study region Arkansas River, east of the Rocky Mountains. Study focus Cretaceous sedimentary rocks in the western United States generally pose challenges to water quality, often through mobilization of salts and trace metals by irrigation. However, in the Arkansas River Basin of Colorado, patchy exposure of multiple Cretaceous formations has made it difficult to identify which formations are most problematic. This paper examines water quality in surface-water inflows along a 26-km reach of the Arkansas River relative to the presence or absence of the Cretaceous Niobrara Formation within the watershed. New hydrological insights for the region Principal component analysis (PCA) shows Niobrara-influenced inflows have distinctive geochemistry, particularly with respect to Na, Mg, SO4 2? , and Se. Uranium concentrations are also greater in Niobrara-influenced inflows. During the irrigation season, median dissolved solids, Se, and U concentrations in Niobrara-influenced inflows were 83%, 646%, and 55%, respectively, greater than medians where Niobrara Formation surface exposures were absent. During the non-irrigation season, which better reflects geologic influence, the differences were more striking. Median dissolved solids, Se, and U concentrations in Niobrara-influenced inflows were 288%, 863%, and 155%, respectively, greater than median concentrations where the Niobrara Formation was absent. Identification of the Niobrara Formation as a disproportionate source for dissolved solids, Se, and U will allow for more targeted studies and management, particularly where exposures underlie irrigated agriculture.
机译:研究落基山脉以东的阿肯色河地区。研究重点美国西部的白垩纪沉积岩通常对水质构成挑战,通常是通过灌溉来移动盐和微量金属。但是,在科罗拉多州的阿肯色河流域,多个白垩纪地层的斑驳性暴露使人们很难确定哪些地层最成问题。本文研究了流域内是否存在白垩纪Niobrara地层的阿肯色河26公里处地表水流入的水质。主区域分析(PCA)显示,受Niobrara影响的入流具有独特的地球化学,特别是在Na,Mg,SO4 2方面。和Se。受Niobrara影响的流入物中的铀浓度也更高。在灌溉季节,受Niobrara影响的入流中的溶解固体,Se和U浓度的中位数分别比没有Niobrara地表暴露的中位数高83%,646%和55%。在更好地反映地质影响的非灌溉季节,差异更为明显。受Niobrara影响的入流中的溶解固体,Se和U的中值浓度分别比没有Niobrara组的中值浓度高288%,863%和155%。将Niobrara地层确定为溶解固体,Se和U的不成比例来源,将允许进行更有针对性的研究和管理,尤其是在灌溉农业为基础的情况下。

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