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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Tracing total and dissolved material in a western Canadian basin using quality control samples to guide the selection of fingerprinting parameters for modelling
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Tracing total and dissolved material in a western Canadian basin using quality control samples to guide the selection of fingerprinting parameters for modelling

机译:使用质量控制样品跟踪西加拿大盆地中的总和溶解材料,从而指导选择指纹参数以进行建模

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The source dynamics of total and dissolved material in riverine systems are being affected by anthropogenic activities resulting in the degradation of waterways worldwide. Identifying the main sources of total and dissolved material is thus central to the management of increasingly scarce water resources. Here, we utilize data generated from water quality monitoring programs to investigate the sources of total and dissolved material in a large, semi-arid basin in western Canada. Our research focuses on the confluence of two major tributaries in the South Saskatchewan River Basin (SSRB) in the Province of Alberta: the Bow River (25,611 km(2)) and the Oldman River (28,270 km(2)). A tributary tracing technique coupled with a Deconvolutional-MixSIAR (D-MIXSIAR) modelling approach is used to estimate the potential source contributions of total and dissolved material from major tributary sites to target node sites on the main stem of the Bow River and Oldman River in addition to target nodes downstream of their confluence. In total, 812 samples were taken from 29 sites across the SSRB. A novel approach to selecting fingerprints for modelling is presented based on the analyses of additional quality control samples (146 duplicate and 172 blank samples). Overall, the Rocky Mountain headwater catchments were found to dominate the supply of material modelled using total recoverable (68%) and dissolved (76%) metals. There were seasonal fluctuations in source dynamics evident where the Bow River dominated the supply of total (69%) and dissolved (57%) material during the ice-covered season (November-March), and the Oldman River dominated the supply of total (73%) and dissolved (59%) material during the open water season (April-October). On the one hand, these seasonal dynamics are potentially the result of the extensive regulation of flow, particularly along the Bow River. On the other hand, the intensification of agriculture in the prairie/plain catchments may also facilitate the excess supply of total relative to dissolved material. For example, the Little Bow River, with similar to 70% agricultural land cover, contributed similar to 14 times more total material than anticipated based on discharge and 1.6 times more than anticipated based on unit area during the open water season. Overall, this research has improved our understanding of the source dynamics of total and dissolved material in the SSRB, providing the foundation for focussed studies targeting the main sources of total and dissolved material in this large, semi-arid basin in western Canada. In addition, our research highlights the potential of using existent data generated from water quality monitoring programs along with quality control best practices to help improve our understanding of the source dynamics of total and dissolved material in waterways around the world.
机译:河流系统中总物质和溶解物质的来源动态正受到人为活动的影响,这些活动导致全球水道退化。因此,确定总物质和溶解物质的主要来源对于管理日益稀缺的水资源至关重要。在这里,我们利用水质监测项目产生的数据,调查加拿大西部一个大型半干旱盆地中总物质和溶解物质的来源。我们的研究集中在阿尔伯塔省南萨斯喀彻温河流域(SSRB)两条主要支流的交汇处:鲍河(25611 km(2))和奥尔德曼河(28270 km(2))。支流追踪技术与反褶积MixSIAR(D-MixSIAR)建模方法相结合,用于估算主要支流站点到Bow河和Oldman河干流上目标节点站点的总物质和溶解物质的潜在来源贡献,以及汇流下游的目标节点。总共从SSRB的29个站点采集了812个样本。基于对额外质量控制样本(146个重复样本和172个空白样本)的分析,提出了一种新的选择建模指纹的方法。总体而言,发现落基山脉上游集水区在使用总可采金属(68%)和溶解金属(76%)建模的材料供应中占主导地位。水源动态存在明显的季节性波动,在冰封季节(11月至3月),Bow河主导了总(69%)和溶解(57%)物质的供应,而在开放水域季节(4月至10月),Oldman河主导了总(73%)和溶解(59%)物质的供应。一方面,这些季节性动态可能是广泛的流量调节的结果,尤其是沿鲍河。另一方面,草原/平原集水区农业的强化也可能促进总溶解物质的过量供应。例如,小弓河的农业土地覆盖率接近70%,根据流量计算,其总物质贡献比预期的高14倍,根据开水季节的单位面积计算,其贡献比预期的高1.6倍。总的来说,本研究提高了我们对SSRB中总溶解物质来源动态的认识,为在加拿大西部这个半干旱盆地的总溶解物质的主要来源集中研究提供了基础。此外,我们的研究强调了利用水质监测项目产生的现有数据以及质量控制最佳实践的潜力,以帮助我们更好地了解世界各地水道中总物质和溶解物质的来源动态。

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