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Riparian zone hydrology and soil water total organic carbon (TOC): implications for spatial variability and upscaling of lateral riparian TOC exports

机译:河岸水域水文和土壤水总有机碳(TOC):对横向河岸TOC出口的空间变异性和上升的影响

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Groundwater flowing from hillslopes through riparian (near-stream) soils often undergoes chemical transformations that can substantially influence stream water chemistry. We used landscape analysis to predict total organic carbon (TOC) concentration profiles and groundwater levels measured in the riparian zone (RZ) of a 67 km2 catchment in Sweden. TOC exported laterally from 13 riparian soil profiles was then estimated based on the riparian flow–concentration integration model (RIM). Much of the observed spatial variability of riparian TOC concentrations in this system could be predicted from groundwater levels and the topographic wetness index (TWI). Organic riparian peat soils in forested areas emerged as hotspots exporting large amounts of TOC. These TOC fluxes were subject to considerable temporal variations caused by a combination of variable flow conditions and changing soil water TOC concentrations. Mineral riparian gley soils, on the other hand, were related to rather small TOC export rates and were characterized by relatively time-invariant TOC concentration profiles. Organic and mineral soils in RZs constitute a heterogeneous landscape mosaic that potentially controls much of the spatial variability of stream water TOC. We developed an empirical regression model based on the TWI to move beyond the plot scale and to predict spatially variable riparian TOC concentration profiles for RZs underlain by glacial till.
机译:通过河流(近流)土壤从山坡流动的地下水经常经历化学转化,可以大大影响流水化学。我们使用景观分析来预测瑞典67平方公里集水区的河岸区(RZ)中的总有机碳(TOC)浓度分布和地下水位。然后根据河岸流量集成模型(RIM)估计从13个河岸土壤轮廓出口横向导出的TOC。可以从地下水位和地形湿度指数(TWI)预测该系统中的河流TOC浓度的大部分观察到的空间变异性。由于热点出口大量TOC,森林地区有机河豚泥炭土壤。这些TOC助熔剂受到可变流动条件的组合和改变土壤水TOC浓度的相当大的时间变化。另一方面,矿物河岸巨大土壤与相当小的TOC出口速率有关,并通过相对不变的TOC浓度配置文件表征。 RZS中的有机和矿物土壤构成了一个异构景观马赛克,可能控制流水TOC的大部分空间变异性。我们开发了基于TWI的经验回归模型,以超越绘图规模,并通过冰川直到将RZS下划线预测空间可变的河流TOC浓度分布。

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