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Dye tracer and morphophysical properties to observe water flow in a Gleyic Luvisol

机译:染料示踪剂和形态物理特性,以观察Gleyic Luvisol中的水流

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The understanding of the preferential water flow and solute transport is important with regard to losses of nutrients and pesticides that affect the quality of the groundwater or surface water resources. Experiments using the brilliant blue dye tracer, a tension infiltrometer (TI) and a double square infiltrometer (DI) were carried out in the experimental field site located around 15 km southeast of the city of Rostock (North-Eastern Germany) on arable land in a Pleistocene lowland landscape where corn (Zea mays L.) and barley (Hordeum spp.) had been cultivated. One day after dye the infiltration, a pit was dug and vertical profiles were prepared in the TI and DI sites to assess the dye pathways in the subsoil of a Gleyic Luvisol. We wanted to examine if the mottled red and white (bleached) colour-pattern of the Gleyic Luvisol subsoil resulting from temporally stagnant water could be related to flow paths as visualized by dye tracing and if the soil colour could be related to other physical soil properties. Biogenic soil structures were the main transport routes conducting water and solutes into great depth in short time. These pathways had lower bulk density and less cone resistance than the adjacent red or white (bleached) areas of the Gleyic Luvisol subsoil. The red areas were involved in transport because their water contents increased after as compared to before infiltration. However, the measured physical soil properties did not differ between white and red areas. We assume that red areas participate in transport at least by imbibing water from the adjacent biogenic flow paths.
机译:对于影响地下水或地表水资源质量的养分和农药流失,了解优先的水流和溶质运输非常重要。使用亮蓝色染料示踪剂,张力渗透仪(TI)和双平方渗透仪(DI)在位于德国罗斯托克市(德国东北)东南15公里处的实验现场进行了实验。种植玉米(大麦(Zea mays L.)和大麦(Hordeum spp。))的更新世低地景观。染料渗透一天后,挖出一个凹坑,并在TI和DI位置制备垂直剖面,以评估Gleyic Luvisol底土中的染料途径。我们想研究一下暂时停滞的水所导致的Gleyic Luvisol底土的斑驳的红色和白色(漂白)颜色模式是否与染料示踪显示的流动路径有关,以及土壤颜色是否与其他物理土壤性质有关。生物土壤结构是在短时间内将水和溶质带入更深处的主要运输途径。这些通道比Gleyic Luvisol底土的相邻红色或白色(漂白)区域具有更低的堆积密度和更低的锥阻力。红色区域参与了运输,因为它们的水分含量比渗透前有所增加。但是,白色和红色区域之间的实测土壤物理性质没有差异。我们假设红色区域至少通过吸收相邻生物流径中的水来参与运输。

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