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Characterizing land use impact on multi-tracer displacement and soil structure

机译:表征土地利用对多示踪剂位移和土壤结构的影响

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Leaching of solutes below the root zone has been identified as a main source of potential groundwater pollution. The occurrence of preferential flow paths in structured soils can enhance rapid leaching of solutes below the root zone. There is evidence that the actual land use can affect solute displacement by altering soil structure and the abundance of preferential flow paths. In the present study, a field experiment was conducted to assess the impacts of land use (grassland vs. no-till cropland) on profile-scale displacement of bromine (Br) and Brilliant Blue FCF. The objectives were (i) to study both solutes displacement patterns, (ii) to analyze the spatial variation and anisotropic variance structures of the solutes and controlling physical soil properties, and (iii) to analyze soil structure development as a result of the land use system and possible implications for solute displacement. Two ponding infiltration experiments with Potassiumbromide (KBr) and Brilliant Blue FCF were performed on a silt loam soil in Lexington, KY. A total of 30 mm multi-tracer solution was infiltrated on an area of 1.20 x 0.70 m. Eleven vertical profile sections (width: 1.10 m, depth: 0.80 m) were excavated in steps of 0.05 m and sampled. Dye stained areas were mapped based on digital image analysis. Small soil samples were taken for Br concentrations, soil texture, and volumetric soil water content at regular intervals along a vertical 0.10 x 0.10 m raster. Vane shear resistance was measured as a proxy for mechanical soil strength. X-ray fluorescence analysis was used to determine total Br contents and the relative SiO2 signal intensity, the latter being used as proxy for soil particle size distribution. Although both experimental sites were under the same land use until some 10 years ago before the current land uses were established, solutes displacement differed between both land uses. The dye-stained patterns revealed a high proportion of non-equilibrium flow through vertically orientated macropores and a less permeable soil matrix at the grassland site. Continuous biological activity since transversion into grassland resulted in these macropores and the absence of any compaction in the subsoil. Large proportions of Br also infiltrated directly into the loose, densely rooted soil matrix close to the surface. Soil structure development at the no-till cropland site was mainly controlled by agricultural operations. The homogeneous Br distribution in the topsoil reflected a less dense soil matrix with a network of well-connected inter-aggregate pores. A residual plough pan restricted solute displacement to deeper soil layers or to groundwater bodies. Although ponding infiltration was applied in this study, the leaching risk for both applied solutes - Br and Brilliant Blue FCF - was rather small. (C) 2014 Elsevier B.V. All rights reserved.
机译:根区以下溶质的浸出已被确定为潜在的地下水污染的主要来源。结构性土壤中优先流动路径的出现可以增强根区以下溶质的快速浸出。有证据表明,实际的土地使用会通过改变土壤结构和优先流动路径的数量而影响溶质的位移。在本研究中,进行了一项野外试验,以评估土地利用(草地和免耕农田)对溴(Br)和亮蓝FCF轮廓剖面位移的影响。目的是(i)研究两种溶质的位移模式;(ii)分析溶质的空间变化和各向异性方差结构并控制土壤的物理性质;(iii)分析土地利用导致的土壤结构发展系统及其对溶质位移的可能影响。在肯塔基州列克星敦的淤泥质壤土上进行了两次溴化钾(KBr)和亮蓝FCF渗透试验。在1.20 x 0.70 m的区域内总共渗入了30 mm的多示踪剂溶液。以0.05m的台阶开挖了11个垂直剖面(宽度:1.10 m,深度:0.80 m)并取样。基于数字图像分析来绘制染料染色区域。在垂直的0.10 x 0.10 m栅格上以规则的时间间隔采集少量土壤样品中的Br浓度,土壤质地和土壤体积水含量。测量叶片的抗剪切强度作为机械土壤强度的替代指标。 X射线荧光分析用于确定总Br含量和相对SiO2信号强度,后者用作土壤粒径分布的替代物。尽管直到大约10年前,在建立当前土地用途之前,两个实验地点都处于同一土地用途下,但两种土地用途之间的溶质位移不同。染料染色的图案显示出很大比例的非平衡流通过垂直定向的大孔,而在草地场所的渗透性较低的土壤基质。自从转为草原以来,持续的生物活性导致了这些大孔隙,并且在地下土壤中没有任何压实。很大一部分溴也直接渗透到靠近表面的疏松,生根的土壤基质中。免耕农田的土壤结构发展主要由农业经营控制。表层土壤中的Br分布均匀,反映出土壤基质较疏密,且聚集体间的孔网络连接良好。残留的犁pan限制了溶质向更深的土壤层或地下水体的位移。尽管在本研究中应用了沉浸渗透,但两种溶质(Br和亮蓝FCF)的浸出风险均很小。 (C)2014 Elsevier B.V.保留所有权利。

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