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首页> 外文期刊>Hydrology and Earth System Sciences >Relations between macropore network characteristics and the degree of preferential solute transport
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Relations between macropore network characteristics and the degree of preferential solute transport

机译:大孔网络特性与优先溶质运移程度之间的关系

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The characteristics of the soil macropore network determine the potential for fast transport of agrochemicals and contaminants through the soil. The objective of this study was to examine the relationships between macropore network characteristics, hydraulic properties and state variables and measures of preferential transport. Experiments were carried out under near-saturated conditions on undisturbed columns sampled from four agricultural topsoils of contrasting texture and structure. Macropore network characteristics were computed from 3-D X-ray tomography images of the soil pore system. Non-reactive solute transport experiments were carried out at five steady-state water flow rates from 2 to 12 mm h(-1). The degree of preferential transport was evaluated by the normalised 5% solute arrival time and the apparent dispersivity calculated from the resulting breakthrough curves. Near-saturated hydraulic conductivities were measured on the same samples using a tension disc infiltrometer placed on top of the columns. Results showed that many of the macropore network characteristics were inter-correlated. For example, large macroporosities were associated with larger specific macropore surface areas and better local connectivity of the macropore network. Generally, an increased flow rate resulted in earlier solute breakthrough and a shifting of the arrival of peak concentration towards smaller drained volumes. Columns with smaller macroporosities, poorer local connectivity of the macropore network and smaller near-saturated hydraulic conductivities exhibited a greater degree of preferential transport. This can be explained by the fact that, with only two exceptions, global (i.e. sample scale) continuity of the macropore network was still preserved at low macroporosities. Thus, for any given flow rate, pores of larger diameter were actively conducting solute in soils of smaller near-saturated hydraulic conductivity. This was associated with larger local transport velocities and, hence, less time for equilibration between the macropores and the surrounding matrix which made the transport more preferential. Conversely, the large specific macropore surface area and well-connected macropore networks associated with columns with large macroporosities limit the degree of preferential transport because they increase the diffusive flux between macropores and the soil matrix and they increase the near-saturated hydraulic conductivity. The normalised 5% arrival times were most strongly correlated with the estimated hydraulic state variables (e.g. with the degree of saturation in the macropores R-2 = 0.589), since these combine into one measure the effects of irrigation rate and the near-saturated hydraulic conductivity function, which in turn implicitly depends on the volume, size distribution, global continuity, local connectivity and tortuosity of the macropore network.
机译:土壤大孔网络的特性决定了农药和污染物快速通过土壤运输的潜力。这项研究的目的是检查大孔网络特性,水力特性和状态变量与优先运输措施之间的关系。实验是在接近饱和条件下,从结构和结构对比鲜明的四种农业表层土中取样的未受干扰的柱子上进行的。大孔网络的特征是根据土壤孔隙系统的3-D X射线断层图像计算得出的。在从2到12 mm h(-1)的五个稳态水流量下进行了非反应性溶质迁移实验。通过归一化的5%溶质到达时间和由所得的穿透曲线计算出的表观分散性来评估优先运输的程度。使用放置在色谱柱顶部的张力盘式渗透计,在相同样品上测量了近饱和的水力传导率。结果表明,许多大孔网络特征是相互关联的。例如,大孔隙率与更大的比大孔表面积和更好的大孔网络局部连通性有关。通常,增加的流速导致较早的溶质突破,并且峰浓度的到来向较小的排出体积转移。大孔隙度较小,大孔网络的局部连通性较差和近饱和水力传导率较小的色谱柱表现出较高的优先运输度。这可以通过以下事实来解释,只有两个例外,大孔网络的全局(即样本规模)连续性仍保留在低大孔隙率下。因此,对于任何给定的流速,较大直径的孔隙在较小的近饱和水力传导率的土壤中都能主动传导溶质。这与较大的局部运输速度有关,因此,大孔与周围基质之间平衡所需的时间更少,这使得运输更为优先。相反,大比孔表面积和大孔隙柱相关的连接良好的大孔网络限制了优先运输的程度,因为它们增加了大孔与土壤基质之间的扩散通量,并增加了近饱和的水力传导率。归一化的5%到达时间与估算的水力状态变量(例如,与大孔R-2 = 0.589的饱和度)最相关,因为它们结合在一起可以衡量灌溉速率和接近饱和的水力的影响电导率函数,又隐含地取决于大孔网络的体积,大小分布,整体连续性,局部连通性和曲折性。

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