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Macropores and Macropore Transport: Relating Basic Soil Properties to Macropore Density and Soil Hydraulic Properties

机译:大孔和大孔运输:将土壤的基本性质与大孔密度和土壤水力性质相关

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Preferential transport of water through soil macropores is a governing process in the facilitated transport of strongly sorbing compounds. The aim of this study was to investigate the relationships between macropore density and the hydraulic conductivity of the soil and to test the sampling representativeness of soil columns for the measurement of saturated hydraulic conductivity. Macropore density was determined in three horizons in four typical Danish soil types (third year of pasture), and saturated hydraulic conductivity and near-saturated hydraulic conductivity were measured in the laboratory on undisturbed soil columns (6,280 cm3) in the same three horizons. A strong relationship between macropore density and the mean particle diameter was found in the B and C horizons. A poor relationship was found between macropore density and the hydraulic conductivity at a matric potential of 10 hPa, whereas a stronger relationship was found at saturation. Results of the test of the number of soil columns needed for a representative distribution of macropores for the measurement of saturated hydraulic conductivity indicated that approximately six soil columns were enough. Our work suggests that integrating knowledge of the abundance of macropores in relation to soil type and land use will increase the performance of pedotransfer functions in predicting saturated hydraulic conductivity.
机译:水通过土壤大孔的优先运输是促进强吸附性化合物运输的主要过程。这项研究的目的是研究大孔密度与土壤水力传导率之间的关系,并测试用于测量饱和水力传导率的土壤柱的采样代表性。在四种典型的丹麦土壤类型(牧草第三年)的三个水平线上确定了大孔密度,并在实验室中在相同三个水平线上的未扰动土壤柱(6,280 cm3)上测量了饱和导水率和近饱和导水率。在B和C层中发现了大孔密度与平均粒径之间的密切关系。在基质势为10 hPa时,发现大孔密度与水力传导率之间的关系较差,而在饱和时,则具有较强的关系。测试代表饱和水导率的大孔代表性分布所需的土壤柱数的测试结果表明,大约有六个土壤柱就足够了。我们的工作表明,整合与土壤类型和土地利用有关的大孔丰富度的知识将提高pedotransfer函数在预测饱和导水率方面的性能。

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