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Effect of Hydrogel Particle Additives on Water-Accessible Pore Structure of Sandy Soils: A Custom Pressure Plate Apparatus and Capillary Bundle Model

机译:水凝胶颗粒添加剂对沙质土壤水可渗透孔隙结构的影响:定制压盘装置和毛细管束模型

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摘要

To probe the effects of hydrogel particle additives on the water-accessible pore structure of sandy soils, we introduce a custom pressure plate method in which the volume of water expelled from a wet granular packing is measured as a function of applied pressure. Using a capillary bundle model, we show that the differential change in retained water per pressure increment is directly related to the cumulative cross-sectional area distribution f (r) of the water-accessible pores with radii less than r. This is validated by measurements of water expelled from a model sandy soil composed of 2-mm-diameter glass beads. In particular, it is found that the expelled water is dramatically dependent on sample height and that analysis using the capillary bundle model gives the same pore size distribution for all samples. The distribution is found to be approximately log normal, and the total cross-sectional area fraction of the accessible pore space is found to be f0 = 0.34. We then report on how the pore distribution and total water-accessible area fraction are affected by superabsorbent hydrogel particle additives, uniformly mixed into a fixed-height sample at varying concentrations. Under both fixed volume and free swelling conditions, the total area fraction of water-accessible pore space in a packing decreases exponentially as the gel concentration increases. The size distribution of the pores is significantly modified by the swollen hydrogel particles, such that large pores are clogged while small pores are formed.
机译:为了探讨水凝胶颗粒添加剂对沙质土壤水可渗透孔隙结构的影响,我们引入了一种定制的压板方法,其中测量从湿粒状填料排出的水量与施加压力的关系。使用毛细管束模型,我们表明,单位压力增量中滞留水的差异变化与半径小于r的可进入水的孔的累积横截面面积分布f(r)直接相关。通过测量从直径为2毫米的玻璃珠组成的模型沙土中排出的水,可以验证这一点。特别地,发现排出的水极大地取决于样品高度,并且使用毛细管束模型的分析对于所有样品给出相同的孔径分布。发现该分布近似为对数正态分布,并且可及孔隙空间的总横截面分数为f0 = 0.34。然后,我们报告了超吸收性水凝胶颗粒添加剂如何分别影响孔隙分布和总水可利用面积分数,这些添加剂均以不同的浓度均匀混合到固定高度的样品中。在固定体积和自由溶胀条件下,填料中水可及的孔隙空间的总面积分数随着凝胶浓度的增加呈指数下降。溶胀的水凝胶颗粒显着改变了孔的尺寸分布,使得大孔被堵塞而小孔形成。

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    Wei, Y.; Durian, Douglas J;

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  • 年度 2013
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