首页> 外文期刊>Geoderma: An International Journal of Soil Science >Towards predicting the soil-specific threshold electrolyte concentration of soil as a reduction in saturated hydraulic conductivity: The role of clay net negative charge
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Towards predicting the soil-specific threshold electrolyte concentration of soil as a reduction in saturated hydraulic conductivity: The role of clay net negative charge

机译:朝向预测土壤特异性阈值电解质浓度为饱和液压导率的降低:粘土净负电荷的作用

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The use of marginal quality water with saline and dispersive properties is set to become more prevalent in agricultural production given demands on freshwater resources. The threshold electrolyte concentration (C-TH) is often used to define the suitability of such water, with irrigation practitioners seeking a general predictive model based on soil order. Recent work supports that the C-TH absolute value is soil-specific, although there remains a requirement to identify the contribution of predictive factors in an effort to create a predictive function for the C-TH. This work used 58 soils to explore the variability of the C-TH within and between soil orders, subsequently comparing saturated hydraulic conductivity to leachate turbidity as a means to investigate C-TH existing prior to the point of spontaneous dispersion. The role of clay net negative charge was investigated in terms of its relation to the C-TH in an effort to move towards a predictive capacity for this soil-specific characteristic. Subsequently, it was demonstrated that the C-TH was apparently described by net negative charge of clay particles, suggesting that surface interactions between clay particles and the bulk solution are important in governing soil stability from a soil-specific point of view The C-TH occurred prior to the aggregate dispersion threshold and was clearly soil specific, even within a soil order. Future work is required to incorporate the ionisation potential and clay domain pressure models of soil stability to move towards a C-TH predictive function based on quantified differences in soil mineralogy and charge characteristics, which is discussed.
机译:使用盐水和分散性质的边缘素质水的使用是在淡水资源所需的情况下在农业生产中变得更加普遍。阈值电解质浓度(C-TH)通常用于定义这种水的适用性,灌溉从业者寻求基于土壤秩序的一般预测模型。最近的工作支持C-TH绝对值是特定土壤特定的,尽管仍然需要确定预测因素的贡献,以便为第C-TH创造预测功能。这项工作使用了58个土壤来探讨C-TH内部和土壤秩序之间的可变性,随后将饱和液压导电率与渗滤液浊度进行比较,作为在自发分散点之前研究C-TH的方法。粘土净负责的作用是在其与第三章的关系方面调查的,以旨在实现这种土壤特异性特征的预测能力。随后,证明了C-TH显然是通过粘土颗粒的净负电荷描述的,表明粘土颗粒与本体溶液之间的表面相互作用对于来自土壤特异性的土壤稳定性来说是重要的在聚集分散阈值之前发生,并且即使在土壤秩序中也明显土壤。未来的工作是必需的,纳入土壤稳定性的电离电位和粘土域压模型,以基于讨论的土壤矿物学和电荷特性的量化差异来实现第三次预测功能。

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