有机物和管理对火山土壤疏水性的影响

José Cuevas Becerra
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引用次数: 11

摘要

土壤的疏水性或憎汗性取决于矿物和有机土壤组分之间的强烈相互作用。有机质含量是疏水性的决定因素。土壤基质中有机质含量与疏水性呈正相关,但并非所有有机质都能引起疏水性。土壤的质量特性比有机物的含量更能影响土壤的疏水性。有可能找到两种驱蚊剂:(1)天然驱蚊剂和诱导驱蚊剂。排斥作用影响作用于固液气界面的分子间电作用力的大小。这种现象可以通过测量这些相之间的接触角(θ)来评价。土壤管理影响拒水性,但这种影响因高强度机械劳动而减弱。疏水性影响土壤的水力特性,改变优先流。本研究的目的是:i)确定智利南部三种火山土壤在两种管理(森林和草原)组合下的土壤疏水性;ii)通过在火山土壤中使用亲水化合物来估计缓冲能力。不同的接触角与土壤特性有关,但与植被类型直接相关,植被类型有助于有机物质在这些土壤中产生排斥作用。土壤成土特征相似的土壤对同一植被(森林或牧场)的疏水性值不同。土壤吸湿能力对土壤有机质质量的依赖大于对土壤有机质总含量的依赖。土壤的缓冲能力取决于土壤中SOM的含量及其与矿质土壤颗粒之间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFECTO DE LA MATERIA ORGÁNICA Y EL MANEJO SOBRE LA HIDROFOBICIDAD DE SUELOS VOLCÁNICOS
Soil water repellence or hidrofobicity depends on a strong interaction among the mineral and organic soils fractions. The content of organic matter is an determinant factor of water repellence. A positive relationship between the content of organic matter and water repellence can be observed, however, not all organic matter may cause repellence in the soil matrix. More than the amount of organic compounds, the quality characteristics impact the hidrofobicity of soil. It is possible to find two types of repellencies:) natural and induced one. The repellence influence the magnitude of intermolecular electrical forces which act in the interface of solid-liquid-gas. This phenomenon can be evaluated by measuring the contact angle (θ) among these phases. Soil management influence water repellency, but this effect is reduced by intense mechanical labor. Hidrofobicity influence soil hydraulic characteristic, modifying preferential flows. The aim of this study was: i) determine the soil water repellency in three volcanic soils from southern of Chile in combinations with two managements (forest and prairie) and ii) to estimate the buffer capacity by using a hydrophilic compound in the volcanic soils. It was observed different contact angle, attributed to soil characteristics, but with a direct effect of vegetation type which contributed to organic materials top cause repellence in these soils. Soils with similar pedogenetic characteristics show different hydrophobic values for the same vegetation (forest or pastures). Soils humectation capacity depends of the quality of soil organic matter more than SOM total content. Buffer capacity of soils depended of the amount of SOM, and its interaction between mineral soil particles.
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