Soil thermal properties of forest biogeocenoses in steppe zone as a diagnostic indicator of their soil genesis

V. Gorban'
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Abstract

Soil is a specific natural body, which is characterized by a number of features due to which it differs from living organisms and rocks. One of these features is its thermal properties. The most important thermal properties of the soil are thermal conductivity, thermal capacity and thermal diffusivity, which reflect the specific features of the set of properties inherent in different soils. As a result of the studies, the existence of a direct relationship between the values of thermal conductivity and thermal diffusivity of Calcic Chernozem and the content of the silt fraction in them, as well as between the thermal capacity and the content of organic matter in them. The established relations do not appear clearly in Luvic Chernozem and Chernic Phaeozem. The maximum thermal properties for Luvic Chernozem and Chernic Phaeozem were found in the eluvial horizon, which in the lower part borders on the illuvial horizon. The eluvial horizons of Luvic Chernozem and Chernic Phaeozem are characterized by lower thermal properties compared with the illuvial horizons. The thermal properties of soils can be used to clarify the distribution characteristics of the silt fraction and organic matter along the profile, as well as determination of the intensity of eluvial-illuvial processes. The establishment of these soil features is an important characteristic of their soil genesis, which is especially important for chernozem soils under forest vegetation.
草原带森林生物地球群落土壤热特性及其土壤成因的诊断指标
土壤是一种特殊的自然物质,它具有许多不同于生物和岩石的特征。其中一个特点是它的热性能。土壤最重要的热性质是热导率、热容和热扩散率,它们反映了不同土壤固有的一组性质的具体特征。研究结果表明,钙质黑钙土的导热系数和热扩散系数与其中粉粒含量、热容量与有机质含量之间存在直接关系。这种既定的关系在切尔诺泽姆和切尔尼奇·费厄泽姆身上表现得并不明显。Luvic Chernozem和Chernic Phaeozem的热物性最大值出现在下部与河积层交界的残积层。与河积层相比,Luvic Chernozem和Chernic Phaeozem的积层具有较低的热物性特征。土壤的热性质可以用来阐明粉土组分和有机质沿剖面的分布特征,以及确定淋积-淋积过程的强度。这些土壤特征的建立是其土壤成因的重要特征,对森林植被下黑钙土尤其重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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