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The Relationships of Texture and Hydrophysical Properties in Soil Profiles Under Selected Exotic Trees in the Context of Climate Change in Central Europe

机译:中欧气候变化背景下的土壤剖面纹理与水性特性的关系

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摘要

Suitable soil and environmental conditions are the main prerequisites for successful growth of plants. Generally, all soil properties are substantially affected by textural composition. Therefore, the objective of the study was to test the interrelationships between particle size distribution and such physical soil properties, which usually predetermine the survival/death of plants, since they significantly affect the content and availability of water and air. Textural composition and physical soil properties were studied in profiles under monocultures of selected exotic trees in Arboretum Mlyňany, Slovakia. The results showed that medium-textured dominated in topsoils, whereas heavy-textured classes were dominant in luvic and stagnic horizons. Evaluation of entire profiles had confirmed standard, expected relationships between the individual grain fractions and soil physical properties. However, differences have occurred when the correlations between texture and physical properties in individual horizons were evaluated. Considering entire soil profiles, increased sand content significantly supported drainage of rainwater and soil aeration; silt contributed to increase the total porosity and aeration as well as available water capacity; clay contributed to the decrease in the available water capacity, total, and particularly coarse porosity and aeration, and to rise water retention, as well as the values of the wilting point. The results showed silt as key fraction providing suitable hydrophysical properties for the survival and growth of trees introduced in Arboretum. In compacted luvic and stagnic horizons, silt was significantly involved in the formation of total, and particularly coarse porosity and thereby increase soil aeration, while conversely, in loose topsoils just silt fraction significantly contributed to the reduction of coarse pores and increase of fine capillary pores and therefore water retention. In loose eluvial horizons, the silt contributed to significant increases in capillary porosity and water availability, which is essential in terms of meeting the plant needs.
机译:合适的土壤和环境条件是植物成功生长的主要先决条件。通常,所有土壤性质都受到纹理组合物的影响。因此,该研究的目的是测试粒度分布和这种物理土壤性质之间的相互关系,这通常预先确定植物的存活/死亡,因为它们显着影响了水和空气的内容和可用性。研究了斯科克拉斯库拉姆植物植物植物植物植物植物的单一栽培曲线曲线中的质影构成和物理土壤性质。结果表明,中纹理在表土中占主导地位,而重纹理的课程在Luvic和雄厚的视野中占主导地位。对整个型材的评估已经确认了单个粒度和土壤物理性质之间的标准,预期的关系。然而,当评估个体视野中的纹理和物理性质之间的相关性时,发生了差异。考虑到整个土壤型材,增加的砂质含量显着支持雨水和土壤曝气的排水;淤泥有助于增加总孔隙率和通气以及可用水容量;粘土促进了可用水容量,总且特别粗孔隙度和曝气的减少,并升高水保留,以及抗悬点的值。结果表明,淤泥作为关键级分,为植物园引入的树木的存活和生长提供适当的水性性质。在压实的LUVIC和雄厚的视野中,淤泥显着参与了总量的形成,特别是粗糙的孔隙率,从而增加土壤通气,虽然相反,在松散的表土中,淤泥部分显着促成了粗毛的减少和细毛细孔的增加。因此水保留。在松散的藻状视野中,淤泥有助于毛细血管孔隙度和水可用性的显着增加,这就满足了植物需求至关重要。

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