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Changes in the Ratio of Aggregate Fractions in Humus Horizons of Chernozems in Response to the Type of Their Use

机译:Chernozems腐殖质视野中的总分数与响应其使用类型的变化

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Data on the aggregate-size distribution (dry sifting method) in humus horizons of chernozems were processed by principal components analysis (PCA) with the centered logratio transformation of the initial data set. The analysis of the positions of treatments in the space of principal components coupled with the analysis of eigenvector magnitudes made it possible to identify several size fractions of aggregates, whose contents in the soils reflect soil degradation or progradation processes. These groups fitted well to the partial lognormal curves of aggregate sizes. In addition, the distribution of water-stable aggregates in coarse aggregate fractions (>10, 10-7, 7-5, and 5-3 mm) was analyzed. The integral analysis of the obtained data made it possible to propose the following conceptual model of the recovery of the structure of tilled chernozems. In the course of tillage, soil particles 0.25 mm in size are formed due to comminution. These particles are unstable and may stick together to shape large (>10 mm) water-unstable aggregates (clods). With the removal of tillage loads, large aggregates interact with fresh organic matter, and the water stability of aggregates increases. At the same time, the largest aggregates (mainly >10 mm) tend to transform into aggregates of smaller sizes.
机译:通过主成分分析(PCA)处理Chernozems腐殖群体视野中的总体大小分布(干筛分方法)的数据,其具有初始数据集的中心Logratio转换。对与特征传感器幅度的分析相结合的主成分的处理中的处理位置的分析使得可以鉴定若干大小的聚集体,其内容在土壤中反映了土壤退化或促进过程。这些组适用于总尺寸的部分逻辑曲线。此外,分析了粗骨料级分(> 10,10-7,7-5和5-3mm)中水稳定的聚集体的分布。所获得的数据的积分分析使得可以提出以下临时模型的培养耕种Chernozems的结构。在耕作过程中,由于粉碎,土壤颗粒含量尺寸为0.25mm。这些颗粒不稳定并且可以粘在一起以形状大(> 10mm)水不稳定的聚集体(Clods)。随着耕作载荷的去除,大的聚集体与新鲜有机物相互作用,聚集体的水稳定性增加。同时,最大的聚集体(主要> 10 mm)倾向于转化为较小尺寸的聚集体。

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