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首页> 外文期刊>Eurasian Soil Science >Structural state of migrational-mycelial (typical) agrochernozems of the Kamennaya Steppe on plowed fields of different ages
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Structural state of migrational-mycelial (typical) agrochernozems of the Kamennaya Steppe on plowed fields of different ages

机译:在不同年龄耕地的Kamennaya草原的迁徙 - 菌丝体(典型)Agrochernozems的结构状态

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Heading>Abstract/Heading> Para>Changes in the structural state of migrational-mycelial (typical) chernozems (Haplic Chernozems (Clayic, Aric, Pachic)) as dependent on the duration of their cultivation (from 20 to 120 years) are considered. Field studies were performed in 2013 on the fields of the Dokuchaev Research Institute of Agriculture in the Central Chernozemic Region of Russia (the Kamennaya Steppe area) used for growing cereals and row crops in rotation. The study showed that the most intensive degradation of the structure of chernozems takes place during the first two decades of their agricultural use. The maximum transformation of the soil structure is observed in the upper 10 cm, as this layer is subjected to the most frequent and intense mechanical impacts. The rate of structural degradation decreases with time until the equilibrium between disaggregation and aggregation processes is reached. The time required for this largely depends on the applied crop rotation systems and agrotechnologies. In this context, flexible assessment scales for the structural state of agrochernozems under conditions of different farming systems should be developed in order to perform monitoring of the physical properties of cultivated chernozems for their long-term efficient and ecologically sustainable use. Despite general disintegration and destruction of granular aggregates, the structural state of agrochernozems in the Kamennaya Steppe area remains sufficiently good even on the old-cultivated (120 yrs.) fields./Para>
机译:& astract& /标题>& /标题>& para>迁移 - 菌丝体(典型)Chernozems的结构状态的变化(典型的)chernozems(粘土,aric,pachic)的变化,如依赖于培养的持续时间(从20到120岁月被认为是。现场研究于2013年进行了俄罗斯中央Chernozemation地区Dokuchaev研究所的田间,用于种植谷物的谷物和行作物。该研究表明,在其农业使用的前二十年来,最令人难以置信的切屑结构的劣化发生。在鞋面10cm中观察到土壤结构的最大变换,因为该层受到最常见和强烈的机械冲击。结构降解速率随时间降低,直到达到分解和聚集过程之间的平衡。这主要取决于所应用的作物旋转系统和农业技术。在这种情况下,应制定在不同农业系统条件下的农业卓越组织结构状态的灵活评估规模,以便对其长期有效和生态可持续使用的培养切屑的物理性质进行监测。尽管一般崩解和破坏粒状聚集体,但即使在旧栽培(120年)的田地上,Kamennaya Speppe地区的农业机构的结构状态也仍然足够好。& / para>

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