利佩茨克州“Galich'ia Gora”保护区不同母质岩石中废弃土壤碳酸盐状态和其他性质的时序变化

Pub Date : 2021-01-01 DOI:10.21638/spbu07.2021.306
A. Bulysheva, O. Khokhlova, N. Bakunovich, A. Rusakov, T. Myakshina
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引用次数: 1

摘要

本文研究了利佩茨克地区古近系、新近系含石灰岩残积物的红砂土上Haplic黑钙土(Aric)和Сalcaric Phaeozems (Aric)在由农田转休耕过程中的性质变化。主要关注的是土壤碳酸盐状态的变化。研究结果表明,在不同岩石上形成的两种类型的土壤的转化遵循一个单一的趋势。Chernozems的碳酸盐在休耕期间被冲下剖面;稳定形式的碳酸盐地层特征逐渐消失。休耕25年,黑钙土0 ~ 200 cm层碳酸盐碳含量和储量减少27.5 t/ha。在Сalcaric Phaeozems (Aric),碳酸盐状态的变化不太明显;然而,研究发现,在灰岩碎片上的可耕地土壤中,在粘土膜上形成了针状方解石形式的次生碳酸盐膜,而在废弃土壤中没有观察到这种情况。当土壤处于休耕状态时,土壤的物理力学性质得到改善:可耕层的结构得到改善,密度降低。有机碳含量降低。这是Haplic黑钙土(Aric)农业转化后的非典型结果。在其他地区的草原和森林草原休耕土壤中,我们观察了有机碳的积累过程。休耕期间土壤有机碳的减少与农业节土技术的使用有关。土壤休耕时,地下层腐殖质放射性碳年龄增大。土壤中碳酸盐的放射性碳年龄取决于成岩方解石包裹体的数量。
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The change in carbonate state and other properties in chronosequences of abandoned soils in different parent rocks in the reserve «Galich'ia Gora» in the Lipetsk oblast
The article considers the change in the properties of Haplic Chernozems (Aric) on loesslike loams and Сalcaric Phaeozems (Aric) on Paleogene, Neogene red-colored sands with limestone eluvium of the Lipetsk region when they are transferred from cropland to fallow. The main attention is focused on the change in the carbonate status of soils. According to the results of the study, it was found that the transformation of both types of soils formed on different rocks obeys a single trend. Carbonates in Chernozems during their stay in fallow are washed down the profile; stable forms of carbonate pedofeatures gradually disappear. The content and stocks of carbonate carbon in the 0-200 cm layer in Haplic Chernozems (Aric) decrease by 27.5 t/ha by 25 years of fallow state. In Сalcaric Phaeozems (Aric), changes in the carbonate status are less pronounced; nevertheless, it was found that in the arable soil on the fragments of limestone, secondary carbonate films in the form of acicular calcite are formed on top of clay films, which was not observed in the abandoned soils. When the soil is in the fallow, the physical and mechanical properties of the soil improve: the structure of the arable horizons is improved, density decreases. The organic carbon content is reduced. This is an atypical result of postagrogenic transformation of Haplic Chernozems (Aric). In the fallow soils of other regions of steppe and forest-steppe, we observed the process of accumulation of organic carbon. The decrease in soil organic carbon while in the fallow is associated with the use of soil-saving technologies for agricultural use. The radiocarbon age of humus in subsurface horizons increases when soil is in the fallow. The radiocarbon age of carbonates in soils varies depending on the amount of lithogenic calcite inclusion.
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