Changes in hydrophobic-hydrophilic properties of chernozems under the influence of mineral fertilizers and their aftereffect

Q4 Agricultural and Biological Sciences Biulleten'' Pochvennogo instituta im VV Dokuchaeva Pub Date : 2021-12-25 DOI:10.19047/0136-1694-2021-109-96-128
N. Matveeva, E. Milanovsky, O. Rogova
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Abstract

Soil samples and granulodensimetric fractions isolated from them ((silt particle size less than 1 µm, light fraction (LF) with a density of less than 2 g/cm3 and a fraction of the residues) of ordinary chernozem from experimental fields of the Kamennaya Steppe agricultural landscape of the Voronezh region were studied. The main differences between the variants of the experiment are introducing or stopping mineral fertilizers, and in the aftereffect of irrigation (13 years). There is an increase in the content of LF when using mineral fertilizers, as well as a change in the composition of sizedensity fractionations, expressed in different content of C and N and hydrophobic-hydrophilic components of humus substances (HS) of soils, silt and LF. The irrigation had practically no effect on the hydrophobichydrophilic composition of the initial soils, while the relative content of the hydrophilic components of the silt fraction of the soil increased, and the hydrophilic composition of HS LF decreased. The use of mineral fertilizers led to a significant variation in the degree of hydrophilicity of HS in silt and LF with a smaller change of this indicator for the HS of the soil as a whole. The abolition of fertilizers application, on the contrary, affected the hydrophobichydrophilic composition of the soil as a whole, and the composition of the soil silt and LF. The increase in the proportion of hydrophilic components in the composition of soil HS, as well as in the composition of HS silt and LF occurred simultaneously with an increase in the hydrophobicity of the surface of the solid phase of soil and with an increase in the carbon content in the soil, which indicates the stability of the system as a whole. Since the physical fractions of soils reacted more intensively to changes in the agrogenic load, compared with native soil samples, and changes in their qualitative composition were traced in two versions of the experiment, monitoring of hydrophobic-hydrophilic components of soil and soil granulodensimetric fractions is advisable to monitor and diagnose soil changes during agricultural use.
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矿物肥料影响下黑钙土疏水亲水性的变化及其后果
研究了沃罗涅日地区卡门纳亚草原农业景观试验田普通黑钙土样品及其分离的颗粒密度组分((粉粒粒径小于1µm,密度小于2 g/cm3的轻组分(LF)和残渣的一部分)。不同试验的主要区别在于引入或停止使用矿物肥料,以及灌溉的后效(13年)。矿质肥的施用增加了土壤中低钙的含量,同时也改变了土壤、粉土和低钙中腐殖质(HS)中C、N和疏亲水组分的含量。灌水对初始土壤的疏亲水成分几乎没有影响,但土壤粉土部分亲水成分的相对含量增加,HS - LF亲水成分减少。矿质肥的施用导致粉土和土壤土壤HS亲水性发生显著变化,整体土壤HS亲水性变化较小。反之,免施化肥影响了土壤整体的疏亲水性组成,影响了土壤粉土和LF的组成。土壤HS组成中亲水组分比例的增加,以及HS粉土和LF组成中亲水组分比例的增加,与土壤固相表面疏水性的增加和土壤碳含量的增加同时发生,表明系统整体稳定。由于与原生土壤样品相比,土壤的物理组分对农业负荷变化的反应更强烈,并且在两个版本的实验中追踪了其定性组成的变化,因此监测土壤的疏水-亲水组分和土壤颗粒密度组分是监测和诊断农业使用过程中土壤变化的可取之处。
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CiteScore
0.90
自引率
0.00%
发文量
15
审稿时长
8 weeks
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