Regulation of technological loading on soils: a concept for solving the problem

S. Bulygin, S. V. Vitvitskiy, M. E. Bulygina
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Abstract

Аnnotation Purpose. Justify the possibility and feasibility of using the technological standard (Tn) to regulate the technological load on soils to eliminate the conditions of their degradation using the energy assessment of the action of agricultural machinery systems and agronomic measures in terms of the structural-aggregate and humus state, as well as biological activity. Methods. General scientific (field, morphological-genetic, comparative-analytical, agroanalytical, laboratory) and special (determination of the content of elementary soil particles (ESP) and microaggregation by the microscopic method according to Bulygin S. Yu.). Results. Under the conditions of stationary experiments of the Right-Bank Forest-Steppe of Ukraine, it was revealed that more than 60 years of use of alkaline chernozem soil in a 10-field crop rotation with a field of clover with a traditional tillage system using moldboard plowing against the background of different fertilization options did not significantly worsen any of the parameters of agrophysical and humus state, biological activity, quantitative and species composition of the microbiological pool. More than 40 years of use of dark gray podzolized soil at a full rate of fertilization, applying lime to neutralize hydrolytic acidity and growing green manures after cereal early ripening crops, leaving the non-marketable part of the crop on the field under the conditions of a traditional processing system with moldboard plowing in a 7-field crop rotation , also with a field of clover, did not worsen the main parameters of its fertility. A conceptual mathematical model has been developed for the processing soil conservation agriculture systems based on the studies. Conclusions 1. Agrophysical parameters of soil have different information content and different sensibility. Each hierarchical level of the soil body system is characterized by a certain set of indicators, including agrophysical ones. It has been established that a scientifically grounded crop rotation against the background of moderate doses of mineral fertilizers, necessary chemical ameliorants with the abandonment of the non-commercial part of the crop and the use of green manure after early grain crops guaranteed to hold the agro physical condition of soils from deterioration. 2. The guarantor of a quasi-stable humus state is the stability of the agrophysical framework of the soil system and the harmony of the microbiological pool, the quantitative and species composition of which determines the balance of the synthesis and mineralization of humus and other organic substances. 3. Changing the effective influence of the living soil phase is determined by its agrophysical state, which leads to a change in the humus state – the first iteration passed. Next – the next and next chain of the spiral of the “life” of the soil (thesis-antithesis synthesis by Hegel), until the bottom or the top of the dynamic equilibrium is achieved, which is determined by the level of agriculture culture. 4. The direction (vector and trend) of the soil formation is determined by the energy ratio of the energy of the Sun in the form of a fresh vegetable residue (the second factor of the genesis of soils according to Dokuchaev) to anthropogenic energy, which is consumed in the implementation of crop technologies, which determines the value of the technological regulation (Tn). 5. The energy assessment of technologies for growing crops under the conditions of long-term stationary experiments made it possible to determine technological standards (Tn): for meadow-chernozem soil – 8.6, for dark gray podzolized soil – 7.2. Keywords: technological standard of energy load, elementary soil particles (ESP), coefficient of microaggregation, humus state, microbiological activity, energy assessment of plant technologies.
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土壤技术荷载调节:解决问题的概念
АnnotationPurpose。证明使用技术标准(Tn)来调节土壤上的技术负荷以消除其退化条件的可能性和可行性,利用农业机械系统和农艺措施在结构-团聚体和腐殖质状态以及生物活性方面的作用的能量评估。一般科学(野外、形态-遗传学、比较分析、农业分析、实验室)和特殊(用显微法测定土壤基本颗粒(ESP)和微团聚体的含量,根据Bulygin S. Yu。在乌克兰右岸森林草原的固定试验条件下,在不同施肥方案的背景下,在10田三叶草轮作中使用碱性黑钙土60多年,并没有显著恶化土壤的农业物理和腐殖质状态、生物活性、土壤质量、土壤质量等参数。微生物池的数量和种类组成。40多年来,在深灰色灰化土上充分施肥,施用石灰来中和水解酸性,在谷物早熟作物后种植绿色肥料,在传统的7田轮作的板耕加工系统条件下,将作物的非适销部分留在田间,也有一片三叶草,并没有使其肥力的主要参数恶化。在此基础上,建立了加工土壤保持农业系统的概念数学模型。土壤的农业物理参数具有不同的信息量和不同的敏感性。土壤体系统的每一层次都有一定的指标,包括农业物理指标。研究表明,科学合理的轮作,在适度施用矿质肥料和必要的化学改良剂的背景下,放弃作物的非商业部分,在早期粮食作物种植后使用绿肥,保证了土壤的农业物理状况不会恶化。准稳定的腐殖质状态的保证是土壤系统农业物理框架的稳定和微生物库的和谐,微生物库的数量和种类组成决定了腐殖质和其他有机物的合成和矿化的平衡。改变活土阶段的有效影响是由其农业物理状态决定的,这导致腐殖质状态的变化-第一次迭代通过。下一步-土壤“生命”螺旋的下一个和下一个链条(黑格尔的正反命题综合),直到达到动态平衡的底部或顶部,这是由农业文化水平决定的。土壤形成的方向(矢量和趋势)由新鲜蔬菜残渣形式的太阳能量(Dokuchaev认为土壤形成的第二个因素)与人为能量的能量比决定,这些能量在作物技术的实施中被消耗,这决定了技术调节的价值(Tn) 5。通过对长期固定试验条件下作物种植技术的能量评价,可以确定草甸黑钙土的技术标准(Tn): 8.6,深灰色灰化土的技术标准(Tn): 7.2。关键词:能量负荷技术标准,基本土壤颗粒,微聚集系数,腐殖质状态,微生物活性,植物技术能量评价
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