气候变化条件下土壤栽培方向的基础

Baliuk S. A., Lisovyi M. V., Borodin A. L.
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It has been determined that climate changes occurring in Ukraine are associated with a significant increase in the development of a number of degradation processes: physical degradation (overcompaction, deterioration of the structure, etc.), accelerated development of erosion processes. The prospects for the application of various soil protection and soil conservation technologies are analyzed in detail, depending on the characteristics of soils, taking into account their vulnerability to various types of degradation.\nThe need for widespread introduction of the latest soil cultivation technologies is substantiated (taking into account the exceptions in which the application of such technologies is impossible due to existing negative properties for agriculture or serious manifestations of degradation processes). 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引用次数: 0

摘要

目的。分析土壤中发生的变化,并根据有关整个世界,特别是乌克兰领土上当前气候条件变化的信息的概括,提出土壤栽培技术可能调整的建议,以最大限度地补偿对其肥力和健康造成的负面影响。通用的一般科学方法,理论分析方法,系统方法,公开信息的专家评价,涵盖规范性和方法学文献的概括。综合考虑了气候变暖对土壤过程的影响。已经确定,乌克兰发生的气候变化与许多退化过程的发展显著增加有关:物理退化(过度压实、结构恶化等)、侵蚀过程的加速发展。根据土壤的特点,考虑到土壤对各种退化的脆弱性,详细分析了各种土壤保护和土壤保持技术的应用前景。有必要广泛采用最新的土壤栽培技术(考虑到由于现有的农业不利特性或退化过程的严重表现而不可能应用这种技术的例外情况)。这主要是减少能源丰富的机械拖拉机通过田地的次数,特别是在春季和秋季,因为不利的土壤湿度条件使结构颗粒最脆弱,可能遭受不可逆转的破坏。从补偿土壤负面影响的角度来看,免耕技术的引入和土壤表面覆盖是非常有前途的。对于盐碱地,建议采用深耕——“自强”之法。对酸性土壤来说,一项基础良好、发展良好的局部土地改良技术是有希望的,为了实际实施这项技术,有必要设计一个工作机构,能够在酸性土壤的可耕层中创造适合农作物生长和发展的微区,同时对土壤表层的机械损伤最小。为土壤的播种(或可耕种)层创造最佳物理参数的观点,作为提高农作物产量和使农业适应气候变化的一个非常被低估的储备,是单独考虑的问题。提出了使土壤耕作适应新气候条件的科学研究方向。由于正确应用了现有的土壤耕作保护技术(差异化耕作、免耕技术),以及采用了未经充分评估的耕作方法,例如对酸性土壤进行局部改良和形成具有最佳物理特性的种子(或可耕种)土壤层,乌克兰农业适应目前正在发生的气候变化的前景已经确立。考虑到农作物种子的大小。关键词:气候变化,土壤,土壤栽培,土壤保护技术,退化过程
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Foundation of the direction of soil cultivation in the conditions of climate change
Purpose. Analyzation the changes taking place in the soils and to formation of proposition for possible adjustments in the technologies of soil cultivation for the maximum compensation of negative consequences for its’ fertility and health based on the generalization of information about the current changes in climatic conditions in the world as a whole and on the territory of Ukraine in particular. Methods. Universal general scientific methods, methods of theoretical analysis, system method, expert evaluation of published information, covering the generalization of regulatory and methodological documents. Results. The impact of climate warming on soil processes is comprehensively considered. It has been determined that climate changes occurring in Ukraine are associated with a significant increase in the development of a number of degradation processes: physical degradation (overcompaction, deterioration of the structure, etc.), accelerated development of erosion processes. The prospects for the application of various soil protection and soil conservation technologies are analyzed in detail, depending on the characteristics of soils, taking into account their vulnerability to various types of degradation. The need for widespread introduction of the latest soil cultivation technologies is substantiated (taking into account the exceptions in which the application of such technologies is impossible due to existing negative properties for agriculture or serious manifestations of degradation processes). This is primarily a reduction in the number of passes through the fields of energy-rich machine-tractor units, especially in the spring and autumn periods, when structural particles due to unfavorable soil moisture conditions are the most vulnerable and can undergo irreversible destruction. The introduction of no-till technology and mulching of the soil surface is very promising from the point of view of compensation of negative consequences for soils. For saline soils, it is suggested to use deep plowing – the method of “self-improvement”. A well-grounded and developed technology of local land amelioration is promising for acidic soils, for the practical implementation of which it is necessary to design a working body that would be able to create microzones comfortable for the growth and development of agricultural crops in the arable layer of acidic soils with minimal mechanical damage to the surface layer of the soil. The question of the perspective of creating optimal physical parameters of the sowing (or arable) layer of the soil as a very underestimated reserve for increasing the yield of agricultural crops and adapting agriculture to climate change is considered separately. Current directions of scientific research aimed at adapting soil cultivation to new climatic conditions have been formulated. Conclusions. The perspective of adapting the agriculture of Ukraine to the climate changes that are currently taking place has been established, due to the correct application of existing soil protection technologies of soil cultivation (differentiated cultivation, no-till technology), as well as the involvement of insufficiently evaluated methods of cultivation, such as local amelioration of acidic soils and the formation of seed (or arable) a layer of soil with optimal physical properties, taking into account the size of the seeds of crops. Keywords: climate changes, soil, soil cultivation, soil protection technologies, degradation processes.
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