Reducing the environmental risks of using mobile energy-saturated units during seed potatoes growing taking into account the patterns of heat and moisture transfer within the root spreading zone in the soil

A. Kalinin, I. Teplinsky, V. Ruzhev, Pavel Mikhailovich Shpiganovich, Julia Igorevna Smirnova
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Abstract

Because potato is a crop, demanding moisture supply conditions its yield depends on the ability to use the moisture accumulated during the calendar year by the root system during the growing season. However, the intensification of technological methods of potato production using powerful energy-saturated mobile agricultural units leads to a significant deterioration of the soil condition due to over compaction of the arable and subsoil horizons which hinders the normal mode of movement of intrasoil moisture and the development of the root system of plants. Reducing the number of passes of agricultural units across the field is possible when using combined units that perform several technological processes in one pass. For this purpose, a multifunctional combined potato-planting unit has been developed at St. Petersburg State Agrarian University that combines preplant tillage, planting potato seeds, the use of agrochemicals, pesticides and water-retaining agents, as well as deep loosening of interrow spacing and the formation of full-volume ridges. The conducted studies have shown the effectiveness of the use of such a combined unit by providing favorable soil conditions for the growth and development of plants.
考虑到土壤根扩展区内热量和水分的转移模式,减少种子马铃薯生长期间使用移动能量饱和装置的环境风险
由于马铃薯是一种需要水分供应条件的作物,其产量取决于根系在生长季节利用历年积累的水分的能力。然而,马铃薯生产技术方法的强化使用强大的能量饱和移动农业单元导致土壤状况显著恶化,因为耕地和地下土层过度压实,阻碍了土壤内水分的正常运动模式和植物根系的发育。当使用在一个通道中执行几个技术过程的组合单元时,减少农业单元穿过田地的次数是可能的。为此目的,圣彼得堡国立农业大学开发了一个多功能联合马铃薯种植单位,它结合了种植前耕作、种植马铃薯种子、使用农用化学品、杀虫剂和保水剂,以及深度放松行距和形成全体积垄沟。所进行的研究表明,通过为植物的生长发育提供有利的土壤条件,这种组合单元的使用是有效的。
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