Method of corn contamination decreasing after later harvesting predecessors under energy-storage soil maintenance system in irrigation landscapes

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The research was carried out at Agrofirm Chokh of the Gunibsky district in the Kizilyurt transhumance zone of the Republic of Dagestan on light chestnut soil. The humus content in the arable layer is 2.77%, P2O5 – 2.21, K2O – 32.8 mg/100 g of soil, the density of the arable layer is 1.24 g/cm3, the lowest moisture capacity (MC) of the soil layer 0–0.6 m is 29.2%. We studied the influence of two corn predecessors: sunflower and corn itself during the main tillage for corn based on plowing to a depth of 28–30 cm without skimmers and with skimmers. During the autumn period, after harvesting the predecessors, the soil was not cultivated, and in the spring, upon the onset of its physical ripeness, two treatments were carried out in a layer of 0–15 cm with disk cultivators to crush the plant residues of the previous crop and plowing to 28–30 cm with a PLN-4-35 plow when physical ripeness of the soil in this layer. It has been established that a radical way to reduce the weediness of corn crops and increase its yield in the irrigated conditions of the Western Caspian region when placed after late-harvested predecessors, including repeated sowings in the same field, is to carry out basic tillage and moisture-recharging irrigation in the spring of the year of sowing. To chop the plant mass remaining after harvesting the predecessor, double processing with disc implements should be carried out before plowing. Plowing is carried out with skimmers, which ensure uniform distribution of weed seeds in the surface layer and their simultaneous germination at a later date than when plowing without skimmers. Subsequently, their life activity is limited to vegetative corn plants. The infestation of corn crops with such soil treatment is reduced three times, the corn yield for the predecessor corn increases by 1.12 t/ha of grain (16.3%), after sunflower – 1.32 t/ha (17.8%).

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作者简介

G. Gasanov

Dagestan State Agrarian University named after M.M. Dzhambulatov, Makhachkala; FGBUN Dagestan State Federal Research Center RAS (DFRC RAS)

编辑信件的主要联系方式.
Email: nikuevich@mail.ru

Grand PhD in Agricultural Sciences, Professor

俄罗斯联邦, Makhachkala, Republic of Dagestan; Makhachkala, Republic of Dagestan

R. Usmanov

FGBUN Dagestan State Federal Research Center RAS (DFRC RAS)

Email: nikuevich@mail.ru

Grand PhD in Biological Sciences, Professor

俄罗斯联邦, Makhachkala, Republic of Dagestan

M. Musaev

Dagestan State Agrarian University named after M.M. Dzhambulatov

Email: nikuevich@mail.ru

Grand PhD in Biological Sciences, Professor

俄罗斯联邦, Makhachkala, Republic of Dagestan

M. Abdulnatipov

Dagestan State Agrarian University named after M.M. Dzhambulatov

Email: nikuevich@mail.ru

PhD in Engineering Sciences

俄罗斯联邦, Makhachkala, Republic of Dagestan

参考

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