Features of Forming Soil Regimes under Sunflower Cultivation with Different Levels of Biologization in Non-irrigated Conditions of the Southern Steppe of Ukraine

IF 1.3 Q4 ENGINEERING, ENVIRONMENTAL Journal of Ecological Engineering Pub Date : 2024-05-01 DOI:10.12911/22998993/185966
Oleksandr Zhuykov, Mykola Ivaniv, O. Sydiakina
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Abstract

Reducing pressure on agrolandscapes while maintaining indicators of economic efficiency is a promising and rel - evant task for researchers. The article presents the results of a four-year study on the formation of water, nutrient, and microbial regimes in the soil of mid-early ecological group hybrid sunflower crops PR64F66 F1 and Tunca F1 at different levels of biologization of zonal variety cultivation technologies in the conditions of the Southern Steppe of Ukraine: traditional intensive, extensive minimal, organic, and two levels of biologized. The dependence of the reduction in average daily soil moisture consumption on the application of biologization elements was established. The minimum value of the water consumption coefficient over the years of the study was found for organic cultivation technology – 407 (PR64F66 F1) and 423 (Tunca F1) m 3 /ton of dry matter, while the least economical consumption of active moisture for biomass formation was recorded for the extensive cultivation technology variant – 523 and 624 m 3 /ton respectively. Variants with the application of biologization elements in the mineral nutrition system were characterized by significantly higher efficiency and economy of nitrogen consumption from soil reserves. Throughout the vegetation period, under the conditions of intensive sunflower cultivation technol - ogy, both the overall population of the plowed soil layer and the number of microflora for individual key groups decreased significantly compared to variants where individual elements of biologization or their complex applica - tion (organic cultivation technology) were implemented, by 6.1 – 40.9%.
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乌克兰南部大草原非灌溉条件下不同生物化水平向日葵栽培下土壤形成机制的特点
在保持经济效益指标的同时减轻对农业景观的压力,是研究人员的一项大有可为的重要任务。文章介绍了一项为期四年的研究成果,该成果研究了在乌克兰南部大草原条件下,中早熟生态组杂交向日葵作物 PR64F66 F1 和 Tunca F1 在不同的分区品种栽培技术生物化水平下土壤中水分、养分和微生物机制的形成情况:传统的集约化、广泛的最小化、有机化和两个生物化水平。确定了日均土壤水分消耗量的减少与生物化元素应用的关系。在多年的研究中发现,有机栽培技术的耗水量系数最小--407(PR64F66 F1)和 423(Tunca F1)立方米/吨干物质,而粗放栽培技术变体用于生物质形成的有效水分消耗量最小--分别为 523 和 624 立方米/吨。在矿质营养系统中应用生物化元素的变种的特点是,从土壤储备中消耗氮的效率和经济性明显更高。在整个植被期,在向日葵集约化栽培技术条件下,耕地土壤层的总体数量和单个关键群的微生物群数量都比实施单个生物化元素或其复合应用(有机栽培技术)的变体显著减少了 6.1 - 40.9%。
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来源期刊
Journal of Ecological Engineering
Journal of Ecological Engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
2.60
自引率
15.40%
发文量
379
审稿时长
8 weeks
期刊介绍: - Industrial and municipal waste management - Pro-ecological technologies and products - Energy-saving technologies - Environmental landscaping - Environmental monitoring - Climate change in the environment - Sustainable development - Processing and usage of mineral resources - Recovery of valuable materials and fuels - Surface water and groundwater management - Water and wastewater treatment - Smog and air pollution prevention - Protection and reclamation of soils - Reclamation and revitalization of degraded areas - Heavy metals in the environment - Renewable energy technologies - Environmental protection of rural areas - Restoration and protection of urban environment - Prevention of noise in the environment - Environmental life-cycle assessment (LCA) - Simulations and computer modeling for the environment
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