形成高产大豆作物的生态和经济问题

IF 1.3 Q4 ENGINEERING, ENVIRONMENTAL Journal of Ecological Engineering Pub Date : 2023-12-01 DOI:10.12911/22998993/173008
Victor Mazur, Olha Alieksieieva, K. Mazur, Oleksii Alieksieiev
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引用次数: 0

摘要

为了农业部门的成功发展,农作物种植过程中的主要任务之一是合理利用土地资源,以低劳动力成本获得尽可能高质量的产品。这篇科学文章的实用价值在于改进了不同成熟期大豆品种种植技术的要素。生态经济技术参数的发展,使高新技术品种不同成熟度组的种子产量可达2.91 t/ha,具有较高的生产效益。研究对象涉及大豆种子作物的生长、发育和形成过程,以及所开发的工艺参数对其品质的影响。研究的主题包括大豆品种,播种前用细菌制剂和生长调节剂处理种子。确定大豆属于乌克兰乃至世界的高蛋白战略农业作物。向人口提供蛋白质食品是一个全球性问题,因为人口的增长大大超过了蛋白质产品的生产。大豆以其罕见的化学成分为特点,在解决这一问题方面发挥了重要作用——它的种子含有38-42%的蛋白质,18-32%的脂肪,25-30%的碳水化合物,酶,维生素,矿物质,许多具有显著溶解度和营养的必需氨基酸。这一特点对环境有积极的影响,并允许获得生态清洁的产品。大豆的种植具有重要的农业技术意义,因为它是种植绝大多数农作物的良好前兆。然而,大豆高产的决定因素是品种。在研究成果及其经济分析的基础上,乌克兰右岸森林草原农业规划以获得2.91 t/ha的大豆高产为目标,建议播种集约化大豆品种桑德拉——在播种前对大豆种子进行细菌制剂Rizotorphin和生长调节剂Vermyst的联合处理。因此,利用细菌制剂接种种子和生长调节剂处理,研究不同品种大豆的产量和营养价值,在生态种植技术领域具有重要的科学意义和现实意义。
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Ecological and Economic Aspects of the Formation of Highly Productive Soybean Crops
For the successful development of the agricultural sector, one of the main tasks during the cultivation of agricultural crops is the rational use of land resources and obtaining the highest possible quality of products with low labor costs. The practical value of the scientific article lies in the improvement of the elements of the technology of growing soybean varieties that differ in groups of maturity. The development of ecological and economic tech - nological parameters made it possible to ensure the seed yield, depending on the maturity groups of high-tech varieties, up to 2.91 t/ha with high production profitability. The object of researchinvolved the processes of growth, development and formation of the soybean seed crop, as well as its quality depending on the developed technological parameters. The subject of research comprised soybean varieties, pre-sowing treatment of seeds with a bacterial preparation and a growth regulator. It was determined that soybean belongs to the high-protein strategic agricultural crop of Ukraine and the world. Providing the population with protein food is a global problem, because the increase in population significantly exceeds the production of protein products. Soy, which is characterized by a rare chemical composition, plays an important role in solving this problem – its seeds contain 38–42% protein, 18–32% fat, 25–30% carbohydrates, enzymes, vitamins, minerals, many essential amino acids with a significant degree of solubility and nutrition. This feature has a positive effect on the environment and allows obtaining eco - logically clean products. The cultivation of soybeans is of great agrotechnical importance, as it is a good precursor for the cultivation of the vast majority of agricultural crops. However, the determining factor for obtaining a high yield of soybeans is the variety. On the basis of the research results, their economic analysis and with the aim of growing high soybean yields at the level of 2.91 t/ha, the agro-forming of the right-bank forest-steppe of Ukraine recommended sowing the intensive soybean variety Sandra – carrying out pre-sowing treatment of soybean seeds with the bacterial preparation Rizotorphin in combination with the growth regulator Vermyst. Therefore, the scien - tific work is devoted to researching the yield and nutritional value of soybeans of different varieties depending on the inoculation of seeds with bacterial preparations and treatment with growth regulators, which is relevant as well as of scientific and practical interest in the field of ecologically oriented growing technologies.
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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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