悬浮剂稳定配方的理论基础及其对棉花产量、土壤CO2释放度的影响(二)

N.N. Yesserkeyeva, S. Usmanov, D. E. Fischer, Ye.N. Ramazanova, B. Tolkyn, A.E. Trenova, O. Myachina, B. Zakirov
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引用次数: 0

摘要

使用过的农作物种子消毒剂,特别是棉花,不为植物提供额外的营养氮,并获得原棉的高产量。在这项工作中,任务是创造一种活性物质,并在其基础上创造一种具有多功能作用的组合物的制备形式,同时允许减少棉花植物的疾病,增加土壤中易水解氮的积累,并获得原棉的高产。的目的。甲基脲类和钼类植物化合物活性物质的合成与提取理论基础及棉籽敷料配方的研究结果。证实了pH、温度和贮存时间对制剂稳定性的影响机理,保证了制剂的高生物效率。初步确定了单甲基脲钼复合植物化合物制备形式对棉花产量和温室效应的影响机理。结果表明,在生长季节,这种成分在土壤中积累了额外的易水解氮和流动形式的五氧化二磷,减少了二氧化碳向气相的释放,提高了原棉的产量。结论。为保证生物效率,确定了该组合物的最佳保存参数:pH 6.5-7.5,温度20℃和35℃,保存时间3-6个月。土壤中二氧化碳释放量降低22 ~ 32 mg / m2 / h,棉花产量提高20.58% ~ 37.51%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A STUDY OF THE THEORETICAL FOUNDATIONS FOR OBTAINING A STABLE FORMULATION OF A SUSPENDED FUNGICIDAL COMPOSITION AND ITS EFFECT ON THE YIELD OF COTTON, THE DEGREE OF CO2 RELEASE FROM THE SOIL (Part 2)
Used seed disinfectants of agricultural crops, and in particular cotton, do not provide plants with additional nutrient nitrogen and obtain a high yield of raw cotton. In this work, the task is to create an active substance and, on its basis, a preparative form of a composition of a multifunctional action, which simultaneously allows reducing diseases of cotton plants, increasing the accumulation of easily hydrolysable nitrogen in the soil and obtaining a high yield of raw cotton. The purpose. Synthesis and study of the theoretical foundations for obtaining the active substance and the formulation of the composition for dressing cotton seeds based on methylol ureas and molybdenum phytocompounds. Results. The mechanism of influence medium of pH, temperature and storage time on the stability of the preparative form, which ensures high biological efficiency, is substantiated. The mechanism of the influence of the preparative form of a double compound based on monomethylol urea and molybdenum phytocompound on the yield of cotton and the greenhouse effect has been established. It was revealed that during the growing season the composition provides the accumulation in the soil of an additional content of easily hydrolysable nitrogen and mobile forms of phosphorus pentoxide, reduces the release of carbon dioxide into the gas phase and increases the yield of raw cotton. Conclusion. The optimal storage parameters of the composition were determined to ensure high biological efficiency: pH 6.5-7.5, temperature 20 °C and 35 °C, and storage time 3-6 months. A decrease in the release of carbon dioxide in the soil by 22 - 32 mg / m2 per hour and an increase in the yield of cotton by 20.58 % - 37.51 % were established.
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