二甲基脲与钼植物化合物的合成及其对土壤微生物种群和氮素积累的影响

E.N. Ramazanova, S. Usmanov, N.N. Yeserkeeva, M. A. Zholmaganbetova, O.V. Myachina, R.U. Mahmudov, H.S. Usmanov
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引用次数: 0

摘要

在氮肥短缺的情况下,用于种植农作物(特别是棉花种子)的钻孔机无法提供所需数量的额外氮肥。本文的任务是以植物化合物二甲基酚和钼为基础,创造一种新的活性物质,可以减少棉花栽培中的棉花病害,增加土壤中轻水解氮的积累,获得高棉花产量。的目的。用等温法研究二甲基盐-钼-植物化合物-水三组分水盐体系中的化学相互作用。对象。DMM、FSMo、双化合物DMM是FSMo的活性反应物。结果。25℃等温法发现,在12.2-9.8% DMM和2.8-5.4% FSMo的浓度范围内,DMM在体系中结晶,在5.7-2.1% DMM和12.3-15.5% FSMo的浓度范围内,FSMo结晶,在8.2 -6.4% DMM和6.2-9.3% FSMo的浓度范围内,化合物DMM•FSMo从溶液中分离到该相。采用等温化学分析方法研究了二甲基脲(DMM) -钼植物化合物(FSMo) -水水盐体系中的化学相互作用。在4DMM•FSMo的摩尔比下,建立了DMM与FSMo活性物质双化合物的结晶区。在模型土壤样品上,测定了硝酸铵背景下的活性物质——双化合物4DMM•FSMo,与硝酸铵相比,固氮细菌的数量增加了3.0倍和3.2倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SYNTHESIS OF A DOUBLE COMPOUND BASED ON DIMETHYLOL UREA AND PHYTOCOMPOUND OF MOLYBDENUM AND THE STUDY OF ITS INFLUENCE ON THE POPULATION OF SOME SOIL MICROORGANISMS AND ACCUMULATION OF NITROGEN
Drillers used for agricultural crops, in particular cotton seeds, cannot provide additional nitrogen feeding in the required volume during a shortage of nitrogen fertilizers. This article sets the task of creating a new active substance based on the phyto compound dimethylolure and molybdenum, which allows you to reduce cotton diseases in cotton cultivation, increase the accumulation of light hydrolyzed nitrogen in the soil and obtain a high cotton yield. The purpose. Study of chemical interactions in a three-component aqueous-salt system of dimethylolure-molybdenum phyto-compound-water by isothermal method. Objects. DMM, FSMo, double compound DMM is the active reactant of FSMo. Results.The isothermal method at a temperature of 25°C found that in the concentration range of solutions of 12.2-9.8% DMM and 2.8-5.4% FSMo, DMM crystallizes in the system, at a concentration range of 5.7-2.1% DMM and 12.3-15.5% FSMo, FSMo crystallizes, and in the concentration range of 8.2 -6.4% DMM and 6.2-9.3% FSMo, the compound DMM•FSMo is separated from the solution into this phase.Conclusion. The chemical interaction in the water-salt system dimethylol urea (DMM) - molybdenum phytocompound (FSMo) - water was studied by isothermal methods of chemical analysis. The region of crystallization of a new double compound, an active substance based on DMM and FSMo, was established at a molar ratio of 4DMM•FSMo. On model soil samples, it was determined that the active substance - the double compound 4DMM•FSMo against the background of ammonium nitrate, in comparison with ammonium nitrate, increases the number of nitrogen-fixing bacteria by 3.0 and 3.2 times.
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