单甲基脲钼植物化合物-水体系中新双化合物结晶面积的测定

E. Ramazanova, S. Usmanov, D. Fischer, T. Balgyn, N.N. Yeserkeeva
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摘要

由于氮肥短缺,农作物,特别是棉花所使用的种子保护剂不能为植物提供所需数量的额外氮。在这篇文章中,我们的任务是创造一种活性的,并在其基础上创造一种多功能作用组合物的替代形式,它可以同时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。单甲基脲(MMM) -钼植物组合物(FSMo) -水三组分水盐体系化学相互作用的目视多热和等温研究。对象。MMM, FSMo,双化合物MMM•FSMo活性物质从系统-3.4÷45.4oC (MMM)和-1.3÷43.2oC (FSMo)的完全冻结开始,研究了作为研究系统一部分的二元系统mm - water和FSMo - water。在-11.0 ÷40.0℃的温度下,通过六个内部切片研究了三重mmm - fsmo -水系统;其中,I-IV是从mm -水侧到钼植物组成顶部进行的,V-VI是从FSMo -水侧到mm -钼植物组成顶部进行的,温度范围为-6.9÷35.2oC, MMM含量为3.7 ~ 38.3%,FSMo含量为5.1 ~ 6.5%。结论。通过目视多热和等温物理化学分析方法,建立了一种新型双化合物的结晶区——一甲基脲类活性物质和一摩尔比为1:1的钼类植物化合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DETERMINATION OF THE AREA OF CRYSTALLIZATION OF A NEW DOUBLE COMPOUND IN THE SYSTEM MONOMETHYLOL UREA-MOLYBDENUM PHYTO COMPOUND-WATER
The used seed protectants of agricultural crops, and in particular cotton, with a shortage of nitrogen fertilizers, do not provide plants with additional nitrogen in the required volume. In this article, the task is set to create an active and on its basis a perparativeform of a composition of multifunctional action, which allows simultaneously reducing diseases of cotton plants, increasing the accumulation of easily hydrolyzable nitrogen in the soil and obtaining a high yield of raw cotton.The purpose. Study of chemical interaction in a three-component water-salt system monomethylolourea (MMM) -molybdenum phytocomposition (FSMo) -water by visual-polythermal and isothermal methods. Objects. MMM, FSMo, double compound MMM•FSMo-active substance Results.The binary systems MMM–water and FSMo–water, which are part of the system under study, were studied from the complete freezing of thesystem -3.4÷45.4oC (MMM) and -1.3÷43.2oC (FSMo). The triple MMM–FSMo–water system was investigated at temperatures from -11.0 ÷40.0 oC, by six internal sections; of these, I-IV were carried out from the MMM–water side to the top of the molybdenum phytocomposition, and V-VI from the FSMo –water side to the top of the MMMformed in the temperature range -6.9÷35.2oC at a content of 3.7-38.3% MMM and 5.1-6.5% FSMo. Conclusion.Thus, by visual-polythermal and isothermal methods of physico-chemical analysis, the region of crystallization of a new double compound –an active substance based on monomethylolourea and a phyto-compound of molybdenum at a molar ratio of 1:1 has been established.
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