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Investigation of Morphology and Composition of the Mineral Fertilizer Granules with Nanostructured Areas

机译:纳米结构区域矿物肥料颗粒形态及组成研究

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The study of morphology, crystal structure, and elemental composition of controlled-release capsulated mineral fertilizers with nanoporous structure was provided in this work. Four types of fertilizers with nitrogen-containing core and phosphate-containing shell were proposed and analyzed. Various types of plasticizers were used for granulation. Cross-section of granule shelles and the interfaces between thee shell and core were analyzed. Samples with multiple types of core-shell were compared. The quality of nanoporous surface, the presence of shell defects, and features of the interface, particularly the quality of superphosphate shell attachment to carbamide core, were estimated. The presence of small nano-pores along the shell surface makes it possible to reduce the rate of dissolution of the fertilizer in the soil, create fertilizers with prolonged action and increase the uniformity of fertilizer, as well as to control the dissolution time by varying the shell thickness and the relative number of nanopores in the granule shell.
机译:在这项工作中提供了对具有纳米多孔结构的控制脱模矿床的形态学,晶体结构和元素组成的研究。提出并分析了四种含氮含氮核和含磷酸盐的盐。各种类型的增塑剂用于造粒。分析了颗粒壳的横截面和壳体和核心之间的界面。比较了具有多种类型核壳的样品。估计纳米多孔表面,壳缺陷的存在和界面的特征,特别是过磷酸壳附着对氨基甲酰胺核心的质量。沿着壳表面的小纳米孔的存在使得可以降低土壤中肥料的溶解速率,产生延长作用的肥料,增加肥料的均匀性,并通过改变溶解时间来控制溶解时间壳厚度和颗粒壳中的纳米孔的相对数量。

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