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首页> 外文期刊>International Journal of Photoenergy >Solubility Characteristics and Slow-Release Mechanism of Nitrogen from Organic-Inorganic Compound Coated Urea
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Solubility Characteristics and Slow-Release Mechanism of Nitrogen from Organic-Inorganic Compound Coated Urea

机译:有机-无机复合包膜尿素氮的溶解度特征及缓释机理

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摘要

A soil incubation method was used to investigate the solubility characteristics and slow-release mechanism of organic-inorganic compound coated urea at temperature of 10, 20, and 30 degrees C. Themembrane microstructure with and without incubation was tested via scanning electron microscopy (SEM). Slow release of nitrogen (N) from different inorganic minerals was analysed by the activation energy from the nutrient solubility system. The rate of nitrogen solubility increased with temperature increasing. The first-order reaction kinetic equation described the solubility process of coated urea. The rate constant k also increased with temperature increasing. Moreover, the SEM images showed that the microstructure of the coating layer changed into a flocculent structure and the number of tiny pores and holes on the membrane surface increased significantly with temperature increasing, which increased N solubility rate. The Arrhenius equation indicated that activation energy was closely related to k during the solubility process; the activation energy was reduced with k rising, which resulted in N solubility rate increasing. Overall, the N solubility rate of coated urea was affected by temperature.
机译:采用土壤培养方法研究了有机无机化合物包被的尿素在10、20和30摄氏度下的溶解度特征和缓释机理。通过扫描电子显微镜(SEM)测试了有无孵育的膜微结构。 。通过养分溶解度系统的活化能分析了不同无机矿物中氮(N)的缓慢释放。氮的溶解度随温度的升高而增加。一级反应动力学方程描述了包覆尿素的溶解过程。速率常数k也随着温度的升高而增加。此外,SEM图像表明,随着温度的升高,涂层的微观结构变为絮状结构,膜表面微小孔和孔的数量明显增加,从而提高了N的溶解度。 Arrhenius方程表明在溶解度过程中活化能与k密切相关。活化能随着k的增加而降低,从而导致N溶解度增加。总体而言,包衣尿素的氮溶解度受温度影响。

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