硅氧烷
涂层
蓖麻油
聚氨酯
控制释放
多孔性
化学工程
包膜尿素
多元醇
材料科学
肥料
淀粉
尿素
化学
复合材料
有机化学
聚合物
纳米技术
工程类
作者
Chao Wang,Shuhui Song,Liqing Du,Ziming Yang,Yunhao Liu,Zuyu He,Chuang Zhou,Puwang Li
标识
DOI:10.1016/j.ijbiomac.2023.123994
摘要
The porous structure and hydrophilicity of coating shells affect the nutrient controlled-release performance of castor oil-based (CO) coated fertilizers. In order to solve these problems, in this study, the castor oil-based polyurethane (PCU) coating material was modified with liquefied starch polyol (LS) and siloxane, and a new coating material with cross-linked network structure and hydrophobic surface was synthesized, and used it to prepare the coated controlled-release urea (SSPCU). The results demonstrated that the cross-linked network formed by LS and CO improved the density and reduced the pores on the surface of the coating shells. The siloxane was grafted on the surface of coating shells to improve its hydrophobicity and thus delayed water entry. The nitrogen release experiment indicated that the synergistic effects of LS and siloxane improved the nitrogen controlled-release performance of bio-based coated fertilizers. Nutrient released longevity of SSPCU with 7 % coating percentage reached >63 days. Moreover, the nutrient release mechanism of coated fertilizer was further revealed by the analysis of the release kinetics analysis. Therefore, the results of this study provide a new idea and technical support for development of efficient and environment-friendly bio-based coated controlled-release fertilizers.
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