脲醛
尿素
纳米复合材料
挤压
聚合物
蒙脱石
聚合
甲醛
化学工程
原位聚合
材料科学
高分子化学
化学
复合材料
有机化学
图层(电子)
工程类
胶粘剂
作者
Cíntia Fumi Yamamoto,Elaine I. Pereira,L. H. C. Mattoso,Teruo Matsunaka,Cauê Ribeiro
标识
DOI:10.1016/j.cej.2015.11.023
摘要
Abstract A novel nanocomposite material based on the exfoliation of montmorillonite into a matrix of urea/urea–formaldehyde polymer was developed to be used as nitrogen-loaded slow release fertilizers. The nanocomposites were produced by cold plastic extrusion, a simple and high-productive method, using a formaldehyde precursor to accomplish polymerization in situ during extrusion processing. Characterizations showed that the extruded fertilizer nanocomposites presented good mechanical resistance, and that the urea release was noticeably controlled by the extent of polymerization. Water immersion experiments demonstrated that the nanocomposite structure was responsible for the effective slow urea release behavior. A dependence of the availability of other nitrogenous compounds (NH 4 + and NO 3 − ) on the polymerization degree was also demonstrated by soil incubation tests. The urea/urea–formaldehyde polymer nanocomposites were found to be versatile and smart materials capable of supplying the enormous demand for novel efficient nitrogen fertilizers.
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