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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Biodegradable Urea-Formaldehyde/PBS and Its Ternary Nanocomposite Prepared by a Novel and Scalable Reactive Extrusion Process for Slow-Release Applications in Agriculture
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Biodegradable Urea-Formaldehyde/PBS and Its Ternary Nanocomposite Prepared by a Novel and Scalable Reactive Extrusion Process for Slow-Release Applications in Agriculture

机译:可生物降解的尿素 - 甲醛/ PBS及其三元纳米复合材料通过新颖的和可扩展的反应挤出方法制备,用于农业缓慢释放应用

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Novel binary composite urea-formaldehyde/poly(butylene succinate) (UF/PBS) and its ternary nanocomposite UF/PBS/potassium dihydrogen phosphate (MKP) were prepared by a simple and scalable reactive extrusion approach using methylolurea (MU), PBS, and MKP as the raw materials. The results show that MUs react by melt polycondensation to form UFs with different polymerization degrees at the high temperature in the extruder, giving the two polymer components molecular segment-scale mixing in composites. Meanwhile, MKPs dissolved in the water generated by the melt polycondensation are perfectly confined to the nanometer scale during their precipitation process in ternary composites due to the hydrogen bonding interactions between them and UF and the "cage effect" of UF and PBS macromolecule chains. Both composites have excellent processability, mechanical properties, and slow-release performances. Compared with UF prepared by direct synthesis or reactive extrusion, N release speeds of the two composites are much lower in the early incubation stage but much higher in the subsequent stages; ternary composites can also impart MKP with excellent slow-release properties. This study can provide a good feasibility for large-scale applications of UF-based or PBS-based composites and nanocomposites used as slow-release fertilizers or other products in agriculture or horticulture.
机译:新颖二进制复合脲醛/聚(丁二酸丁二醇酯)(UF / PBS)及其三元纳米复合UF / PBS /磷酸二氢钾(MKP)通过一个简单且可扩展的反应性挤出方法使用羟甲基脲(MU)中制备,PBS,和MKP作为原料。结果表明,通过亩熔融缩聚反应以聚合度不同形式的UF在挤出机中的高温,使两种聚合物组分的分子链段尺度复合材料混合。同时,溶解在由熔融缩聚中产生的水MKPs是完全局限于期间三元复合材料其沉淀过程中的纳米尺度由于它们和UF和UF和PBS大分子链的“笼效应”之间的氢键相互作用。这两种复合材料具有优良的加工性,机械性能和缓释性能。用UF相比制备通过直接合成或反应性挤出中,将两种复合材料的氮释放速度在早期孵化阶段要低得多,但在随后的阶段高得多;三元复合材料还可以具有优异的缓释性能赋予MKP。这项研究可为作为缓释肥料或其他产品在农业或园艺型UF或基于PBS复合材料和纳米复合材料的大规模应用的良好的可行性。

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