首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Poly-acrylic acid grafted natural rubber for multi-coated slow release compound fertilizer: Preparation, properties and slow-release characteristics
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Poly-acrylic acid grafted natural rubber for multi-coated slow release compound fertilizer: Preparation, properties and slow-release characteristics

机译:用于多涂层缓释复合肥的聚丙烯酸接枝天然橡胶:制备,性能和缓释特性

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摘要

In this study, a novel multi-coated slow release compound fertilizer based on natural rubber (NR) was prepared and characterized. Firstly, NR was grafted with poly-acrylic acid by in-situ radical solution polymerization to synthesize poly-acrylic add grafted natural rubber (NR-g-PAA), the reaction conditions were optimized to increase the water absorption properties of NR-g-PAA. Through a series of characterization and test, the structure, morphology, thermal properties and biodegradability of NR-g-PAA were determined. Subsequently, a multi nutrient fertilizer core was fabricated with urea, KH2PO4, and attapulgite by pan granulation. Then the fertilizer core was coated by NR as the inner layer and NR-g-PAA as the outer layer. Meanwhile, the slow release behavior of the compound fertilizer in soil was also studied. Results showed that the maximum water absorbency of NR-g-PAA is 744.00 +/- 14.38%. The release rate of N, P and K in 30 days for NR/NR-g-PAA coated fertilizer was about 54.35 +/- 1.49%, 51.18 +/- 2.15% and 4437 +/- 1.38%, respectively, showing that the nutrient element release can last for >30 days. Overall, the novel method introduced in this study can inform the development of NR based controlled release fertilizers. (C) 2020 Elsevier B.V. All rights reserved.
机译:在该研究中,制备了一种基于天然橡胶(NR)的新型多涂层缓释复合肥料。首先,通过原位自由基溶液聚合将NR接枝聚丙烯酸,以合成聚丙烯加接枝天然橡胶(NR-G-PAA),优化反应条件以增加NR-G-的吸水性PAA。通过一系列表征和测试,确定了NR-G-PAA的结构,形态,热性能和生物降解性。随后,用粉粒造粒用尿素,KH2PO4和亚替汀制备多营养肥料芯。然后用NR作为内层和Nr-G-Paa涂覆肥料芯作为外层。同时,还研究了土壤中复方肥料的缓慢释放行为。结果表明,NR-G-PAA的最大吸水性为744.00 +/- 14.38%。 NR / NR-G-PAA涂层肥料30天内N,P和K的释放速率分别为约54.35 +/- 1.49%,51.18 +/- 2.15%和4437 +/- 1.38%,显示出营养素释放可以持续> 30天。总体而言,本研究中介绍的新型方法可以为基于NR的受控释放肥料提供信息。 (c)2020 Elsevier B.v.保留所有权利。

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