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Microwave-Assisted Synthesis of a Semi-interpenetrating Polymer Network Slow-Release Nitrogen Fertilizer with Water Absorbency from Cotton Stalks

机译:棉秸秆微波辅助吸水半互穿聚合物网络型缓释氮肥的合成

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摘要

A semi-interpenetrating polymer network (semi-IPN) slow-release nitrogen fertilizer with water absorbency was synthesized via microwave irradiation. Urea was incorporated as the nitrogen source into a cotton stalk-g-poly(acrylic acid)/ bentonite (CS-g-PAA/bent) network and linear polyvinylpyrrolidone (PVP). A reaction mechanism for synthesis of CS-g-PAA/ bent/PVP/urea was proposed. Variables influencing water absorbency, such as microwave power, irradiation time, and contents of CS, PVP, and bent were evaluated and optimized. The sample prepared under optimized conditions had a water absorbency of 1018.4 g/g in distilled water and 71.3 g/g in 0.9 wt % NaCl solution. The structure and properties of samples were characterized through various analysis technologies. Swelling measurements and water-retention study indicated that the sample possessed excellent water absorbency in different environments and enhanced the water-retention capacity of soil by introduction of bent and formation of a semi-IPN structure. Investigation of leaching behavior indicated that the sample has the potential to carry the necessary N. The results indicated that about 60% of nutrients were released after 30 days based on anomalous transport, and the sample improved the seed germination rate and promoted cotton growth. Thus, microwave irradiation is a possible method to produce slow-release fertilizers that could be widely applicable in agriculture and horticulture.
机译:通过微波辐射合成了具有吸水率的半互穿聚合物网络(semi-IPN)缓释氮肥。将尿素作为氮源掺入棉秆-g-聚(丙烯酸)/膨润土(CS-g-PAA /弯曲)网络和线性聚乙烯吡咯烷酮(PVP)中。提出了合成CS-g-PAA / bend / PVP /脲的反应机理。评估和优化了影响吸水率的变量,例如微波功率,辐照时间,CS,PVP和弯曲含量。在优化条件下制备的样品在蒸馏水中的吸水率为1018.4 g / g,在0.9 wt%NaCl溶液中的吸水率为71.3 g / g。通过各种分析技术对样品的结构和性质进行了表征。溶胀测量和保水研究表明该样品在不同的环境中具有优异的吸水性,并通过引入弯曲和形成半IPN结构而提高了土壤的保水能力。浸出行为的调查表明,该样品具有携带必需氮的潜力。结果表明,基于异常运输,30天后约60%的养分被释放,该样品提高了种子的发芽率并促进了棉花的生长。因此,微波辐射是一种生产缓释肥料的可能方法,该肥料可广泛应用于农业和园艺。

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