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Microwave-assisted one-step synthesis and characterization of a slow release nitrogen fertilizer with inorganic and organic composites

机译:无机和有机复合材料的微波辅助一步法合成和表征缓释氮肥

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摘要

A slow-release fertilizer (SRF) was synthesized in one step based on urea incorporated in a polymer matrix composed of sodium alginate (NaAlg), acrylic acid (AA), acrylamide (AM) and bentonite (Bent) via microwave irradiation. The proposed microwave-assisted method yielded high reaction rates with less reaction time of 5 minutes at 300 W. The raw materials and final products were characterized in terms of the structure and properties through Fourier transform infrared spectroscopy, X-ray diffraction, thermogravimetric analysis, scanning electron microscopy, and uniaxial compression measurements. The application potential was verified on the basis of swelling in different environments, largest water-holding ratio and water-retention capacity of soil, release study in soil, and the effect of the proposed SRF product on the germination rate of cotton seed. Results indicated that the addition of Bent not only contributed to the increase in water absorbency, largest water-holding ratio and water-retention capacity of soil, but also caused the system to liberate the nutrient in a more prolonged manner based on a Case II release mechanism with skeleton erosion. Thus, microwave irradiation would be a possible method to produce SRFs for potential agricultural and horticultural applications.
机译:通过将尿素掺入由海藻酸钠(NaAlg),丙烯酸(AA),丙烯酰胺(AM)和膨润土(Bent)组成的聚合物基质中,一步合成一种缓释肥料(SRF)。所提出的微波辅助方法在300 W时反应速率高,反应时间短于5分钟。通过傅立叶变换红外光谱,X射线衍射,热重分析,扫描电子显微镜和单轴压缩测量。根据在不同环境下的溶胀,最大持水率和土壤保水能力,在土壤中的释放研究以及所提出的SRF产品对棉籽发芽率的影响,验证了其应用潜力。结果表明,添加Bent不仅有助于提高土壤的吸水率,最大持水率和保水能力,而且还导致系统根据Case II释放更长时间地释放养分骨骼侵蚀的机制。因此,微波辐射可能是生产潜在农业和园艺应用SRF的可能方法。

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