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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Biodegradable hydrogels of tragacanth gum polysaccharide to improve water retention capacity of soil and environment-friendly controlled release of agrochemicals
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Biodegradable hydrogels of tragacanth gum polysaccharide to improve water retention capacity of soil and environment-friendly controlled release of agrochemicals

机译:TragaCanth Gum多糖的可生物降解水凝胶,提高土壤和环保控制释放的水保留能力

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This work reports the synthesis of lipase enzyme catalyzed biodegradable hydrogel interpenetrating polymer network (hydrogel-IPN) of natural gum polysaccharide i.e. gum tragacanth (GT) with acrylamide (AAm) and methacrylic acid (MAA) and their potential application in the delivery of agrochemicals. Biodegradation experiments were performed using composting and soil burial methods of biodegradation. Complete degradation of synthesized hydrogel-IPN occurred within 77 days using composting method, while using soil burial method 81.26% degradation occurred after 77 days. Furthermore, effect hydrogel-IPN degradation on the fertility of soil was also studied through macro-analysis of soil. Water retention capacity of clay soil and sandy loam soil was improved after mixing swelled sample of hydrogel-IPN with these soil samples. The potential of hydrogel-IPN was also tested for sustained and slow release of two agrochemicals i.e. urea and calcium nitrate. Kinetics of agrochemicals release revealed that the release rate of both the fertilizers was initially higher which kept on decreasing with time. Diffusion mechanism of agrochemicals followed Case-II diffusion type behavior. Therefore, synthesized hydrogel-IPN is important from agriculture view point and can be used for sustained and controlled release of agrochemicals. (C) 2019 Elsevier B.V. All rights reserved.
机译:该工作报告了天然胶多糖的脂肪酶酶催化的生物降解水凝胶互通聚合物网络(水凝胶-IPn)与丙烯酰胺(AAM)和甲基丙烯酸(MAA)的胶囊(GT)及其在递送农用化学品中的潜在应用。使用生物降解的堆肥和土壤埋葬方法进行生物降解实验。使用堆肥方法在77天内完成合成水凝胶-IPN的完全降解,同时使用土壤埋葬方法81.26%的降解在77天后发生。此外,还通过土壤宏观分析研究了土壤生育能力的水凝胶-IPN降解。用这些土壤样品混合水凝胶-IPN的膨胀样品后,改善了粘土土壤和砂质壤土土壤的水保持能力。还测试了水凝胶-IPN的潜力,持续和缓慢释放两种农用化学品I.。尿素和硝酸钙。农业化学品释放的动力学显示,肥料的释放率最初较高,随着时间的推移持续降低。农用化学品的扩散机制跟随案例-II扩散型行为。因此,合成的水凝胶-IPN是农业观点的重要性,可用于农业化学物质的持续和控制释放。 (c)2019 Elsevier B.v.保留所有权利。

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