Processing and Product Development Division, ICAR-Indian Institute of Natural Resins and Gums, Namkum, Ranchi, 834010, India.
Department of Chemistry, Birla Institute of Technology, Mesra, Ranchi, 835215, India.
Carbohydr Polym. 2018 Apr 1;185:169-178. doi: 10.1016/j.carbpol.2018.01.018. Epub 2018 Jan 6.
The novel hydrogels were synthesized by grafting guar gum with acrylic acid and cross-linking with ethylene glycol di methacrylic acid (EGDMA). The synthesis of hydrogel was confirmed by characterization through C NMR, FTIR spectroscopy, SEM micrography, thermo-gravimetric analysis and water absorption studies under different solutions. Synthesized hydrogel (GG-AA-EGDMA) was confirmed to be biodegradable with half-life period of 77 days through soil burial biodegradation studies. The effects of hydrogel treatment on soil were evaluated by studying various physico-chemical properties of soil like bulk density, porosity, water absorption and retention capacity etc. The hydrogel which could absorb up to 800 ml water per gram, after addition to soil, improved its porosity, moisture absorption and retention capacity significantly. Water holding capacity of water increased up to 54% of its original and porosity also increased up to 9% of its original. The synthesized hydrogel revealed tremendous potential as soil conditioning material for agricultural applications.
新型水凝胶是通过将瓜尔胶与丙烯酸接枝,并与乙二醇二甲基丙烯酸酯(EGDMA)交联合成的。通过 C NMR、FTIR 光谱、SEM 显微照片、热重分析和不同溶液下的吸水研究对水凝胶的合成进行了表征。通过土壤掩埋生物降解研究,证实合成的水凝胶(GG-AA-EGDMA)具有生物降解性,半衰期为 77 天。通过研究土壤的各种物理化学性质,如密度、孔隙率、吸水性和保持能力等,评估了水凝胶处理对土壤的影响。水凝胶在添加到土壤中后,每克可吸收高达 800 毫升的水,显著提高了土壤的孔隙率、吸水性和保持能力。水的持水量增加了其原始值的 54%,孔隙率也增加了其原始值的 9%。合成的水凝胶显示出作为农业应用的土壤改良材料的巨大潜力。
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