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Novel hydrogel from functionalized glycerol and microfibrillated cellulose: towards an environmentally-friendly design

机译:来自官能化甘油和微纤维纤维素的新型水凝胶:朝向环保设计

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Glycerol is one of the major residues obtained during biodiesel transesterification. Microfibrillated cellulose was obtained from the empty bunches of palm oil, which is a residue of biomass extracted oil. Therefore, the objective of this work is to apply two important residues of oil chemistry industry, glycerol and lignocellulose biomass, in addition to acrylic acid to synthesize a polymer matrix in form of hydrogel for water absorption applications. To produce the polymer matrix, glycerol was modified with acrylic acid to obtain n-acylglycerol macromonomer with different reactive groups. The solution polymerizations were carried out between n-acylglycerol macromonomer, acrylic acid and bis-acrylamide in presence of microfibrillated cellulose (obtained from empty bunches of palm oil) to obtain hydrogels. The final material presented a high capacity of swelling water. The best material considering the swelling water contained 25 wt% of acrylic acid and 5 wt% of cellulose microfiber and absorbed 1400% of its own weight when produced in the optimized condition.
机译:甘油是生物柴油酯交换过程中的主要残留物之一。微纤维化的纤维素是从空的棕榈油束中获得的,棕榈油是生物质提取油的残渣。因此,本研究的目的是利用石油化学工业中的两种重要残留物——甘油和木质纤维素生物质,以及丙烯酸,合成一种水凝胶形式的聚合物基质,用于吸水应用。为了制备聚合物基体,用丙烯酸对甘油进行改性,得到具有不同反应基团的n-酰基甘油大分子单体。在微纤化纤维素(从空棕榈油束中获得)存在下,在n-酰基甘油大单体、丙烯酸和双丙烯酰胺之间进行溶液聚合以获得水凝胶。最终的材料表现出很高的吸水能力。考虑到溶胀水的最佳材料含有25 wt%的丙烯酸和5 wt%的纤维素超细纤维,在优化条件下生产时吸收其自身重量的1400%。

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