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Recipe optimisation for sugarcane bagasse fibre reinforced soy protein biocomposite

机译:甘蔗渣纤维增强大豆蛋白生物复合材料的配方优化

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摘要

A series of biodegradable composites has been prepared using sugarcane bagasse fibres as reinforcement and soy protein isolate (SPI) as matrix. Sugarcane bagasse has been pretreated with 2% NaOH solution for improving its reinforcement. Recipe for matrix includes soy protein isolate as prime ingredient, glyoxal as crosslinking agent and glycerol as plasticizer. The composites are characterised for tensile properties. Three-factor and three-level Box-Behnken design is used to optimize the mass fraction of fibres, percentage of crosslinking and plasticizing agent. The model predicts that the best possible results would be achieved with the recipe having 20% fibres with matrix recipe of 11% glyoxal, 17.7% glycerol and 51.3% SPI by weight. The predicted and observed tensile strength of composite is found to be comparable. The glycerol content is found to play an important role in improvement of tensile property of composite.
机译:使用甘蔗渣纤维作为增强材料和大豆分离蛋白(SPI)作为基质,制备了一系列可生物降解的复合材料。甘蔗渣用2%NaOH溶液进行了预处理,以改善其增强效果。基质配方以大豆分离蛋白为主要成分,乙二醛为交联剂,甘油为增塑剂。该复合材料具有拉伸性能。三因素三级Box-Behnken设计用于优化纤维的质量分数,交联百分比和增塑剂。该模型预测,采用20%纤维的配方以及11%乙二醛,17.7%甘油和51.3%SPI的基质配方将获得最佳的结果。发现复合材料的预测和观察到的拉伸强度是可比较的。发现甘油含量在改善复合材料的拉伸性能中起重要作用。

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