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首页> 外文期刊>Iranian journal of science and technology >Induction of morphological changes in soy protein concentrate through pressure induced graft copolymerization and evaluation of chemical and thermal properties
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Induction of morphological changes in soy protein concentrate through pressure induced graft copolymerization and evaluation of chemical and thermal properties

机译:通过压力诱导的接枝共聚以及评估化学和热性能来诱导大豆浓缩蛋白的形态变化

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Modification of natural polymers like protein by graft co-polymerization is an important method to incorporate the desired properties into the backbone. Soy protein concentrate (SPC) was grafted with ethylmethacrylate (EMA) using ascorbic acid /potassium persulphate as redox initiator system under pressure. Different reaction parameters such as reaction time, reaction pressure, solvent amount, initiator ratio, pH and monomer concentration were optimized to get maximum graft yield (59.5%). The optimized reaction conditions were: reaction time; 150 min, reaction pressure; 7.5 psi, solvent; 150ml, AAc: KPS; 1:1.25, pH; 8, [EMA]; 1.99 X 10(-3) Mol L-1. The graft copolymer formed was characterized by FTIR, XRD and SEM techniques. The grafted protein was found to undergo physico-chemical changes on incorporation of polymer chains onto backbone through graft copolymerization which resulted in enhanced resistance towards moisture absorbance and acid-base attack. Thermal analysis showed higher final decomposition temperature of grafted protein as compared to that of ungrafted backbone.
机译:通过接枝共聚改性天然聚合物(如蛋白质)是一种将所需特性纳入主链的重要方法。使用抗坏血酸/过硫酸钾作为氧化还原引发剂体系,将大豆浓缩蛋白(SPC)与甲基丙烯酸乙酯(EMA)接枝。优化了不同的反应参数,例如反应时间,反应压力,溶剂量,引发剂比例,pH和单体浓度,以获得最大的接枝率(59.5%)。优化的反应条件为:反应时间;反应时间;反应时间。 150分钟,反应压力; 7.5 psi,溶剂; 150ml,AAc:KPS; 1:1.25,pH; 8 [EMA]; 1.99 X 10(-3)摩尔L-1。所形成的接枝共聚物通过FTIR,XRD和SEM技术表征。发现通过接枝共聚将聚合物链结合到主链上后,嫁接的蛋白质会发生物理化学变化,从而增强了对水分吸收和酸碱侵蚀的抵抗力。热分析表明,与未接枝骨架相比,接枝蛋白质的最终分解温度更高。

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