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Thermal and mechanical properties of plastics molded from urea-modified soy protein isolates

机译:由尿素改性大豆分离蛋白模塑的塑料的热力学性能

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Soy protein has been considered as a potential alternative of some petroleum polymers in the manufacture of plastics. The purpose of this investigation was to characterize the thermal and mechanical properties of plastics made from urea-modified soy protein. Soy protein isolate was separated from the defatted soy flour, modified with various urea concentrations, and compression-molded into plastics. Differential scanning calorimetry showed that the temperatures of denaturation and the enthalpies of denaturation of the modified soy protein decreased as urea concentrations increased above 1 M. At the same urea concentration, molded plastics made from the modified soy proteins showed a similar temperature of denaturation as the modified soy protein, but a lower enthalpy of denaturation. Tensile strength and Young's modulus of the molded plastics from the modified soy proteins increased as urea concentration increased and reached their maximum values at 8 M urea modification. Both storage modulus and glass transition temperature of the plastics from the modified soy proteins increased as urea concentration increased. The plastics made from the 2 M urea-modified soy proteins showed improvements in elongation, tough fracture behavior, and water resistance. The urea may function as a denaturant, a plasticizer, and a filler.
机译:在塑料制造中,大豆蛋白被认为是某些石油聚合物的潜在替代品。这项研究的目的是表征由尿素改性大豆蛋白制成的塑料的热和机械性能。从脱脂大豆粉中分离大豆蛋白分离物,用各种尿素浓度进行改性,然后压制成型为塑料。差示扫描量热法显示,当尿素浓度增加到1 M以上时,改性大豆蛋白的变性温度和变性焓降低。在相同的尿素浓度下,由改性大豆蛋白制成的模制塑料显示出的变性温度与大豆蛋白相似。修饰的大豆蛋白,但变性焓较低。改性大豆蛋白制成的模塑塑料的拉伸强度和杨氏模量随尿素浓度的增加而增加,并在8 M尿素改性时达到最大值。改性大豆蛋白的塑料的储能模量和玻璃化转变温度都随着尿素浓度的增加而增加。由2 M尿素改性的大豆蛋白制成的塑料在伸长率,坚韧的断裂行为和耐水性方面表现出改善。尿素可以用作变性剂,增塑剂和填充剂。

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