乳清蛋白生物材料在不同pH值和增塑剂浓度下的性能

Manar Abdalrazeq, C. Giosafatto, R. Porta
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引用次数: 0

摘要

乳清(MW)是奶酪工业的主要副产品。一种可能回收的MW废物是使用它们的球状蛋白(MWPs)作为聚合物来源,生产可生物降解的塑料材料。基于mwp的薄膜通常是在pH值为7的甘油(GLY)作为增塑剂存在下通过蛋白质热处理获得的,这种方法在商业上需要很高的成本。在这项工作中,开发了在碱性条件下生产可管理的毫瓦衍生生物材料的可能性,而无需任何热处理。我们的研究结果表明,在pH为12的情况下铸造含有40%或50% GLY的未加热MWP成膜溶液(FFSs),比在pH为7的情况下获得的生物材料更具抗性和柔韧性。此外,在碱性条件下获得的样品,在没有MWP加热和GLY浓度较高的情况下,薄膜透明度明显提高。最后,在加热和未加热的mwp基膜中,水分含量随着GLY含量的降低而降低,而在pH 12下制备的不同膜的吸水性没有显著变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Properties of Bio-Materials Obtained from Milk Whey Proteins at Different pH Values and Plasticizer Concentrations
Milk whey (MW) represents the major by-product of cheese industry. One possibility to recycle the MW wastes is the use of their globular proteins (MWPs) as a polymer source for the production of biodegradable plastic materials. MWP-based films are usually obtained by protein heat treatment in the presence of glycerol (GLY) as plasticizer at pH 7, a method which would require commercially high costing process. In this work it was exploited the possibility to produce manageable MW-derived biomaterials without any heat-treatment but under alkaline conditions. Our results demonstrated that the casting at pH 12 of the unheated MWP film forming solutions (FFSs), containing either 40% or 50% GLY, led to produce more resistant and flexible biomaterials than the ones obtained at pH 7. Also film transparency was observed significantly improved, being lower in the samples obtained at alkaline pH without MWP heating and with higher GLY concentrations. Finally, moisture content decreased with the reduction of GLY content, both in heated and unheated MWP-based films, whereas water uptake of the different films prepared at pH 12 did not significantly change.
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