首页> 外文期刊>Journal of Polymers and the Environment >Hard Biodegradable Biopolymer Obtained from Whey Protein Concentrate and Montmorillonite
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Hard Biodegradable Biopolymer Obtained from Whey Protein Concentrate and Montmorillonite

机译:从乳清蛋白浓缩物和蒙脱石中获得的硬生物可降解生物聚合物

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摘要

The aim of this study was to obtain whey protein concentrate-WPC/montmorillonite-MON biopolymers. Mixed whey protein/montmorillonite biopolymers were formed as heat-induced gels and hardened by water evaporation. Increase in protein concentration caused an increase in storage and loss moduli of the gels. Adding 5 % of MON to whey protein gel matrix caused an increase in the moduli value. Obtained biopolymers behaved as weak physical gels as loss tangent was in a range 0.25-0.45. Increase in protein concentration and addition of MON caused increase in viscosity of the biopolymers measured by dissipation of ultrasound vibrations. Addition of MON generally caused reinforcement of the structure of the mixed gels and the material was more resistant to puncture. Addition of MON caused changes in the microstructure of whey protein gel, which became more fine-stranded. It was probably caused by adsorption of the ions by MON. Drying of WPC/MON gels caused formation of very hard biopolymer, which can be applied as natural biodegradable material.
机译:这项研究的目的是获得浓缩乳清蛋白-WPC /蒙脱石-MON生物聚合物。混合的乳清蛋白/蒙脱土生物聚合物形成为热诱导凝胶,并通过水蒸发而硬化。蛋白质浓度的增加导致凝胶的储存和模量损失增加。向乳清蛋白凝胶基质中添加5%的MON导致模量值增加。获得的生物聚合物表现为弱的物理凝胶,因为损耗角正切在0.25-0.45的范围内。蛋白质浓度的增加和MON的添加导致通过超声振动消散测量的生物聚合物的粘度增加。 MON的添加通常引起混合凝胶的结构增强,并且该材料更耐穿刺。 MON的加入引起了乳清蛋白凝胶的微观结构的改变,其变得更细。这可能是由于MON对离子的吸附所致。 WPC / MON凝胶的干燥导致形成非常坚硬的生物聚合物,可用作天然可生物降解材料。

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