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Effect of potassium sorbate on antimicrobial and physical properties of starch-clay nanocomposite films

机译:山梨酸钾对淀粉黏土纳米复合薄膜抗菌和物理性能的影响

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摘要

Using fresh foods which undergo the least processing operations developed widely in recent years. Active packaging is a novel method for preserving these products. Active starch-clay nanocomposite films which contained potassium sorbate (PS) at a level of 0, 5, 7.5 and 10 g PS/100 g starch were produced and their physical, mechanical and antimicrobial properties were evaluated. In order to evaluate antimicrobial properties of films Aspergillus niger was used. The results showed that 5%of the PS did not produce antimicrobial property in the film, but by increasing the content of the additive in film formulation, antimicrobial effect increased. PS increased water permeability and elongation at break of the films, but decreased tensile strength. The rate of PS migration into the semi-solid medium in starch-nanocomposites was lower than starch films. This shows that nanocomposite films could retain their antimicrobial property for longer time.
机译:近年来,使用加工最少的新鲜食品得到了广泛的发展。主动包装是保存这些产品的一种新颖方法。制备了含有0、5、7.5和10 g PS / 100 g淀粉的山梨酸钾(PS)的活性淀粉-粘土纳米复合薄膜,并对其物理,机械和抗菌性能进行了评估。为了评估薄膜的抗菌性能,使用了黑曲霉。结果表明5%的PS在膜中不产生抗菌性能,但是通过增加膜配方中添加剂的含量,抗菌效果增强。 PS增加了膜的水渗透性和断裂伸长率,但是降低了拉伸强度。淀粉-纳米复合材料中PS迁移到半固体介质中的速率低于淀粉膜。这表明纳米复合膜可以保留其抗菌性能更长的时间。

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