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The Effect of UV-Irradiation on Poly(vinyl alcohol) Composites with Bacterial Cellulose

机译:紫外线辐射对细菌纤维素聚(乙烯醇)复合材料的影响

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The development of biodegradable packaging materials, especially from renewable resources is a constant preoccupation of nowadays, because of the environmental problems caused by synthetic polymers. The combination of cellulose with other polymeric materials could be an ecologic alternative and a way to use renewable resources for food packaging. Bacterial cellulose which is produced by microbial fermentation is also a promising material which can be used not only in biomedical application, but also as food packaging material. In this research different composite films between poly(vinyl alcohol)-bacterial cellulose (PVA-BC) were obtained by casting method. The obtained films were UV irradiated for different periods of times from 1 to 10 hours, using a mercury lamp, Philips TUV-30, emitting light mainly at 254 nm. Changes in FT-IR spectra before and after UV irradiation and the modification of transparency and of the swelling characteristics of the films were observed. As it was expected the composites materials are sensitive at UV exposure.
机译:由于合成聚合物引起的环境问题,可生物降解包装材料的发展是日常的持续关注。纤维素与其他聚合物材料的组合可以是生态替代品,也可以是使用可再生资源进行食品包装的方法。通过微生物发酵产生的细菌纤维素也是一种有望的材料,其不仅可以在生物医学应用中使用,而且是食品包装材料。在该研究中,通过铸造方法获得聚(乙烯醇) - 基氨酰纤维素(PVA-BC)之间的不同复合膜。使用汞灯,飞利浦Tuv-30,主要在254nm发光光,所以将所得薄膜从1至10小时辐射到不同时间。观察到紫外线照射前后的FT-IR光谱和透明度的改性和膜的溶胀特性。由于预期,复合材料材料在UV暴露中是敏感的。

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