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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Cellulose-glycerol-polyvinyl alcohol composite films for food packaging: Evaluation of water adsorption, mechanical properties, light-barrier properties and transparency
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Cellulose-glycerol-polyvinyl alcohol composite films for food packaging: Evaluation of water adsorption, mechanical properties, light-barrier properties and transparency

机译:用于食品包装的纤维素 - 甘油 - 聚乙烯醇复合薄膜:对水吸附,机械性能,光阻挡性能和透明度的评价

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摘要

Nowadays consumers are aware of environmental problems. As an alternative to petrochemical polymers for food packaging, researchers have been focused on biopolymeric materials as raw material. The aim of this study was to evaluate mechanical properties (toughness, burst strength and distance to burst), water adsorption, light-barrier properties and transparency of composite films based on cellulose, glycerol and polyvinyl alcohol. Scanning electron microscopy, spectral analysis (FT-IR and UV-VIS-NIR) and differential scanning calorimetry were performed to explain the morphology, structural and thermal properties of the films. Results showed that polyvinyl alcohol enhances the toughness of films up to 44.30 MJ/m(3). However, toughness decreases when glycerol concentration is increased (from 23.41 to 10.55 MJ/m(3)). Water adsorption increased with increasing polyvinyl alcohol concentration up to 222%. Polyvinyl alcohol increased the film thickness. The films showed higher burst strength (up to 12014 g) than other biodegradable films. The films obtained have optimal values of transparency like those values of synthetic polymers. Glycerol produced a UV protective effect in the films, an important effect for food packaging to prevent lipid oxidative deterioration. Results showed that it is feasible to obtain cellulose-glycerol-polyvinyl alcohol composite films with improved properties.
机译:如今消费者意识到环境问题。作为食品包装的石化聚合物的替代方案,研究人员已经专注于生物聚合物材料作为原料。本研究的目的是评估基于纤维素,甘油和聚乙烯醇的复合膜的机械性能(韧性,突发强度和脉冲距离),水吸附,光阻挡性能和透明性。进行扫描电子显微镜,进行光谱分析(FT-IR和UV-Vis-Nir)和差示扫描量热法以解释薄膜的形态,结构和热性能。结果表明,聚乙烯醇增强薄膜的韧性,高达44.30mJ / m(3)。然而,当甘油浓度增加时韧性降低(从23.41-1055mJ / m(3))。随着聚乙烯醇浓度的增加增加,水吸附量高达222%。聚乙烯醇增加膜厚度。薄膜显示出比其他可生物降解的薄膜更高的突发强度(高达12014g)。获得的薄膜具有像合成聚合物的那些值的透明度的最佳值。甘油在薄膜中产生了UV保护作用,对食品包装的重要作用,以防止脂质氧化劣化。结果表明,获得具有改进性能的纤维素 - 甘油 - 聚乙烯醇复合膜是可行的。

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