The objective was to develop biodegradable packaging using a polymer matrix as the cassava starch plasticized with glycerol and reinforced with'/> Development and evaluation of the effectiveness of biodegradable films of cassava starch with nanocelulose as reinforcement and yerba mate extract as an additive antioxidant
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Development and evaluation of the effectiveness of biodegradable films of cassava starch with nanocelulose as reinforcement and yerba mate extract as an additive antioxidant

机译:木薯淀粉纳米纤维素增强剂和马黛茶提取物作为抗氧化剂的生物降解膜的开发与评价

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> face="Verdana, Arial, Helvetica, sans-serif" size="2">The objective was to develop biodegradable packaging using a polymer matrix as the cassava starch plasticized with glycerol and reinforced with the incorporation of nanocelulose of coconut fiber, as well as to evaluate the effect of the addition of an additive nature (yerba mate) in nanobiocompósitos formulations with antioxidant action. The nanocrystal cellulose (L/D=39) were obtained by acid hydrolysis with 65% H2SO4. The films were prepared by casting containing 4.5 and 6.0% starch, 0.5 and 1.5% glycerol, 0.3% nanocelulose and 20% extract of yerba mate. The palm oil storage packed with films containing the additive was monitored for 40 days under conditions of accelerated oxidation (63%UR/30°C). It was found that as the losses increase polyphenol films, there is a smaller increase of the peroxide value of the packaged product, thus demonstrating that instead of the product, the compounds of the package's who are suffering oxidation. The incorporation of yerba mate extract did not alter the mechanical and barrier properties of these films.
机译:> face =“ Verdana,Arial,Helvetica,sans-serif” size =“ 2”>目标是开发一种可降解包装,其使用的聚合物基质是木薯淀粉,由甘油增塑,并通过掺入纳米纤维素而增强。椰子纤维,以及评估具有抗氧化作用的纳米生物复合制剂中添加添加剂性质(yerba mate)的效果。通过65%H 2 SO 4 酸水解得到纳米晶纤维素(L / D = 39)。通过流延含有4.5和6.0%的淀粉,0.5和1.5%的甘油,0.3%的纳米纤维素和20%的马黛茶提取物来制备膜。在加速氧化的条件下(63%UR / 30°C),将装有填充有添加剂的薄膜的棕榈油储存器监测40天。发现随着损耗增加多酚膜,包装产品的过氧化物值增加的幅度较小,因此证明包装的化合物而不是产品遭受氧化。 yerba mate提取物的掺入并没有改变这些薄膜的机械性能和阻隔性能。

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