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Production of biodegradable starch nanocomposites using cellulose nanocrystals extracted from coconut fibers

机译:使用从椰子纤维中提取的纤维素纳米晶体生产可生物降解的淀粉纳米复合材料

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Different polymeric matrices have been investigated for use in the development of biodegradable films. The incorporation of cellulose nanocrystals in such films has particularly attracted attention because of the potential for achieving improved properties of starch nanocomposites. In the present study, cellulose nanocrystals were extracted from coconut fibers and incorporated in cassava and potato starch films at different concentrations. The properties of the different nanobiocomposite films were comparatively evaluated, including their barrier and mechanical properties. All the films, regardless of the nanocrystal concentration, were found to exhibit low solubility in water, with increased moisture content particularly observed in the films with higher nanocrystal concentrations. The potato starch film with the lowest nanocrystal concentration was found to exhibit the best mechanical properties. The observations of this study indicated that the source of the starch and the nanocrystal concentration determined the properties of the nanobiocomposite films.
机译:已经研究了不同的聚合物基质以用于可生物降解膜的开发。在纤维素薄膜中掺入纤维素纳米晶体特别引起了人们的注意,因为它具有提高淀粉纳米复合材料性能的潜力。在本研究中,纤维素纳米晶体是从椰子纤维中提取的,并以不同浓度掺入木薯和马铃薯淀粉膜中。比较评价了不同纳米生物复合膜的性能,包括其阻隔性和机械性能。发现所有膜,无论纳米晶浓度如何,都表现出在水中的低溶解度,尤其是在具有较高纳米晶浓度的膜中观察到水分含量增加。发现具有最低纳米晶体浓度的马铃薯淀粉膜表现出最佳的机械性能。这项研究的观察结果表明,淀粉的来源和纳米晶体的浓度决定了纳米生物复合膜的性能。

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