Analitycal Applied in Lipids, Sterols, and Antioxidants (APLE-A), State University of Maringá (UEM), Colombo avenue, Maringá, PR 87020-900, Brazil.
Laboratory of Materials, Macromolecules, and Composites (LaMMAC), Federal University of Technology - Paraná (UTFPR), Apucarana, PR 86812-460, Brazil.
Int J Biol Macromol. 2020 Dec 15;165(Pt A):582-590. doi: 10.1016/j.ijbiomac.2020.09.150. Epub 2020 Sep 28.
Biodegradable films have been a great alternative compared to non-renewable sources because of their cytocompatibility, biodegradability, and antimicrobial features. These properties may raise the foodstuff shelf life, reducing costs and economic losses. Indeed, biodegradable films can also reduce the environmental pollution promoted by non-biodegradable conventional packs. For the first time, biodegradable films were produced by casting commercials kappa-carrageenan (κ-car) and cassava starch at different κ-carrageenan/cassava starch weight ratios. Physical, thermal, and mechanical properties were evaluated. Apparent opacity and color analyses suggest that the films present high transparency. The sample 0κ-c supported a film with high water solubility (39.22%) and a low swelling degree (391.6%). The lowest water vapor permeability (WVP) was observed for 50κ-c (3.01×10g (Pams)). The oil permeability varied from 0.0033 to 0.0043mmm d. The 100κ-c and 75κ-c films (with high κ-carrageenan contents) had higher stiffness (19.23 and 25.88MPa, respectively) than the 25κ-c and 0κ-c films with elongation at break (ε) of 21.60 and 67.65%, respectively. The thermal stability increased as the starch concentration raised in the blend. We produced low-cost biodegradable films from commercial polysaccharides. These films can be used as food packs.
可生物降解薄膜是一种很好的替代品,因为它们具有细胞相容性、生物降解性和抗菌特性,与不可再生资源相比。这些特性可以提高食品的保质期,降低成本和经济损失。事实上,可生物降解薄膜还可以减少不可生物降解的传统包装造成的环境污染。首次通过浇铸商业角叉菜胶(κ-角叉菜胶)和木薯淀粉在不同κ-角叉菜胶/木薯淀粉重量比来制备可生物降解薄膜。评估了物理、热和机械性能。明显的不透明度和颜色分析表明,这些薄膜具有很高的透明度。样品 0κ-c 支持具有高水溶性(39.22%)和低溶胀度(391.6%)的薄膜。对于 50κ-c(3.01×10g (Pams)),观察到最低的水蒸气透过率(WVP)。油渗透率在 0.0033 到 0.0043mmm d 之间变化。100κ-c 和 75κ-c 薄膜(具有较高的κ-卡拉胶含量)的刚性(分别为 19.23 和 25.88MPa)高于具有断裂伸长率(ε)的 25κ-c 和 0κ-c 薄膜(分别为 21.60%和 67.65%)。随着混合物中淀粉浓度的升高,热稳定性增加。我们使用商业多糖生产了低成本的可生物降解薄膜。这些薄膜可用作食品包装。