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Development and characterization of multilayer films based on polyhydroxyalkanoates and hydrocolloids

机译:基于多层烷醇和水胶体的多层膜的开发与表征

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New biodegradable polymeric materials have been developed in order to minimize the environmental impact caused by the traditional packaging found in the market. Polyhydroxyalkanoates (PHAs) are biopolymers with important features such as biodegradability and biocompatibility; however, the costs associated with PHAs production and the limited mechanical properties reduce their application. Whey is a residual product from dairy industry and gelatin is a biopolymer with good processing characteristics. In this context, a filmogenic solution based on these two biopolymers was incorporated into pure PHA films to improve their optical, mechanical, and structural properties. The filmogenic solution was prepared from gelatin, cheese whey and PHAs, using glycerol as plasticizer agent. The multilayers films (gelatin concentrations at 3 and 5%, w/v) showed higher values for all properties when compared with the PHA standard film. In this sense, the addition of this solution was responsible for the improvement of the film properties. The 5% gelatin multilayers films added of cheese whey and PHAs showed better results when compared with the multilayers films with gelatin at 3%. The film composed of gelatin 5% and cheese whey showed a water vapor permeability ranging from 0.45 g mm/m(2)/d/kPa, elongation of 2.18%, and opacity of 14.5%. However, the results of the morphological analysis showed that both films presented a homogeneous surface without cracks. Moreover, the results of the thermal analysis of both films indicate polymeric miscibility. Thus, the choice of the best film will depend on its applicability. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 44458.
机译:已经开发了新的可生物降解的聚合物材料,以最大限度地减少由市场上发现的传统包装引起的环境影响。聚羟基烷烷(PHA)是具有重要特征的生物聚合物,如生物降解性和生物相容性;然而,与PHA生产相关的成本和有限的机械性能可降低其应用。乳清是乳制品行业的剩余产品,明胶是一种具有良好加工特性的生物聚合。在这种情况下,将基于这两种生物聚合物的电源溶液掺入纯PHA膜中以改善它们的光学,机械和结构性。采用甘油作为增塑剂,由明胶,乳酪乳清和噬菌体制备的电影原性溶液。与PHA标准膜相比,多层薄膜(3和5%,W / V)显示出较高的所有性质的值。从这个意义上讲,加入该溶液负责改善膜性能。与多层薄膜的乳酪乳清和PHA的5%明胶多层薄膜添加乳酪乳清和噬菌体的薄膜呈现出更好的结果。由明胶5%和奶酪乳清组成的薄膜显示出0.45g mm / m(2)/ d / KPa的水蒸气渗透率,伸长率为2.18%,不透明度为14.5%。然而,形态学分析的结果表明,两种薄膜呈现出均匀的表面而没有裂缝。此外,两种膜的热分析结果表明聚合物混溶性。因此,最佳电影的选择将取决于其适用性。 (c)2016 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,44458。

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