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用于可生物降解食品包装的聚乳酸与淀粉的组合

Combination of Poly(lactic) Acid and Starch for Biodegradable Food Packaging.

作者信息

Muller Justine, González-Martínez Chelo, Chiralt Amparo

机构信息

Universidad Politécnica de Valencia, IIAD, Camino de Vera, s/n, 46022 València, Spain.

出版信息

Materials (Basel). 2017 Aug 15;10(8):952. doi: 10.3390/ma10080952.

Abstract

The massive use of synthetic plastics, in particular in the food packaging area, has a great environmental impact, and alternative more ecologic materials are being required. Poly(lactic) acid (PLA) and starch have been extensively studied as potential replacements for non-degradable petrochemical polymers on the basis of their availability, adequate food contact properties and competitive cost. Nevertheless, both polymers exhibit some drawbacks for packaging uses and need to be adapted to the food packaging requirements. Starch, in particular, is very water sensitive and its film properties are heavily dependent on the moisture content, exhibiting relatively low mechanical resistance. PLA films are very brittle and offer low resistance to oxygen permeation. Their combination as blend or multilayer films could provide properties that are more adequate for packaging purposes on the basis of their complementary characteristics. The main characteristics of PLA and starch in terms of not only the barrier and mechanical properties of their films but also of their combinations, by using blending or multilayer strategies, have been analyzed, identifying components or processes that favor the polymer compatibility and the good performance of the combined materials. The properties of some blends/combinations have been discussed in comparison with those of pure polymer films.

摘要

合成塑料的大量使用,尤其是在食品包装领域,对环境产生了巨大影响,因此需要更环保的替代材料。聚乳酸(PLA)和淀粉因其可得性、良好的食品接触性能和具有竞争力的成本,作为不可降解石化聚合物的潜在替代品受到了广泛研究。然而,这两种聚合物在包装应用中都存在一些缺点,需要根据食品包装要求进行改进。特别是淀粉对水非常敏感,其薄膜性能严重依赖于水分含量,机械强度相对较低。PLA薄膜非常脆,氧气透过率高。基于它们的互补特性,将它们制成共混物或多层薄膜可以提供更适合包装用途的性能。本文分析了PLA和淀粉在薄膜阻隔性能、机械性能以及通过共混或多层策略组合后的主要特性,确定了有利于聚合物相容性和复合材料良好性能的成分或工艺。并将一些共混物/组合的性能与纯聚合物薄膜的性能进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5abb/5578318/18accb38f92c/materials-10-00952-g001.jpg

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