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Influence of Recycling of Poly(lactic acid) on Packaging Relevant Properties

机译:聚乳酸回收对包装相关性能的影响

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摘要

The most promising representative of biodegradable plastics in packaging applications is polylactide (PLA). Despite this, there is only a small market of PLA in Europe. Reasons for that are the high price of PLA raw material and the lack of knowledge of the behavior in packaging applications. It has a number of peculiarities so producers of plastics packaging hesitate to use it. Like other polyesters, it can degrade at increased temperatures in the presence of moisture by hydrolysis whereby it loses its physical and chemical properties. In all production processes, production waste is generated (i.e., stamping grids or edge trim). In most cases, this waste is used. It is not known in detail, how an internal recycling process will influence the final product properties. One problem is hydrolysis by which the production waste is partially degraded. Target of this study is to analyze the recycling process of PLA within the context of necessary process adaptions and the effects upon ecological efficiency. Films for packaging containing multiple types and amounts of production waste will be produced by extrusion and tested concerning their mechanical properties. The analysis of the recycling behavior showed that internal PLA production waste is well suitable for recycling. The influence of the recycling on the molecular weight is negligible. The effect on the viscosity and thus on the extrusion process is higher. Packaging relevant properties like mechanical or optical properties are hardly influenced. Especially recycling with a recycling quota of up to 50% has an insignificant effect on the film properties. (c) 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 41532.
机译:包装应用中最有前途的可生物降解塑料的代表是聚丙交酯(PLA)。尽管如此,欧洲的PLA的市场仍然很小。造成这种情况的原因是,PLA原材料价格高昂,并且缺乏对包装应用中行为的了解。它具有许多特性,因此塑料包装的生产商不愿使用它。像其他聚酯一样,它可以在存在水分的情况下在升高的温度下通过水解降解,从而失去其物理和化学性能。在所有生产过程中,都会产生生产废料(即冲压网格或边缘饰边)。在大多数情况下,会使用这种废物。内部循环过程将如何影响最终产品的特性,目前尚不清楚。一个问题是水解,由此使生产废料部分降解。本研究的目标是在必要的工艺适应性及其对生态效率的影响的背景下分析PLA的回收过程。包含多种类型和数量的生产废料的包装膜将通过挤出生产,并对其机械性能进行测试。对回收行为的分析表明,内部PLA生产废料非常适合回收。再循环对分子量的影响可以忽略不计。对粘度的影响因此对挤出过程的影响更高。包装的相关性能(如机械性能或光学性能)几乎不会受到影响。尤其是回收配额高达50%的回收,对薄膜的性能影响不大。 (c)2014 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,41532。

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