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Glycerolysis of Poly(lactic acid) as a Way to Extend the Life Cycle of This Material

机译:聚乳酸的甘油水解作为延长该材料生命周期的一种方式

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摘要

The article concerns the use of glycerolysis reaction as an alternative method of processing post-production and post-consumer waste from poly(lactic acid) (PLA). Management of waste is a very important issue from an environmental protection and economic point of view. Extending the “life cycle” of PLA is extremely important because it allows to make the most of this material. It also limits economic losses resulting from its disposal in the biodegradation process at the same time. This paper presents a method of glycerolysis of poly(lactic acid) waste using various amounts of anhydrous glycerol (mass ratio from 0.3 to 0.5 parts by weight of glycerol per 1.0 part by weight of PLA). This process was also carried out for pure, unmodified PLA Ingeo (from NatureWorks) to compare the obtained results. The six liquid oligomeric polyhydric alcohols were obtained as a result of the synthesis. Then, they were subjected to physicochemical tests such as determination of color, smell, density, viscosity, and pH. In addition, the obtained raw materials were subjected to analytical tests such as determination of the hydroxyl value, acid value, water content, and elemental composition. The average molecular weights and dispersity were also tested by gel permeation chromatography (GPC). The assumed chemical structure of the obtained compounds was confirmed by spectroscopic methods such as FTIR, H NMR, C NMR. Glycerolysis products were also subjected to differential scanning calorimetry (DSC) to determine thermal parameters. The obtained research results have allowed the precise characterization of newly obtained products and determination of their suitability, e.g., for the synthesis of polyurethane (PUR) materials.
机译:本文涉及使用甘油分解反应作为处理聚乳酸(PLA)的生产后和消费后废物的替代方法。从环境保护和经济的角度来看,废物管理是一个非常重要的问题。延长PLA的“生命周期”非常重要,因为它可以充分利用这种材料。它还限制了由于同时处置生物降解过程而造成的经济损失。本文提出了一种使用各种量的无水甘油(每1.0重量份PLA的质量比为0.3到0.5重量份甘油)对聚(乳酸)废料进行甘油分解的方法。还对未经修饰的纯PLA Ingeo(来自NatureWorks)进行了此过程,以比较获得的结果。合成的结果是获得了六种液态低聚多元醇。然后,对它们进行理化测试,例如颜色,气味,密度,粘度和pH值的测定。另外,对获得的原料进行分析测试,例如确定羟值,酸值,水含量和元素组成。还通过凝胶渗透色谱法(GPC)测试平均分子量和分散度。所获得的化合物的假定化学结构通过诸如FTIR,1 H NMR,13 NMR的光谱学方法证实。糖酵解产品也经过差示扫描量热法(DSC)以确定热参数。所获得的研究结果可以对新获得的产品进行精确的表征,并确定其适用性,例如,用于合成聚氨酯(PUR)材料。

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