Langwieser Johanna, Schweighuber Andrea, Felgel-Farnholz Alexander, Marschik Christian, Buchberger Wolfgang, Fischer Joerg
Competence Center CHASE GmbH, Altenberger Straße 69, 4040 Linz, Austria.
Institute of Polymeric Materials and Testing, Johannes Kepler University Linz, Altenberger Straße 69, 4040 Linz, Austria.
Polymers (Basel). 2022 Jun 15;14(12):2429. doi: 10.3390/polym14122429.
In a circular economy, polymeric materials are used in multiple loops to manufacture products. Therefore, closed-loops are also envisaged for the mechanical recycling of plastics, in which plastic is used for products that are in turn collected and reprocessed again and again to make further products. However, this reprocessing involves degradation processes within the plastics, which become apparent through changes in the property profile of the material. In the present paper, the influence of multiple recycling loops on the material properties of four different polyolefins was analyzed. Two different closed-loop cycles with industrially sized processing machines were defined, and each polyolefin was processed and reprocessed within the predefined cycles. For the investigation of the effect of the respective loops, samples were taken after each loop. The samples were characterized by high-pressure liquid chromatography coupled to a quadru-pole time-of-flight MS, high-temperature gel permeation chromatography, melt flow rate measurements, infrared spectroscopy, differential thermal analysis, and tensile tests. With increasing number of processing loops, the tested polyolefins showed continuous material degradation, which resulted in significant changes in the property profiles.
在循环经济中,聚合物材料被用于多个循环以制造产品。因此,塑料的机械回收也设想为闭环模式,即塑料被用于制造产品,而这些产品又会被反复收集和再加工以制造更多产品。然而,这种再加工涉及塑料内部的降解过程,这会通过材料性能特征的变化而显现出来。在本文中,分析了多个回收循环对四种不同聚烯烃材料性能的影响。定义了两种使用工业规模加工机器的不同闭环循环,每种聚烯烃在预定义的循环内进行加工和再加工。为了研究各个循环的影响,在每个循环后取样。通过高压液相色谱-四极杆飞行时间质谱联用、高温凝胶渗透色谱、熔体流动速率测量、红外光谱、差示热分析和拉伸试验对样品进行表征。随着加工循环次数的增加,测试的聚烯烃显示出持续的材料降解,这导致性能特征发生显著变化。