Langwieser Johanna, Fischer Joerg
Institute of Polymeric Materials and Testing, Johannes Kepler University Linz, Altenberger Strasse 69, 4040 Linz, Austria.
Competence Center CHASE GmbH, Altenberger Strasse 69, 4040 Linz, Austria.
Polymers (Basel). 2024 Aug 6;16(16):2238. doi: 10.3390/polym16162238.
Due to the diversity of plastic film waste streams available on the market and the associated variety of contaminants' size and number, the use of melt filtration is necessary. Currently, single and double filtration systems are state of the art in the plastic recycling industry, depending on the application of the produced post-consumer recyclate (PCR). Using PCR for thin films demands small contamination sizes, which are easier to reach using a second filtration step. In the case of relatively clean post-consumer input materials, it must be investigated whether the additional load from the second filter has a counterproductive effect on the material and whether single filtration would be sufficient. For this paper, polyethylene (PE) film waste stemming from a separate post-consumer collection in Austria was processed using an industrial-sized recycling machine with different combinations of filter sizes and systems. Melt flow rate (MFR), ash content, oxidation onset temperature (OOT), and optical contaminant detection were measured to investigate the influence of single and double filtration systems. The investigation showed that, even though the contamination amount and size were reduced, the second filter had a distinct effect on specific properties.
由于市场上塑料薄膜废物流的多样性以及相关污染物的尺寸和数量各不相同,因此有必要使用熔体过滤。目前,根据生产的消费后回收物(PCR)的应用情况,单级和双级过滤系统是塑料回收行业的先进技术。将PCR用于薄膜需要较小的污染物尺寸,通过第二个过滤步骤更容易实现。对于相对清洁的消费后输入材料,必须研究第二个过滤器带来的额外负荷是否会对材料产生适得其反的影响,以及单级过滤是否足够。在本文中,使用一台工业规模的回收机,采用不同的过滤器尺寸和系统组合,对来自奥地利单独的消费后收集的聚乙烯(PE)薄膜废料进行了处理。测量了熔体流动速率(MFR)、灰分含量、氧化起始温度(OOT)和光学污染物检测,以研究单级和双级过滤系统的影响。调查表明,尽管污染物的数量和尺寸有所减少,但第二个过滤器对特定性能有明显影响。