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从瓶盖到飞盘——塑料垃圾机械回收迈向循环经济的案例研究

From Bottle Caps to Frisbee-A Case Study on Mechanical Recycling of Plastic Waste towards a Circular Economy.

作者信息

Akhras Mohamad Hassan, Freudenthaler Paul J, Straka Klaus, Fischer Joerg

机构信息

Competence Center CHASE GmbH, Hafenstraße 47-51, 4020 Linz, Austria.

Institute of Polymeric Materials and Testing, Johannes Kepler University, Altenberger Straße 69, 4040 Linz, Austria.

出版信息

Polymers (Basel). 2023 Jun 14;15(12):2685. doi: 10.3390/polym15122685.

Abstract

This study demonstrates an open-loop recycling process of a specific post-consumer plastic waste stream. The targeted input waste material was defined as high-density polyethylene beverage bottle caps. Two methods of waste collection, informal and formal, were employed. Thereafter, materials were hand-sorted, shredded, regranulated, and then injection-molded into a flying disc (i.e., frisbee) as a pilot product. To observe the potential changes in the material throughout the entire recycling process, eight different test methods including melt mass-flow rate (MFR), differential scanning calorimetry (DSC), and mechanical tests were carried out on the various material states. The study showed that the informal collection led to a relatively higher purity in the input stream, which also appeared to have a 23% lower MFR value compared to that of the formally collected materials. The DSC measurements revealed a cross-contamination by polypropylene, which clearly affected the properties of all investigated materials. The cross-contamination led to a slightly higher tensile modulus in the recyclate, while the Charpy notched impact strength declined after processing by approximately 15% and 8% compared to those of the informal and formal input materials, respectively. All materials and the processing data were documented and stored online as a practical implementation of a digital product passport as a potential digital traceability tool. Furthermore, the suitability of the resulting recyclate to be used in transport packaging applications was also investigated. It was found that a direct replacement of virgin materials for this specific application is not possible without proper material modification.

摘要

本研究展示了一种针对特定消费后塑料废物流的开环回收过程。目标输入废料被定义为高密度聚乙烯饮料瓶盖。采用了两种废料收集方式,即非正式收集和正式收集。此后,对材料进行人工分拣、切碎、重新造粒,然后注塑成飞盘(即飞碟)作为试点产品。为了观察材料在整个回收过程中的潜在变化,对各种材料状态进行了包括熔体质量流动速率(MFR)、差示扫描量热法(DSC)和机械测试在内的八种不同测试方法。研究表明,非正式收集导致输入流中的纯度相对较高,与正式收集的材料相比,其MFR值似乎也低23%。DSC测量显示存在聚丙烯交叉污染,这明显影响了所有被研究材料的性能。交叉污染导致回收物的拉伸模量略高,而夏比缺口冲击强度在加工后分别比非正式和正式输入材料下降了约15%和8%。所有材料和加工数据都作为数字产品护照的实际应用进行了记录并在线存储,作为一种潜在的数字可追溯工具。此外,还研究了所得回收物用于运输包装应用的适用性。结果发现,未经适当材料改性,无法直接用原始材料替代该特定应用中的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d006/10300931/3cd5eb9ecf9a/polymers-15-02685-g001.jpg

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