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首页> 外文期刊>Waste Management >Plastic waste from marine environment: Demonstration of possible routes for recycling by different manufacturing technologies
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Plastic waste from marine environment: Demonstration of possible routes for recycling by different manufacturing technologies

机译:来自海洋环境的塑料废物:通过不同的制造技术展示可能的回收路线

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摘要

The increasing amount of marine plastic waste poses challenges including, not only the collection, but also the subsequent recyclability of the plastic. An artificial accelerated weathering procedure was developed, which modelled the marine environment and investigated the recyclability of weathered and non-weathered PET. Marine conditions were simulated for poly(ethylene terephthalate) (PET) bottle material and high-density polyethylene (HDPE) cap material. It consisted of 2520 h cyclical weathering, alternating the sample between a salt spray and a Xenon-chamber-this corresponds to roughly 3-4 years on the surface of an ocean. It was proved that the molecular weight of PET is a function of weathering time and can be described mathematically. Microscopic examination of the surface of the PET bottles and HDPE caps proved that these surfaces were damaged. After weathering, manufacturing tests were performed on the PET material by extrusion, injection moulding, 3D printing and thermoforming. Quantitative comparison between products manufactured by the same technology was performed in order to compare the qualities of products made from original PET, non-weathered PET waste, which was the example of classical recycling, and weathered PET. In the case of products made from weathered PET, certain mechanical and optical properties (e.g. impact strength and transparency) were significantly impaired compared to the original PET and the recycled, non-weathered PET. Certain other properties (e.g. strength and rigidity) did not change significantly. It was proved that the samples from weathered plastic material can be successfully recycled mechanically and used to manufacture plastic products.
机译:越来越多的海洋塑料废物造成挑战,不仅包括收集,而且还包括塑料的随后可回收性。开发了一种人工加速的风化程序,为海洋环境建模并调查了风化和非风化宠物的可回收性。为聚(乙烯苯二甲酸乙二醇酯)(PET)瓶材料和高密度聚乙烯(HDPE)帽材料进行模拟海洋病症。它包括2520小时的循环风化,交替盐雾和氙气室之间的样品 - 这对应于海洋表面的大约3-4岁。事实证明,PET的分子量是耐候时间的函数,可以在数学上描述。对PET瓶和HDPE帽的表面进行显微镜检查证明这些表面受损。在耐候之后,通过挤出,注塑,3D印刷和热成型在PET材料上进行制造测试。通过相同技术制造的产品之间的定量比较,以比较原始宠物,非风化宠物废物制成的产品质量,这是古典回收和风化宠物的例子。在由风化PET制成的产品的情况下,与原始PET和再生的非风化宠物相比,某些机械和光学性质(例如冲击强度和透明度)显着损害。某些其他性质(例如强度和刚性)没有显着变化。事实证明,来自风化塑料材料的样品可以机械地再循环并用于制造塑料制品。

著录项

  • 来源
    《Waste Management》 |2021年第1期|101-110|共10页
  • 作者单位

    Department of Polymer Engineering Faculty of Mechanical Engineering Budapest University of Technology and Economics H-1111 Budapest Muegyetem rkp. 3 Hungary Imsys Ltd Material Testing Laboratory Mozaik Street 14/A H-1033 Budapest Hungary;

    Department of Polymer Engineering Faculty of Mechanical Engineering Budapest University of Technology and Economics H-1111 Budapest Muegyetem rkp. 3 Hungary Imsys Ltd Material Testing Laboratory Mozaik Street 14/A H-1033 Budapest Hungary;

    Department of Polymer Engineering Faculty of Mechanical Engineering Budapest University of Technology and Economics H-1111 Budapest Muegyetem rkp. 3 Hungary;

    Department of Polymer Engineering Faculty of Mechanical Engineering Budapest University of Technology and Economics H-1111 Budapest Muegyetem rkp. 3 Hungary MTA-BME Research Group for Composite Science and Technology H-1111 Budapest Muegyetem rkp. 3 Hungary;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Marine waste; Sustainable development; Global environmental change; Microplastic; PET bottle; Recyclability;

    机译:海洋垃圾;可持续发展;全球环境变化;微塑料;宠物瓶;可回收性;

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