Recycling of Polypropylene Recovered from a Composting Plant: Mechanical Behavior of Compounds with Virgin Plastic

IF 4.6 Q2 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY Recycling Pub Date : 2023-07-31 DOI:10.3390/recycling8040062
C. Badini, O. Ostrovskaya, Giulia Bernagozzi, Roberta Lanfranco, Stefania Miranda
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引用次数: 1

Abstract

The recycling of polypropylene recovered from waste discarded by a composting plant was investigated. The recovery involved a sorting step carried out by means of an optical infrared separator and a subsequent washing treatment. This method of processing allowed us to obtain polypropylene that was only slightly contaminated by other polymeric and inorganic materials. As many tens of tons of polypropylene could be recovered every year in this plant, recycling could be convenient from the economic point of view and beneficial for the protection of the environment. In fact, the landfill of this waste could be reduced in this manner. A possible mechanical recycling route was developed for the recovered plastic. The recycling was carried out by pelletizing the recovered polypropylene, mixing it with a commercial polypropylene feedstock, and manufacturing items by injection molding. In this way, tensile specimens containing different amounts of recycled polypropylene were processed and tested. Their tensile features were compared with those of a commercial polypropylene that was used as a reference. The elastic modulus and tensile strength were slightly worsened when using the recycled plastic, while the strain at failure significantly increased. Nonetheless, the tensile properties of compounds made by mixing recycled and virgin polypropylene were consistent with the characteristics that are expected for polypropylene-based plastics.
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从堆肥厂回收聚丙烯的回收利用:化合物与原始塑料的力学行为
研究了从堆肥厂废弃垃圾中回收聚丙烯的回收利用。回收包括通过光学红外分离器进行的分选步骤和随后的洗涤处理。这种加工方法使我们能够获得仅被其他聚合物和无机材料轻微污染的聚丙烯。由于该工厂每年可回收数十吨聚丙烯,从经济角度来看,回收既方便又有利于保护环境。事实上,以这种方式可以减少这种废物的填埋。为回收的塑料开发了一种可能的机械回收途径。回收是通过将回收的聚丙烯造粒,将其与商业聚丙烯原料混合,并通过注射成型制造物品来进行的。以这种方式,对含有不同量的再生聚丙烯的拉伸试样进行处理和测试。将它们的拉伸特性与用作参考的商业聚丙烯的拉伸特性进行比较。使用再生塑料时,弹性模量和拉伸强度略有恶化,而破坏应变显著增加。尽管如此,通过混合回收聚丙烯和原始聚丙烯制成的化合物的拉伸性能与聚丙烯基塑料的预期特性一致。
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来源期刊
Recycling
Recycling Environmental Science-Management, Monitoring, Policy and Law
CiteScore
6.80
自引率
7.00%
发文量
84
审稿时长
11 weeks
期刊最新文献
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