Assessing the circularity of post-consumer HDPE milk bottles through open-loop recycling and their environmental impact

IF 6.1 Q2 ENGINEERING, ENVIRONMENTAL
Aymara Blanco , Rafael Juan , Robert Istrate , Beatriz Paredes , Mario Martin-Gamboa , Carlos Domínguez , Javier Dufour , Rafael A. García-Muñoz
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Abstract

Plastics are key in the packaging sector, but their widespread use contributes significantly to environmental challenges, such as the short life and high daily production of HDPE milk bottles. This study therefore aims to find a solution to this plastic waste, focusing on mechanical recycling. A comprehensive characterization of this post-consumer recycled HDPE reveals significant PP contamination, which poses a significant barrier due to polyolefin incompatibility, a common challenge in mixed plastics recycling. To mitigate this, blending with virgin HDPE and the use of various compatibilizers were investigated to improve the recyclability of the material. Several extrusion cycles were performed to analyse the thermo-mechanical degradation and to measure the performance and stability of the blends. The environmental impact of incorporating recycled HDPE into new bottles was also evaluated. Comparative evaluations with virgin bottles show that incorporating 25% or 50% recycled HDPE in the bottle yields carbon footprint reductions of 3% and 14%, respectively. These benefits could amplify with a wind-powered supply chain and a 100% recycled content. The findings lay the foundation for future plastic recycling scenarios, including dedicated sorting for this waste stream, providing a pathway to address the environmental impact of HDPE milk bottle disposal through recycling practices.

Abstract Image

通过开环回收评估消费后高密度聚乙烯牛奶瓶的循环性及其对环境的影响
塑料是包装行业的关键,但塑料的广泛使用极大地加剧了环境挑战,例如高密度聚乙烯(HDPE)牛奶瓶寿命短、日产量高。因此,本研究以机械回收为重点,旨在找到解决这种塑料废弃物的方法。对这种消费后回收高密度聚乙烯的综合表征显示,聚丙烯污染严重,由于聚烯烃不相容,这构成了一个重大障碍,而这是混合塑料回收中的一个常见挑战。为了缓解这一问题,我们研究了与原生高密度聚乙烯混合和使用各种相容剂的方法,以提高材料的可回收性。研究人员进行了多次挤压循环,以分析热机械降解情况,并测量混合物的性能和稳定性。此外,还评估了在新瓶子中加入回收高密度聚乙烯对环境的影响。与原瓶的比较评估显示,在瓶中加入 25% 或 50% 的回收高密度聚乙烯可分别减少 3% 和 14% 的碳足迹。如果采用风力供电的供应链和 100% 的可回收成分,这些优势还将进一步扩大。这些研究结果为未来的塑料回收方案奠定了基础,包括对这一废物流进行专门分类,为通过回收实践解决高密度聚乙烯奶瓶处理对环境的影响提供了途径。
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来源期刊
Cleaner Environmental Systems
Cleaner Environmental Systems Environmental Science-Environmental Science (miscellaneous)
CiteScore
7.80
自引率
0.00%
发文量
32
审稿时长
52 days
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