Upcycling of recycled polyethylene for rotomolding applications via dicumyl peroxide crosslinking

IF 2.7 3区 化学 Q2 POLYMER SCIENCE Journal of Applied Polymer Science Pub Date : 2024-09-03 DOI:10.1002/app.56236
Hibal Ahmad, Denis Rodrigue
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Abstract

Polyethylene (PE), including high-density polyethylene (HDPE) and low-density polyethylene (LDPE), makes up a significant part of post-consumer plastics in municipal solid waste, presenting challenges for traditional recycling methods due to a wide range of melt flow properties and poor interfacial adhesion between the different resin, which often leads to low quality products (downcycling). In this study, a method is proposed to modify the molecular structure of post-consumer PE (rHDPE and rLDPE) and their blends by using a straightforward organic peroxide crosslinking technique with 1 phr of dicumyl peroxide (DCP). Different rHDPE/rLDPE blend weight ratios (0/100, 20/80, 40/60, 50/50, 60/40, 80/20, and 100/0) were prepared using a combination of co-rotating twin-screw extrusion and pulverization. The final parts were produced via rotomolding where both the forming and crosslinking processes occurred concurrently. Subsequently, the materials were characterized in terms of chemical, thermal, and mechanical properties. It was found that the tensile strength (228%), tensile modulus (345%), flexural strength (145%), and flexural modulus (251%) increased by crosslinking the 80% wt. rHDPE (x-rHDPE). Conversely, the gel content increased by 17%, thermal resistance by 37.2%, and the impact strength by 93% with 80% wt. rLDPE (x-rLDPE). It can be concluded that a balance between the properties occurs as the addition of DCP improved both the interfacial adhesion and melt properties of rHDPE/rLDPE blends. This innovative approach represents a simple and straightforward method to upcycle mixed plastics (PE) streams, especially for rotomolding applications. It also offers promising avenues for sustainable waste management and material reuse.

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通过过氧化二异丙苯交联实现滚塑应用中回收聚乙烯的升级再循环
聚乙烯(PE),包括高密度聚乙烯(HDPE)和低密度聚乙烯(LDPE),在城市固体废物中占消费后塑料的很大一部分,由于其熔体流动性能范围广,不同树脂之间的界面粘附性差,往往导致产品质量低(降级循环),给传统的回收方法带来了挑战。本研究提出了一种方法,通过使用 1 phr 的过氧化二异丙苯 (DCP) 进行有机过氧化物交联,改变消费后聚乙烯(rHDPE 和 rLDPE)及其混合物的分子结构。采用同向旋转双螺杆挤出和粉碎相结合的方法制备了不同的 rHDPE/rLDPE 混合物重量比(0/100、20/80、40/60、50/50、60/40、80/20 和 100/0)。最终部件通过滚塑成型生产,成型和交联过程同时进行。随后,对材料的化学、热和机械性能进行了表征。研究发现,通过交联 80% 重量比的 rHDPE(x-rHDPE),拉伸强度(228%)、拉伸模量(345%)、弯曲强度(145%)和弯曲模量(251%)均有所提高。相反,80% wt. rLDPE (x-rLDPE) 的凝胶含量增加了 17%,热阻增加了 37.2%,冲击强度增加了 93%。由此可以得出结论:添加 DCP 后,rHDPE/rLDPE 混合物的界面粘附性和熔融特性都得到了改善,从而实现了特性之间的平衡。这种创新方法是一种简单直接的混合塑料(PE)流回收方法,尤其适用于滚塑应用。它还为可持续废物管理和材料再利用提供了广阔的前景。
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来源期刊
Journal of Applied Polymer Science
Journal of Applied Polymer Science 化学-高分子科学
CiteScore
5.70
自引率
10.00%
发文量
1280
审稿时长
2.7 months
期刊介绍: The Journal of Applied Polymer Science is the largest peer-reviewed publication in polymers, #3 by total citations, and features results with real-world impact on membranes, polysaccharides, and much more.
期刊最新文献
Editorial Board, Aims & Scope, Table of Contents Editorial Board, Aims & Scope, Table of Contents Editorial Board, Aims & Scope, Table of Contents Editorial Board, Aims & Scope, Table of Contents Cover Image, Volume 141, Issue 43
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