Upcycling of medium-density fiberboard and polyurethane foam wastes into novel composite materials

IF 6.4 Q1 ENVIRONMENTAL SCIENCES Resources, conservation & recycling advances Pub Date : 2025-01-09 DOI:10.1016/j.rcradv.2025.200244
Aleksander Hejna , Mateusz Barczewski , Joanna Aniśko , Adam Piasecki , Roman Barczewski , Paulina Kosmela , Jacek Andrzejewski , Marek Szostak
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Abstract

While plastic and e-waste dominate public discourse, municipal waste, particularly bulky wastes pose a significant challenge due to their large-scale generation aligning with the enrichment of society. Their efficient collection and keeping in a loop should be considered among the priorities of municipal waste management. Herein, the presented work presents novel composite materials obtained from flexible polyurethane foams used as mattresses and medium-density fiberboards applied in furniture products. Composites have been prepared using compression molding, with the addition of an innovative binder composed of a diisocyanate and inorganic salt, whose in situ decomposition led to the gas generation providing the porous structure and strengthening the interfacial bonding inside the material. The impact of changes induced by the chemical interactions on the appearance, morphology, mechanical, thermal, acoustic and insulation performance of composites has been evaluated. Observed changes pointed to the auspicious conclusions on the further applications of the examined binder composition.

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中密度纤维板和聚氨酯泡沫废材料的升级利用
虽然塑料和电子垃圾主导着公共话语,但城市垃圾,特别是大件垃圾,由于其大规模产生与社会的富裕相一致,构成了重大挑战。它们的有效收集和循环应被视为城市废物管理的优先事项之一。本文介绍了一种新型的复合材料,这种复合材料是从用作床垫的柔性聚氨酯泡沫和用于家具产品的中密度纤维板中获得的。复合材料采用压缩成型制备,添加了一种由二异氰酸酯和无机盐组成的创新粘合剂,其原位分解导致气体生成,提供了多孔结构并加强了材料内部的界面结合。评价了化学相互作用引起的变化对复合材料的外观、形态、力学、热、声和绝缘性能的影响。观察到的变化指出了对所检查的粘合剂组成的进一步应用的吉祥结论。
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来源期刊
Resources, conservation & recycling advances
Resources, conservation & recycling advances Environmental Science (General)
CiteScore
11.70
自引率
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0
审稿时长
76 days
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