Cork Porous Biocomposites with Polyurethane Matrix Modified with Polyol Based on Used Cooking Oil

多元醇 聚氨酯 软木 多孔性 材料科学 基质(化学分析) 高分子科学 复合材料 化学工程 工程类
作者
Maria Kurańska,Mariusz Ptak,Elżbieta Malewska,Aleksander Prociak,Mateusz Barczewski,Mateusz Dymek,Fábio A. O. Fernandes,Ricardo J. Alves de Sousa,Krzysztof Polaczek,Karolina Studniarz,Katarzyna Uram
出处
期刊:Materials [MDPI AG]
卷期号:16 (8): 3032-3032 被引量:4
标识
DOI:10.3390/ma16083032
摘要

Renewable materials are materials that are replenished naturally and can be used again and again. These materials include things such as bamboo, cork, hemp, and recycled plastic. The use of renewable components helps to reduce the dependence on petrochemical resources and reduce waste. Adopting these materials in various industries such as construction, packaging, and textiles can lead to a more sustainable future and decrease the carbon footprint. The presented research describes new porous polyurethane biocomposites based on used cooking oil polyol (50 per hundred polyol—php) modified with cork (3, 6, 9, and 12 php). The research described here demonstrated that it is possible to replace some petrochemical raw materials with raw materials of renewable origin. This was achieved by replacing one of the petrochemical components used for the synthesis of the polyurethane matrix with a waste vegetable oil component. The modified foams were analyzed in terms of their apparent density, coefficient of thermal conductivity, compressive strength at 10% of deformation, brittleness, short-term water absorption, thermal stability, and water vapor permeability, while their morphology was examined using scanning electron microscopy and the content of closed cells. After the successful introduction of a bio-filler, it was found that the thermal insulation properties of the modified biomaterials were comparable to those of the reference material. It was concluded that it is possible to replace some petrochemical raw materials with raw materials of renewable origin.

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