Moussa Tala, Maalouf Chadi, Bliard Christophe, Abbes Boussad, Badouard Céline, Lachi Mohammed, do Socorro Veloso Sodré Silvana, Bufalino Lina, Bogard Fabien, Beaumont Fabien, Polidori Guillaume
Matériaux et Ingénierie Mécanique (MATIM), University of Reims Champagne Ardenne, CEDEX 2, 51687 Reims, France.
Structure Fédérative de Recherche Condorcet FR CNRS 3417, University of Reims Champagne Ardenne, 51100 Reims, France.
Materials (Basel). 2022 Feb 24;15(5):1689. doi: 10.3390/ma15051689.
The gradual development of government policies for ecological transition in the modern construction sector leads researchers to explore new alternative and low environmental impact materials with a particular focus on bio-sourced materials. In this perspective, the mechanical, thermal insulation, and the sound absorption performances of a spent coffee grounds/potato starch bio-based composite were analyzed for potential application in buildings. Based on thermal conductivity and diffusivity tests, the coffee grounds waste biocomposite was characterized as an insulating material comparable with conventional thermal insulation materials of plant origin. Acoustical tests revealed absorption coefficients in the same range as other conventional materials used in building acoustical comfort. This bio-sourced material presented a sufficient compressive mechanical behavior for non-load-bearing structures and a sufficient mechanical capacity to be shaped into building bricks. Mechanical, thermal, and acoustic performances depend on the moisture environment. The groundwork was laid for an initial reflection on how this composite would behave in two opposite climates: the continental climate of Reims in France and the tropical climate of Belém in Brazil.
现代建筑领域政府生态转型政策的逐步发展促使研究人员探索新型替代且环境影响低的材料,尤其关注生物源材料。从这个角度出发,对一种废弃咖啡渣/马铃薯淀粉生物基复合材料的机械性能、保温性能和吸声性能进行了分析,以探讨其在建筑中的潜在应用。基于热导率和热扩散率测试,咖啡渣废料生物复合材料被表征为一种隔热材料,可与传统植物源隔热材料相媲美。声学测试显示,其吸声系数与用于建筑声学舒适性的其他传统材料处于同一范围。这种生物源材料对于非承重结构具有足够的抗压机械性能,并且具有足够的机械强度以成型为建筑砖块。机械、热和声学性能取决于潮湿环境。这为初步思考这种复合材料在两种相反气候条件下的性能奠定了基础:法国兰斯的大陆性气候和巴西贝伦的热带气候。