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Sustainable panels with recycled materials for building applications: environmental and acoustic characterization

机译:用于建筑应用的可持续面板,用于建筑应用:环境和声学表征

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Sound absorption materials structure is generally based on porous synthetic media (rock wool, glass wool, polyurethane, polyester, ect.): they have expensive production processes, important energy consumptions, and high environmental impact. Recycled materials are becoming an interesting alternative, due to their good acoustic behavior, similar to traditional porous materials;; they also allow low impact production costs, thanks to the use of wastes derived from other production cycles. This work focuses on the evaluation of the acoustic absorption properties of new panels made of recycled paper and other scrap materials, as wool and nonwoven polyester fabric: different samples were produced and tested by means of impedance tube, according to ISO 10534-2. In order to present the environmental benefits, Life Cycle Assessment was carried out in terms of primary embodied energy and greenhouse gas emissions, considering a "cradle-to-gate" approach. Furthermore, the behavior of innovative absorption materials was investigated in order to improve the acoustic performance of a lecture room, by means of an acoustic simulation software. A comparison with traditional materials was also carried out for both acoustic and environmental aspects. In the simulation model, calibrated by an in-situ experimental campaign of the main acoustic quality indexes (Reverberation Time, Clarity and Definition Indexes, Speech Transmission Index), different acoustic correction solutions were implemented: both the new recycled and traditional panels were applied as wall and ceiling absorbers. The analysis of the acoustic absorption trends, in 100-5000 Hz frequencies range, shows that the new materials are suitable as acoustic correction systems, especially the panel composed by waste paper and wool fibers. The LCA analysis results show that, considering the same acoustic performance, the recycled panels allow to reduce the environmental effects and the global production costs.
机译:吸音材料结构通常基于多孔合成介质(岩棉,玻璃棉,聚氨酯,聚酯,ECT。):它们具有昂贵的生产工艺,重要的能量消耗和高环境影响。由于其良好的声学行为,再生材料正在成为一个有趣的替代方案,类似于传统的多孔材料;由于使用来自其他生产周期的废物,它们还允许低影响的生产成本。这项工作侧重于评估由再生纸和其他废料制成的新面板的声学吸收性能,作为羊毛和非织造聚酯织物:根据ISO 10534-2,通过阻抗管产生并测试不同的样品。为了呈现环境效益,考虑到“摇篮到门”方法,在主要体现能量和温室气体排放方面进行生命周期评估。此外,研究了创新吸收材料的行为,以通过声学模拟软件改善演讲室的声学性能。还对声学和环境方面进行了与传统材料的比较。在仿真模型中,通过原位实验活动校准了主要的声学质量指标(混响时间,清晰度和定义指标,语音传输指数),实施了不同的声学校正解决方案:新的再生和传统面板都适用于墙壁和天花板吸收剂。在100-5000 Hz频率范围内分析声学吸收趋势,表明新材料适合作为声学校正系统,尤其是由废纸和羊毛纤维组成的面板。 LCA分析结果表明,考虑到相同的声学性能,再生面板允许降低环境影响和全球生产成本。

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