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Innovative panels with recycled materials: Thermal and acoustic performance and Life Cycle Assessment

机译:具有再生材料的创新面板:热性能和声学性能以及生命周期评估

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Insulation is one of the most effective methods intended for reducing energy consumption in both heating and cooling of buildings. Selecting the right materials and determining the optimum insulation thickness in building insulation application is an important issue. Moreover it is important to use green insulating materials in order to limit the environmental impact in the use of these solutions. A growing interest is focused on the incorporation of low cost recycled materials in building products and their potential use as insulating panels for both new buildings and refurbishments. In this paper two panels were investigated, composed by waste paper and textile fibres, joined by glue, with a total thickness of 12 mm and 20 mm respectively. The study is focused on the thermal and acoustic characterisation of the panels, in order to provide accurate data for a reliable building integration. Thermal performance was evaluated by using the hot-box apparatus, according to UNI EN ISO 8990. A good thermal behaviour was found for all the investigated panels: k-values vary in the 0.034-0.039 W/m K range. The investigated panels could be a valid solution in place of classic insulation systems, even though thermal resistance is strongly influenced by the environmental humidity, the rate of the compression, and the presence of air between the layers. Therefore a thermal infrared camera was also used during the measurements, aiming to investigate the weak points of the assembled panels and to select the positions of the sensors. The acoustic absorption coefficient was determined by means of a Kundt's tube, in compliance with ISO 10534-2. The Noise Reduction Coefficient (NRC - the arithmetic value of the absorption coefficient at the frequencies 250,500,1000 and 2000 Hz) of the samples varies in 0.23-0.38 range, depending on the layer thickness. Finally an initial Life Cycle Assessment of the proposed solutions was considered and compared to the performance of other replaceable insulating materials. Results showed that the panel composed by recycled papers and textile fibres causes relative large energy consumptions and a high global warming potential. The importance of this kind of insulation system is due to the use of recycled materials: both the waste paper and the TNT fibres should be disposed by means of a large use of energy. This way they will be re-used and the cost for the production of the panels is very low. A disadvantage of these panels could be their high density (about 433 kg/m~3): the future step for this work will be the improvement of this new insulating type in order to obtain a competitive solution on the market. The manufacturing of lighter solutions will allow the panels to be more competitive on the market in terms of embodied energy and GHG emissions.
机译:隔热是旨在减少建筑物采暖和制冷能耗的最有效方法之一。在建筑物隔热应用中选择正确的材料并确定最佳的隔热厚度是一个重要的问题。此外,使用绿色绝缘材料以限制使用这些解决方案对环境的影响也很重要。越来越多的兴趣集中在将低成本的再生材料结合到建筑产品中,以及将其作为新建筑和翻新建筑的隔热板的潜在用途。本文研究了由废纸和纺织纤维组成的两个面板,这些面板由胶水粘合在一起,总厚度分别为12毫米和20毫米。该研究专注于面板的热和声学特性,以便为可靠的建筑集成提供准确的数据。根据UNI EN ISO 8990,使用热箱设备评估了热性能。所有研究的面板均具有良好的热性能:k值在0.034-0.039 W / m K范围内变化。尽管热阻受环境湿度,压缩率和各层之间空气的强烈影响,但所研究的面板可能是代替传统隔热系统的有效解决方案。因此,在测量过程中还使用了红外热像仪,目的是调查组装面板的薄弱点并选择传感器的位置。吸声系数通过Kundt管确定,符合ISO 10534-2标准。样品的降噪系数(NRC-在250,500,1000和2000 Hz频率下的吸收系数的算术值)在0.23-0.38范围内变化,具体取决于层厚。最后,考虑了所提出解决方案的初始生命周期评估,并将其与其他可替代绝缘材料的性能进行了比较。结果表明,由再生纸和纺织纤维组成的面板导致相对较大的能耗和较高的全球变暖潜力。这种绝缘系统的重要性在于使用可循环利用的材料:废纸和TNT纤维都应通过大量使用能源进行处置。这样,它们将被重复使用,并且面板的生产成本非常低。这些面板的缺点可能是密度高(约433 kg / m〜3):这项工作的未来步骤将是改进这种新型绝缘材料,以便在市场上获得有竞争力的解决方案。较轻的解决方案的制造将使面板在体现的能量和温室气体排放方面更具市场竞争力。

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