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Thermal characterization of a new bio-composite building material based on plaster and waste chicken feathers

机译:基于石膏和废鸡羽的新生物复合建筑材料的热表征

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The building materials used in Morocco characterized by a low thermal resistance which generates a huge expense in terms of energy consumption. Promoting new sustainable construction and insulation materials become a necessity. This research study aimed to develop the thermal proprieties of plaster building material by mixing it with waste chicken feathers (WCF) in order to be used as wall exterior rendering. For the purpose of determining the thermal properties of the biocomposite material Plaster-WCF, several experimental measurements of thermophysical proprieties had been performed in order to determine apparent density, thermal conductivity, and thermal diffusivity using the hot plate method in steady-state regime and the Flash method, respectively. The results showed that the addition of waste chicken feathers leads to a remarkable reduction in apparent density of about 12.3%, the thermal conductivity and diffusivity have been reduced by about 30.2% and 18%, respectively, which shows the interest of using this biocomposite material in the construction buildings in order to ensure thermal comfort and reduce greenhouse gas emissions (CO_2).
机译:在摩洛哥使用的建筑材料,其特征在于低热阻,在能耗方面产生巨大的费用。促进新的可持续建筑和绝缘材料成为必需品。该研究旨在通过将其与废鸡羽毛(WCF)混合来开发膏药建筑材料的热处理,以便用作墙壁外部渲染。为了确定生物复合材料石膏-WF的热性质,已经进行了几种实验测量热物理专用的实验测量,以便在稳态状态下使用热板方法确定表观密度,导热性和热扩散率闪光法分别。结果表明,废鸡羽的添加导致表观密度显着降低约12.3%,导热率和扩散率分别降低约30.2%和18%,这表明使用该生物复合材料的兴趣在建筑建筑中,以确保热舒适度,减少温室气体排放(CO_2)。

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