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Thermal performance enhancement of eco-friendly bricks incorporating agro-wastes

机译:结合农业废料的环保砖的热性能增强

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Thermal conductivity of bricks is an important parameter as it directly influences the heat losses from buildings and thus increases the energy consumption. The main focus of this study was to develop thermally efficient burnt clay bricks incorporating agricultural wastes on industrial scale. For this purpose, agricultural wastes (sugarcane bagasse ash (SBA) and rice husk ash (RHA)) were acquired from a sugar industry and a brick kiln. Burnt clay bricks were manufactured in an industrial kiln by incorporating SBA and RHA in various dosages (i.e. 5%, 10% and 15%) by clay weight. Physico-mechanical and thermal properties of brick specimens incorporating agricultural wastes were studied. It was observed that lighter weight bricks can be produced using agricultural wastes, which are helpful in reducing both the cost and overall weight of the structure. Addition of agricultural wastes in burnt clay bricks resulted into reduced compressive strength. However, brick specimens incorporating SBA and RHA up to 15% satisfied the minimum requirement for compressive strength according to different standards for masonry construction. Increase in apparent porosity with decrease in thermal conductivity was also observed with increasing content of SBA and RHA in burnt clay bricks. Substitution of clay by 15% SBA and RHA in the production of burnt clay bricks reduced the thermal conductivity by 31% and 29%, respectively. Microscopic images also showed the presence of interconnected and irregular shaped open pores after addition of agricultural wastes in burnt clay bricks. Based on this study, it can be concluded that the utilization of SBA and RHA (up to 15% by clay weight) in manufacturing of burnt clay bricks is not only helpful in landfill reduction but also leads towards the development of sustainable and thermally efficient construction material. (C) 2017 Elsevier B.V. All rights reserved.
机译:砖的导热系数是一个重要的参数,因为它直接影响建筑物的热损失,从而增加了能耗。这项研究的主要重点是在工业规模上开发结合了农业废料的热能高效燃烧粘土砖。为此,从制糖业和砖窑中获得了农业废物(蔗糖蔗渣灰(SBA)和稻壳灰(RHA))。烧成的粘土砖是在工业窑炉中通过掺入以粘土重量计各种剂量(即5%,10%和15%)的SBA和RHA制成的。研究了掺入农业废料的砖样品的物理力学和热学性质。据观察,可以使用农业废料生产重量更轻的砖,这有助于降低结构的成本和总重量。在燃烧的粘土砖中添加农业废料导致抗压强度降低。但是,根据不同的砌体建筑标准,掺入SBA和RHA高达15%的砖样品满足了最低抗压强度要求。随着烧制粘土砖中SBA和RHA含量的增加,表观孔隙率随导热系数的降低而增加。在烧制的粘土砖的生产中,用15%的SBA和RHA代替粘土会使导热系数分别降低31%和29%。显微镜图像还显示,在烧成的粘土砖中添加农业废料后,存在相互连接且形状不规则的开孔。根据这项研究,可以得出结论,在燃烧的粘土砖的生产中利用SBA和RHA(占粘土重量的15%)不仅有助于减少垃圾填埋场,而且还可以促进可持续和热效率建筑的发展。材料。 (C)2017 Elsevier B.V.保留所有权利。

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