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Thermal and environmental impact analysis of rice husk ash-based mortar as insulating wall plaster

机译:稻壳灰灰浆作为绝缘壁膏药的热和环境影响分析

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The energy used to maintain the thermal comfort of buildings significantly contributes to the GHG emissions and global warming. In this study, a sustainable and cost-effective rice husk ash (RHA)-based mortar for wall plastering has been developed to provide better thermal insulation, reduce the operational energy and enhance the thermal comfort. Consequently, RHA was partially replaced with the sand in the conventional mortar to produce the RHA-based plaster. Initially, compressive strengths and thermal conductivities of the selected mortar mixes were assessed. The results highlight that the RHA can be replaced up to 30% instead of sand in mortar to produce the thermally enhanced wall plaster. Further, two identical prototype model houses were constructed with RHA-based (i.e. 30% of RHA) and conventional plasters to evaluate their heat transfer, heat flux, and the characteristics of internal and external wall surface temperatures in open weather conditions. It was noted that the average peak heat flux reduction formed by the RHA-based plaster was 10%. The average daily heat transfer reduction across the wall with RHA-based plaster was about 26%. Results also show that RHA-based plaster can reduce the energy that required to maintain thermal comfort by about 9% than the conventional plaster. Moreover, the environmental impact analysis was also conducted to assess the sustainability performance of RHA-based mortars. The environmental impact assessment revealed that the RHA-based plaster has less environmental impact than the conventional mortar. Furthermore, the CO2 emission generated by the production of RHA-based mortar is about 14% less than the conventional plaster. (C) 2021 Elsevier Ltd. All rights reserved.
机译:用于维持建筑物的热舒适性的能量显着促进了GHG排放和全球变暖。在这项研究中,已经开发出用于壁式抹灰的可持续和经济型的稻壳灰(RHA)基于墙面抹灰,以提供更好的隔热,降低操作能量并提高热舒适度。因此,rha被常规砂浆中的砂部分替换为产生rha的石膏。最初,评估所选砂浆混合物的抗压强度和热导体。结果突出显示RHA可以更换高达30%而不是砂浆的沙子,以产生热增强的壁式石膏。此外,两种相同的原型模型房屋用RHA基(即30%的RHA)和常规膏药构建,以评估其传热,热通量和内部和外壁表面温度的特性在开放的天气条件下。注意,由rha基石膏形成的平均峰值热通量减少为10%。穿过壁的平均每日传热减少,基于RHA的石膏的壁为约26%。结果还表明,基于RHA的石膏可以降低所需的能量,以比传统的石膏保持约9%所需的能量。此外,还进行了环境影响分析,以评估rha的迫击炮的可持续性性能。环境影响评估显示,rhA的石膏与常规砂浆的环境较少。此外,由rha基砂浆产生产生的CO 2发射比传统石膏小约14%。 (c)2021 elestvier有限公司保留所有权利。

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