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Global Warming Implications of the Use of By-Products and Recycled Materials in Western Australia’s Housing Sector

机译:西澳大利亚州房屋部门使用副产品和再生材料的全球变暖影响

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Western Australia’s housing sector is growing rapidly and around half a million houses are expected to be built by 2030, which not only will result in increased energy and resources demand but will have socio-economic impacts. Majority of Western Australians live in detached houses made of energy intensive clay bricks, which have a high potential to generate construction and demolition (C&D) waste. Therefore, there is a need to look into the use of alternative materials and construction methods. Due to Western Australia’s temperate climate, concrete could not only offer a comfortable living space but an operational energy saving also can be achieved. This paper has assessed the global warming implications of cast in-situ concrete sandwich wall system as an alternative to clay brick walls (CBW) with partial replacement of cement in concrete with by-products such as fly ash (FA) and ground granulated blast furnace slag (GGBFS), natural aggregate (NA) with recycled crushed aggregate (RCA), natural sand (NS) with manufactured sand (MS) and, polyethylene terephthalate (PET) foam core as a replacement to polystyrene core for construction of a typical 4 × 2 × 2 detached house in Perth. Life cycle management (LCM) approach has been used to determine global warming reduction benefits due to the use of available by-products and recycled materials in Western Australian houses.
机译:西澳大利亚州的住房部门发展迅速,预计到2030年将建造约50万套住房,这不仅会导致能源和资源需求增加,而且会对社会经济产生影响。大多数西澳大利亚人居住在由高耗能粘土砖制成的独立式房屋中,这些房屋具有产生建筑和拆除废物的巨大潜力。因此,有必要研究替代材料和构造方法的使用。由于西澳大利亚州的气候温和,混凝土不仅可以提供舒适的居住空间,而且还可以节省运营能源。本文评估了现浇混凝土夹心墙系统作为粘土砖墙(CBW)的替代品对全球变暖的影响,该体系通过使用副产品(例如粉煤灰(FA))和高炉造粒高炉来部分替代水泥中的水泥矿渣(GGBFS),天然粒料(NA)和再生碎粒料(RCA),天然砂子(NS)和人造砂(MS)以及聚对苯二甲酸乙二酯(PET)泡沫芯作为聚苯乙烯芯的替代品,用于典型的4 ×2×2珀斯独立屋。由于在西澳大利亚州房屋中使用了可用的副产品和回收材料,因此使用生命周期管理(LCM)方法来确定全球减排的好处。

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