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首页> 外文期刊>Journal of Cleaner Production >Can Portland cement be replaced by low-carbon alternative materials? A study on the thermal properties and carbon emissions of innovative cements
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Can Portland cement be replaced by low-carbon alternative materials? A study on the thermal properties and carbon emissions of innovative cements

机译:波特兰水泥可以用低碳替代材料代替吗?新型水泥的热性能和碳排放研究

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One approach to decarbonising the cement and construction industry is to replace Portland cement systems with lower carbon alternatives that have suitable properties. We show that seven cementitious binders comprised of metakaolin, silica fume and nano-silica have improved thermal performance compared with Portland cement and we calculate the full CO2 emissions associated with manufacture and transport of each binder for the first time. Due to their high porosity, the thermal conductivity of these novel cements is 58-90% lower than Portland cement, and we show that a thin layer (20 mm), up to 80% thinner than standard insulating materials, is enough to bring energy emissions in domestic construction into line with the UK 2013 Building Regulations. Carbon emissions in domestic construction can be reduced by c. 20-50% and these cementitious binders are able to be recycled, unlike traditional insulation materials. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:使水泥和建筑业脱碳的一种方法是用具有合适性能的低碳替代品代替波特兰水泥系统。我们显示,与波特兰水泥相比,由偏高岭土,硅粉和纳米二氧化硅组成的7种胶结粘结剂具有改进的热性能,并且我们首次计算了与每种粘结剂的制造和运输相关的全部CO2排放量。由于它们的高孔隙率,这些新型水泥的导热系数比波特兰水泥低58-90%,并且我们证明,薄层(20毫米)比标准绝缘材料薄80%,足以带来能量国内建筑的排放符合英国2013年建筑法规。住宅建设中的碳排放可以减少c。与传统的绝缘材料不同,这些水泥粘结剂可回收20%至50%。 (C)2018作者。由Elsevier Ltd.发布

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