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Cost-efficient one-part alkali-activated mortars with low global warming potential for floor heating systems applications

机译:具有成本效益的碱活化砂浆,具有低的全球变暖潜能,适用于地板采暖系统

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摘要

Increasing building energy efficiency is one the most cost-effective ways to reduce emissions. The use of thermal insulation materials mitigates heat loss in buildings, therefore minimising heat energy needs. In recent years, several papers were published on the subject of foam alkali-activated cements with enhanced thermal conductivity. However, on those papers cost analysis was strangely avoided. This paper presents experimental results on one-part alkali-activated cements. It also includes global warming potential assessment and cost analysis. Foam one-part alkali-activated cements cost simulations considering two carbon dioxide social costs scenarios are also included. The results show that one-part alkali-activated cements mixtures based on 26%OPC + 58.3%FA + 8%CS + 7.7%CH and 3.5% hydrogen peroxide constitute a promising cost-efficient (67 euro/m3), thermal insulation solution for floor heating systems. This mixture presents a low global warming potential of 443 KgCO2eq/m3. The results confirm that in both carbon dioxide social cost scenarios the mixture 26 OPC + 58.3 FA + 8 CS + 7.7 CH with 3.5% hydrogen peroxide foaming agent is still the most cost efficient.
机译:提高建筑能效是减少排放的最具成本效益的方法之一。绝热材料的使用减轻了建筑物中的热损失,因此使热能需求最小化。近年来,发表了几篇关于导热性增强的泡沫碱活化水泥的论文。但是,在那些论文上却奇怪地避免了成本分析。本文介绍了单部分碱活化水泥的实验结果。它还包括全球变暖潜力评估和成本分析。还包括考虑了两个二氧化碳社会成本情景的泡沫单件碱活化水泥成本模拟。结果表明,基于26%OPC + 58.3%FA + 8%CS + 7.7%CH和3.5%过氧化氢的单部分碱活化水泥混合物构成了一种有前途的成本效益(67欧元/立方米)隔热解决方案用于地板采暖系统。这种混合物的全球升温潜能值较低,为443 KgCO2eq / m3。结果证实,在两种二氧化碳社会成本情景中,具有3.5%过氧化氢发泡剂的26 OPC + 58.3 FA + 8 CS + 7.7 CH混合物仍然是最具成本效益的。

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