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Life cycle assessment of natural building materials: the role of carbonation, mixture components and transport in the environmental impacts of hempcrete blocks

机译:天然建筑材料的生命周期评估:碳化,混合物成分和运输在大麻混凝土块对环境的影响中的作用

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摘要

Hempcrete is a natural building material that, in recent years, has known an increased popularity in a number of European countries. Hempcrete-based construction materials are used in non-bearing walls, as finishing plasters and floor/roof insulators. In the present work, the environmental performances of a non-load-bearing wall made of hempcrete blocks were assessed via Life Cycle Assessment (LCA). The analysis encompassed the whole life cycle but the end of life, due to the lack of reliable data for this stage. The production phase of the raw materials was identified as the main source of environmental impacts, but the transport distance of raw materials, as well as the amount and composition of the binder mixture, can considerably affect the results. An experimental assessment (via X-ray Powder Diffraction analysis) of the carbonation process taking place within the binder during the use phase of the wall showed that the carbonation rate may be smaller than assumed in previous works: after 240 d, only the outermost layers of the blocks showed significant levels of carbonation, while the innermost layers experienced only a negligible increase in the amount of carbonates. Nevertheless, the overall emission balance is very favourable: thanks to biogenic CO2 uptake during hemp growth and to CO2 uptake by carbonation, hempcrete blocks have a negative carbon footprint and act therefore as effective carbon sinks.
机译:近年来,Hempcrete是一种天然建筑材料,在许多欧洲国家/地区越来越受欢迎。大麻基建筑材料用于非承重墙,作为饰面石膏和地板/屋顶绝缘体。在目前的工作中,通过生命周期评估(LCA)对由大麻混凝土砌块制成的非承重墙的环境性能进行了评估。由于该阶段缺乏可靠的数据,该分析涵盖了整个生命周期,但生命周期结束。原材料的生产阶段被确定为环境影响的主要来源,但是原材料的运输距离以及粘合剂混合物的数量和组成会严重影响结果。在墙的使用阶段对粘合剂内部碳化过程的实验评估(通过X射线粉末衍射分析)表明,碳化速率可能小于以前的工作中假定的程度:在240天之后,仅最外层这些块体显示出明显的碳酸化水平,而最内层的碳酸盐量仅增加到可以忽略的程度。尽管如此,总体的排放平衡还是非常有利的:由于大麻生长过程中吸收了生物成因的CO2,以及由于碳酸化而吸收了CO2,因此,大麻混凝土砌块的碳足迹为负,因此可以作为有效的碳汇。

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