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LCA comparison of roofing materials for flat roofs

机译:LCA平屋顶屋面材料的比较

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Purpose - The environmental performance of several flat roof systems with different materials and insulation thicknesses is compared using life cycle assessment (LCA), with the aim to determine the roofing materials with the highest environmental performance. The paper aims to discuss these issues. Design/methodology/approach - The calculations were carried out for an existing apartment block with a 300 m2 flat roof. Five insulation materials with three different heat resistances each, five types of waterproof layers, three covering layers, and a green roof are assessed using LCA. Foreground data including maintenance are obtained from roofing companies, and background data are taken from Ecoinvent. ReCiPe is used as impact method. Energy losses through the roof are calculated using the energy software EPA-W. Findings - Improving the insulation from 2.5 to 5 m~2K/W leads to reductions of the damage scores from about 10 to 40 per cent. Polyisocyanurate and expanded polystyrene were found to have the lowest environmental damage, although the differences are small. Regarding the other layers, PVC mechanically fixed, ethylene propylene diene monomer (EPDM) mechanically fixed, EPDM glued and PVC with gravel ballast were found to have the lowest environmental damage of the materials assessed. Practical implications - The outcomes of this study will aid building owners and construction and maintenance companies to choose renovation options for flat roofs with the lowest impact on the environment Originality/value - A smart choice of materials for a roofing system, with enough consideration of other aspects such as practical applicability, can thus significantly improve the environmental performance of the roof of a building.
机译:目的-使用生命周期评估(LCA)比较几种具有不同材料和绝缘厚度的平屋顶系统的环境性能,目的是确定具有最高环境性能的屋顶材料。本文旨在讨论这些问题。设计/方法/方法-计算是针对具有300平方米平屋顶的现有公寓楼进行的。使用LCA评估了五种绝缘材料,每种材料具有三种不同的耐热性,五种类型的防水层,三层覆盖层和一个绿色屋顶。包括维护在内的前景数据是从屋顶公司获得的,背景数据是从Ecoinvent获得的。回收被用作冲击方法。使用能量软件EPA-W计算通过屋顶的能量损失。研究结果-将绝缘度从2.5 m改善到5 m〜2K / W,可将破坏得分降低10%到40%。尽管差异很小,但发现聚异氰脲酸酯和发泡聚苯乙烯对环境的损害最低。关于其他层,发现机械机械固定的PVC,机械固定的乙烯丙烯丙烯二烯单体(EPDM),胶粘的EPDM和带有砾石镇流器的PVC在所评估的材料中对环境的破坏最低。实际意义-这项研究的结果将帮助建筑物所有者以及建筑和维修公司选择对环境影响最小的平屋顶翻新方案独创性/价值-明智选择屋顶材料时应充分考虑其他因素因此,诸如实际适用性等方面可以显着改善建筑物屋顶的环境性能。

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