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Environmental footprint of external thermal insulation composite systems with different insulation types

机译:具有不同绝缘类型的外保温复合系统的环境足迹

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In terms of upcoming energy directive for Nearly Zero Energy Houses (nZEB), we are very much focused on building skin and its properties. Not only thermal characteristics and design, but also durability and environmental aspects should play a role, when deciding on which system will be implemented. External Thermal Insulation Composite Systems or ETICS are generally made of adhesive, insulation, render with mesh reinforcement, primer and finish coat. In the following case study we have presented a life cycle assessment (LCA) study of three ETICS with different types of insulation: expanded polystyrene (EPS), mineral wool and wood fiber board insulation. The study complies to the standard EN 15804:2012. It was conducted in the program Gabi using the Gabi Professional 2012 Database. The scope of the study is covering the production phase (raw material supply, transport to the factory, manufacturing). We have compared the functional unit of 1 sqm of the ETICS system with U-value 0.27 W/m~2K taking into account different environmental impact categories. In the calculation the characterization factors proposed by Centre of Environmental Science (CML) at Leiden University were used. The comparison of ETICS shows the important impact of the insulation type used. Also there are some differences in the amount of other ETICS components applied, since changing the type of insulation affects the environmental footprint of the ETICS.
机译:就几个零能量房屋(NEZEB)即将到来的能源指令而言,我们非常重点关注建立皮肤及其性质。当决定将实施系统时,不仅可以发挥作用的热特性和设计,而且耐用性和环境方面也应该发挥作用。外部隔热复合系统或素质通常由粘合剂,绝缘材料制成,呈现网状增强,底漆和光洁度涂层。在下列案例研究中,我们提出了一种生命周期评估(LCA)三种精细性研究,具有不同类型的绝缘材料:膨胀聚苯乙烯(EPS),矿棉和木材纤维板绝缘。该研究符合标准EN 15804:2012。它是使用Gabi Professional 2012数据库在Program Gabi进行的。该研究的范围正在覆盖生产阶段(原料供应,运输到工厂,制造)。我们已经将1平方米的功能单元与U值为0.27 w / m〜2k进行了比较了0.27 w / m〜2k,考虑到不同的环境影响。在计算莱顿大学环境科学(CML)中提出的表征因素。 EtiCS的比较显示了所使用的绝缘类型的重要影响。此外,应用的其他EtiCs组件的数量也存在一些差异,因为改变了绝缘类型影响了EtiCS的环境足迹。

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