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Life Cycle Assessment of a passive house in a seismic temperate zone

机译:温带地震区被动房屋的生命周期评估

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This paper presents the results of a detailed LCA study of a low-energy consumption building (thermal energy for heating equal to 11 kWh/m~2 year) located in Perugia, Italy, according to European ISO 14040 and 14044. The building matches the criteria of environmental sustainability and bio-architecture, complying with the "PassivHaus" standard. All life cycle phases were included in the research: acquisition and production of materials, on-site construction and use/maintenance, demolition and material disposal (100% landfilling and demolition with waste recycling). A life span of 70 years was considered. The research was therefore focused on cradle-to-grave life, based on data collected by authors, integrated with data from the literature. In particular the study was carried out to analyze: the benefits due to the use of recycled materials, a solar PV (during the utilization years) and the final demolition of the building. The LCA modeling was performed using the SimaPro software application, connected to the ecoinvent database. The results show that applying energy saving measures (highly insulated building envelope and passive-house standard, solar PV, waste recycling and recycled products in pre-production phase) could significantly decrease the impact of modern dwellings, with the consciousness that new ways of building do not always provide a positive environmental outcome.
机译:本文介绍了根据欧洲ISO 14040和14044对位于意大利佩鲁贾的低能耗建筑(供热热能等于11 kWh / m〜2年)的详细LCA研究结果。符合“ PassivHaus”标准的环境可持续性和生物建筑标准。所有生命周期阶段都包括在研究中:材料的获取和生产,现场施工和使用/维护,拆卸和材料处置(100%填埋和拆除并进行废物回收)。使用寿命为70年。因此,该研究基于作者收集的数据并结合了文献数据,着重研究了从摇篮到坟墓的生活。尤其是,该研究进行了分析:使用回收材料,太阳能PV(在使用年限内)和建筑物的最终拆除所带来的收益。使用连接到ecoinvent数据库的SimaPro软件应用程序执行LCA建模。结果表明,采取节能措施(高度绝缘的建筑围护结构和被动房屋标准,太阳能光伏发电,废物回收和生产前阶段的循环利用产品)可以显着降低现代住宅的影响,并意识到新的建筑方式并不总是能带来积极的环境结果。

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