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Cradle-to-gate Life Cycle Assessment of traditional gravel ballasted, white reflective, and vegetative roofs: A Lebanese case study

机译:传统碎石ball,白色反光和植物屋顶的从摇篮到大门的生命周期评估:黎巴嫩案例研究

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Lebanon, a Mediterranean country, lacks a clear sustainability plan as well as an infrastructure update and management, leading to road flooding, especially in urban areas. Therefore, the installation of Vegetative Roofs (VRs) could be an interesting option for Lebanon. To evaluate if VRs are truly superior to Traditional Gravel Ballasted Roofs (TGBRs) and White Reflective Roofs (WRRs), a cradle-to-gate Life Cycle Assessment (LCA) was performed. Potential environmental impacts of an existing Extensive Green Roof (EGR) were compared to three fictitious roofs of the same area: TGBR, WRR, and Intensive Green Roof (IGR). The functional unit used for comparison was: "providing a cover for a surface area of 834 sqm and for 45 years". Specifications of TGBRs and WRRs were provided by local technicians and civil engineers. Furthermore, specifications of VRs were provided by the United Nations Development Program (UNDP), Country Energy Efficiency and Renewable Energy Demonstration for the recovery of Lebanon (CEDRO) project The SimaPro software and Ecoinvent library were used to model the systems considered. Results clearly indicated that EGR was the best option for all environmental impact categories. Rebar, concrete, and thermal insulation were the main contributors to the environmental impacts for TGBR, while rebar, concrete, thermal insulation, and waterproof membrane were the highest contributors for WRR. Sensitivity and uncertainty analysis were also performed to verify the robustness of the results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:黎巴嫩是一个地中海国家,缺乏明确的可持续性计划以及基础设施的更新和管理,导致道路泛滥,特别是在城市地区。因此,安装植物屋顶(VRs)对于黎巴嫩来说可能是一个有趣的选择。为了评估VR是否真正优于传统的碎石压实屋顶(TGBR)和白色反光屋顶(WRR),进行了从摇篮到大门的生命周期评估(LCA)。将现有大面积绿色屋顶(EGR)的潜在环境影响与同一区域的三个虚拟屋顶(TGBR,WRR和大面积绿色屋顶(IGR))进行了比较。用于比较的功能单元是:“为834平方米的表面积提供45年的覆盖”。 TGBR和WRR的规范由当地技术人员和土木工程师提供。此外,由联合国开发计划署(UNDP),国家能源效率和可再生能源示范组织(黎巴嫩回收)提供了VR规范(CEDRO)。SimaPro软件和Ecoinvent库用于对所考虑的系统进行建模。结果清楚地表明,EGR是所有环境影响类别的最佳选择。钢筋,混凝土,隔热材料是造成TGBR对环境影响的主要因素,而钢筋,混凝土,隔热材料和防水膜是造成WRR的最大因素。还进行了敏感性和不确定性分析,以验证结果的稳健性。 (C)2016 Elsevier Ltd.保留所有权利。

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