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Application of life cycle carbon assessment for a sustainable building design: a case study in the UK

机译:生命周期碳评估在可持续建筑设计中的应用 - 以英国为例

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In the construction industry, a large amount of carbon dioxide is emitted, due to the embodied and operational carbon. RICS Guidance note shows the stages producing the most carbon dioxide is the operational stage and the second significant area is the production stage. Recent studies have investigated reducing the operational emissions, however there is limited research on the embodied carbon. To achieve climate targets by 2050, all operational emissions need to be phased out along with reductions in embodied carbon. This paper aims to analyze the carbon life cycle (LCA) of the case study building in the UK. Further implementing low carbon & clean technologies have been considered to reduce the embodied and operational carbon. Current state of the art carbon assessment is utilized incorporating methodologies such as `Cradle to grave' from `British standards' in conjunction with `RICS Guidance note' and `RICS Professional statement.' To measure the embodied and operational carbon using the `cradle to grave' process, requires selecting a case study building and collecting related input data to process calculations such as construction materials and energy consumption. Results conclude that the operational stage is the largest CO2 contributor of the whole lifecycle, therefore PV Solar panels were chosen to reduce CO2 emissions. The product stage was the second most significant CO2 contributor therefore low carbon strategies, such as use of recycled steel, light weight brick, and SCM's for mortar and concrete, were selected. Re-calculation of the embodied and operational carbon of the building after implementing the low carbon strategies and clean technology comparing to initial results show reductions in CO2 emissions by 22% creating a low carbon building. Therefore, this paper brings awareness and guidance globally to clients, building designers, and the government to design sustainably using suitable low carbon solutions in all construction projects, leading to a low carbon future.
机译:在建筑业中,由于具体和运营碳,发出了大量的二氧化碳。 RICS指导说明显示生产最多二氧化碳的阶段是运营阶段,第二个重要面积是生产阶段。最近的研究已经调查了降低运营排放,但研究了对体现碳的有限研究。为了实现2050年的气候目标,所有操作排放都需要逐步逐步淘汰体现碳的减少。本文旨在分析英国案例研究建筑的碳生命周期(LCA)。已经考虑进一步实施低碳和清洁技术,以减少实施的和运营碳。现有技术的碳评估用于将诸如“摇篮”的方法与“英国标准”与“RIC指导说明”和“RICS Professional陈述”结合使用。为了测量使用“摇篮到严重”过程的体现和操作碳,需要选择案例研究建筑和收集相关输入数据,以处理建筑材料和能源消耗等计算计算。结果得出结论,运营阶段是整个生命周期最大的二氧化碳贡献者,因此选择光伏太阳能电池板以减少二氧化碳排放。选择产品阶段是第二大部分二氧化碳贡献者,因此选择了低碳策略,例如使用再生钢,轻质砖和SCM用于砂浆和混凝土。在实施低碳策略和清洁技术比较与初始结果的情况下,重新计算建筑物的实施和运营碳,表明二氧化碳排放量减少22%,产生低碳建筑。因此,本文为客户,建筑设计师和政府在所有建筑项目中使用适当的低碳解决方案提供了全球知名度和指导,从而在所有建筑项目中使用适当的低碳解决方案,导致低碳未来。

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