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Estimation and Minimization of Embodied Carbon of Buildings: A Review

机译:估算和最小化建筑物的碳含量:综述

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Building and construction is responsible for up to 30% of annual global greenhouse gas (GHG) emissions, commonly reported in carbon equivalent unit. Carbon emissions are incurred in all stages of a building?¢????s life cycle and are generally categorised into operating carbon and embodied carbon, each making varying contributions to the life cycle carbon depending on the building?¢????s characteristics. With recent advances in reducing the operating carbon of buildings, the available literature indicates a clear shift in attention towards investigating strategies to minimize embodied carbon. However, minimizing the embodied carbon of buildings is challenging and requires evaluating the effects of embodied carbon reduction strategies on the emissions incurred in different life cycle phases, as well as the operating carbon of the building. In this paper, the available literature on strategies for reducing the embodied carbon of buildings, as well as methods for estimating the embodied carbon of buildings, is reviewed and the strengths and weaknesses of each method are highlighted.
机译:建筑和建筑负责每年全球温室气体(GHG)排放量的30%,通常以碳当量单位报告。碳排放是在建筑物的整个生命周期的各个阶段产生的,通常分为可使用的碳和包含的碳,每种碳对建筑物的生命周期碳的贡献各不相同。特征。随着减少建筑物运行碳的最新进展,现有文献表明,注意力已明显转移到了调查策略上,以尽量减少含碳量。然而,使建筑物的含碳量最小化是一项挑战,需要评估含碳量减少策略对不同生命周期阶段所产生的排放量以及建筑物的运营碳的影响。在本文中,回顾了有关减少建筑物内含碳量的策略的现有文献以及估算建筑物内含碳量的方法,并重点介绍了每种方法的优缺点。

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