包含能量
温室气体
碳纤维
碳中和
背景(考古学)
砖
中国
环境科学
建筑材料
建筑工程
自然资源经济学
工程类
土木工程
材料科学
生态学
地理
复合材料
经济
考古
复合数
生物
作者
Wanlin Chen,Shiyu Yang,Xinzhen Zhang,Nino David Jordan,Jiashun Huang
标识
DOI:10.1016/j.buildenv.2021.108434
摘要
Increasing building constructions have become one of the fastest-growing drivers of carbon emissions. Energy conservation and carbon reduction in buildings have become increasingly crucial in the context of global carbon neutrality. This paper assesses the annual total energy and carbon embodied in the ten most intensively used building materials in China, aiming to find potential CO 2 reduction opportunities in the construction industry from a macroscopic perspective. The results show that: (1) the embodied energy and carbon of cement, steel, and brick account for more than 70% of the total embodied energy and carbon of all building materials; (2) differences in the embodied energy and carbon between steel-concrete buildings and brick-concrete buildings are not distinct; (3) disparities in the embodied energy and carbon of building materials between different regions are significant. The eastern and south-eastern regions consume excessive building materials and embody significantly higher energy and carbon than other regions. Several strategies are provided for China's building sector in energy and carbon reduction. • We analyse the annual total energy and carbon emissions embodied in building materials in China. • Embodied energy and carbon between steel-concrete buildings and brick-concrete buildings are analysed. • We find significant disparities in embodied energy and carbon among different regions. • Potential opportunities to reduce carbon emissions are highlighted.
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