硅酸盐水泥
生命周期评估
环境科学
硅粉
全球变暖潜力
耐久性
混凝土类型
全球变暖
水泥
废物管理
环境工程
温室气体
气候变化
粉煤灰
工程类
材料科学
生产(经济)
复合材料
生态学
经济
宏观经济学
生物
作者
Gholamreza Asadollahfardi,Ali Katebi,P. Taherian,Azadeh Panahandeh
标识
DOI:10.1080/15623599.2019.1579015
摘要
To identify proper types of concrete with favourable mechanical and durability properties is necessary, which imposes minimum pollution into the environment. We collected information, based on the literature and consulting companies, by evaluating one cubic meter of five different types of concrete, including microsilica, Geopolymer, micro–nano bubble, nanosilica and using only ordinary Portland cement (OPC). After using a life cycle inventory (LCI) phase, according to the life cycle assessment (LCA) for cradle to gate, we applied SimaPro8.1 software using the collected information. The results indicated that global warming indicator in Geopolymer concrete was much lower than the other concretes and indicated a reduction of nearly 26% in comparison with ordinary Portland cement in concrete. Also, the global warming indicator increased approximately 56%, 17% and 38% in microsilica, nanosilica and micro–nano bubble concrete in comparison with OPC concrete, respectively. Common harmful environmental impacts that were associated with ecosystem damage, ecosystem quality, human health, climate change and global warming potential (GWP), human toxicity, acidification and eutrophication were observed in microsilica concrete, while OPC was the most environmentally friendly concrete in production stage due to its lowest level of environmental burdens.
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