胶凝的
聚合物
拆迁垃圾
拆毁
吸附性
处置模式
地聚合物水泥
废品
骨料(复合)
建筑垃圾
水泥
废物管理
偏高岭土
建筑业
环境科学
材料科学
粉煤灰
土木工程
工程类
建筑工程
复合材料
冶金
作者
Blessen Skariah Thomas,Jian Yang,A. Bahurudeen,S.N. Chinnu,Jamal A. Abdalla,Rami A. Hawileh,Ayesha Siddika,Hussein M. Hamada
标识
DOI:10.1016/j.clema.2022.100056
摘要
Several industrial by-products are extensively used again as a supplementary cementitious material or aggregates in the interest to reduce environmental footprints in terms of energy depletion, pollution, waste disposition, resource depletion, and global warming related with conventional cement. A remarkable quantity of industrial scrap materials, primarily designated as construction and demolition waste from the construction industry, has transformed into crucial apprehension of governments. In the recent past, substantial explorations have been accomplished to appreciate the distinct characteristics of concrete, employing recycled aggregates from construction and demolition waste. Geopolymer composite is a new cementitious material, and it appears to be a potential replacement for conventional cement concrete. This paper summarises the previous research concerning the utilisation of recycled aggregate as a partial or complete supplants for conventional aggregates in geopolymer concrete. The influence of recycled aggregate addition on the fresh and hardened properties of geopolymer concrete is comprehensively reviewed in this paper. The studies suggest significant improvement in the workability on addition of recycled aggregates to geopolymer concrete. However, the addition results in increased water absorption and sorptivity.
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