聚合物
胶凝的
耐久性
硅酸铝
碳化作用
粉煤灰
熔渣(焊接)
材料科学
背景(考古学)
抗压强度
偏高岭土
硅酸盐水泥
环境污染
废物管理
环境科学
水泥
工程类
冶金
复合材料
地质学
古生物学
生物化学
化学
环境保护
催化作用
作者
Sanjida Khair,Sm Arifur Rahman,Faiz Shaikh,Prabir Kumar Sarker
标识
DOI:10.1016/j.cscm.2023.e02822
摘要
This comprehensive review paper evaluates lithium slag (LS) as a promising precursor for geopolymer concrete, focusing on its workability, strength, durability, and microstructure. In the context of sustainable construction, LS emerges as a vital alternative to conventional cementitious materials, primarily due to the environmental concerns associated with cement production, such as substantial greenhouse gas emissions and air pollution. Geopolymer technology utilizes alkali activators and aluminosilicate-rich materials, offers a reduced environmental footprint and shows comparable performance to traditional cement-based concrete. In particular, LS has gained attention for its potential as an aluminosilicate precursor material in geopolymer concrete. This review investigated the recent advancements in LS-based geopolymers, exploring various processing techniques like mechanical activation, calcination, and chemical treatment to optimize LS geopolymerisation and enhance early strength development. The incorporation of binary/ternary aluminosilicate material is also discussed, aiming to improve crucial properties such as workability, strength, durability, and microstructure. The needs for comprehensive research into LS-based geopolymers to achieve their full potential in sustainable construction, promoting an environmentally friendly approach and contribution to a circular economy in the construction industry are highlighted.
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