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Geopolymer mortars as sustainable repair material: A comprehensive review

机译:地聚合物砂浆作为可持续修复材料:全面综述

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摘要

Environmentally sustainable repair materials with reduced carbon footprint have been in great demand by the construction industry worldwide. Gradual deterioration of concrete containing large quantities of Portland cement is inevitable, and requires repair or replacement. Numerous repair materials including cementitious mortars, polymer-modified cementitious mortars, resinous mortars, etc. have been utilized to rectify the problem. Cement-free geopolymer mortars prepared from waste materials with high content of silicate aluminum and alkaline activator solution are emerging as prominent sustainable repair materials. Geopolymer binders are preferred because they generate 70-80% less carbon dioxide with remarkably lesser greenhouse gas emissions than ordinary Portland cement. These new binders are highly sought-after due to their enhanced durability performance, sustainability, and environmental affability. This paper provides a comprehensive overview of state-of-the-art research on sustainable geopolymers for repairing deteriorated and damaged concrete structures as well as restoring their integrity. Present challenges and future prospects of various geopolymer mortars as repair materials are emphasized.
机译:全世界的建筑业都对减少碳足迹的环保可持续修复材料提出了很高的要求。含有大量波特兰水泥的混凝土逐渐变质是不可避免的,需要修理或更换。许多修补材料,包括水泥砂浆,聚合物改性的水泥砂浆,树脂砂浆等,已被用来纠正该问题。由含高含量硅酸铝和碱性活化剂溶液的废料制备的无水泥地聚合物砂浆正在成为可持续的重要修复材料。地聚合物粘合剂是优选的,因为与普通波特兰水泥相比,它们产生的二氧化碳少70-80%,温室气体排放量也少得多。这些新型粘合剂因其增强的耐久性能,可持续性和环境亲和性而广受欢迎。本文提供了有关可持续地聚合物的最新研究的综述,该聚合物可用于修复损坏和受损的混凝土结构以及恢复其完整性。强调了各种地质聚合物砂浆作为修补材料的当前挑战和未来前景。

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