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Geopolymers and Related Alkali-Activated Materials

机译:地聚合物和相关的碱活化材料

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摘要

The development of new, sustainable, low-CO_2 construction materials is essential if the global construction industry is to reduce the environmental footprint of its activities, which is incurred particularly through the production of Portland cement. One type of non-Portland cement that is attracting particular attention is based on alkali-aluminosilicate chemistry, including the class of binders that have become known as geopolymers. These materials offer technical properties comparable to those of Portland cement, but with a much lower CO_2 footprint and with the potential for performance advantages over traditional cements in certain niche applications. This review discusses the synthesis of alkali-activated binders from blast furnace slag, calcined clay (metakaolin), and fly ash, including analysis of the chemical reaction mechanisms and binder phase assemblages that control the early-age and hardened properties of these materials, in particular initial setting and long-term durability. Perspectives for future research developments are also explored.
机译:如果全球建筑行业要减少其活动对环境的影响,那么开发新型,可持续,低CO_2的建筑材料至关重要,这尤其是通过生产波特兰水泥而引起的。一种引起人们特别注意的非波特兰水泥是基于碱金属铝硅酸盐化学,包括一类被称为地质聚合物的粘合剂。这些材料提供的技术性能可与波特兰水泥相媲美,但具有较低的CO_2足迹,并且在某些细分市场中具有优于传统水泥的性能优势。这篇综述讨论了由高炉矿渣,煅烧粘土(偏高岭土)和粉煤灰合成碱活化粘合剂的方法,包括分析控制这些材料的早期和硬化性能的化学反应机理和粘合剂相组合。特别的初始设置和长期耐用性。还探讨了未来研究发展的前景。

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