Development of Low-carbon and Sustainable Magnesium-bearing Cementitious Materials-based Solidification Approaches for Management of Problematic Soils

Dongxin Wang
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Abstract

The production of traditional cementitious binders such as calcium-based Portland cement poses a serious challenge to the environment and society. Therefore, low-carbon, green and sustainable magnesium-based cementitious materials are developed to replace fully or partly Portland cement and reduce the consumption of natural resources and CO2 emissions. Three interesting techniques, including reactive MgO-activated industrial solid wastes, MgObased cement and carbonation of magnesium-bearing materials, are elucidated to point to the necessity for developing novel magnesium-based cementitious materials. In the coming future, the carbonation of magnesium-rich industrial solid wastes or its combination with reactive MgO for application in various construction sectors such as soft ground improvement and concrete fabrication would be a promising approach to generate high-value products based on industrial solid wastes.
基于低碳可持续含镁胶凝材料的问题土固化治理方法研究
钙基硅酸盐水泥等传统胶凝粘合剂的生产对环境和社会构成了严峻的挑战。因此,开发低碳、绿色、可持续的镁基胶凝材料,完全或部分替代波特兰水泥,减少自然资源的消耗和二氧化碳的排放。本文阐述了反应性镁基工业固体废物、镁基水泥和含镁材料碳酸化等三种有趣的技术,指出了开发新型镁基胶凝材料的必要性。在未来,将富镁工业固体废物碳化或与活性氧化镁结合,应用于软土地基改良和混凝土制造等各个建筑领域,将是利用工业固体废物生产高价值产品的一条很有前途的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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