Geo-Biodiversity and Natural Patrimony Laboratory (GEOBIO), Scientific Institute, "Geophysics, Natural Patrimony and Green Chemistry" Research Center (GEOPAC), Mohammed V University in Rabat, Avenue Ibn Batouta, P.B. 703, 10106, Rabat, Agdal, Morocco.
Department of Physics, Faculty of Applied Science, Umm Al-Qura University, P.O. Box 715, Makkah, 21955, Saudi Arabia.
Environ Sci Pollut Res Int. 2023 Apr;30(19):54333-54350. doi: 10.1007/s11356-023-26495-3. Epub 2023 Mar 21.
Portland cement is the primary material in the field of construction. Despite its importance, its production remains an energy-consuming and polluting operation. Research on alternatives to Portland cement has become an international concern, and these alternatives include geopolymers. With the evolution of the research on geopolymers during the last decade, it is necessary to work on raw materials that are abundant in nature and less expensive and provide sustainable construction materials. The present paper reviews the research on the use of laterites as a precursor in synthesizing sustainable geopolymers. The effect of the nature of activators, the calcination temperature of laterites, and the effect of additives on the properties of laterite-based geopolymers are also examined. The characterization results of laterite-based geopolymers show that laterite is a promising precursor for synthesizing sustainable geopolymers with high physical-mechanical characteristics. Finally, perspectives and recommendations for advancing laterite-based geopolymers are discussed at the end of the paper.
波特兰水泥是建筑领域的主要材料。尽管它很重要,但它的生产仍然是一个能源消耗和污染的过程。研究波特兰水泥的替代品已经成为国际关注的焦点,这些替代品包括地聚合物。随着过去十年对地聚合物研究的发展,有必要研究在自然界中丰富、成本更低、提供可持续建筑材料的原材料。本文综述了利用红土作为合成可持续地聚合物的前体的研究。还研究了活化剂的性质、红土的煅烧温度以及添加剂对红土基地聚合物性能的影响。红土基地聚合物的特性研究结果表明,红土是合成具有高物理力学性能的可持续地聚合物的有前途的前体。最后,在本文的最后讨论了推进红土基地聚合物的展望和建议。