用于合成地聚合物的两种多哥粘土的物理化学和矿物学特征

Komla Mawoulikplim Anove, S. Tchegueni, K. A. Degbe, K. Fiaty, Moursalou Koriko, P. Drogui, G. Tchangbedji
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引用次数: 1

摘要

地聚合物是波特兰水泥的替代品,众所周知,它们对温室气体排放的贡献。寻找可以有效替代波特兰水泥的材料是一个挑战。正是在这种逻辑下,这项工作的目的是将多哥当地的两种粘土资源作为地聚合物的原料。通过x射线衍射(XRD)、傅里叶红外(FTIR)、热重(TGA)和元素分析(ICP-OES)等表征手段对粘土的理化性质进行了表征。结果表明,这些粘土含有高岭石,可用于制备地聚合物。经热处理后的粘土结晶相转化为活性更强的非晶态相,再经碱性溶液活化制备地聚合物材料。这些精心制作的材料被傅里叶变换红外分析,以确定所形成的键的类型。这些分析结果表明,这两种本地粘土很适合用于合成地聚合物。我们未来的工作将集中在固结的限制以及这些地聚合物材料的机械性能。
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Physico-Chemical and Mineralogical Characterizations of Two Togolese Clays for Geopolymer Synthesis
Geopolymers are an alternative to Portland cement, well known for their contribution to greenhouse gas emissions. Finding materials that can validly replace Portland cement is a challenge. It is in this logic that this work was undertaken with the objective of characterizing two local clay resources of Togo as raw materials for geopolymers. The physico-chemical properties of these clays were determined by characterization using X-ray diffraction (XRD), Fourier transform infrared (FTIR), thermogravimetric (TGA) and elemental analysis (ICP-OES). The results show that these clays contain kaolinite and therefore can be used in the formulation of geopolymers. The cha-racterized clays underwent heat treatments transforming the crystalline phases into more reactive amorphous phases and then were activated by an alkaline solution in order to formulate the geopolymer materials. These ela-borated materials were analyzed by Fourier transform infrared to identify the types of bonds formed. The results of these analyses show that these two local clays are well suited to be used in synthesizing geopolymers. Our future work will focus on the constraints of consolidation as well as the mechanical properties of these geopolymer materials.
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