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Elaboration of geopolymer binders from poor kaolin and dam sludge waste

机译:从贫瘠的高岭土和大坝污泥中精制地聚合物粘合剂

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摘要

The aim of this study is to synthesize geopolymer binders as an ecological alternative for conventional cement. It is intended to have geopolymer binders with molecular composition close to (4SiO2.Al2O3.K2O). They were obtained from Algerian poor natural kaolin and dam sludge after calcination at 800 °C. The mixture was attacked by KOH-alkaline solution of 8M and dried in an oven to 40 °C. Fluorescence X analysis, X-ray Diffraction, Thermal Analysis, Infrared analysis, BET technique and Scanning Electronic Microscopy were used to characterize the synthesized geopolymer. Mechanical tests of pure paste were carried out on cylindrical specimens of 20mm diameter and 20mm height to evaluate the mechanical performance of these geopolymers. The results showed that the elaborated products were composed from an amorphous phase of geopolymer molecules with other crystallized phases of aluminosilicates. The infrared analysis revealed functional groups of (–Si-O-Al- and -Si-O-Si-), which could testify to the formation of geopolymer binders. The mechanical test results indicated that these geopolymers have a compressive strength of over 33 MPa after 28 days of hardening.
机译:这项研究的目的是合成作为常规水泥的生态替代品的地聚合物粘合剂。打算使用分子组成接近(4SiO2.Al2O3.K2O)的地质聚合物粘合剂。它们是在800°C煅烧后从阿尔及利亚贫瘠的天然高岭土和大坝污泥中获得的。将混合物用8M的KOH-碱性溶液侵蚀,并在烘箱中干燥至40℃。使用荧光X分析,X射线衍射,热分析,红外分析,BET技术和扫描电子显微镜来表征合成的地质聚合物。对直径为20mm且高度为20mm的圆柱形试样进行纯浆料的机械测试,以评估这些地质聚合物的机械性能。结果表明,精制产物由地聚合物分子的无定形相与铝硅酸盐的其他结晶相组成。红外分析显示(-Si-O-Al-和-Si-O-Si-)的官能团,可以证明形成了地质聚合物粘合剂。力学测试结果表明,硬化28天后,这些地质聚合物的抗压强度超过33 MPa。

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