Kóth János, Sinkó Katalin
Institute of Chemistry, Eötvös Lóránd University, H-1117 Budapest, Hungary.
Gels. 2023 Mar 4;9(3):196. doi: 10.3390/gels9030196.
In the present work, a new, low energy consumption sol-gel synthesis route has been developed for geopolymer composites. Instead of the typically published 0.1-1.0 Al/Si molar ratios, the efforts of this study concentrated on the realization of >2.5 Al/Si molar ratios in the composite systems. The higher Al molar ratio significantly improves the mechanical properties. A very important aim was also the recycling of industrial waste materials with attention to environmentally friendly requirements. The very dangerous, toxic red mud as a waste product of aluminum industrial fabrication was selected for reclamation. The structural investigation was carried out by Al MAS NMR, XRD, and thermal analysis. The structural examination has unambiguously proven the composite phases in both gel and solid systems. The characterization of composites was performed with mechanical strength and water solubility measurements.
在本研究中,已开发出一种用于地质聚合物复合材料的新型低能耗溶胶-凝胶合成路线。本研究并非采用通常报道的0.1-1.0的铝硅摩尔比,而是致力于在复合体系中实现大于2.5的铝硅摩尔比。较高的铝摩尔比显著改善了力学性能。一个非常重要的目标是关注环保要求,回收工业废料。选择极具危险性和毒性的铝工业制造废料赤泥进行回收利用。通过铝的固体核磁共振、X射线衍射和热分析进行结构研究。结构检测明确证实了凝胶和固体体系中的复合相。通过力学强度和水溶性测量对复合材料进行表征。