Wielgus Natalia, Kubica Jan, Górski Marcin
Department of Structural Engineering, Faculty of Civil Engineering, The Silesian University of Technology, 44-100 Gliwice, Poland.
Polymers (Basel). 2021 Jul 30;13(15):2527. doi: 10.3390/polym13152527.
This paper presents novel research on a fluidized bed combustion (FBC) fly ash-based geopolymer as a contribution to the problem of FBC fly ash disposal, and a proposal for a new geopolymer composition-an environmentally friendly material that is possible to use in construction. Geopolymer samples of various composition (containing FBC fly ash as the main raw material, metakaolin and CRT glass as additional components, and sodium silicate and sodium hydroxide as activators) were subjected to flexural and compressive strength tests. An investigation on the effect of the demolding time was carried out on one selected mixture. The test showed that both the composition and the demolding time have a decisive influence on the basic mechanical properties. A mixture containing FBC fly ash to metakaolin in a mass ratio of 3:1, removed from the mold after 14 days, was found to be the best in terms of the mechanical parameters expected from a material that could be used in construction, e.g., for the production of precast elements. According to the results obtained, FBC fly ash is a promising and environmentally friendly raw material for the production of geopolymer, with good mechanical properties and low density. Moreover, a high compressive strength can be obtained by curing the geopolymer at ambient temperature.
本文介绍了关于基于流化床燃烧(FBC)飞灰的地质聚合物的新颖研究,作为对FBC飞灰处置问题的一种贡献,以及一种新型地质聚合物组合物的提议——一种可用于建筑的环保材料。对各种组成的地质聚合物样品(以FBC飞灰为主要原料,偏高岭土和阴极射线管玻璃为附加成分,硅酸钠和氢氧化钠为活化剂)进行了抗弯和抗压强度测试。对一种选定的混合物进行了脱模时间影响的研究。测试表明,组成和脱模时间对基本力学性能都有决定性影响。发现一种质量比为3:1的FBC飞灰与偏高岭土的混合物,在14天后脱模,就可用于建筑的材料(例如用于生产预制构件)所期望的力学参数而言是最佳的。根据所得结果,FBC飞灰是生产地质聚合物的一种有前景且环保的原材料,具有良好的力学性能和低密度。此外,通过在环境温度下养护地质聚合物可获得高抗压强度。