Knowledge Agora



Similar Articles

Title Synthesis of geopolymers derived from fly ash with an addition of perlite
ID_Doc 20344
Authors Baran, P; Nazarko, M; Wlosinska, E; Kanciruk, A; Zarebska, K
Title Synthesis of geopolymers derived from fly ash with an addition of perlite
Year 2021
Published
Abstract The study summarizes the results of fly ash-based geopolymer testing. Geopolymer samples were synthesized in a process involving two cycles. In the first cycle the activating agent was sodium hydroxide. The second method used the liquid residue from the synthesis of zeolites with the hydrothermal method. These processes were investigated to find out how the addition of perlite affects the mechanical properties of geopolymers (compressive strength, Young?s modulus, shear modulus, Poisson?s ratio) and their thermal expansion behaviour. It was shown that the addition of perlite enables the control of geopolymer elasticity, whilst only affecting the compressive strength to a minor degree. The conducted analysis showed that the 10% addition of perlite during the synthesis of geopolymers from fly ash causes an increase in the material elasticity, whilst reducing its compressive strength by 40%. It was also established that the application of the residual solution from the hydrothermal synthesis of zeolites produces geopolymer materials with improved heat-insulating properties, though with lower compressive strength than specimens obtained using NaOH. The proposed experiment confirms the possibility that fly ash can be effectively utilized to produce two useful materials (zeolites and geopolymers) without generating waste. This approach is fully in line with the principles of circular economy. ? 2021 Elsevier Ltd. All rights reserved.
PDF

Similar Articles

ID Score Article
24231 Zarebska, K; Zabierowski, P; Gazda-Grzywacz, M; Czuma, N; Baran, P Fly ash-based geopolymers with refractoriness properties(2022)Clean Technologies And Environmental Policy, 24, 7
5577 Petrus, HTBM; Olvianas, M; Shafiyurrahman, MF; Pratama, IGAAN; Jenie, SNA; Astuti, W; Nurpratama, MI; Ekaputri, JJ; Anggara, F Circular Economy of Coal Fly Ash and Silica Geothermal for Green Geopolymer: Characteristic and Kinetic Study(2022)Gels, 8, 4
23298 Baran, P; Sobala, J; Szczurowski, J; Zarebska, K Management of Fly Ash to Synthesise Geopolymers and Zeolites(2023)Energies, 16, 23
13486 Gómez-Casero, MA; De Dios-Arana, C; Bueno-Rodríguez, JS; Pérez-Villarejo, L; Eliche-Quesada, D Physical, mechanical and thermal properties of metakaolin-fly ash geopolymers(2022)
19552 Korniejenko, K; Figiela, B; Kozub, B; Azzopardi, B; Lach, M Environmental degradation of foamed geopolymers(2024)Continuum Mechanics And Thermodynamics, 36.0, 2
26478 You, SM; Ho, SW; Li, TT; Maneerung, T; Wang, CH Techno-economic analysis of geopolymer production from the coal fly ash with high iron oxide and calcium oxide contents(2019)
24088 Figiela, B; Brudny, K; Lin, WT; Korniejenko, K Investigation of Mechanical Properties and Microstructure of Construction- and Demolition-Waste-Based Geopolymers(2022)Journal Of Composites Science, 6, 7
15844 Ionescu, BA; Barbu, AM; Lazarescu, AV; Rada, S; Gabor, T; Florean, C The Influence of Substitution of Fly Ash with Marble Dust or Blast Furnace Slag on the Properties of the Alkali-Activated Geopolymer Paste(2023)Coatings, 13, 2
25870 Danish, A; Torres, AS; Moro, C; Salim, MU Hope or hype? Evaluating the environmental footprint of reclaimed fly ash in geopolymer production(2024)
10484 Degefu, DM; Liao, ZY; Berardi, U; Doan, H Salient parameters affecting the performance of foamed geopolymers as sustainable insulating materials(2021)
Scroll