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Title: The Impact of the Amount of Water Used in Activation Solution and the Initial Temperature of Paste on the Rheological Behaviour and Structural Evolution of Metakaolin-Based Geopolymer Pastes
Authors: Vitola, Laura
Pundienė, Ina
Pranckevičienė, Jolanta
Bajare, Diana
Keywords: geopolymer
workability
compressive strength
initial temperature
Issue Date: 2020
Publisher: MDPI
Citation: Vitola, L.; Pundiene, I.; Pranckeviciene, J.; Bajare, D. The Impact of the Amount of Water Used in Activation Solution and the Initial Temperature of Paste on the Rheological Behaviour and Structural Evolution of Metakaolin-Based Geopolymer Pastes. Sustainability 2020, 12, 8216.
Series/Report no.: 12;19
Abstract: This study aimed to determine the impact of the initial temperature of the paste (from 5 °C to 35 °C) and the addition of water, which reflects a decrease in the molarity of activation solutions (AS) by diluting 10 M NaOH with distillate water, on the rheological properties of geopolymer pastes. Additionally, this resulted in changes to the physical–mechanical properties of geopolymers after curing. A higher amount of water in the AS composition and higher initial paste temperature led to an increase in the spread values up to 28% and decreases viscosity. A smaller amount of water in the AS composition and a higher initial paste temperature accelerated the speed of the geopolymer structure formation up to 1.5 times during the curing period, increased compressive strength and reduced apparent porosity and pore size. X-ray diffraction confirmed the compressive strength test results and revealed that the lower amount of water in the AS and the higher initial paste temperature for the geopolymer preparation significantly affected the mineral formation and physical and mechanical properties of the samples.
Description: This article belongs to the Special Issue Advanced Construction and Architecture 2020
URI: http://dspace.vgtu.lt/handle/1/4101
ISSN: 2071-1050
Appears in Collections:Moksliniai straipsniai / Research articles

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