Open-access Carbonation and wetting of synthetic C-S-H with Ca/Si 0.83 and 1.5

Carbonatação e molhagem de C-S-H sintético 0,83 e 1,5 Ca/Si

Abstract

This study explores the carbonation and wetting kinetics of synthetic calcium silicate hydrate (C-S-H) with Ca/Si ratios of 0.83 and 1.5 using in-situ X-ray diffraction (XRD), in-situ attenuated total reflection Fourier-transform infrared spectroscopy (ATR-FTIR), and thermogravimetric analysis (TGA). In 0.83 C-S-H, XRD results reveal pure C-S-H phases with no portlandite or CaCO3 polymorphs, corroborating TGA findings. Minor changes suggest water incorporation. Conversely, 1.5 C-S-H exhibits distinct XRD patterns with portlandite peaks, indicating limited Ca(OH)2 reaction. ATR-FTIR spectra confirm carbonation in both, with distinct features. 1.5 C-S-H proved to be more susceptible to carbonation due to enhanced calcium availability. Despite portlandite presence, C-S-H rapidly reacts with CO2, likely due to its higher surface area. The study offers insights into C-S-H’s carbonation behavior and structural changes during CO2 exposure in the first 24h of reaction.

Keywords
C-S-H carbonation; In-situ monitoring; Low-calcium C-S-H; High-calcium C-S-H

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