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Friday, 06 December 2019
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Raw materials & technologies, Applications

Link between gas diffusion and carbonation in hardened cement pastes

Friday, 15 November 2019

The influence of atmospheric carbonation on gas diffusion was investigated using four hardened cement pastes (CEM I, CEM III/A, CEM V/A, and a low-alkalinity binder) with common water-to-binder ratio (0.4).

The researchers measured the diffusivity of the non-carbonised and carbonised pastes with respect to helium and nitrogen. Source: Fabian – stock.adobe.com.
The researchers measured the diffusivity of the non-carbonised and carbonised pastes with respect to helium and nitrogen. Source: Fabian – stock.ad...

The diffusivity of the non‑carbonated and carbonated pastes with respect to helium and nitrogen was measured at different relative humidities. Carbonation decreased the diffusivity of the CEM I paste, whereas that of the other binders significantly increased after carbonation. These results show the competition between porosity clogging and cracking induced by carbonation.

Effect of the binder on carbonation

The consequences of carbonation are therefore believed to depend on the considered binder. Clogging dominates in ordinary Portland cement (OPC), leading to a decrease in its transport properties after carbonation; cracking dominates in blended cements, leading to a significant increase in its transport properties after carbonation.

The study is published in: Cement and Concrete Research Volume 123, September 2019, 105795.

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