Journal of Advanced Concrete Technology
Online ISSN : 1347-3913
ISSN-L : 1346-8014
Scientific paper
Extraction of Carbonation Rate from Depth Profile of Concrete Carbonation by using Pseudo-analytical Solution of Two-component Reaction-diffusion Equation
Tsuneki Ichikawa, Kazuko Haga, Kazuo Yamada
Author information
  • Tsuneki Ichikawa

    Hokkaido University, Japan.

  • Kazuko Haga

    Taiheiyo Consultant Co., Ltd., Kanda-Nishikicho, Tokyo, Japan.

  • Kazuo Yamada

    National Institute for Environmental Studies, Miharu, Fukushima, Japan.

Corresponding author

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2024 Volume 22 Issue 3 Pages 139-148

Details
  • Published: March 21, 2024 Received: September 20, 2023 Released on J-STAGE: March 21, 2024 Accepted: March 03, 2024 Advance online publication: - Revised: -
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Abstract

The accurate numerical solution of a one-dimensional two-component reaction-diffusion equation including a second-order chemical reaction between concrete constituents and carbon dioxide to generate carbonated products was approximated by a simple analytical function which was given as a function of the effective diffusion coefficient of CO2, the rate constant of CO2 absorption, and parameters determined by the initial and the boundary conditions of the system. The pseudo-analytical solution thus obtained showed that the depth profile of carbonation shifts in parallel with square-root of time, and the rate constant of carbonation is determined from the location where the amount of the carbonated product is a half of the maximum amount. Comparison of the pseudo-analytical solution with an observed depth profile of concrete carbonation makes it possible to directly extract the rate constant of concrete carbonation that is necessary for predicting the future progress of the carbonation.

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