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These noncrystalline and carbonated materials may be ideal for tissue ingrowth and potentially suitable for bone repair applications [64].
In carbonated materials, both the quantity of Friedel's salts and of chlorides bound by C S H decrease.
The carbonated materials can be readily landfilled without the concern of contaminant leaching, or utilized in various applications such as in construction.
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Open image in new window Fig. 8 FESEM images of the a ordinary Portland cement (Jo et al. 2014c) and b the cementitious material produced by hydrothermal synthesis method utilizing aqueous carbonated material.
The carbonated material produced from the aqueous carbonation was used for the hydrothermal synthesis of the cementitious material.
Open image in new window Fig. 2 The plausible model for the hydrothermal synthesis of the cementitious material utilizing carbonated material produced by the aqueous carbonation reaction.
However, the utilization of the carbonated material in producing the cementitious material has yet to be investigated adequately.
For carbonated cementitious materials, reduced porosity due to carbonation is considered for the oxygen diffusivity.
Here, chloride ingress has been investigated on sound and carbonated cementitious materials (cement pastes and concrete).
Initially, agricultural practices such as irrigation with saline water and soil liming by natural carbonated earth materials (marling) were considered as examples of chemical contamination that alter soil properties.
The materials were carbonated by exposure to accelerated conditions (1.5% CO2 and 65% RH) in laboratory.
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