A CO2 removal technology based on mineral carbonation and the stability of product carbon storage in a cement matrix

Author:

Ho Hsing-Jung,Izumi Yoshito,Iizuka Atsushi

Funder

Science and Technology Research Partnership for Sustainable Development

Japan International Cooperation Agency

Japan Science and Technology Agency

Publisher

Elsevier BV

Reference27 articles.

1. IPCC, 2023: Climate Change 2023: Synthesis Report. Contribution of Working Groups I, II and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change;Calvin,2023

2. CarbonCure, 2023. CarbonCure [WWW Document]. 〈https://www.carboncure.com/concrete-producers//〉 (Accessed 27 September 2023).

3. CTCN, 2015. Substantial GHG emissions reduction in the cement industry by using waste heat recovery combined with mineral carbon capture and utilization [WWW Document]. 〈https://www.ctc-n.org/technical-assistance/projects/substantial-ghg-emissions-reduction-cement-industry-using-waste-heat〉 (Accessed 7 September 2020).

4. Identification and occurrence of thaumasite in concrete a discussion for the 1965 hrb symposium on aggressive fluids;Erlin;Highw. Res. Board,1966

5. Global Cement and Concrete Association, 2021. The GCCA 2050 Cement and Concrete Industry Roadmap for Net Zero Concrete.

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