TY - JOUR
T1 - Analysis and Comparison of CO2 Emission Mitigation Measures by the Cement Industry in Ibero-American Countries
AU - Chaves, Jéssica Fall Nogueira
AU - de Paula Vasques, Lucas
AU - da Silva Rêgo, João Henrique
AU - Sanjuán, Miguel Ángel
AU - Flores, Elena
AU - de Brito, Jorge
AU - Tobón, Jorge I.
AU - Savastano, Holmer
AU - Irassar, Edgardo Fabian
AU - Gonzalez, Viviana Letelier
AU - Ruiz, Jaime Carlos Gálvez
AU - Rojas, Moisés Frías
AU - Pacheco, João Nuno Noronha Ramos Vigário
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/12
Y1 - 2026/12
N2 - According to Global Cement and Concrete Association (GCCA), the cement industry is responsible for about 7–8% of all anthropogenic CO2 emissions released into the atmosphere as reported by GCCA et al. (CCUS in the Indian Cement Industry: A Review of CO2 Hubs and Storage Facilities, 2024). Clinker production results in high energy costs and the release of CO2 due to the calcination or decarbonation of its main raw material, limestone. In addition, energy is consumed to heat and maintain the temperature inside the rotary kiln, involving another significant CO2 release. This work presents a review of mitigation processes in seven Ibero-American countries (Argentina, Brazil, Chile, Colombia, Peru, Portugal and Spain) that guide the cement industry toward carbon-neutral production by 2030 and 2050. The mitigation parameters are analysed based on the global roadmap published by GCCA (Global Cement and Concrete Association), FICEM (Inter-American Cement Federation) and CEMBUREAU (European Cement Association), as well as the national roadmaps. The six main parameters identified across the countries’ roadmaps were the reduction of total direct CO2 emissions in cement production, thermal efficiency, electrical efficiency, the clinker factor, the use of alternative fuels and (re)carbonation. The adoption of biomass as an alternative fuel and the reduction of the clinker factor through the use of SCM were identified as the main strategies for lowering CO2 emissions from Portland cement production in all seven countries analysed. Despite current efforts, CO2 mitigation in the cement industry has limits. Achieving carbon neutrality by 2050 will require substantial investment in CO2 capture, storage and utilization technologies.
AB - According to Global Cement and Concrete Association (GCCA), the cement industry is responsible for about 7–8% of all anthropogenic CO2 emissions released into the atmosphere as reported by GCCA et al. (CCUS in the Indian Cement Industry: A Review of CO2 Hubs and Storage Facilities, 2024). Clinker production results in high energy costs and the release of CO2 due to the calcination or decarbonation of its main raw material, limestone. In addition, energy is consumed to heat and maintain the temperature inside the rotary kiln, involving another significant CO2 release. This work presents a review of mitigation processes in seven Ibero-American countries (Argentina, Brazil, Chile, Colombia, Peru, Portugal and Spain) that guide the cement industry toward carbon-neutral production by 2030 and 2050. The mitigation parameters are analysed based on the global roadmap published by GCCA (Global Cement and Concrete Association), FICEM (Inter-American Cement Federation) and CEMBUREAU (European Cement Association), as well as the national roadmaps. The six main parameters identified across the countries’ roadmaps were the reduction of total direct CO2 emissions in cement production, thermal efficiency, electrical efficiency, the clinker factor, the use of alternative fuels and (re)carbonation. The adoption of biomass as an alternative fuel and the reduction of the clinker factor through the use of SCM were identified as the main strategies for lowering CO2 emissions from Portland cement production in all seven countries analysed. Despite current efforts, CO2 mitigation in the cement industry has limits. Achieving carbon neutrality by 2050 will require substantial investment in CO2 capture, storage and utilization technologies.
KW - (Re)carbonation
KW - CO emissions
KW - Cement
KW - Climate change mitigation
KW - Ibero-American countries
KW - Roadmap
UR - https://www.scopus.com/pages/publications/105037436768
U2 - 10.1186/s40069-026-00901-9
DO - 10.1186/s40069-026-00901-9
M3 - Article
AN - SCOPUS:105037436768
SN - 1976-0485
VL - 20
JO - International Journal of Concrete Structures and Materials
JF - International Journal of Concrete Structures and Materials
IS - 1
M1 - 41
ER -