Enforced aqueous carbonation of heterogeneous cementitious waste fines: CO 2 uptake and performance as supplementary cementitious materials in Portland cement

Enforced carbonation of cementitious wastes is a strategy to mitigate CO2 emissions and generate reactive supplementary cementitious materials (SCMs), yet few studies have analyzed real sources. In this study, three heterogeneous wastes were investigated: hardened cement paste (HCP), concrete truck washout sludge (RCS), and young CDW fines (YCW). The hydrated cement content of the cementitious wastes was 87%, 62%, and 28%, respectively. Enforced aqueous carbonation (100% CO2, 0.02 L·min−1·g−1, L/S 10:1, 6 h) was applied. Carbonation degrees reached 99%, 76%, and 88%, while CO2 uptake was 372, 112, and 69 kg CO2/t. Specific surface area increased up to 156%, and mesoporosity doubled. Carbonated powders tested as SCMs at 30% clinker replacement delivered 27–34% strength gains at 7 days and 40–45% at 28 days above dilution, with RCS matching HCP performance. Carbonation degree alone was insufficient to assess carbonation performance; quantity of CaO available governs both sequestration efficiency and SCM quality.

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Publication Details

Journal
Journal of Sustainable Cement-Based Materials
Published
2026-09-17
DOI
https://doi.org/10.1080/21650373.2026.2730454
Primary Topic
Concrete and Cement Materials Research
Type
article
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Enforced aqueous carbonation of heterogeneous cementitious waste fines: CO 2 uptake and performance as supplementary cementitious materials in Portland cement

Mateus Zanovello, Sérgio C. Angulo
Journal of Sustainable Cement-Based Materials
Concrete and Cement Materials Research
article

Enforced aqueous carbonation of heterogeneous cementitious waste fines: CO 2 uptake and performance as supplementary cementitious materials in Portland cement

Mateus Zanovello, Sérgio C. Angulo
article en

Abstract

Enforced carbonation of cementitious wastes is a strategy to mitigate CO2 emissions and generate reactive supplementary cementitious materials (SCMs), yet few studies have analyzed real sources. In this study, three heterogeneous wastes were investigated: hardened cement paste (HCP), concrete truck washout sludge (RCS), and young CDW fines (YCW). The hydrated cement content of the cementitious wastes was 87%, 62%, and 28%, respectively. Enforced aqueous carbonation (100% CO2, 0.02 L·min−1·g−1, L/S 10:1, 6 h) was applied. Carbonation degrees reached 99%, 76%, and 88%, while CO2 uptake was 372, 112, and 69 kg CO2/t. Specific surface area increased up to 156%, and mesoporosity doubled. Carbonated powders tested as SCMs at 30% clinker replacement delivered 27–34% strength gains at 7 days and 40–45% at 28 days above dilution, with RCS matching HCP performance. Carbonation degree alone was insufficient to assess carbonation performance; quantity of CaO available governs both sequestration efficiency and SCM quality.

Journal of Sustainable Cement-Based Materials
Instituto Mauá de Tecnologia (BR), Universidade de São Paulo (BR)
Openalex Percentile: Top 17%
Concrete and Cement Materials Research
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Enforced aqueous carbonation of heterogeneous cementitious waste fines: CO 2 uptake and performance as supplementary cementitious materials in Portland cement — Mateus Zanovello, Sérgio C. Angulo · Journal of Sustainable Cement-Based Materials (2026) | TGRS Research Map | TGRS