Toward process-based inventory data for Portland clinker substitutes

Abstract The cement industry must produce lower carbon cements to meet its 2050 climate goals. A key low-cost strategy to achieve this is to substitute Portland clinker in cement with lower carbon materials. However, high-quality inventory data for clinker substitutes are poorly available, which limits the application of life cycle assessment (LCA) to quantify the carbon footprints of cements containing them. Here, we report the state-of-the-art inventory data for clinker substitutes, disaggregating them by unit process to facilitate comparison, improve proxy data selection, and identify gaps to inform future data collection efforts. Cradle-to-gate greenhouse gas emissions for European production of the clinker substitutes and carbon footprints of composite cements defined in EN 197 are calculated. Overall, we find the degree of clinker substitution, rather than the processing of clinker substitutes, is more impactful for producing low carbon footprint cements. This work can improve the transparency of LCA studies of concrete materials, verify commercial data, and inform technology development and business decisions related to the concrete value chain.

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Publication Details

Journal
Journal of Industrial Ecology
Published
2026-09-18
DOI
https://doi.org/10.1007/s44498-026-00186-x
Primary Topic
Concrete and Cement Materials Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Toward process-based inventory data for Portland clinker substitutes

Rupert J. Myers, Wilson Ricardo Leal da Silva, Paul Fennell, Pippa Edwards
Journal of Industrial Ecology
Concrete and Cement Materials Research
article

Toward process-based inventory data for Portland clinker substitutes

Rupert J. Myers, Wilson Ricardo Leal da Silva, Paul Fennell, Pippa Edwards
article en

Abstract

Abstract The cement industry must produce lower carbon cements to meet its 2050 climate goals. A key low-cost strategy to achieve this is to substitute Portland clinker in cement with lower carbon materials. However, high-quality inventory data for clinker substitutes are poorly available, which limits the application of life cycle assessment (LCA) to quantify the carbon footprints of cements containing them. Here, we report the state-of-the-art inventory data for clinker substitutes, disaggregating them by unit process to facilitate comparison, improve proxy data selection, and identify gaps to inform future data collection efforts. Cradle-to-gate greenhouse gas emissions for European production of the clinker substitutes and carbon footprints of composite cements defined in EN 197 are calculated. Overall, we find the degree of clinker substitution, rather than the processing of clinker substitutes, is more impactful for producing low carbon footprint cements. This work can improve the transparency of LCA studies of concrete materials, verify commercial data, and inform technology development and business decisions related to the concrete value chain.

Journal of Industrial Ecology
H.B. Fuller (United States) (US), Imperial College London (GB)
Engineering and Physical Sciences Research Council, HORIZON EUROPE Marie Sklodowska-Curie Actions
Responsible consumption and production
Openalex Percentile: Top 17%
Concrete and Cement Materials Research
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Toward process-based inventory data for Portland clinker substitutes — Rupert J. Myers, Wilson Ricardo Leal da Silva, et al. · Journal of Industrial Ecology (2026) | TGRS Research Map | TGRS