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March 4, 2026International Journal of Concrete Structures and Materials0 citationsOpen Access

A Proposal of Evaluation Method for Blended Cement Based on CO₂ Emissions and Compressive Strength

MHMin HanDSDong Kyun SuhTKTae Kyoung Ki

Key Points

  • The central aim is to propose an evaluation method that correlates CO2 emissions with the compressive strength of blended cements.
  • Develop a new index, carbon intensity per unit compressive strength (CIt.MPa).
  • Produce and test blended cements with ordinary Portland cement, ground granulated blast-furnace slag, and limestone powder.
  • Analyze the relationship between SCM content, CO2 emissions, and compressive strength.
  • CO2 emission factor decreased with increasing SCM content.
  • Compressive strength showed partial recovery due to the reactivity of slag powder.
  • The CIt.MPa index successfully differentiated between cements with similar strengths but lower emissions.

Abstract

The cement industry is a major contributor to global warming due to substantial CO₂ emissions, particularly during clinker production, the intermediate step in manufacturing Ordinary Portland Cement (OPC). While blended cements incorporating supplementary cementitious materials (SCMs) such as ground granulated blast-furnace slag powder (GGBS, SP) and limestone powder (LSP) have been used to reduce emissions, it remains difficult to directly compare the impact of reduced OPC content on both compressive strength and CO2 reduction. This study proposes a new index, carbon intensity per unit compressive strength (CIt.MPa), which integrates the CO2 emission factor of cement with the 28-day mortar compressive strength. To validate the concept, blended cements composed of OPC, SP, and LSP were produced and tested. Results show that while the CO2 emission factor decreased linearly with increasing SCM content, compressive strength was partially recovered due to the latent hydraulic reactivity of SP. The CIt.MPa index effectively differentiated cements with similar strength but lower carbon emissions, demonstrating its practical potential for concrete users in selecting eco-friendly cement. This approach provides a quantitative tool for balancing mechanical performance and sustainability, contributing to the development of greener concrete.

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Cite This Study

Han et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd2ad48f933b5eed94d7https://doi.org/10.1186/s40069-025-00865-2
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