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February 28, 2026Buildings1 citationsOpen Access

Cradle-to-Gate Assessment and Mitigation of Embodied Carbon in Commercial Buildings

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KRKhulood Al RifaieTATaher Abu-LebdehNRNihal Al Raees

Key Points

  • The aim is to assess and reduce embodied carbon in commercial buildings, focusing on material impact.
  • Analyzed architectural and structural documents for materials used.
  • Calculated cradle-to-gate embodied carbon for major components.
  • Conducted sensitivity analyses on material substitution.
  • Structural materials, like concrete and steel, are the primary sources of embodied emissions.
  • Substituting materials can reduce embodied carbon by 15–30% while keeping performance intact.

Abstract

According to the U.S. Environmental Protection Agency (2024), carbon dioxide is the leading greenhouse gas driving global warming. The building sector accounts for about 39% of global energy-related carbon emissions, with 11% from embodied carbon generated during material extraction, manufacturing, transport, and assembly. This study examines embodied carbon in the Harold L. Martin Sr. Engineering Research and Innovation Complex at North Carolina A&T State University, a four-story, 130,000 square-foot facility completed in 2021. Using architectural and structural documents, verified material quantities were analyzed to calculate cradle-to-gate embodied carbon (A1–A3 stages) for major components, including concrete, steel, glazing, and finishes. Results show structural materials, especially concrete and steel, dominate embodied emissions, followed by envelope systems. Sensitivity analyses indicate that substituting materials, such as recycled steel, low-carbon concrete, and bio-based finishes, can reduce total embodied carbon by 15–30% while maintaining performance.

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Cite This Study

Rifaie et al. (2026) studied this question.

synapsesocial.com/papers/69a286b80a974eb0d3c01d54https://doi.org/10.3390/buildings16050928
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