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Eco-Efficient Geopolymer Bricks Without Firing and Mechanical Pressing

Author

Listed:
  • Muhammad Hassan Javed

    (Civil Engineering Department, University of Engineering and Technology, Lahore 54890, Pakistan
    Communication and Works Department Punjab, Lahore 54000, Pakistan)

  • Qasim Shaukat Khan

    (Civil Engineering Department, University of Engineering and Technology, Lahore 54890, Pakistan)

  • Asad Ullah Qazi

    (Civil Engineering Department, University of Engineering and Technology, Lahore 54890, Pakistan)

  • Syed Minhaj Saleem Kazmi

    (School of Mechanics and Construction Engineering, Jinan University, Guangzhou 510632, China)

  • Muhammad Junaid Munir

    (School of Mechanics and Construction Engineering, Jinan University, Guangzhou 510632, China)

Abstract

Kiln-fired clay bricks are energy-intensive and carbon-heavy. This study develops and validates kiln-free, pressure-free, and ambient-cured geopolymer (GPM) bricks made from uncalcined clay and Class F fly ash. A two-stage experimental program screened 33 mixes (12–16 M NaOH and 396 cubes tested at 14–90 days) and then scaled six optimized mixes to 90 full-size bricks for mechanical, durability, and microstructural evaluation. Bricks with an optimal mix of 20–30% clay and 70–80% fly ash achieved a compressive strength of up to 32.5 MPa, satisfying ASTM C62 (for severe weathering) requirements. Relative to fired clay units, GPM bricks delivered +61% average compressive strength (up to +91%), +56.5% average modulus of rupture (up to +103%), 6–29% lower water absorption, and 42–84% higher UPV while their strength losses after 28-day immersion in 5% H 2 SO 4 or 3.5% NaCl were only ~3–5%. SEM confirmed a dense N-A-S-H gel matrix with reduced porosity. Eco-efficiency analysis showed ~95% lower embodied CO 2 (0.26–0.31 vs. 5.5 kg eCO 2 per brick) and ~35% lower cost per MPa of strength than fired clay bricks. The findings demonstrate a practical, low-carbon brick manufactured without mechanical pressing or heat curing, delivering verified performance and durability under ambient conditions.

Suggested Citation

  • Muhammad Hassan Javed & Qasim Shaukat Khan & Asad Ullah Qazi & Syed Minhaj Saleem Kazmi & Muhammad Junaid Munir, 2026. "Eco-Efficient Geopolymer Bricks Without Firing and Mechanical Pressing," Sustainability, MDPI, vol. 18(2), pages 1-26, January.
  • Handle: RePEc:gam:jsusta:v:18:y:2026:i:2:p:762-:d:1838562
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