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BULLETIN OF THE CHINESE CERAMIC SOCIETY ›› 2026, Vol. 45 ›› Issue (6): 2063-2074.DOI: 10.16552/j.cnki.issn1001-1625.2025.1151

• Solid Waste and Eco-Materials • Previous Articles     Next Articles

Influence of Carbonized Recycled Cement Concrete Powder on Performance of Foamed Concrete

HE Yanhui1,2(), WANG Huan3, ZOU Yong4, CHEN Cheng4, XU Peng3, HE Zhihao3,5,6()   

  1. 1.Ali Prefecture Transportation Bureau,Ali,859000,China
    2.Shaanxi Highway Tunnel Museum,Xi’an 710068,China
    3.School of Emergency Management,Xihua University,Chengdu 610039,China
    4.Shaanxi Xingtong Supervision and Consulting Co.,Ltd.,Xi’an 710061,China
    5.Sichuan Provincial Key Laboratory of Major Hazard Source Monitoring and Control,Chengdu 610046,China
    6.School of Resources and Environment,University of Electronic Science and Technology of China,Chengdu 611731,China
  • Received:2025-11-18 Revised:2025-12-13 Online:2026-06-15 Published:2026-07-14
  • Contact: HE Zhihao

Abstract:

Under the background of the “double carbon” target, the high energy consumption and high emission problems of the cement industry need to be solved urgently. The resource utilization of construction solid waste has become an important way for the development of low-carbon building materials. In this study, ordinary Portland cement was used as the matrix, and recycled cement concrete powder (RCCP) and carbonated recycled cement concrete powder (carbonated RCCP) were prepared by accelerated carbonation treatment. Foamed concrete was prepared by replacing cement with 0%, 20%, 40% and 60% (mass fraction) RCCP and carbonated RCCP respectively. The effect of carbonated RCCP on the workability, microstructure and thermal properties of foamed concrete was analyzed by fluidity, dry density, water absorption rate, compressive strength, XRD, TG-DSC, SEM, microCT and thermal conductivity coefficient tests. The results show that with the increase of RCCP substitution rate, the fluidity of slurry decreases. When the substitution rate is 60%, the fluidity of carbonated and uncarbonated samples decreases by about 8.0% and 11.0% respectively compared with the reference sample. With the increase of the substitution rate of carbonated RCCP, the compressive strength of sample increases first and then decreases. When the substitution rate is 20%, the 28 d compressive strength reaches the peak value, which is 6.3% higher than that of RCCP sample. With the increase of RCCP substitution rate, the porosity increases, the thermal conductivity performance is improved. When the substitution rate of carbonated RCCP is 60%, the thermal conductivity is 6.8% lower than that of RCCP sample.

Key words: foamed concrete, recycled cement concrete powder, carbonation, mechanical property, thermal insulation property

CLC Number: