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◆ Results in Engineering2026-03-23· Activated carbon

Synergistic effects of Albizia Procera leaf-derived activated carbon and curing regimes on CO2 sequestration and hardened properties of cementitious systems

Khaled M. Kharma, Shamsad Ahmad, Bashir Ahmed Johan, Rida Assaggaf, Karnan Manickavasakam, Mohammed A. Al-Huri, Mohammed A. Al-Osta, Ali H. Algozeeb, Wala A. Algozeeb, Md. Abdul Aziz

原始摘要(英文原文)· Original abstract
This study explores the possibility of using activated carbon (AC) made from Albizia Procera leaves in cement-based materials to improve their CO₂ sequestration capacity and engineering properties. AC was produced through single-step activation–carbonization approach using sodium bicarbonate and by pyrolyzing at 600 °C, resulting in a high surface area of 789 m²/g and a total pore volume of 0.53 cm³/g. Characterization of the AC using XRD, Raman spectroscopy, and FTIR confirmed that the produced AC is mainly amorphous with a turbostratic structure rich in oxygenated functional groups, making it effective for CO₂ adsorption. In order to examine the simultaneous effects of AC and curing regime, cement paste and mortar specimens containing 0 to 3 wt.% of AC were cured under three different conditions: water curing (WC) for 28 days, environmental carbonation curing (ECC; 3% CO₂, 60% RH) for 28 days, and pressurized carbonation curing (PCC; 100% CO₂ under 60 psi) for 24 h followed by 27 days of WC. Tests on the carbonation cured specimens were conducted to study the effect of admixing AC on the CO 2 sequestration capacity of cement paste, densification of microstructure of mortar and its mechanical properties and durability characteristics. XRD and TGA conducted on the paste specimens indicated a higher portlandite consumption and therefore a higher CaCO₃ formation confirming a sharp enhancement of CO₂ sequestration due to addition of AC. SEM images revealed evolution of a denser microstructure of mortar containing AC, especially in PCC specimens, that resulted in a better hardened property of the AC-admixed mortar. Incorporating 3% AC in cement paste and subjecting it to PCC sharply increased the formation of CaCO 3 in cement paste by >12 times compared with (WC) specimen without AC. The same combination of AC dosage and curing regime for the mortar mixture resulted in increased compressive strength by 31%, flexural strength by 67%, modulus of elasticity by 19%, electrical resistivity by 27%, and reduced water absorption by 43%. This indicates a substantial enhancement in CO 2 sequestration of cement paste and significant betterment in mechanical properties and durability characteristics of mortar, when the cementitious systems contained 3% AC and cured using PCC regime.
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Synergistic effects of Albizia Procera leaf-derived activated carbon and curing regimes on CO2 sequestration and hardened properties of cementitious systems — 科研速览 Science Skim