碳化作用
偏高岭土
材料科学
煅烧
微观结构
水泥
三元运算
冶金
方解石
熟料(水泥)
球霰石
化学工程
硅酸铝
复合材料
矿物学
碳酸盐
石膏
多孔性
作者
A. Pachón- Montaño,L. González-Panicello,M.C. ALONSO,F. Puertas,M Roig-Flores,M. Palacios
标识
DOI:10.1016/j.conbuildmat.2026.147538
摘要
The aim of this study was to gain a deeper understanding of the carbonation resistance of binary and ternary calcined clay-blended cements, and to investigate how this resistance correlates with their microstructure and phase assemblage. A lower carbonation resistance was observed for calcined clay-containing cement pastes compared to OPC, which can be attributed to their lower contents of CaO reactive and portlandite. Keeping constant the clinker content of the blend, in limestone-calcined clay cements (LC 3 ) pastes, the increase of the amount of metakaolin increased their carbonation resistance. Additionally, the presence of limestone in the ternary blends, which promotes the formation of carboaluminate phases, appears to play a positive role in enhancing the carbonation resistance of the calcined clay-blended cements. After 6 months of exposure of the pastes to 1 wt% CO 2 , C-A-S-H formed in calcined clay blended cements suffered a substantial decomposition, leading to the formation of an aluminosilicate gel and a coarsening of the pore structure. In contrast, no significant decomposition of C-A-S-H was observed in the OPC pastes under the same conditions. Regarding the CaCO 3 polymorphism, calcite was the major polymorphism formed in all cases, although vaterite was also identified in both the binary and ternary calcined clay-blended cements.
科研通智能强力驱动
Strongly Powered by AbleSci AI