Zhang Wei, Liu Xiaoming, Zhang Zengqi, Wang Yaguang, Xue Yang, Hao Xiansheng, Lu Yang
State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, Beijing 100083, China.
School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Materials (Basel). 2021 Oct 12;14(20):6004. doi: 10.3390/ma14206004.
Circulating fluidized bed (CFB) fly ash is a by-product from CFB power generation, which is hard to utilize in cement because it contains f-CaO and SO. This work aims to explore the mechanism of the shrinkage compensation of free-CaO (f-CaO) and the autoclaved hydration characteristics and environmental performance of CFB fly ash mixed cementitious materials (CMM). In this work, long-term volume stability of CMM is improved with the addition of CFBFA. These findings suggest that the compressive strength of sample CMM0.5 is the highest under both standard condition (67.21 MPa) and autoclaved condition (89.56 MPa). Meanwhile, the expansion rate (0.0207%) of sample CMM0.5 is the lowest, which proves the shrinkage compensation effect of f-CaO in CFBFA. The main hydration products of CMM0.5 are CaSiO•HO (C-S-H) gel, CaAlSiO(OH)•HO (C-A-S-H) gel and Ca(OH). In addition, the high polymerization degree of [Si(Al)O] and the densified microstructure are presented at the sample CMM0.5. The leaching results indicates that the heavy metals in CMM0.5 satisfies the WHO standards for drinking water due to physical encapsulation and charge balance. Therefore, this investigation provides a novel method of using CFB fly ash in cement.
循环流化床(CFB)粉煤灰是CFB发电的副产品,由于其含有游离氧化钙(f-CaO)和硫,难以在水泥中利用。本工作旨在探究游离氧化钙(f-CaO)的收缩补偿机理以及CFB粉煤灰混合胶凝材料(CMM)的蒸压水化特性和环境性能。在本工作中,通过添加CFB粉煤灰提高了CMM的长期体积稳定性。这些结果表明,样品CMM0.5在标准条件(67.21MPa)和蒸压条件(89.56MPa)下的抗压强度最高。同时,样品CMM0.5的膨胀率(0.0207%)最低,这证明了CFB粉煤灰中f-CaO的收缩补偿作用。CMM0.5的主要水化产物为硅酸钙水合物(C-S-H)凝胶、铝硅酸钙氢氧化物(C-A-S-H)凝胶和氢氧化钙。此外,样品CMM0.5呈现出[Si(Al)O]的高聚合度和致密的微观结构。浸出结果表明,由于物理包裹和电荷平衡,CMM0.5中的重金属符合世界卫生组织饮用水标准。因此,本研究提供了一种在水泥中利用CFB粉煤灰的新方法。