Properties and hydration mechanism of eco-friendly cementitious material prepared using coal gasification slag and circulating fluidized bed fly ash

被引:2
|
作者
Ma, Zhibin [1 ]
Sun, Yajuan [1 ]
Duan, Siyu [1 ]
Zhou, Xinxing [1 ]
Lu, Guangjun [1 ]
Liu, Jinyan [2 ]
Wu, Haibin [1 ]
Guo, Yanxia [1 ]
机构
[1] Shanxi Univ, Inst Resources & Environm Engn, Taiyuan 030006, Peoples R China
[2] Shanxi Univ, Sch Elect Power Civil Engn & Architecture, Taiyuan 030006, Peoples R China
基金
中国国家自然科学基金;
关键词
Coal gasification slag; Circulating fluidized bed fly ash; Eco-friendly cementitious materials; Synergistic hydration mechanism; Mechanical property;
D O I
10.1016/j.conbuildmat.2024.135581
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Coal gasification slag (CGS) and circulating fluidized bed fly ash (CFBFA) are industrial solid wastes discharged from coal utilization process. They are difficult to be reused as secondary resources and stockpiled on the land in large numbers, which threatens local ecological environment. In this study, they were employed to prepare an eco-friendly cementitious material under the activation of the ordinary Portland cement (OPC). The binary cementitious systems of OPC-CGS (CS) and OPC-CFBFA (CF) and the ternary cementitious system of OPC-CGSCFBFA (CSF) were designed to reveal the role of the wastes in the properties of cementitious materials. The workability, mechanical property, and hydration mechanism of these systems were studied by using various methods. Results showed that in the binary cementitious system, the addition of CFBFA had an adverse effect on the flowability and shortened the setting time, whereas the CGS had a positive effect on the flowability and delayed the setting time. The compressive strengths of the binary cementitious systems were much lower than that of the P & sdot;O 42.5 cement because the potential hydration reactivity of the aluminosilicates in the two wastes cannot be well activated by the OPC in the binary systems. However, in the ternary cementitious system, their respective shortcomings were greatly improved. Not only the workability can meet the technical requirements of the P & sdot;O 42.5 cement, but also good mechanical properties were obtained. The 28 days and 90 days compressive strengths of the best recipe (40%OPC-40%CGS-20%CFBFA, denoted as CSF3) could reach 43.3 and 54.9 MPa, respectively. The formation of large amounts of the hydration products including the ettringite (AFt) and amorphous gels played an important contribution to the development of matrix strength. The combination of the CGS and the CFBFA in the ternary system exhibits a notable synergistic impact on the hydration process under the OPC activation. Furthermore, the composite cementitious materials had low autogenous shrinkage coefficients compared to the OPC. These findings not only provide a theoretical guidance for the large-scale consumption of the CGS and CFBFA, but also help to reduce CO2 emission in the construction field.
引用
收藏
页数:9
相关论文
共 50 条
  • [11] In-depth analysis of macro-properties and micro-mechanism of eco-friendly geopolymer based on typical circulating fluidized bed fly ash
    Li, Jian
    Ma, Zhibin
    Guo, Yanxia
    Feng, Zhuangbo
    [J]. JOURNAL OF BUILDING ENGINEERING, 2024, 95
  • [12] Hydration Properties of Circulating Fluidized Bed Fly Ash under Carbonation Condition
    Liu, Yang
    Li, Chi
    Gao, Yu
    Li, Shuanhu
    [J]. Jianzhu Cailiao Xuebao/Journal of Building Materials, 2024, 27 (09): : 837 - 845
  • [13] Effect of lime on the physical, mechanical, and hydration properties of circulating fluidized bed fly ash-blast furnace slag-based cementitious materials
    Lv, Jinzhuang
    Wang, Xingyi
    Yang, Jingchao
    He, Bin
    Wang, Xiaoyuan
    Han, Pengju
    [J]. CASE STUDIES IN CONSTRUCTION MATERIALS, 2024, 20
  • [14] Preparation and properties of a decarbonized coal gasification slag–fly ash filling material
    Xiaoping Shao
    Baowa Xu
    Renlong Tang
    Lang Liu
    Zhiyu Fang
    Chuang Tian
    Jianbo Ning
    Longqing Li
    [J]. Environmental Science and Pollution Research, 2023, 30 : 45015 - 45028
  • [15] Optimization of Ternary Activator for Enhancing Mechanical Properties of Carbonized Cementitious Material Based on Circulating Fluidized Bed Fly Ash
    Xu, Nuo
    Ma, Suxia
    Wang, Nana
    Feng, Yuchuan
    Liu, Yunqi
    Ren, Ke
    Bai, Shanshui
    [J]. PROCESSES, 2024, 12 (02)
  • [16] Cementitious properties and hydration mechanism of circulating fluidized bed combustion (CFBC) desulfurization ashes
    Li, Xiang-guo
    Chen, Quan-bin
    Huang, Kuai-zhong
    Ma, Bao-guo
    Wu, Bei
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2012, 36 : 182 - 187
  • [17] Study on pore and chemical structure characteristics of atmospheric circulating fluidized bed coal gasification fly ash
    Li, Jiawei
    Chen, Zhichao
    Li, Liankai
    Qiao, Yanyu
    Yuan, Zhenhua
    Zeng, Lingyan
    Li, Zhengqi
    [J]. JOURNAL OF CLEANER PRODUCTION, 2021, 308
  • [18] Preparation and properties of a decarbonized coal gasification slag-fly ash filling material
    Shao, Xiaoping
    Xu, Baowa
    Tang, Renlong
    Liu, Lang
    Fang, Zhiyu
    Tian, Chuang
    Ning, Jianbo
    Li, Longqing
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2023, 30 (15) : 45015 - 45028
  • [19] Heavy metals migration during the preparation and hydration of an eco-friendly steel slag-based cementitious material
    Wang, Xujiang
    Wang, Kun
    Li, Jingwei
    Wang, Wenlong
    Mao, Yanpeng
    Wu, Shuang
    Yang, Shizhao
    [J]. JOURNAL OF CLEANER PRODUCTION, 2021, 329 (329)
  • [20] Mechanical properties and hydration behaviour of circulating fluidised bed fly ash- ground granulated blast furnace slag-lime ecofriendly cementitious material
    Wang, Xingyi
    Wang, Xiaoyuan
    Lv, Jinzhuang
    Yang, Jingchao
    He, Bin
    Han, Pengju
    Bai, Xiaohong
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2023, 409