Optimal design and performance of eco-friendly materials stabilized with inorganic binder based on fluidized bed coal combustion fly ash and regenerated brick powder

被引:5
|
作者
Liu, Wenhuan [1 ,2 ]
Du, Renhao [1 ]
Zhang, Rui [1 ]
Zhao, Zhongzhong [1 ]
Zhang, Lu [1 ]
Li, Hui [1 ,2 ]
机构
[1] Xian Univ Architecture & Technol, Coll Mat Sci & Engn, Xian 710055, Shaanxi, Peoples R China
[2] Shaanxi Ecol Cement & Concrete Engn Technol Res Ct, Xian 710055, Shaanxi, Peoples R China
来源
关键词
Recycled brick powder; Fluidized bed coal combustion fly ash; Unconfined compressive strength; Bending tensile strength; Pozzolanic reaction; CONSTRUCTION WASTE;
D O I
10.1016/j.jobe.2022.105800
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The development of green and eco-friendly road engineering materials has become essential to achieving carbon emission reduction and sustainable development. In this study, recycled brick powder (RBP) from construction waste and fluidized bed coal combustion fly ash (FBCF) are combined to replace the traditional lime-fly ash diatomic material in order to produce eco-friendly materials stabilized with inorganic binder (EFMSIB) for roads. The results showed that, when the ratio of EFMSIB is m(RBP):m(FBCF):m(Aggregate) equals 7%:13%:80%, its 7d and 28d unconfined compressive strength are 3.4 MPa and 8.72 MPa, respectively, 180d compression rebound modulus is 1440 MPa, 180d bending tensile strength is 1.51 MPa, 28d mass loss rate is 1.87%, and the residual compressive strength was 93.36%, and all the properties reached the optimal values. The composite material of FBCF and RBP can complete the pozzolanic reaction to form ettringite (AFt) relatively quickly at the early stage of hydration, which promotes the development of the early strength of hydration products, resulting in the compressive strength of NT4 increased by 1.8 times compared with the reference sample. With the growth of the curing age, the active SiO2 and Al2O3 in the material react with CaO to produce hydrated calcium sil-icate, which promotes the development of the strength of the system in the later stage, resulting in the compressive strength of NT4 increased by 1.6 times compared with the reference sample. The prepared EFMSIB material has a better self-consolidation effect on heavy metals, and the leachate heavy metal ion concentration of NT4 can reach the standard of class III surface water.
引用
收藏
页数:18
相关论文
共 4 条
  • [1] Properties and hydration mechanism of eco-friendly cementitious material prepared using coal gasification slag and circulating fluidized bed fly ash
    Ma, Zhibin
    Sun, Yajuan
    Duan, Siyu
    Zhou, Xinxing
    Lu, Guangjun
    Liu, Jinyan
    Wu, Haibin
    Guo, Yanxia
    CONSTRUCTION AND BUILDING MATERIALS, 2024, 420
  • [2] 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
    JOURNAL OF BUILDING ENGINEERING, 2024, 95
  • [3] Mechanical properties, microstructure and life-cycle assessment of eco-friendly cementitious materials containing circulating fluidized bed fly ash and ground granulated blast furnace slag
    Guo, Wenhui
    Yao, Wu
    Liang, Guangwei
    Shi, Cheng
    She, Anming
    Wei, Yongqi
    JOURNAL OF BUILDING ENGINEERING, 2024, 95
  • [4] Eco-Friendly Production of Decorative Concrete Blocks Using Coal Fly Ash and Coconut Husk Fiber Admixtures: Mixture D-Optimal Design Optimization
    Banogbanog, Cherry Mae H.
    Absin, Roxell May M.
    Clarin, Monique G.
    Kee, Sheila P.
    Cubelo, Noel P.
    Dagoc, Lani Ruth P.
    Mabayo, Val Irvin F.
    Arazo, Renato O.
    ENGINEERING JOURNAL-THAILAND, 2024, 28 (07): : 1 - 11