Wang Yan, Wang Mengqi, Wang Hui, Dun Zhilin, Ren Lianwei
School of Energy and Environment Engineering, Zhongyuan University of Technology, Zhengzhou 450007, China.
School of Civil Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
Materials (Basel). 2023 Sep 5;16(18):6075. doi: 10.3390/ma16186075.
Combined with a strategic policy for the recycling of construction waste, this paper puts forward a programme for treating a goaf foundation with waste concrete powder, waste brick powder, and cement grout (BCP cement grout). The BCP cement grout is prepared by replacing part of the waste concrete powder with waste brick powder, and the changeable rule of the setting time, water separation rate, stone rate, and viscosity of the grout with different rates for replacement are studied. X-ray diffraction (XRD) and scanning electron microscopy (SEM) are carried out. The mineral composition is analyzed and the microscopic mechanism is studied. The results show that the ratio of BCP cement grout developed by the experiment is reasonable; the unit cost is less than 160 yuan/t, which is 40% lower than that of pure cement grout; and both a good economic effect and good environmental effect are obtained. It has the advantages of low water separation rate, high stone rate, and low viscosity. When the ratio of cement powder: waste concrete powder: waste brick powder is 3:5:2 or 3:6:1, the 28 d compressive strength of the stone body is more than 2 MPa, meeting the filling requirements for a goaf foundation. It is not only technically feasible but also economically reasonable to apply construction waste powder to fill the goaf foundation. Recycling and utilizing construction waste can also achieve the ecological restoration of mined-out areas, highlighting the ecological benefits.
结合建筑垃圾回收利用的战略政策,本文提出了一种用废弃混凝土粉、废弃砖粉和水泥浆(BCP水泥浆)处理采空区地基的方案。BCP水泥浆是通过用废弃砖粉替代部分废弃混凝土粉制备而成,研究了不同替代率下浆液的凝结时间、泌水率、结石率和粘度的变化规律。进行了X射线衍射(XRD)和扫描电子显微镜(SEM)分析。分析了矿物成分并研究了微观机理。结果表明,试验研制的BCP水泥浆配合比合理;单位成本低于160元/t,比纯水泥浆低40%;取得了良好的经济效果和环境效果。它具有泌水率低、结石率高、粘度低的优点。当水泥粉:废弃混凝土粉:废弃砖粉的比例为3:5:2或3:6:1时,结石体的28 d抗压强度大于2 MPa,满足采空区地基的充填要求。将建筑垃圾粉应用于采空区地基充填不仅技术可行,而且经济合理。回收利用建筑垃圾还可以实现矿区的生态修复,突出生态效益。