Jin Weizhun, Chen Yiming, Lv Yajun, Jiang Linhua, Bai Weifeng, Zhang Kangjie, Song Caihong, Zhang Xianlei
College of Civil Engineering, Henan University of Engineering, Zhengzhou 451191, China.
Henan Provincial Technical Center for Ecology and Environment, Zhengzhou 450004, China.
Materials (Basel). 2024 Aug 2;17(15):3810. doi: 10.3390/ma17153810.
In order to reduce the negative impact on the environment caused by the massive accumulation of red mud (RM) and Yellow River sand (YRS), new alkali-excited granulated blast-furnace slag (GGBS)/RM/YRS (AGRY) geopolymer cementitious materials were prepared by combining RM and YRS with GGBS in different ratios and using sodium silicate as the alkali exciter. The effects of YRS dosage and different curing conditions on the mechanical properties, hydration products, and pore structure of cementitious materials were investigated and analyzed in terms of cost and carbon emissions. The results showed that when the dosage of YRS was 40%, the compressive strength of the prepared AGRY cementitious material could reach 48.8 MPa at 28 d under standard curing, which showed mechanical properties comparable to those of the cementitious material without YRS. The cementitious material has a more compact internal structure, and the combination of RM and YRS promotes the chemical reaction of Al and Si elements and generates the (N, C)-A-S-H gel products, which are the key to the strength enhancement of the cementitious material. In addition, the prepared cementitious material is only 90% of the cement cost for the same strength and has low carbon emission accounting for only 43% of the cement carbon emission. This study not only provides a new way for the resource utilization of RM and YRS, but also contributes an excellent new environmentally friendly material for the construction industry to achieve the goal of low carbon development.
为了减少赤泥(RM)和黄河砂(YRS)大量堆积对环境造成的负面影响,通过将RM和YRS与粒化高炉矿渣(GGBS)按不同比例混合,并使用硅酸钠作为碱激发剂,制备了新型碱激发GGBS/RM/YRS(AGRY)地聚合物胶凝材料。从成本和碳排放方面,研究并分析了YRS掺量和不同养护条件对胶凝材料力学性能、水化产物及孔结构的影响。结果表明,当YRS掺量为40%时,制备的AGRY胶凝材料在标准养护条件下28 d抗压强度可达48.8 MPa,其力学性能与不含YRS的胶凝材料相当。该胶凝材料内部结构更加致密,RM与YRS的组合促进了Al和Si元素的化学反应,生成了(N,C)-A-S-H凝胶产物,这是胶凝材料强度提高的关键。此外,制备的胶凝材料成本仅为相同强度水泥成本的90%,且碳排放低,仅占水泥碳排放的43%。本研究不仅为RM和YRS的资源利用提供了新途径,也为建筑行业实现低碳发展目标贡献了一种优良的新型环保材料。