Zhang Fawen, Li Yinyue, Zhang Jinhui, Gui Xin, Zhu Xiuhong, Zhao Changmin
College of Forestry, Henan Agricultural University, Zhengzhou, China.
Zhengzhou Ecological and Environmental Monitoring Center, Zhengzhou, China.
Heliyon. 2022 Sep 18;8(9):e10695. doi: 10.1016/j.heliyon.2022.e10695. eCollection 2022 Sep.
Slag-based cementitious material was synthesized from blast furnace slag, clinker, gypsum, and activator to replace cement in cemented paste backfill (CPB). We researched the influence of slag-based cementitious material dosages and curing times on the properties of CPB, including unconfined compressive strength tests, leachate toxicity and chemical speciation of heavy metal as well as microstructural tests and analyses. The results indicated that the addition of slag-based cementitious material improved the compressive strength of the CPB, which attained the compressive strength requirements (≥1.0 MPa) at 28 days. The leachate concentrations of Pb, Cr, Cu, and Cd in CPB decreased as the slag-based cementitious material dosage and curing period increased, which met the standard (GB 5085.3-2007). The dosage of 10% slag-based cementitious material could effectively immobilize the heavy metals in the tailings, and the immobilization performance was similar to that of 20% cement, which indicated the amount of slag-based cementitious material was only half the quantity of cement in CPB. Microstructural analysis showed the hydration products included calcium silicate hydrate, ettringite, and portlandite, which could enhance the bonding force between the tailing grains.
基于矿渣的胶凝材料由高炉矿渣、熟料、石膏和活化剂合成,用于替代胶结充填料浆(CPB)中的水泥。我们研究了基于矿渣的胶凝材料用量和养护时间对CPB性能的影响,包括无侧限抗压强度试验、渗滤液毒性和重金属化学形态以及微观结构试验和分析。结果表明,添加基于矿渣的胶凝材料提高了CPB的抗压强度,在28天时达到了抗压强度要求(≥1.0 MPa)。随着基于矿渣的胶凝材料用量和养护期的增加,CPB中Pb、Cr、Cu和Cd的渗滤液浓度降低,符合标准(GB 5085.3-2007)。10%基于矿渣的胶凝材料用量能够有效固定尾矿中的重金属,其固定性能与20%水泥相似,这表明在CPB中基于矿渣的胶凝材料用量仅为水泥用量的一半。微观结构分析表明,水化产物包括硅酸钙水化物、钙矾石和氢氧化钙,它们可以增强尾矿颗粒之间的粘结力。