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Investigating the synergistic effects of magnesia-coal slag based solid waste cementitious materials and its basic characteristics as a backfill material

胶凝的 水泥 抗压强度 城市固体废物 材料科学 石膏 硅酸盐水泥 磷石膏 废物管理 偏高岭土 钙矾石 水合硅酸钙 磨细高炉矿渣 浸出(土壤学) 原材料 粉煤灰 雪硅钙石 冶金 环境科学 复合材料 化学 工程类 有机化学 土壤科学 土壤水分
作者
Yang Pan,Lang Liu,Yonglu Suo,Huisheng Qu,Geng Xie,Caixin Zhang,Shunchun Deng,Yin Lv
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:880: 163209-163209 被引量:91
标识
DOI:10.1016/j.scitotenv.2023.163209
摘要

Applying solid waste resources as backfill material can reduce both the cost of backfill and the environmental problems caused by solid waste landfills. In this paper, the synergistic reaction effects of solid waste modified magnesia slag (MMS), coal gasification slag (CGS), and desulfurized gypsum (DG) as magnesium-coal slag based cementitious materials (MCC) and their preliminary feasibility as mining cementitious materials in synergy with coal gangue for the preparation of backfill materials are investigated. The results show that the order of the compressive strength of the cementitious systems is ternary system > binary system > monolithic system, which proves the existence of synergistic effect among MMS, CGS, and DG and determines the optimal dosing of each raw material in the ternary system. At early ages, the physical effect of CGS and the chemical effect of DG in the ternary system can promote the hydration reaction of MMS, but the synergistic effect between the three is weak; At later ages, a synergistic effect occurred among silica-aluminate depolymerization in CGS, dissolved sulfate from DG and hydration products from MMS, which promoted the production of more hydration products calcium-silicate(aluminum)-hydrate (C-S(A)-H) and AFt, and improved the compressive strength. In addition, the strength, fluidity and leaching of the backfill material prepared by MCC in collaboration with coal gangue can meet the preliminary feasibility for mine backfill. In the present work, the full solid waste MCC is developed to completely replace cement and use it to prepare backfill materials, which is of great importance to the comprehensive utilization of bulk solid waste, the reduction of backfill costs, and the enhancement of the economic and ecological interests of mines.
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