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作 者:张国庆[1] 张钦礼[1] 周碧辉[1] 王新民[1]
机构地区:[1]中南大学资源与安全工程学院,湖南长沙410083
出 处:《广西大学学报(自然科学版)》2013年第5期1223-1229,共7页Journal of Guangxi University(Natural Science Edition)
基 金:国家自然科学基金资助项目(2008BAB32B03)
摘 要:为解决华泰矿业有限公司地下采空区危害及煤矸石骨料不足的问题,通过现场调研、室内试验、理论分析,对煤矸石充填骨料替代品砂岩、页岩、钢渣的物化性能及其充填配比实验和胶结机理进行深入研究。结果表明,钢渣是合适的替代骨料,其胶结体具有较高的抗压和抗拉强度;推荐水泥:粉煤灰:钢渣=1:8:15,质量分数Cw=70%~72%,减水剂添加量为水泥与粉煤灰质量总和的0.5%~1.0%。应用于华泰矿业的结果表明,该技术是可行的,钢渣的利用率高达100%,充填体的抗压强度高达2.0MPa,顶板最大下沉量仅1.207mm,未发生地表塌陷,矿石回收率达82.37%。应用该技术可以充分回收“三下”煤炭资源,具有较高的经济效益。Through field investigation, laboratory concerning substitution of aggregate of coal gangue test and theoretical analysis, a feasibility study was carried out to figure out a solution for poten- tial hazards in mined-out areas owned by the Huatai Mining Corporation Ltd. and the problem of shortage of coal gangue aggregate faced by this mining enterprise. The physical-chemical properties, the proportion of filling materials and the cementing mechanism of filling alternatives including sand- stone, shale and steel slag were investigated. The results show that the steel slag, high in both com- pressive and tensile strength, is a suitable alternative. Recommended ratio is 1:8:15 (cement to fly ash to slag), with mass fraction being 70%- 72% , and the dosage of the adding reducing agent be- ing 0. 5% - 1.0% of the total mass of cement and fly ash. Application of this filling formula in Hua- tai Mining Corporation Ltd. proves its feasibility, with 100% steel slag utilization, 2. 0 MPa com- pressive strength, and 1. 207 millimeter maximum roof deflection. No defection is detected in the surface, and the recovery ratio is 82.37%. Application of this technique is therefore capable of re- leasing the "three underneath" coal resources to generate enormous economic benefit.
分 类 号:TD853.34[矿业工程—金属矿开采]
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