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碳酸盐激发胶凝材料性能优化及其在铅锌矿尾砂胶结充填中的应用研究
引用本文:常悦,薛利国,李燕,赵志云. 碳酸盐激发胶凝材料性能优化及其在铅锌矿尾砂胶结充填中的应用研究[J]. 有色金属工程, 2022, 0(9)
作者姓名:常悦  薛利国  李燕  赵志云
作者单位:吕梁学院矿业工程系 山西吕梁,吕梁 市公安消防支队 山西吕梁,吕梁学院矿业工程系 山西吕梁,吕梁学院矿业工程系 山西吕梁
摘    要:胶结充填有助于推动绿色矿山建设。然而,作为胶结充填的主要胶凝材料,水泥的高成本限制了的胶结充填的应用,因此亟待开发研究新型的充填胶凝材料。基于此,本文利用添加剂优化改性Na2CO3激发高炉矿渣作为胶凝材料用于胶结充填。通过探索不同添加剂对胶凝材料水化特性、反应产物以及对胶结充填样品流动性、抗压强度和重金属固化效率的影响,得出适合于铅锌矿尾砂胶结充填的胶凝材料配比。试验结果表明,当添加5 wt% 煅烧白云石以及1 wt%碱式碳酸镁时,样品性能最优。当胶凝材料和尾砂质量比为1:6,料浆浓度为76%时,充填体3d和28d抗压强度分别为1.41 MPa和3.89 MPa,并且重金属的浸出量符合国家相关标准。

关 键 词:铅锌矿尾砂;碱激发材料;抗压强度;重金属;胶结充填
收稿时间:2022-03-07
修稿时间:2022-04-15

Research on the modification of carbonate-activated binders and the utilization in lead/zinc mine tailings based cemented paste backfill
CHANG Yue,XUE Liguo,LI Yan and ZHAO Zhiyun. Research on the modification of carbonate-activated binders and the utilization in lead/zinc mine tailings based cemented paste backfill[J]. Nonferrous Metals Engineering, 2022, 0(9)
Authors:CHANG Yue  XUE Liguo  LI Yan  ZHAO Zhiyun
Affiliation:Department of Mining Engineering,Lvliang University,Luliang City Public Security Fire Brigade,Department of Mining Engineering,Lvliang University,Department of Mining Engineering,Lvliang University
Abstract:Cemented paste backfill promotes the construction of green mine. However, as the main binder in CPB, the high cost of OPC limits the large-scale application of CPB. Thus, low cost binders are needed. In this work, Na2CO3-activated blast furnace slag modified by different additives was used in CPB. The influence of additives on the properties of binder was investigated, including binder hydration, hydration products, flowability, compressive strength and heavy metals immobilization. The test results showed that mix proportion of binders with the best performance was found when adding 5 wt% calcined dolomite and 1 wt% hydromagnesite. When the mass ratio of cementitious material to tailings was 1:6 and the slurry concentration was 76%, the com-pressive strength of backfill in 3d and 28d was 4.41 MPa and 3.89 MPa, respectively. Besides, heavy metals can be immobilized effec-tively.
Keywords:lead-zinc tailings   alkali activated binders   compressive strength   heavy metals   cemented paste backfill
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