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Cost-Effective Treatment of Hemihydrate Phosphogypsum and Phosphorous Slag as Cemented Paste Backfill Material for Underground Mine

机译:成本有效地治疗半水合磷酸磷膏和磷渣作为地下矿的胶水浆料回填材料

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摘要

The environmental pollution caused by the discharge of phosphogypsum (PG) and phosphorous slag (PS) is a common issue for all countries. In order to fully utilize hemihydrate PG (HPG) and PS and treat goafs in mines, the HPG and PS were used as cementitious materials for cemented paste backfill (CPB). The physical and chemical properties of HPG and PS were first analyzed, and then, the characteristics of CPB were evaluated through fluidity tests, gas detection, uniaxial compressive strength (UCS) tests, bleeding tests, and scanning electron microscopy (SEM). After this, the underground environmental impact of CPB-based HPG and PS was investigated through a dynamic leachability experiment. The results show that (1) the UCS of CPB increases with the increase of the HPG content and mass fraction, and the addition of 3% quicklime can eliminate CO2, H2S, and SO2 generated from the slurry of CPB-based HPG-PS; (2) the addition of 3% quicklime and 5% cement to the HPG-PS mixtures can offset the strength loss of CPB in the late curing stage; (3) the UCS of the recommended specimen reaches 1.15–3.32 MPa after curing from 7 to 28 days, with their slump values varying from 15 mm to 26 mm, and the bleeding rates between 0.87% and 1.15%, which can meet the technical requirements of mining methods; (4) the UCS of CPB is the result of the cohydration reaction of hemihydrate gypsum (HG) in HPG and active Al2O3 and SiO2 in PS; and (5) the leaching indexes meet Category IV of the Chinese Groundwater Quality Standard (DZ/T 0290-2015). The results of this investigation provide a cost-efficient way for the efficient mining of phosphate resources and the comprehensive utilization of HPG and PS.
机译:环境污染造成的磷石膏(PG)的排放和磷渣(PS)是所有国家的共同课题。为了充分利用半水合物PG(HPG)和PS和治疗采空区中矿井的HPG和PS被用作胶结糊回填(CPB)胶凝材料。 HPG和PS的物理和化学性质进行了首先分析,然后,CPB的特征通过流动性测试中,气体检测,单轴抗压强度(UCS)的测试中,测试出血进行了评价,和扫描电子显微镜(SEM)。在此之后,基于CPB-HPG和PS的地下环境的影响通过动态浸出实验研究。结果表明,(1)的CPB增加与HPG含量和质量分数的增加,并加入3%的生石灰可以消除CO 2,从基于CPB-HPG-PS的浆料生成H 2 S和SO 2的UCS; (2)在加入3%的生石灰和5%水泥的HPG-PS混合物可以抵消CPB的后期固化阶段的强度损失; (3)建议的试样达到1.15-3.32兆帕的UCS后7至28天固化,与他们的坍落度值不同的是15mm〜26毫米,和0.87%和1.15%之间的出血率,其可满足技术采矿方法的要求; (4)CPB的UCS是在HPG和活性Al2O3和SiO2中PS半水石膏(HG)的cohydration反应的结果; (5)对中国地下水质量标准(DZ / T 0290-2015)的浸出指标均达到IV类。本次调查的结果提供了磷矿资源的高效开采和HPG和PS的综合利用提供了经济高效的方式。

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