A laboratory investigation on the performance of South African acid producing gold mine tailings and its possible use in mine reclamation

S.P. Gcasamba, K. Ramasenya, S. Ekolu, V. Vadapalli
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引用次数: 2

Abstract

Abstract This paper presents the results of laboratory investigations conducted on gold mine tailings (GMT) to assess their chemical, mineralogical and geotechnical characteristics in view of assessing its suitability as an alternative backfilling solution in mine reclamation. Chemical characterization revealed that GMT is dominated by Si, Al, and Fe with notable amounts of Cr, Zr, Zn, Pb, Ce, As, Ba, Ni, V, Sr, Nd, Cu, U, and Co. Mineralogical characterization revealed a composition of silicate minerals with secondary minerals such as jarosite, goethite and hematite. GMT composites showed improved strength characteristics. The particle sizes of the tailings are capable of producing a good paste fill that will require lower water–cement ratio. Moreover, the plasticity of the tailings provide for a likelihood for shear resistance to sliding in fluvial conditions. Curing and addition of cement showed positive effects on the compressive strength and shear strength of the tailings. However, the effect of curing and cement addition on the compaction characteristics and permeability of the tailings were negligible. GMT showed favorable characteristics for use in mine backfilling; it would be interesting to evaluate higher cement ratios to improve the characteristics of the tailings.
南非产酸金矿尾矿的性能及其在矿山回收中的应用前景的实验室研究
摘要本文介绍了对金矿尾矿(GMT)的化学、矿物学和岩土力学特性的实验室研究结果,以评价其作为矿山复垦备选充填方案的适用性。化学表征表明,GMT以Si、Al和Fe为主,Cr、Zr、Zn、Pb、Ce、As、Ba、Ni、V、Sr、Nd、Cu、U和Co含量显著。矿物学表征表明,GMT主要由硅酸盐矿物组成,含黄钾铁矾、针铁矿和赤铁矿等次生矿物。GMT复合材料的强度特性得到改善。尾矿的粒径能够产生较低水灰比的良好膏体充填体。此外,尾矿的可塑性提供了在河流条件下抗剪切滑动的可能性。水泥的养护和掺入对尾矿的抗压强度和抗剪强度均有积极的影响。而养护和水泥掺量对尾砂压实特性和渗透性的影响可以忽略不计。GMT在矿山充填中表现出良好的使用特性;评价高水泥比对尾矿性能的改善具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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