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The use of paste backfill to increase long-term mine stability and ore extraction: A theoretical study for illinois basin room and pillar coal mines.

机译:使用浆状回填来提高矿山的长期稳定性和矿石提取:对伊利诺伊州盆地房和立柱煤矿的理论研究。

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摘要

Research and experience using various types of mine backfill - hydraulic, rock, paste, and blended - has indicated several benefits to the mining industry. Backfill is a general term that refers to any waste material that is placed into underground mine workings. Paste backfill in particular has shown environmental and economic benefits. Paste fill is generally produced from total mine tailings, meaning that it can include waste rock, sands, and clay-sized particles. It also contains no free water, meaning that water will not flow freely through it after placement causing post filling shrinkage. These characteristics make it the most environmentally "friendly" backfill option currently available. In addition, paste backfill is non-segregating and stackable, containing about 80% solids by weight, and having the consistency of medium-slump concrete, containing a cementitious content. These characteristics make paste backfill the best option for post-mining ground control in room and pillar coal mines.;There are two main bodies of research regarding paste backfill. Thefirst studies its composition, application, and performance in past and present mining environments; the second studies its theoretical application for both mine support and waste disposal. While this research has provided much for the burgeoning technology of paste backfill, little has been done to investigate its economic application to the industry in room and pillar coal mines.;At present, surface disposal of waste is generally cheaper than underground disposal. The goal of this thesis is to initiate discourse investigating the hypothesis that paste backfill may be used in such a way as to allow for increased coal extraction, which may then not only cover the additional costs of underground waste disposal, but potentially increase overall mine profitability. Inherent to this discourse will be a consideration of the following issues:;• The potential for increased extraction.;• The preservationof long-term pillar stability.;• Improved floor stability.;• Diminished environmental impact at surface.;• The cost benefitsassociated with all of the above.;Data from three Illinois Basin room andpillar coal mines were collected and used for this thesis. Theoretical computer modeling using LaModel and Phase2, empirical analysis of mine stability, physical testing using simulated paste backfill models, and comparative cost analyses considering current and hypothetical mining scenarios were conducted to identify these potential benefits and their consequences, both theoretical and practical.
机译:使用各种类型的矿山回填物(水力,岩石,浆糊和混合矿物质)的研究和经验表明,采矿业具有许多好处。回填是一个通用术语,是指放入地下矿山作业中的所有废料。浆状回填尤其显示出环境和经济效益。糊状填充物通常是由总的矿山尾矿产生的,这意味着它可以包括废石,沙子和粘土大小的颗粒。它也不含游离水,这意味着放置后水不会自由流过,从而导致后期填充收缩。这些特性使其成为当前可用的最环保的“回填”选项。另外,糊料回填物是不离析和可堆叠的,包含约80重量%的固体,并且具有中等坍落度混凝土的稠度,包含水泥含量。这些特性使浆体回填成为机房和支柱煤矿开采后地面控制的最佳选择。;关于浆体回填的研究有两个主要方面。首先,研究其在过去和现在的采矿环境中的组成,应用和性能;第二部分研究了其在防雷和废物处置方面的理论应用。尽管这项研究为糊状回填的新兴技术提供了很多东西,但对于在房间和支柱煤矿中对其在工业中的经济应用进行研究,却鲜有研究。目前,废物的表面处理通常比地下处理便宜。本论文的目的是开始进行话语调查,即使用浆糊回填以增加采煤量这样一种假设,这不仅可以覆盖地下废物处置的额外成本,而且还可能提高矿山的总体盈利能力。讨论的固有内容是要考虑以下问题:;•开采量增加的潜力;;•长期支柱稳定性的保持;;•地板稳定性的改善;;•减少地面对环境的影响;;•相关的成本收益收集了来自伊利诺伊盆地三处矿室和支柱煤矿的数据,并将其用于本论文。进行了使用LaModel和Phase2进行理论计算机建模,对矿山稳定性进行实证分析,使用模拟浆料回填模型进行物理测试以及考虑当前和假设采矿情景的比较成本分析,以识别这些潜在的收益及其后果,包括理论上的和实际的。

著录项

  • 作者

    Benton, Donovan.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Engineering Mining.
  • 学位 M.S.
  • 年度 2013
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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