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The Engineering Performance of Glass Based Binders in Mine Backfill

机译:矿井回填玻璃粘合剂的工程性能

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The evolution of backfill technology is closely related to the advancement of modern mining methods and the development of new backfill technology continues to evolve at an increasing rate. The authors, after conducting extensive surveys of backfill practices in underground mines across Canada, have concluded that, because backfill operations employ large quantities of cement and experience large costs associated both with backfilling practice and cement use, opportunities exist for reducing backfill energy costs and enhancing the application of alternative cementing agents in backfill. Consequently, the authors have developed an alternate, equally effective and lower cost binder agent replacement for cement, and incorporated waste glass into the development of a lower cost backfill (glassfill). This paper presents the results of two design stages associated with the development of glassfill: strength development and flow performance. The advancement of this technology has reached a stage that should promote industrial implementation within the Canadian mining industry. A number of Canadian mining operations exhibit potential for plant optimization through possible binder source replacement, and might thus realize associated reductions in backfill and energy costs.
机译:回填技术的演变与现代采矿方法的进步密切相关,新的回填技术的发展继续以增加的速度发展。在加拿大在地下矿井中进行了广泛调查的作者结束了,因为回填业务采用大量水泥和经验与回填实践和水泥使用相关的大量成本,所以有机会减少回填能源成本和增强替代胶合剂在回填中的应用。因此,作者开发了替代,同样有效和更低的成本粘合剂替代水泥,并将废玻璃掺入较低成本回填(玻璃填充物)的开发中。本文介绍了与玻璃填充的开发相关的两个设计阶段的结果:力量发展和流动性能。该技术的进步已达到一个阶段,应该促进加拿大矿业业内的工业实施。许多加拿大挖掘操作通过可能的粘合剂源更换表现出植物优化的潜力,因此可能会实现相关的回填和能源成本的相关减少。

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