Current Status of Research on Fill Mining Systems

Q3 Engineering
Wei Wang, Rui Zhang, Qi Huang, Siyu Liu, Yu Liu
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引用次数: 0

Abstract

With the rapid development of society, the demand for coal in production and daily life has been growing at an unprecedented rate. However, extensive coal mining has led to various environmental and safety issues. The gradual depletion of shallow mineral resources, the increasing depth of mining operations leading to more challenging mining environments, the severe pollution caused by the accumulation of large amounts of mining waste on the surface, and the continuous emphasis on green, environmentally friendly, and sustainable development concepts have necessitated effective solutions. In response to these challenges, the adoption of backfill mining technology has emerged as a viable approach. This paper offers a comprehensive overview and classification of the methods and mechanical systems utilized in backfill mining within coal mines. It provides a succinct explanation of the implementation of diverse backfilling methods in mining activities and the present state of various backfilling mechanical systems. This information can assist researchers and businesses in understanding the evolution of filling technology and serve as a crucial foundation for future research and innovation. An evaluation of Backfill Mining Method Patents and Backfill Mechanical System Patents and an Introduction to the Advantages and Disadvantages of Different Backfill Methods have been analyzed. Through the analysis and comparison of existing backfill methods, we can summarize the typical characteristics of each technique. Finally, we discuss the future development trends of backfill mining. Backfill mining can effectively support rock strata, control ground pressure activity, and protect surface flora and fauna. It can also improve the stress state of mining pillars and maximize resource recovery. Furthermore, it enables efficient handling of solid waste, reduces production costs, and achieves green and sustainable development. Each backfill mining system has its advantages and disadvantages, therefore, it is necessary to consider multiple factors comprehensively in order to choose the appropriate method.
填充采矿系统的研究现状
随着社会的快速发展,生产和生活对煤炭的需求以前所未有的速度增长。然而,大量的煤炭开采导致了各种环境和安全问题。浅层矿产资源逐渐枯竭、开采深度不断增加导致开采环境更加恶劣、大量采矿废料在地表堆积造成严重污染,以及对绿色、环保和可持续发展理念的不断强调,都需要有效的解决方案。为应对这些挑战,采用回填采矿技术已成为一种可行的方法。本文对煤矿回填采矿中使用的方法和机械系统进行了全面概述和分类。本文对煤矿回填采矿中使用的方法和机械系统进行了全面概述和分类,简明扼要地说明了采矿活动中各种回填方法的实施情况以及各种回填机械系统的现状。通过对现有回填方法的分析和比较,我们可以总结出每种技术的典型特征。回填采矿可以有效地支撑岩层,控制地压活动,保护地表动植物。回填采矿可以有效支撑岩层、控制地压活动、保护地表动植物,还可以改善矿柱的受力状态,最大限度地提高资源回收率。此外,它还能有效处理固体废弃物,降低生产成本,实现绿色可持续发展。每种回填采矿系统都有其优缺点,因此需要综合考虑多种因素,以选择合适的方法。
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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来源期刊
Recent Patents on Engineering
Recent Patents on Engineering Engineering-Engineering (all)
CiteScore
1.40
自引率
0.00%
发文量
100
期刊介绍: Recent Patents on Engineering publishes review articles by experts on recent patents in the major fields of engineering. A selection of important and recent patents on engineering is also included in the journal. The journal is essential reading for all researchers involved in engineering sciences.
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