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复杂残矿资源中深孔爆破协同落矿采矿工艺

Medium-depth Hole Blasting Synergetic Caving Mining Process of Complicated Residual Ore Resources

  • 摘要: 针对高峰矿-200~-189 m水平下盘矿体的复杂开采技术条件,基于协同开采理念,设计上、下向扇形中深孔协同利用崩矿空间落矿嗣后充填采矿的回采方案。工业试验表明,与浅孔留矿嗣后充填采矿法相比,上、下向扇形中深孔协同利用崩矿空间落矿嗣后充填采矿法的矿房生产能力由195 t/d提高到420 t/d,贫化率由10%降低至5%,实现了高峰矿的安全高效回采,可为其他矿山类似的残矿资源回收提供参考。

     

    Abstract: In view of the complicated mining technical conditions of the -200~-189 m horizontal footwall orebody in Gaofeng mine, a subsequent filling mining scheme that upward and downward fan-shaped mediumdepth hole for synergetic utilize caving space for ore caving was designed based on the concept of synergetic mining. The industrial test shows that, compared with the mining method of shallow-hole shrinkage ore followed by subsequent filling, the production capacity of the stope of subsequent filling mining method that upward and downward fan-shaped medium-depth hole for synergetic utilize caving space for ore caving is increased from 195 t/d to 420 t/d, and the dilution rate is reduced from 10% to 5%, the safe and efficient mining of Gaofeng mine is realized, which can provide a reference for the similar residual ore resources recovery in other mines.

     

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