杨平, 梁国栋, 于贵生, 张学权, 段滔. 粉煤灰胶体隔离控制技术在花山矿复杂火区中的应用[J]. 煤矿安全, 2020, 51(8): 82-86.
    引用本文: 杨平, 梁国栋, 于贵生, 张学权, 段滔. 粉煤灰胶体隔离控制技术在花山矿复杂火区中的应用[J]. 煤矿安全, 2020, 51(8): 82-86.
    YANG Ping, LIANG Guodong, YU Guisheng, ZHANG Xuequan, DUAN Tao. Application of Fly Ash Colloid Isolation Control Technology in Complex Fire Area of Huashan Mine[J]. Safety in Coal Mines, 2020, 51(8): 82-86.
    Citation: YANG Ping, LIANG Guodong, YU Guisheng, ZHANG Xuequan, DUAN Tao. Application of Fly Ash Colloid Isolation Control Technology in Complex Fire Area of Huashan Mine[J]. Safety in Coal Mines, 2020, 51(8): 82-86.

    粉煤灰胶体隔离控制技术在花山矿复杂火区中的应用

    Application of Fly Ash Colloid Isolation Control Technology in Complex Fire Area of Huashan Mine

    • 摘要: 攀枝花花山煤矿4238工作面火灾先后采用整个四采区大范围封闭、逐步缩封火区相关联巷道、火区灌注液态二氧化碳降温、无机材料充填等方法进行治理,但均未有效控制火情,随着时间推移,火势逐步向上部蔓延,而后发展成+1 030水平四采火区。针对该种极复杂火区,提出分区隔离控制技术,即以电厂燃烧废物资源利用化粉煤灰为主要原料形成的降温、惰化、堵漏效果显著的粉煤灰复合胶体为灌浆材料,通过施工辅助治理巷道,向4238工作面回风方向相关联主要巷道施工注浆钻孔,利用钻孔压注粉煤灰胶体堆积充填材料,将4238工作面火区与4236边上山及火区外围巷道隔离分区域控制,再对各分区逐一治理,最终4238工作面及采空区内CO消失,达到启封标准,取得阶段性灭火效果,结果表明:粉煤灰复合胶体隔离技术能够快速高效地处理大范围火区及处于扩散、蔓延状态的复杂火情。

       

      Abstract: The 4238 working face fire in Panzhihua Huashan Coal Mine has adopted methods such as large-scale sealing of the whole No.4 mining area, gradually shrinking and sealing roadway associated with the fire area, liquid carbon dioxide pouring cooling and cooling in the fire area, and inorganic material filling were successively adopted, but the fire was not effectively controlled, with the passage of time, the fire gradually spread to the upper working face, and later developed into+1 030 level 4# fire zone. Aiming at this kind of extremely complex fire area, a partition isolation control technique is proposed. The fly ash compound colloid, which is formed by using fly ash as the main raw material and has obvious cooling, inerting and plugging effect, is used as grouting material, by constructing auxiliary control roadway, constructing grouting drilling to the main roadway that is related to the direction of return air to 4238 working face, injecting fly ash colloidal filling material through drilling holes, isolating 4238 working face fire area from 4236 side uphill and fire area periphery roadway and then governing each partition one by one, and CO in the 4238 working face and goaf disappeared, reaching the standard of unsealing and achieving staged fire-fighting effect. The results show that the fly ash composite colloid isolation technology can be used to deal with the large area of fire and the complex fire in the state of diffusion and spread quickly and efficiently.

       

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