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金属矿山 ›› 2020, Vol. 50 ›› Issue (05): 95-100.

• 协同开采 • 上一篇    下一篇

硬岩铀矿无废协同开采模式及技术研究

薛希龙,戴 勇,范永亮,张 晓,刘德奇,张树文   

  1. 1. 南华大学资源环境与安全工程学院,湖南 衡阳 421001;2. 金川集团股份有限公司龙首矿,甘肃 金昌 737100;3. 重庆重科院注册安全工程师事务所有限公司,重庆 401331
  • 出版日期:2020-05-15 发布日期:2020-06-12
  • 基金资助:
    湖南省自然科学基金青年项目(编号:2019JJ50516),湖南省教育厅优秀青年项目(编号:19B486),金属矿山安全与健康国家重点实验室开放基金项目(编号:2019-JSKSSYS-008),南华大学大学生创新创业训练计划项目(编号:2018XJXZ301)。

Study on the Mode and Technology for Wasteless Synergistic Mining of Hard Rock Uranium Deposits

Xue Xilong,Dai Yong,Fan Yongliang,Zhang Xiao,Liu Deqi,Zhang Shuwen   

  1. 1. School of Resource Environment and Safety Engineering,University of South China,Hengyang 421001,China;2. Longshou Mine,Jinchuan Group Co., Ltd.,Jinchang 737100,China;3. Chongqing Institute of Safety Production Certified Safety Engineer Office Co., Ltd.,Chongqing 401331,China
  • Online:2020-05-15 Published:2020-06-12

摘要: 针对我国硬岩铀矿开采中效率低、损失大以及堆浸铀尾渣、含放射性废石处置难等问题,结合“协同开采”理念,提出了硬岩铀矿无废协同开采模式。该模式通过调整回采工程布置,优化充填与尾废处置 工艺流程,采取相应的工程技术措施,使采矿与堆浸、采矿与充填、充填与堆排在时间和空间上实现协同,达到安全高效开采铀矿资源和无废处置铀矿冶尾废的目的。以粤北某铀矿为例,分析了现有上向分层干式充 填法和堆浸、尾废处置工艺的特点,开展了堆浸铀尾渣充排试验,改进了采矿方法,设计了采—充—排协同工艺方案,并对其工程应用效果进行了评价。研究表明:灰砂比为1∶10和1∶14、质量浓度为76%的充填体, 能够满足该矿机械化上向分层充填法和地表同步固化堆排的要求;采用无废协同开采模式后,采场生产能力和回采率可分别提升至135 t/d和88.86%,含放射性废石达到地表零排放,堆浸铀尾渣通过井下胶结充填和地 表固化堆排得到了有效处置,矿山经济效益和环境质量得以明显提升。

关键词: 协同开采, 硬岩铀矿, 堆浸铀尾渣, 含放射性废石, 充填, 固化堆排

Abstract: Based on the problems of low efficiency,high loss ratio,as well as difficult disposal of heap leaching uranium tailings and radioactive waste rocks in hard rock uranium deposits,combined with the concept of “synergetic mining”,a wasteless synergetic mining mode is proposed.The basic principal of the synergetic mining model can be described as the mining and heap leaching,mining and backfilling,backfilling and cemented discharge operations in time and space are synergetic by adjusting the layouts of stoping engineering,backfilling and disposal of tailings and waste rocks processes,as well as the corresponding engineering measures,so as to exploit uranium deposits and dispose of solid wastes effectively.The characteristics of the present upward horizontal slicing dry filling mining method,heap leaching and waste discharge process in a uranium mine in Northern Guangdong were analyzed.The tests of backfilling and discharging based on heap leaching uranium tailings were carried out,and the mining method was optimized.Then,the synergetic process of mining, backfilling and discharging was designed and its engineering application effects were evaluated.The study results indicate that the backfill with a cement-sand ratio of 1∶10 and 1∶14 and a mass fraction of 76% can meet the requirements of mechanized upward horizontal slicing cemented filling mining method and solidified discharge.After adopting this model, the stope productivity of the mine up to 135 t/d,while the stoping rate 88.86%.By the application of the synergetic mining model proposed in this paper,there is no discharge of radioactive waste rocks,and heap leaching uranium tailings can be effectively disposed through backfilling and solidified discharge.The economic benefits and environmental quality of the mine are obviously improved.

Key words: Synergetic mining, Hard rock uranium deposits, Heap leaching uranium tailings, Radioactive waste rocks, Filling, Solidified discharge