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金属矿山 ›› 2020, Vol. 50 ›› Issue (05): 137-143.

• 协同开采 • 上一篇    下一篇

金属矿露天坑与地下空区尾矿协同充填清洁生产

卢宏建,王奕仁,李成合,李 胜,李晓东,杜英男   

  1. 1. 华北理工大学矿业工程学院,河北 唐山 063210;2. 河北钢铁集团矿业有限公司石人沟铁矿,河北 唐山 063701
  • 出版日期:2020-05-15 发布日期:2020-06-12
  • 基金资助:
    河北省自然科学基金项目(编号:E2018209129)。

Tailings Synergetic Filling Cleaner Production of Open Pit and Underground Goaf in Metal Mine

Lu Hongjian, Wang Yiren,Li Chenghe,Li Sheng,Li Xiaodong,Du Yingnan   

  1. 1. College of Mine Engineering,North China University of Science and Technology,Tangshan 063210,China;2. Shirengou Iron Mine,Hebei Iron and Steel Mining Co.,Ltd.,Tangshan 063701, China
  • Online:2020-05-15 Published:2020-06-12

摘要: 针对露天坑和地下空区诱发地质灾害、尾矿库存在溃坝风险和破坏区域环境等问题,以金属矿露天转地下开采矿山工程为研究对象,结合阶段空场嗣后充填法开采,发明了不均匀尾矿充填体制作与取样装 置,基于流体弗劳德准则,结合现场原位取样力学试验,提出了考虑尾矿充填强度不均匀特性的强度计算方法;基于测量学与系统工程理论,提出了露天坑与地下空区三维信息提取和尾矿协同充填与排水技术;运用 流体力学和有限元理论构建了一次充填高度和挡墙构筑位置参数优化三维模型,形成了高效—材料再用—低成本轻型挡墙尾矿充填封闭技术。研究成果在石人沟铁矿得到应用,建成了原矿200万t/a的铁矿床露天转地 下开采尾矿充填清洁技术工程示范,取得的主要技术指标为尾矿综合利用率达到100%、嗣后充填成本25元/t、挡墙构筑效率0.016道/(人·时)、构筑成本606元/m2。突破了露天坑与地下空区尾矿协同充填技术瓶颈, 完善了矿山尾矿处置理论与技术,实现了尾矿零排放,消除了露天坑与地下空区安全隐患,推动了冶金矿山生态文明建设,加快了资源绿色开采进程。

关键词: 金属矿, 露天坑, 地下空区, 尾矿, 协同充填, 清洁生产

Abstract: In order to solve the problem of geological disaster induced by open pits and underground goafs,dam break and regional environment damage exist in the tailings of the tailings reservoir.Regarding the metal mine of open pit to underground project as the study object,combining the sublevel open stope with subsequent filling technology, innovatively invented a device for making and sampling tailings with uneven tailings.Based on the fluid Froude criterion,combined with in-situ sampling mechanical tests on the spot, a strength calculation method that takes into account the uneven characteristics of tailings filling strength was proposed.With surveying and system engineering theory,three-dimensional information extraction of open pits and underground empty areas,and synergetic filling and drainage technology of tailings are proposed;by using fluid mechanics and finite element theory,a three-dimensional model of primary filling height and retaining wall construction parameters is optimized to form an efficient-material reuse-low-cost light retaining wall tailings filling and closing technology.The study results have been applied in the Shirengou Iron Mine and the demonstration project of the tailings filling and cleaning technology for the open pit to underground mining of 2 million tons per year of iron ore has been built,the main technical indicators are obtained as:the comprehensive utilization rate of tailings is 100%,the subsequent filling cost is 25 RMB /t,the one construction efficiency of retaining wall needs 0.016 man-hour,and the construction cost is 606 RMB /m2,which solved the bottleneck of tailings co-filling technology in open pits and underground goafs,improved the theory and technology of mine tailings disposal,achieved zero emissions from tailings, eliminated safety hazards in open pits and underground goaf, promoted the ecological civilization construction of metallurgical mines,speeded up the process of resource green mining.

Key words: Metal mine, Open pit, Underground goaf, Tailings, Synergetic filling, Clearer production