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现代矿业 ›› 2026, Vol. 42 ›› Issue (04): 251-254.

• 实用技术 • 上一篇    

河北某铁矿细尾砂絮凝剂优选

马有力1 李 帅2 刘海山1   

  1. 1 .河北钢铁集团矿业有限公司司家营铁矿南区分公司;2.中南大学资源与安全工程学院
  • 出版日期:2026-04-25 发布日期:2026-05-28

Optimization and Selection of Flocculant for Fine Tailings in an Iron Mine in Hebei

  1. 1 .South Division Company of Sijiaying Iron Mine,Hebei Iron and Steel Group Mining Co.,Ltd.; 2.School of Resources and Safety Engineering,Central South University
  • Online:2026-04-25 Published:2026-05-28

摘要: 针对田兴铁矿超细尾砂充填系统缺乏设计依据、尾砂自然沉降效率低的难题,以类 似司家营铁矿尾砂为替代样品开展系统的絮凝沉降试验研究。在尾砂粒径分析与物化特性测定 的基础上,通过静态絮凝沉降比选、药剂添加量优化及动态浓密模拟验证,确定了适宜絮凝剂型 号、最佳掺量与关键工艺参数。结果表明:该尾砂属超细粒级,-38 μm 颗粒占比45 .26%,中值粒径 44.96 μm,自然沉降性能差;5 种絮凝剂静态筛选试验结果显示,阴离子型絮凝剂6920 效果最优,最 佳添加量为20 g/t;动态浓密试验进一步确定最佳单位面积处理量为0 .5 t/(h·m²),此时底流浓度达 70.1%,溢流水固含量为89 .2 ppm,扩散度14.5 cm,满足充填工艺要求。研究结果实现了高底流浓 度与低溢流水固含量的协同优化,显著提升了细尾砂浓缩效率并降低药剂消耗,为超细尾砂高效 浓密系统设计提供了关键参数支撑,对类似矿山充填工艺具有重要参考价值。

关键词: 尾砂, 静态絮凝沉降, 动态絮凝沉降

Abstract: In response to the challenges of the lack of design basis for the ultrafine tailings filling sys ⁃ tem and the low efficiency of natural sedimentation in the Tianxing Iron Mine,a systematic flocculation sedimentation experimental study was conducted using tailings similar to those from the Sijiaying Iron Mine as substitute samples.Based on particle size analysis and determination of physicochemical properties of the tailings,the appropriate flocculant type,optimal dosage,and key process parameters were determined through static flocculation sedimentation comparison,reagent dosage optimization,and dynamic thickening simulation validation.The results indicate that the tailings are ultrafine,with particles smaller than 38 μm accounting for 45.26%,a median particle size of 44.96 μm,and poor natural sedimentation performance. Static screening tests of five flocculants showed that the anionic flocculant 6920 performed best,with an optimal dosage of 20 g/t.Dynamic thickening tests further determined the optimal unit area processing ca ⁃ pacity to be 0.5 t/(h·m²),under which the underflow concentration reached 70.1%,the solid content of overflow water was 89.2 ppm,and the fluidity was 14.5 cm,meeting the requirements of the filling pro ⁃ cess.The research results achieved synergistic optimization of high underflow concentration and low solid content in overflow water,significantly improving the thickening efficiency of fine tailings while reducing reagent consumption.This provides key parameter support for the design of efficient thickening systems for ultrafine tailings and offers important reference value for similar mine filling processes.

Key words: tailings, static flocculation sedimentation, dynamic flocculation sedimentation