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金属矿山 ›› 2019, Vol. 48 ›› Issue (11): 68-72.

• 矿物工程 • 上一篇    下一篇

研山铁矿超贫赤铁矿石选矿工艺优化研究

田艳红,周咏   

  1. 河北钢铁集团司家营研山铁矿有限公司,河北 唐山 063000
  • 出版日期:2019-11-15 发布日期:2020-01-03

Optimization of Beneficiation Process of Ultra-low-grade Hematite in Yanshan Iron Mine

Tian Yanhong,Zhou Yong   

  1. Hebei Iron and Steel Group Sijiaying Yanshan Iron Mine Co.,Ltd., Tangshan 063000, China
  • Online:2019-11-15 Published:2020-01-03

摘要: 研山铁矿地表超贫赤铁矿石选矿厂受矿石性质波动等因素的影响,工艺过程与生产指标稳定性差,为提高系统的稳定性,实现节能提质、降本增效目标,在进行了系统的工艺流程考察和工业试验基础上,进行了一系列的工艺技术优化:①将粗细粒分级旋流器沉砂嘴直径增大10 mm,使溢流与沉砂的产率比从35%∶65%优化为20%∶80%。②将一段磨矿分级系统的低铬钢球更换为高铬钢球,将[?]120 mm+[?]100 mm钢球变更为[?]100 mm+[?]80 mm+[?]60 mm钢球(级配2∶4∶2),沉砂嘴规格直径缩小10 mm情况下,球磨机内再无破碎或变形的小钢球,返砂比由450%降为250%~300%,球磨机处理能力提高约70 t/h。③将二段旋流器给矿渣浆泵由200ZJ-I-A65型更换为250ZJ-I-A65型,配套电机功率提高65 kW,二段球磨机装球率提高4个百分点情况下,旋流器组开启台数由5台调整为4台;在旋流器给矿压力提高20 kPa、给矿浓度下降9.99个百分点的情况下,旋流器分级效率提高了19.14个百分点,二段磨矿浓度显著提高3.74个百分点;球磨机在给矿-0.074 mm含量下降3.80个百分点的情况下,排矿-0.074 mm含量大幅度提高5.40个百分点;④通过限定螺旋溜槽的分选浓度、及时调整集矿滑块的位置显著改善了螺旋溜槽的分选效果;将浮选抑制剂苛化淀粉、捕收剂GK68一次性加入搅拌槽改为将苛化淀粉分别加入搅拌槽和扫选3浮选槽中、GK68分别加入搅拌槽和精选浮选槽中。经过上述多项工艺技术优化,综合精矿品位稳定在65%左右,精矿合格率由32%提高到80%以上,尾矿品位下降2个百分点以上,工艺优化效果显著。

关键词: 超贫赤铁矿石, 磨矿, 旋流器分级, 螺旋溜槽重选, 浮选

Abstract: The stability of production indexes and technological process of surface ultra-low-grade hematite in Yanshan Iron Mine concentrator is poor due to fluctuation of ore properties. A series of technological optimizations were conducted based on the technological process investigation and industrial tests, in order to improve the system stability and achieve the energy saving, quality-enhancing, cost-decreasing and benefit increasing. ①The dust-setting nozzle diameter of the coarse-fine classifying cyclone increased by 10 mm, optimizing the yield ratio of overflow and underflow from 35%:65% to 20%:80%. ②In the case of replacing the low-chromium steel ball of the first-stage grinding system with the high-chromium steel ball, changing the [?]120 mm+[?]100 mm steel ball to [?]100 mm+[?]80 mm+[?]60 mm steel ball(the gradation ratio is 2∶4∶2), and reducing the diameter of the dust-setting nozzle by 10 mm, no broken or deformed small steel balls were appeared in the ball mill and underflow-returning ratio was reduced from 450% to 250%~300%. In addition, the ball mill processing capacity increased by about 70 t/h. ③When the feeding slurry pump of second-stage cyclone was replaced by the type of 250ZJ-I-A65 instead of 200ZJ-I-A65, the supporting motor power increased by 65 kW and ball-containing of the second-stage ball mill increased by 4 percentage points, the open numbers of cyclone group adjusted from 5 to 4. On the condition that the pressure of the cyclone feeding increased by 20 kPa and the concentration of feeding decreased by 9.99 percentage points, the classification efficiency of the cyclone increased by 19.14 percentage points and the concentration of the second-stage grinding increased significantly by 3.74 percentage points. The content of -0.074 mm in discharge increased significantly by 5.40 percentage points when the content of -0.074 mm of feeding decreased by 3.80 percentage points. ④The separation effect of spiral chute was improved significantly by limiting the separation concentration of the spiral chute and adjusting the position of collecting slider in time. Caustic starch as flotation inhibitor and GK68 as flotation collector were added to the stirred tank at one time before. Now caustic starch is added to the stirred tank and the flotation tank of third-scavenging separately, and GK68 is added to the stirred tank and the cleaning flotation tank separately. After the optimization of various process technologies, the grade of total concentrate is stable at around 65% with the qualified rate of concentrate increasing from 32% to over 80%, and the grade of tailings reduced by more than 2 percentage points. The process optimization effect is remarkable.

Key words: Ultra-low-grade hematite, Grinding, Cyclone classification, Gravity separation by spiral chute, Flotation