田立新, 李守山, 任瑞晨. 煤泥磨矿分级浮选及高岭土回收试验研究[J]. 选煤技术, 2021, 49(1): 126-130. DOI: 10.16447/j.cnki.cpt.2021.01.018
    引用本文: 田立新, 李守山, 任瑞晨. 煤泥磨矿分级浮选及高岭土回收试验研究[J]. 选煤技术, 2021, 49(1): 126-130. DOI: 10.16447/j.cnki.cpt.2021.01.018
    TIAN Lixin, LI Shoushan, REN Ruichen. Experimental study on flotation of milled and classified fine slime and recovery of kaolinite[J]. Coal Preparation Technology, 2021, 49(1): 126-130. DOI: 10.16447/j.cnki.cpt.2021.01.018
    Citation: TIAN Lixin, LI Shoushan, REN Ruichen. Experimental study on flotation of milled and classified fine slime and recovery of kaolinite[J]. Coal Preparation Technology, 2021, 49(1): 126-130. DOI: 10.16447/j.cnki.cpt.2021.01.018

    煤泥磨矿分级浮选及高岭土回收试验研究

    Experimental study on flotation of milled and classified fine slime and recovery of kaolinite

    • 摘要: 为提高浮选精煤质量和产率,充分利用煤系伴生矿物,通过对林西矿选煤厂浮选入料进行磨矿解离和浮选试验研究,制定了“浮选入料磨矿+旋流器分级脱泥+旋流器底流浮选+旋流器溢流磁选”提纯回收高岭土工艺流程。该工艺控制浮选入料磨矿细度为>0.0374mm占60%,对解离后的浮选入料依次采用φ150、φ75、φ50、φ10 mm的小锥角旋流器进行分级脱泥,旋流器底流进行浮选,旋流器溢流进行1.3T高梯度磁选提纯,并对提纯产物采用980 ℃温度煅烧。试验结果表明:采用该工艺方法,既可以使煤泥中细粒级黏土得到有效分离,为煤泥浮选创造有利的条件,提高煤泥浮选效率和精煤质量,又可回收高岭土,从而为高灰超细煤泥的综合利用提供了一种新的技术途径。

       

      Abstract: For enhancing flotation concentrate quality and yield, and making full use of associated coal-measure mineral, a study is made by Linxi Coal Preparation Plant on flotation of fine coal after it is liberated through grinding.Based on study result, a combined process of flotation of milled feed +classification and desliming with cyclone + cyclone underflow flotation + magnetic separation of cyclone overflow for purification and recovery of kaolinite, is proposed.The milled flotation feed with the 0.0374 mm size accounting for 60% of the total is sent sequentially to the φ150, φ75, φ50 and φ10 mm small-conical-angle cyclones for classification and desliming.The underflow materials of the cyclones are then treated through flotation.The overflow of the φ10 mm cyclone is purified through high-gradient magnetic separation.The refined material is finally calcinated at a temperature of 980 ℃.Test result shows the use of the proposed process makes it possible to create not only a favorable flotation condition, improved flotation efficiency and concentrate quality because of the effective separation of fine clay, but also a possibility to recover kaolinite.The application of the combined process proves to be a new approach for comprehensive utilization of ultrafine high-ash coal.

       

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