张凯, 刘友国. 基于湍流强化能量密度适配技术的煤泥浮选混合调浆研究[J]. 选煤技术, 2022, 50(3): 53-58. DOI: 10.16447/j.cnki.cpt.2022.03.009
    引用本文: 张凯, 刘友国. 基于湍流强化能量密度适配技术的煤泥浮选混合调浆研究[J]. 选煤技术, 2022, 50(3): 53-58. DOI: 10.16447/j.cnki.cpt.2022.03.009
    ZHANG Kai, LIU Youguo. Study of flotation pulp mixing and conditioning based on turbulent flow enhanced energy-density adaptation technology[J]. Coal Preparation Technology, 2022, 50(3): 53-58. DOI: 10.16447/j.cnki.cpt.2022.03.009
    Citation: ZHANG Kai, LIU Youguo. Study of flotation pulp mixing and conditioning based on turbulent flow enhanced energy-density adaptation technology[J]. Coal Preparation Technology, 2022, 50(3): 53-58. DOI: 10.16447/j.cnki.cpt.2022.03.009

    基于湍流强化能量密度适配技术的煤泥浮选混合调浆研究

    Study of flotation pulp mixing and conditioning based on turbulent flow enhanced energy-density adaptation technology

    • 摘要: 为进一步促进捕收剂在煤表面的定向吸附,增强煤表面疏水性,以湍流流体流动强化为切入点,采用旋流混合调质器实现了煤泥与药剂的充分作用,并研究了循环泵频率对煤泥单元浮选试验结果的影响。结果表明:调浆后的煤样表面疏水性、亲水官能团峰对应的强度、面积均有所增加,且以C—C/C—H基团代表的疏水官能团提升的幅度更大,表明了受限空间内流体调浆对强化煤泥与捕收剂油滴碰撞吸附具有积极影响;随着循环泵频率的增加,精煤产品的可燃体回收率、产率分别提升了19.21、21.31个百分点,浮选效果提升显著。

       

      Abstract: In order to promote oriented absorption of collector on coal surface for hence intensifying the latter's hydrophobicity, a study is made with the focal point placed on turbulent flow enhancement-based technology for flotation pulp conditioning, which is effected through the cyclone pupl mixing-conditioning unit for achieving full reaction between coal and reagent. The impact of frequency of circulating pump on batch-flotation test result is also investigated. Test results show that after conditioning, the surface hydrophobicity and the strength and area corresponding to the surface hydrophilic functional groups of test sample are all seen to increase to some extent, and the hydrophobic functional groups represented by C—C/C—H can gain a noticeably greater rise in this respect, demonstrating that in confined space, flow plays a positive role in enhancement of collision absorption of coal particle and collector oil drop; and with the increase of frequency of circulating pump, the flotation performance is remarkably improved as evidenced by the noticeable rise of recovery of combustible matter and yield of concentrate respectively by 19.21 and 21.31 percentage points.

       

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