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首页> 外文期刊>Minerals >Aggregation Mechanism of Particles: Effect of Ca 2+ and Polyacrylamide on Coagulation and Flocculation of Coal Slime Water Containing Illite
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Aggregation Mechanism of Particles: Effect of Ca 2+ and Polyacrylamide on Coagulation and Flocculation of Coal Slime Water Containing Illite

机译:颗粒的聚集机理:Ca 2+和聚丙烯酰胺对含伊利石的煤泥水凝结和絮凝的影响

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Illite is one of the main components in coal slime water and it sometimes makes the water extremely difficult to clarify. In this study, the aggregation mechanism of coal and illite particles was investigated using the extended Derjaguin-Landau-Verwey-Overbeek (XDLVO) theory and settling experiments of slime water containing coal and illite. The results show that electrostatic energy plays a dominant role and manifests repulsive force in the long-range (>4 nm). However, the leading role becomes a hydrophobic force determined by the polar surface interaction energy in the short-range (<4 nm). A coagulant (Ca 2+ ) can lower the surface electric potential to make all particles easier to coagulate, while the surface hydrophobicity of coal and illite determines whether the particles aggregate. Cationic polyacrylamide (CPAM) can promote the sedimentation of particles flocs effectively and makes the supernatant clearer due to attractive electrostatic forces while anionic polyacrylamide (APAM) flocculates particles through the bridge mechanism. Although the hydration shell on the hydrophilic surface of illite appears to be harmful for either coagulation or flocculation, illite can accelerate sedimentation when it is attached to the coal due to its higher density.
机译:伊利石是煤泥水的主要成分之一,有时使水变得非常难以澄清。在这项研究中,使用扩展的Derjaguin-Landau-Verwey-Overbeek(XDLVO)理论和含煤和伊利石的煤泥水沉降实验,研究了煤和伊利石颗粒的聚集机理。结果表明,静电能起主要作用,并在远距离(> 4 nm)内表现出排斥力。但是,起主导作用的是疏水力,该疏水力由短程(<4 nm)内的极性表面相互作用能决定。凝结剂(Ca 2+)可以降低表面电势,使所有颗粒更容易凝结,而煤和伊利石的表面疏水性决定了颗粒是否凝结。阳离子聚丙烯酰胺(CPAM)可通过吸引静电力有效地促进颗粒絮凝的沉淀,并使上清液更透明,而阴离子聚丙烯酰胺(APAM)通过桥联机理使颗粒絮凝。尽管伊利石亲水性表面上的水合壳似乎对凝结或絮凝有害,但伊利石由于其较高的密度而附着在煤上时可以加速沉降。

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