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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Interaction forces between coal and kaolinite particles measured by atomic force microscopy
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Interaction forces between coal and kaolinite particles measured by atomic force microscopy

机译:原子力显微镜测量煤与高岭石颗粒之间的相互作用力

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A fundamental investigation was carried out on coal-coal, kaolinite-kaolinite, and coal-kaolinite interactions using the atomic force microscopy colloidal probe technique at different pH and calcium concentrations to explore the effect of kaolinite on fine coal flotation in the present study. The results showed that the kaolinite particles seem to be always detrimental to the flotation process. In deionized water, a repulsive force was always detected in the kaolinite-kaolinite interaction while kaolinite-coating phenomenon was not observed on a coal surface under the neutral pH. However, the repulsive force made it more difficult for the ultra-fine kaolinite particles to settle in the tailing thickener and the unsettled particles returned to the flotation flowsheet, which decreased the flotation efficiency because of the water entrainment. With the addition of Ca2+, the repulsive electrostatic force between kaolinite and kaolinite decreased. The attractive van der Waals force could dominate the kaolinite-kaolinite interactions, enhancing the sedimentation classification performance of fine kaolinite in tailing thickener. However, the interaction forces between coal and kaolinite changed from being weakly repulsive to strongly attractive and increased monotonously, resulting in the occurrence of the kaolinite-coating phenomenon during flotation. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用原子力显微镜胶体探针技术,在不同的pH和钙浓度下,对煤-煤,高岭石-高岭石和煤-高岭石的相互作用进行了基础研究,以探讨高岭石对细煤浮选的影响。结果表明,高岭石颗粒似乎总是对浮选过程有害。在去离子水中,总是在高岭石-高岭石相互作用中检测到排斥力,而在中性pH下在煤表面上未观察到高岭石涂层现象。然而,排斥力使得超细高岭石颗粒更难以沉降在尾矿浓缩器中,并且未沉降的颗粒返回浮选流程,这由于夹带水而降低了浮选效率。随着Ca 2+的添加,高岭石与高岭石之间的排斥静电力降低。范德华力很强,可以控制高岭石与高岭石的相互作用,从而提高了尾矿浆中高岭土的沉降分级性能。但是,煤与高岭石之间的相互作用力从弱排斥变为强吸引力并单调增加,导致在浮选过程中发生高岭土涂层现象。 (C)2016 Elsevier B.V.保留所有权利。

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