YING Hongwei, LI Yubiao, CHEN Kun, et al. Influencing mechanisms of unavoidable ions ca2+、mg2+ on the viscosity of kaolin[J]. Multipurpose Utilization of Mineral Resources, 2025, 46(5): 164-169. DOI: 10.12476/kczhly.202211290755
    Citation: YING Hongwei, LI Yubiao, CHEN Kun, et al. Influencing mechanisms of unavoidable ions ca2+、mg2+ on the viscosity of kaolin[J]. Multipurpose Utilization of Mineral Resources, 2025, 46(5): 164-169. DOI: 10.12476/kczhly.202211290755

    Influencing Mechanisms of Unavoidable Ions Ca2+、Mg2+ on the Viscosity of Kaolin

    • Viscosity is an important factor affecting the high-value application of kaolin. In order to figure out how unavoidable ions influence the viscosity of kaolin, the slurry was investigated through a viscomete runder different concentrations of Ca2+ and Mg2+ ions. The interaction potential energy between kaolinite particles was calculated and analyzed based on the zeta potential and DLVO theory. The results showed that Ca2+ and Mg2+ increased the viscosity of kaolin slurry, with the enhancement due to Ca2+ being stronger than that of Mg2+. In addition, based on the zeta potential measurements, Ca2+ and Mg2+ increased the surface potential of kaolin slurry, but reduced the repulsive force between kaolinite particles, thereby promoting the flocculation of kaolinite particles and improving the viscosity of slurry. Moreover, DLVO theoretical calculation showed that an increase of Ca2+、Mg2+ concentration reduced the potential interaction barriers between the basal faces, as well as between the edge faces and basal faces of kaolinite particles.
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