Determination of the Conditions for Agglomeration of Molybdenite Fines in the Presence of Kerosene Emulsion Through the Extended DVLO Theory
Antonio López Mendoza and
Alicia Elizabeth Chàvez Guajardo
European Journal of Engineering and Technology Research, 2021, vol. 6, issue 1, 80-86
Abstract:
The hydrophobic agglomeration of fine particles of molybdenite in the presence of kerosene emulsion, has been studied in this paper. The results obtained in the investigation as; zeta potential of kerosene emulsion(?emulsion), zeta potential of the molybdenite sample (?MoS2), hydrophobicity of molybdenite represented by the contact angle (?MoS2) varying the pH, were used to calculate the total potential energy through the extended DVLO theory. Diagram containing curves total potential energy vs. separation distance of the particles, indicate that increasing the pH, also increases the energy barrier to overcome to achieve agglomeration and viceversa, which translates to a high probability of agglomeration in the pH range 5 to 8, with greater effect as the pH is increased in the acidic region.
Keywords: Extended DVLO theory, Fine particles Molybdenite; Hydrophobic agglomeration, Querosene emulsion (search for similar items in EconPapers)
Date: 2021
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Persistent link: https://EconPapers.repec.org/RePEc:epw:ejeng0:v:6:y:2021:i:1:id:62328
DOI: 10.24018/ejeng.2021.6.1.2328
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