Title of article
Boundary conditions for column flotation —A study by transfer function representation of an axial diffusion model
Author/Authors
Tokoro، نويسنده , , C. and Okano، نويسنده , , Y.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2001
Pages
16
From page
49
To page
64
Abstract
The boundary conditions for an axial diffusion model were overviewed and then modified concerning the pulp layer boundaries in a flotation column. It has been confirmed through the transfer function representation that the four general boundary conditions for an axial diffusion model correspond to the particular cases of Wehner and Wilhelmʹs, which considers not only the reaction section itself but also those of its top and bottom sides.
s mathematical models have been proposed for the pulp layer in a flotation column and the most popular one may be an axial diffusion with first order reaction model of one stage. They are, however, unable to estimate the behaviors of free particles which have not attached to bubbles at the pulp-froth interface.
s study, therefore, the authors, represented the transportation of free particles in the pulp layer of a flotation column by the two-stage axial diffusion with first order reaction model. The Wehner and Wilhelmʹs, as well as Danckwertsʹ boundary conditions have been partly modified and then applied to the feed point, the pulp-froth interface and the tailing discharge point of the flotation column. The proposed models and their boundary conditions made it possible to estimate the behaviors of free particles at the pulp-froth interface.
Keywords
Modelling , column flotation , flotation kinetics
Journal title
Minerals Engineering
Serial Year
2001
Journal title
Minerals Engineering
Record number
2273610
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