Experimental Study Of Residence Time Distributions Of Ball-Mill Circuits Grinding Coal-Water Mixtures

Society for Mining, Metallurgy & Exploration
K. Shoji
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
9
File Size:
1342 KB
Publication Date:
Jan 1, 2008

Abstract

Residence time distributions (RTDs) were estimated by water tracing in a number of wet overflow ball mills (diameters 0.38 to 4.65 m) producing dense, coal-water slurries. In open-circuit mills of 0.38 m diameter and various length-diameter (L/D) ratios, the mean residence times of solid were also determined from measured mill holdups. Holdup increased with increased mill feed rate, but the mean residence times of coal and water were still equal to each other. The experimental residence time distributions were fitted to the Mori-Jimbo-Yamazaki semi-infinite, axial mixing model, and the dimensionless mixing coefficient was determined for each of 25 tests in single- and two-compartment mills. This coefficient was found to be independent of the feed rate but linearly proportional to the D/L ratio. The mixing coefficient was smaller for two-compartment mills than for single-compartment mills, showing that there was reduced mixing introduced by the diaphragm separating the compartments. Equations are given to scale residence time distributions for changes in mill diameter and length.
Citation

APA: K. Shoji  (2008)  Experimental Study Of Residence Time Distributions Of Ball-Mill Circuits Grinding Coal-Water Mixtures

MLA: K. Shoji Experimental Study Of Residence Time Distributions Of Ball-Mill Circuits Grinding Coal-Water Mixtures. Society for Mining, Metallurgy & Exploration, 2008.

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