Pump And Cyclone Design/Optimization To Maximize Grinding Circuit Efficiency

Society for Mining, Metallurgy & Exploration
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
5
File Size:
558 KB
Publication Date:
Jan 1, 2011

Abstract

The design/optimization of the pump and cyclones to maximize grinding circuit efficiency first requires a concise understanding of, and clearly defined specifications for, desired grinding circuit performance. Subsequently, the pump and cyclone performances that provide the desired grinding circuit performance can be defined. Once the performance requirements of each process unit are determined, selection of physical equipment parameters that will deliver those performances can be carried out. The Functional Performance Equation shows that there are two distinct efficiencies in closed circuit ball milling. One of these, ?Circuit Classification System Efficiency? (CSE), is the fraction of ?coarse? material inside the ball mill upon which grinding energy is deliberately expended, versus the remaining fraction of ?fines? or finished size material inside the mill, upon which grinding energy is wasted (on over-grinding). The role of the pump and cyclones is to maximize CSE, which is the desired grinding circuit performance. The obtainable, target CSE for any given circuit can be estimated, for example by referring to a plant data base of CSE?s. Design/optimization guidelines then allow us to specify the pump and cyclone performances that will achieve the target CSE. This paper outlines the step-by-step, systematic method of pump and cyclone selection which maximizes CSE. Numerous examples of its successful application are provided.
Citation

APA:  (2011)  Pump And Cyclone Design/Optimization To Maximize Grinding Circuit Efficiency

MLA: Pump And Cyclone Design/Optimization To Maximize Grinding Circuit Efficiency. Society for Mining, Metallurgy & Exploration, 2011.

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