Study of Comminution Kinetics in an Electrofragmentation Lab-Scale Device

Author:

Llera Angel R.,Díaz Ana,Pedrayes Francisco J.,Menéndez-Aguado Juan M.ORCID,Melero Manuel G.

Abstract

A significant challenge in mineral raw materials comminution is the improvement of process energy efficiency. Conventional comminution techniques, although globally used, are far from being considered power-efficient. The use of high-voltage electric pulses in comminution is a concept that is worthy of study; despite its lack of industrial-scale validation after several decades of lab-scale research, it seems promising as a pretreatment leading to energy savings. In this article, the Cumulative Kinetic Model methodology is adapted to model the comminution effect in an electrofragmentation device, and study a dunite rock ore. The results show that product particle size distribution (PSD) can be predicted with reasonable accuracy using the proposed model.

Funder

Ministry of Economy, Industry and Competitiveness

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference24 articles.

1. Simulation of the grinding of coarse/fine (heterogeneous) systems in a ball mill

2. THE THEORY OF GRINDING OPERATIONS

3. A new approach to Bond grindability and work index: dynamic elastic parameters

4. New innovative technologies of processing of mineral raw materials on a basis electric pulse disintegration;Usov,2008

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