Published 2010 | Version v1
Journal article

Mathematical simulation of column flotation in pilot scale

Description

The Procemin-I area of the Centro Minero Metalurgico Tecnologia y Servicio (CIMM T and S), has a full milling and flotation pilot plant in which several experiences are developed as: optimization of circuits, plant design, procurement of operating parameters, etc. Ones of the equipment in operation is the column flotation to pilot scale, witch have a medium level of automation. The problem presented in the operation of the column flotation is the low relationship during the operation between the operating basis parameters and the metallurgical results. The mathematical models used today to estimate the metallurgical results (i.e.: concentrate, tailing, enrichment and recovery) depending on variables that are manipulated by hand according the operator experience. But the process engineer needs tools without subjective vision to obtain the best performance of the column. The method used to help the column operation was a mathematical model based on the Stepwise Regression then considering empirical relationships between operational variables and experimental results. All the mathematical relationship developed in this study have a good correlation (up 90 % of precision), except one (up 70 %) due by non regular mineralogical feed. (Author) 7 refs.

Availability note (English)

Available htt://revistademetalurgia.revistas.csic.es

Additional details

Additional titles

Original title (Spanish)
Modelacion empirica de flotacion en columna a escala piloto

Publishing Information

Journal Title
Revista de Metalurgia
Journal Volume
46
Journal Issue
2
Journal Page Range
p. 101-108
CODEN
RMTGAC

INIS

Country of Publication
Spain
Country of Input or Organization
Spain
INIS RN
41122814
Subject category
S97: MATHEMATICAL METHODS AND COMPUTING;
Descriptors DEI
COLUMN PACKING; FLOTATION; MATHEMATICAL MODELS; METALLURGY; MINERALOGY; OPERATING LICENSES; PILOT PLANTS
Descriptors DEC
FUNCTIONAL MODELS; LICENSES; PACKINGS; SEPARATION PROCESSES