DocumentCode
1496930
Title
Assessment of Three Spectroscopic Techniques for Rapid Estimation of Calcite in Copper Ore
Author
Escárate, Pedro ; Guesalaga, Andrés R. ; Albertini, Valerio Rossi ; Bailo, Daniele
Author_Institution
Dept. de Ing. Electr., Pontificia Univ. Catolica de Chile, Santiago, Chile
Volume
59
Issue
7
fYear
2010
fDate
7/1/2010 12:00:00 AM
Firstpage
1911
Lastpage
1917
Abstract
This paper presents the assessment of three spectroscopic techniques, i.e., Raman spectroscopy (RS), ultraviolet fluorescence (UVF) spectroscopy, and energy-dispersive X-ray diffraction (ED-XRD), for measuring calcite (CaCO3) concentration in copper ore. The results for the three methods are compared in terms of their correlation coefficient R2 and prediction error (root-mean-square error of prediction, RMSEP). These approaches substantially shorten the measurement time with respect to current laboratory procedures from 300 min down to 1,15, and 9 min for RS, ED-XRD, and UVF, respectively, while preserving a good accuracy level (RMSEP <; 0.577). Prediction models were calibrated and validated for the three techniques, using the correlation coefficients Rc2 and Rv2, the error of prediction (RMSEP), and the error of calibration (root-mean-square error of calibration, RMSEC). Rv2 values of 0.90,0.88, and 0.94 were obtained for the RS, UVF, and ED-XRD models, respectively. The calibration and validation were performed for calcite concentrations ranging from 2.9% to 10.7%, and although the ED-XRD model performed slightly better than its RS counterpart, the time taken by the latter is significantly shorter than that by the other two, representing a good candidate for online estimation of calcite concentration.
Keywords
Raman spectroscopy; X-ray chemical analysis; calcium compounds; calibration; chemical variables measurement; copper; fluorescence spectroscopy; mean square error methods; minerals; ultraviolet spectroscopy; CaCO3; ED-XRD; Raman spectroscopy; UVF spectroscopy; calcite; calibration; concentration measurement; copper ore; correlation coefficient; energy-dispersive X-ray diffraction; prediction error; root-mean-square error; ultraviolet fluorescence spectroscopy; Calcite; Raman; copper; diffraction; fluorescence; spectroscopy;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2009.2028774
Filename
5282560
Link To Document