Ore-waste and ore type classification using portable XRF: a case study of an iron mine from the Quadrilátero Ferrífero, Brazil
DOI:
https://doi.org/10.11606/issn.2316-9095.v20-162436Keywords:
Grade control, Mining, X-ray fluorescence, Iron ore, Mine planningAbstract
Grade control is a fundamental activity for Short-Term Mine Planning as it validates the ore-waste and ore type classification of mine faces. Geological mapping and quasi-mining sampling provide indispensable information for the Short-Term Mine Planning team to update block models and for grade control of the run-of-mine (ROM). However, laboratory turnaround can take too long and not be timely for operational needs, affecting mining efficiency. To propose a solution for this issue we tested the accuracy of portable X-Ray Fluorescence (XRF) for ore-waste and ore type classification according to iron and phosphorus grade. Thus, iron ore run-of-mine samples from the Quadrilátero Ferrífero were analyzed with the portable XRF as pressed pellets. As a result, the overall accuracy of ore-waste classification was above 92% for different cut-off grades. On the other hand, while ore type classification had a better accuracy without calibration factors for iron, the use of calibration factors significantly improved the accuracy of ore type classification for phosphorus. Therefore, despite the portable XRF presenting good accuracy for ore-waste and ore type classification, further developments are still necessary on automatic information processing systems and sample support validation so that this analytical tool can be used on a large scale by grade control teams. Finally, the combined use of portable XRF and other techniques, such as Hyperspectral Sensing or XRD, can be of great value for mine operations.
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References
Alkmin, F. F., Marshak, S. (1998). Transamazonian Orogeny in the Southern São Francisco Craton Region, Brazil: evidence for Paleoproterozoic collision and collapse in the Quadrilátero Ferrífero. Precambrian Research, 90(1‑2), 29-58. https://doi.org/10.1016/S0301-9268(98)00032-1
Andrade, F. R. D., Gobbo, L. A., Sousa, L. F. A. (2016). Iron ore classification by XRD-Rietveld and cluster analysis. Geologia USP. Série Científica, 16(2), 19-24. https://doi.org/10.11606//issn.2316-9095.v16i2p19-24
Araújo, C. P., Costa, J. F. L., Koppe, V. C. (2018). Improving short-term grade block models: alternative for correcting soft data. REM, International Engineering Journal, 71(1), 117-122. http://dx.doi.org/10.1590/0370-44672016710007
Beretta, F., Rodrigues, A. L., Peroni, R. L., Costa J. F. C. L. (2019). Automated lithological classification using UAV and machine learning on an open cast mine. Applied Earth Science, 128(3), 79-88. https://doi.org/10.1080/25726838.2019.1578031
Blom, M., Pearce, A., Stuckey, P. (2019). Short-Term Planning for Open Pit Mines: A Review. International Journal of Mining Reclamation and Environment, 33(5), 318-339. https://doi.org/10.1080/17480930.2018.1448248
Costa, A. G., Costa, F. J., Bonfioli, L. E., Rodrigues, M. L. (2001). Geologia de Mina na Samarco Mineração: um Suporte ao Planejamento de Curto Prazo / Controle de Qualidade, com Ênfase no Controle Mineralógico e na Previsibilidade do Comportamento dos Tipos de Minério no Processo. III Simpósio Brasileiro de Minério de Ferro. Ouro Preto: ABM.
Dalm, M., Buxton, N., Ruitenbeek, A. (2017). Discriminating ore and waste in a porphyry copper deposit using shortwavelength infrared (SWIR) hyperspectral imagery. Minerals Engineering, 105, 10-18. https://doi.org/10.1016/j.mineng.2016.12.013
Engström, K., Esbensen, K. (2017). Optimal grade control sampling practice in open-pit mining - a full-scale blast hole versus reverse circulation variographic experiment. Applied Earth Science, 126(4), 176-187. https://doi.org/10.1080/03717453.2017.1414104
Farina, F., Albert, C., Martínez Dopico, C., Aguilar Gil, C., Moreira, H., Hippertt, J. P., Cutts, K., Alkmin, F. F., Lana, C. (2016). The Archean-Paleoproterozoic evolution of the Quadrilátero Ferrífero (Brazil): Current models and open questions. Journal of South America Earth Sciences, 68, 4-21. https://doi.org/10.1016/j.jsames.2015.10.015
Fernandes, E. Z. (2008). Caracterização Física, Química, Mineralógica e Metalúrgica dos Produtos Granulados de Minério de Ferro. Thesis (Doctorate). Belo Horizonte: Escola de Engenharia, Universidade Federal de Minas Gerais.
Fraser, J., Whitbourn, L., Yang, K., Ramanaidou, E., Connor, P., Poropat, G., Soole, P., Mason, P., Coward, D., Phillips, R. (2006). Mineralogical Face-Mapping Using Hyperspectral Scanning for Mine Mapping and Control. 6th International Mining Geology Conference. Darwin: AUSIMM.
Gazley, M. F., Duclaux, G., Fischer, L. A., Tutt, C. M., Lathan, A. R., Hough, R. M., De Beer, S. J., Taylor, M. D. (2015). A comprehensive approach to understanding ore deposits using portable X-ray fluorescence (pXRF) data at the Plutonic Gold Mine, Western Australia. Geochemistry: Exploration, Environment, Analysis, 15(2-3), 113-124. https://doi.org/10.1144/geochem2014-280
Gazley, M. F., Tutt, C. M., Fischer, L. A., Lathan, A. R., Duclaux, G., Taylor, M., de Beer, S. (2014). Objective geological logging using portable XRF geochemical multielement data at Plutonic Gold Mine, Marymia Inlier, Western Australia. Journal of Geochemical Exploration, 143, 74-83. https://doi.org/10.1016/j.gexplo.2014.03.019
Hawke, P. J., Bachmann, J. (2018). A new blasthole XRF probe for mining grade control. ASEG Extended Abstracts, 2018(1), 1-5. https://doi.org/10.1071/ASEG2018abT7_1D.
Lessard, J., de Bakker, J., McHugh, L. (2014). Development of ore sorting and its impact on mineral processing economics. Minerals Engineering, 65, 88-97. https://doi.org/10.1016/j.mineng.2014.05.019
Narciso, J., Araújo, C. P., Azevedo, L., Nunes, R., Costa, J. F., Soares, A. (2019). A Geostatistical Simulation of a Mineral Deposit using Uncertain Experimental Data. Minerals, 9(4), 247. https://doi.org/10.3390/min9040247
Nayak, P., Hitch, M., Bamber, A. (2017). Increasing the value of heterogeneous ore deposits by high-resolution deposit-modelling and flexible extraction techniques. Mining Technology, 126(3), 139-150. https://doi.org/10.1080/14749009.2016.1263008
Ortiz, C. E. A. (2014). Caracterização Geometalúrgica e Modelagem Geoestatística da Mina de Brucutu - Quadrilátero Ferrífero (MG). Thesis (Doctorate). Ouro Preto: Escola de Minas, Universidade Federal de Ouro Preto.
Paduraru, C., Dimitrakopoulos, R. (2018). Adaptive policies for short-term material flow optimization in a mining complex. Mining Technology, 127(1), 56-63. https://doi.org/10.1080/14749009.2017.1341142
Parian, M., Lamberg, P., Möckel, R., Rosenkranz, J. (2015). Analysis of mineral grades for geometallurgy: Combined element-to-mineral conversion and quantitative X-ray diffraction. Minerals Engineering, 82, 25-35. http://dx.doi.org/10.1016/j.mineng.2015.04.023
Pereira, A. C., Papini, R. M. (2015). Processes for phosphorus removal from iron ore - a review. REM, International Engineering Journal, 68(3), 331-335. http://dx.doi.org/10.1590/0370-44672014680202
Ramanaidou, E., Wells, M. (2011). Hyperspectral Imaging of Iron Ores. 10th International Congress for Applied Mineralogy. Trondheim: ICAM.
Rosière, C., Spier, C., Rios, F., Suckau, V. (2008). The Itabirites pf the Quadrilátero Ferrífero and Related High-Grade Iron Ore Deposits: An Overview. Economic Geology, 15, 223-254. https://doi.org/10.5382/Rev.15.09
Snowden, V. (1993). Comparative 3-D resource modeling approaches at Macraes deposit in New Zealand and their reconciliation with production. Applications of Computers in the Mineral Industry. New South Wales: University of Wollongong, p. 42-45.
Spangenberg, I. C., Minnit, R. C. (2014). An overview of sampling best practice in African mining. The Journal of the Southern African Institute of Mining and Metallurgy, 114(1), 91-102.
Stanley, C., Lawie, D. (2007). Average Relative Error in Geochemical Determinations: Clarification, Calculation, and a Plea for Consistency. Exploration and Mining Geology, 16(3-4), 265-274. https://doi.org/10.2113/gsemg.16.3-4.267
Urbano, E. E. M. C. (2017). Génese do Jazigo de Ferro de Moncorvo e Avaliação do Uso de Equipamentos Portáteis de FRX e DRX para a Exploração Mineral deste Tipo de Jazigos. Thesis (Doctorate). Vila Real: Escola de Ciências da Terra e da Vida / Universidade de Trás-os-Montes e Alto Douro.
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