The Order of Kinetic Models, Rate Constant Distribution, and Maximum Combustible Recovery in Gilsonite Flotation Mining, Metallurgy and Exploration

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- Society for Mining, Metallurgy & Exploration
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Abstract
Kinetic models are the most important tool for predicting and evaluating the performance of flotation circuits. Gilsonite is a
natural fossil resource similar to an oil asphalt, high in asphaltenes. Here, in order to determine the kinetic order and flotation rate
of a gilsonite sample, flotation experiments were carried out in both rougher and cleaner stages. Experiments were conducted
using the combinations of oil–MIBC and gas oil–pine oil, with one test without collector and frother. Five kinetic models were
applied to the data obtained from the flotation tests using MATLAB software. Statistical analysis showed that the results of the
experiment with oil–MIBC were highly in compliance with all models. Kinetic constants (k) were calculated as 0.1548 (s−1
) and
0.0450 (s−1
) for rougher and cleaner stages, respectively. Rougher and cleaner tests without collector and frother also matched all
models well (R2 > 0.98), with k values of 0.2163 (s−1
) and 0.284 (s−1
), respectively. The relationship between flotation rate
constant, maximum combustible recovery, and particle size showed that the maximum flotation combustible recovery and
flotation rate were obtained in the size range of −250 + 106 μm in the rougher and cleaner stages. The combustible recovery
and flotation rate were higher in the rougher flotation process than in the cleaner stage.
Citation
APA:
The Order of Kinetic Models, Rate Constant Distribution, and Maximum Combustible Recovery in Gilsonite Flotation Mining, Metallurgy and ExplorationMLA: The Order of Kinetic Models, Rate Constant Distribution, and Maximum Combustible Recovery in Gilsonite Flotation Mining, Metallurgy and Exploration. Society for Mining, Metallurgy & Exploration,