Evaluation of the statistical reliability of micro-flotation experiments using a hallimond flotation cell
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This paper presents the evaluation of the statistical reliability of micro-flotation experiments using a Hallimond flotation cell. The study was conducted by three experimental analysts using different micro-flotation conditions and samples. Statistical analysis of 20 micro-flotation experiments was performed. Using the Kolmogorov–Smirnov test, the data from all experiments were found to come from a normal distribution. The coefficient of variation ranged from 0.5%25 to 8.2%25. The high variability was mainly justified by the poor reproducibility of the bubble size distribution; this was corroborated by the high deviation of the estimated mean bubble size in the experiments, which was 742 ± 249 µm. A frequency histogram showed that although extreme values up to 21.3%25 could appear, 70%25 of the experiments had coefficient of variation less than 4%25. The Asymptotic Test and the Modified Signed-likelihood Ratio Test showed that there were not statistically significant differences between the variability of the 20 micro-flotation experiments. The overall confidence interval for the coefficient of variation from 2.2%25 to 4.5%25 was established. The coefficient of variation tended to decrease when the repetitions of the micro-flotation experiments increased. The main source of variability of the micro-flotation experiments conducted in the Hallimond cell is the repeatability of the method. © 2022 Canadian Institute of Mining, Metallurgy and Petroleum.
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Hallimond tube; Micro-flotation; statistic; uncertainty; variability Computational complexity; Froth flotation; Coefficients of variations; Condition; Flotation cell; Hallimond tube; Kolmogorov-Smirnov test; Micro-flotation; Reproducibilities; Statistical reliability; Uncertainty; Variability; Normal distribution
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