Bubble size distribution in a laboratory-scale electroflotation study.

Raquibul Alam, Julie Q Shang, Adnan Hossain Khan

Journal: Environmental monitoring and assessment 2017;189(4):193

PMID: 28357719

Abstract

The performance of electroflotation (EF) is strongly influenced by the size of O and H bubbles. Therefore, in this study, the bubble sizes are measured in a lab-scale EF cell using a high-speed camera. The mean bubble size is found to vary in the range of 32.7-68.6 μm under different operating conditions. This study shows that the electrode material, current density, water pH, ionic strength, and frother (Tennafroth 250) concentration are important factors in controlling the bubble size. Furthermore, four mathematical distributions (normal, log-normal, Weibull, and gamma distributions) are fitted to the experimental data, among which the log-normal distribution is found to be the best fit based on the lower Anderson-Darling (AD) value.

Address: Department of Civil and Environmental Engineering, Western University, London, ON, Canada. [email protected].; Department of Civil and Environmental Engineering, Western University, London, ON, Canada.

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