Effect of frother strength on gas dispersion in a cavitation sparger measured by electrical resistance tomography
Autor: | Philip Holdsworth, Richard LaDouceur, Courtney Young |
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Rok vydání: | 2021 |
Předmět: |
Materials science
Mechanical Engineering Gas holdup 02 engineering and technology General Chemistry Mechanics 010501 environmental sciences Geotechnical Engineering and Engineering Geology Positive correlation 01 natural sciences 020501 mining & metallurgy 0205 materials engineering Electrical resistance and conductance Control and Systems Engineering Cavitation Tomography Dispersion (chemistry) Sparging Gas dispersion 0105 earth and related environmental sciences |
Zdroj: | Minerals Engineering. 160:106655 |
ISSN: | 0892-6875 |
Popis: | Axial dispersion in column flotation is critical for optimizing particle-bubble interaction and maximizing recovery. The effect of different flotation frothers on axial gas dispersion rates in a column flotation cell were measured using electrical resistance tomography (ERT). Gas holdup can be measured using ERT and utilized in the determination of axial gas dispersion rate in the column. The ERT is constructed with two sensor planes making it possible to simultaneously capture gas holdup values at and immediately above the cavitation sparger. Three frothers of varying strengths were used to investigate axial dispersion rates. Experimental conditions were modified by altering the superficial gas rate, frother concentration, and sparger pump speed. Utilizing a two-phase (gas–liquid) system, the effects of varying experimental conditions were captured and are represented using concentration tomograms. There is a strong positive correlation between axial dispersion rate, frother strength, and machine operating parameters. |
Databáze: | OpenAIRE |
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