High Throughput, High Solids Flotation Of 20 X 200 Mesh North Carolina Phosphate In A Short Column Cell (e8f0823f-317a-4179-8746-73c484ba7427)

Society for Mining, Metallurgy & Exploration
J. F. Hutwelker
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Society for Mining, Metallurgy & Exploration
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Publication Date:
Jan 1, 1993

Abstract

A pilot plant was constructed and operated to investigate the column flotation of 20 x 200 mesh North Carolina phosphate ore, using high throughput, high solids operating conditions developed at the NCSU Minerals Research Laboratory. Flotation was performed at 45% solids in a 9.5 cm (3.75 in.) diameter by 2.26 m (7.4 ft.) tall column at throughputs of 19.1 t/hr/m2 (2.0 stph/ft2) and 31.7 t/hr/m2 (3.3 stph/ft2). Recoveries in excess of 98% of the phosphate value were obtained at the lower throughput -- while obtaining concentrate grades containing over 28% P205 (61.2% BPL) at that recovery. Recoveries of about 95% of the phosphate value were obtained at the higher throughput, while making a concentrate averaging 27.6% P209 (60.3% BPL). In addition, a better understanding of the variables governing the column flotation of coarse nonmetallic minerals was gained. Low air flow rates adversely affected concentrate grade at the lower throughput. At the higher throughput, phosphate recovery decreased at an elevated air flow rate. An unexpected result of the study was the effect that frother type had upon phosphate metallurgy. Use of Nottingham Econofroth 925 provided better flotation selectivity than American Cyanamid F-65 at the low throughput. This is significant since the high' throughput tests were conducted with F-65 exclusively. It is reasonable to expect further improvement in high throughput performance when the optimal frother type and dosage are determined.
Citation

APA: J. F. Hutwelker  (1993)  High Throughput, High Solids Flotation Of 20 X 200 Mesh North Carolina Phosphate In A Short Column Cell (e8f0823f-317a-4179-8746-73c484ba7427)

MLA: J. F. Hutwelker High Throughput, High Solids Flotation Of 20 X 200 Mesh North Carolina Phosphate In A Short Column Cell (e8f0823f-317a-4179-8746-73c484ba7427). Society for Mining, Metallurgy & Exploration, 1993.

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