Treatment by sulfate-reducing bacteria of Chessy acid-mine drainage and metals recovery

Author:

Foucher S,Battaglia-Brunet F,Ignatiadis I,Morin D

Publisher

Elsevier BV

Subject

Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

Reference9 articles.

1. Battaglia-Brunet, F., Foucher, S., Ignatiadis I., & Morin, D. (2000). Production of H2S by sulfate-reducing bacteria in a two-column gas/liquid reactor for the purification of metal-containing effluents XXI IMPC. Roma, 23–27 July 2000. pp. B12-9/17.

2. Significance of liquid-film coefficients in gas absorption;Danckwerts;Industrial Engineering Chemistry,1951

3. De Vegt, A. L., Bayer, H. G., & Buisman, C. J. (1997). Biological sulfate removal and metal recovery from mine waters. SME Annual Meeting. Denver, Colorado.

4. Hammack, R. W., Dvorak, D. H., & Edenborn, H. M. (1993). The use of biogenic hydrogen sulfide to selectively recover copper and zinc from severely contaminated mine drainage. In A. E. Torma, J. E. Wey, & V. L. Lakshmanan (Eds.), Biohydrometallurgical technologies. Warrendale, PA: The Minerals, Metals & Materials Society. pp. 631–639.

5. Biological process for sulfate and metals abatement for sulfate and metals abatement from mine effluents;Herrera;Environmental Toxicology and Water Quality,1997

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