Justification and development of innovative technologies for integrated processing of complex ore and mine waste
The article presents the theoretical and experimental research findings aimed to create a basis for the development of innovative integrated processing technologies for complex ore and mine waste. It is found that introduction of nonmechanical energy treatment by an accelerated electron beam in the...
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Veröffentlicht in: | Journal of mining science 2014-09, Vol.50 (5), p.959-973 |
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container_title | Journal of mining science |
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creator | Kondrat’ev, S. A. Rostovtsev, V. I. Bochkarev, G. R. Pushkareva, G. I. Kovalenko, K. A. |
description | The article presents the theoretical and experimental research findings aimed to create a basis for the development of innovative integrated processing technologies for complex ore and mine waste. It is found that introduction of nonmechanical energy treatment by an accelerated electron beam in the ore dressing circuits increases rebellious mineral processing data. The features of a flotation unit process are analyzed from the viewpoint of improvement of collecting and selecting abilities of a reagent and relationship between these abilities and molecular structure of the reagent. The authors define flotation activity of reagents and offer a flotation contact formation criterion. It is proved to be effective and promising to use magnesium- and manganese-bearing minerals for sorption purification of mine effluents in order to reduce metal loss in the wastewater discharge and to minimize damage of natural water bodies. |
doi_str_mv | 10.1134/S1062739114050160 |
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subjects | Beneficiation Contact Damage Earth and Environmental Science Earth Sciences Flotation Geophysics/Geodesy Geotechnical Engineering & Applied Earth Sciences Mine wastes Mineral Dressing Mineral Resources Molecular structure Product innovation Sorption |
title | Justification and development of innovative technologies for integrated processing of complex ore and mine waste |
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