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Binding Iron Ore Pellets With Fly-Ash – Preprint 97-105
By D. D. Banerjee, S. K. Kawatra, T. C. Eisele
A high calcium fluid-bed combustor ash has been shown to be an effective binder at dosages of 1 to 2% of the magnetite concentrate weight. Magnetite pellets 1.3 cm (1/2 inch) in diameter were produced
Feb 24, 1997
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Bio-Detoxification of Spent Ore and Heap Leach Solutions
By Eric Jones, Leslie C. Thompson
Biological processes for cyanide detoxification in mine waste are receiving attention as an alternative to conventional chemical treatment options. Some of the advantages of biological treatment inclu
Jan 1, 1993
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Bio-Dissolution Of Industrial Waste Of Lithium Battery Industries Using Acidophilic Microorganisms
Bioleaching of solid wastes lithium ion battery industries was carried out in this investigation. A new method for recovery of cobalt, potentially the basis of an economic and environmentally friendly
Jan 1, 2006
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Bio-Fix- Water Treatment Technology
By Stephen D. Hill, C. R. Ferguson, T. H. Jeffers, P. G. Bennett
The U.S. Bureau of Mines' Salt Lake City Research Center has developed porous polymeric beads containing immobilized non-living biological materials for extracting metal contaminants from waste waters
Jan 1, 1991
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Bio-Indicator Evaluation of Water Quality Impacts from Inactive and Abandoned Mines in the Bear Butte Creek Basin of the Black Hills
By A. D. Davis, J. L. Sorensen, C. J. Webb
Environmental impacts from acidic mine drainage are growing national concerns that are particularly acute in the headwaters of the Rocky Mountain region. In the Black Hills of South Dakota, approximat
Jan 1, 1999
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Bio-Indicator Evaluation Of Water Quality Impacts From Inactive And Abandoned Mines In The Bear Butte Creek Basin Of The Black Hills
By A. D. Davis
Environmental impacts from acidic mine drainage are growing national concerns that are particularly acute in the headwaters of the Rocky Mountain region. In the Black Hills of South Dakota, approximat
Jan 1, 1999
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Bio-oxidation Of Refractory Gold Ores
By P. Ollivier
A comparative study on potential refractory ore processing techniques was launched at the BRGM to enable exploitation of numerous small deposits of arsenopyrite and antimony sulphide ores.
Jan 1, 1998
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Bio-Reactor Development For Ferrous To Ferric Conversion
By M. P. Neira
In-situ leaching of copper from chalcocite relies on ferric iron concentration in the lixiviant being reduced to ferrous. To re-establish the ferric concentration in solution, ferrous must be re-oxidi
Jan 1, 1997
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Bioassay Studies of Canadian Uranium Mill Workers
By M. Measures, W. A. Napier, C. Pomroy, J. M. Jardine
INTRODUCTION In most uranium mines the concentration of uranium in the ore is low enough that inhalation of dust does not present a radiological problem. Conversely in the mills there is a potentia
Jan 1, 1981
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Biobeneficiation of mineral raw materials
By S. N. Groudev
A process for the combined chemico-biological removal of iron present as oxide minerals in different mineral raw materials (quartz sands, kaolins, clays, etc.) was developed. In the process, mineral r
Jan 1, 2000
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Biochemical removal of HAP precursors from coal - INEEL slurry column testing
By G. J. Olson, K. S. Noah
A combined physical/biochemical process for the precombustion removal of 13 inorganic hazardous air pollutant (HAP) precursors, i.e., Sb, As, Be, Cd, Cr, Cl, Co, F, Pb, Hg, Mn, Ni and Se, from coal wa
Jan 1, 2000
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Biocorrosion of Copper by Biopolymers as Examined In Situ, In Real Time FT-IR/CIR/ATR in Conjunction with Pre and Post XPS/AES, The
By Gill G. Geesey, Michael R. Hankins, Paul L. Wichlacz, Anita Gianotto, John G. Jolley, Randy B. Wright
Thin films of copper [2.0 nm on germanium internal reflection elements (IREs) and 3.4 nm on germanium discs] were exposed to 10% gum arabic (aqueous solution) , 2% alginic acid (aqueous solution), 1%
Jan 1, 1989
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Biodegradation of Sodium Isopropyl Xanthate by Paenibacillus Polymyxa and Pseudomonas Putida
By K. A. Natarajan, M. R. Sabari Prakasan
"Biodegradation of sodium isopropyl xanthate using two types of bacterial strains, Paenibacillus polymyxa and Pseudomonas putida, is demonstrated. At concentrations higher than 50 mg/L, the presence o
Jan 1, 2015
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Biodiversity -Ecosystem-Energy And Mineral Resources On Public Lands
By J. Juilland
Over 10 percent of the United States of America or 41 percent of the Federal lands is managed by the Bureau of Land Management (BLM) as Public Lands. The mission is to manage the use of these lands an
Jan 1, 1994
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Biodiversity Assessments In Baseline And Monitoring Of Mining Projects - Introduction
By J. Ugarte-Núñez
Biodiversity assessments that are developed in different stages of a mining project, have different objectives that define the methodology to be used in each of these stages. In this way, we define tw
Jan 1, 2011
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Bioepigenetic Sulfur Deposits
By J. B. Davis
Isotope analyses distinguish biogenic sulfur ores from non-biogenic ores, but do not distinguish bioepigenetic from biosyngenetic ores. Sulfur deposits of salt dome caprocks and of bedded Permian evap
Jan 1, 1978
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Bioflocculation of Fine Mineral Suspensions by Candida parcrpsilosis and its Sonication Products
By M. Misra, I. A. H. Schneider
The flocculation of -38 pm calcite, hematite and kaolinite aqueous suspensions by the yeast Candida parapsilosis and products derived from rupture of the microorganism was studied. Flocculation of h
Jan 1, 1994
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Bioflotation Of Malachite Using Rhodococcus Opacus: Role Of Bacterial Growth Phase
By G. Kim
The influence of bacterial growth phase on the flotation behavior of malachite has been investigated in a well-controlled Hallimond tube system. The microflotation tests were conducted for malachite (
Feb 27, 2013
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Biohydroi\1efallurgy State Of Art And New Advances
By R. W. Lawrence, P. B. Marchant
Biohydrometallurgy is now forty years old. Since the discovery of the role of microorganisms in the oxidation of sulphide minerals that gives rise to acid mine drainage, many workers in industry, rese
Jan 1, 1998
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Bioleaching And Electrobioleaching Of Sulfide Minerals
By E. H. Cho, B. Conner
Three sulfide minerals, chalcopyrite, sphalerite, and pyrite, were leached using a bioleaching mode and an electrobioleaching mode. The former mode was used to leach the minerals with the bacterium A
Jan 1, 2006