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Biodegradation of Manganese Dioxide by Purified Leaching MicroorganismsBy Madgwick J. C
Four manganese dioxide leaching microorganisms, an Achromobacter spp, Aspergillus niger, Elllerobacter cloacae and Elllerobacter agglomerails were purified from sucrose enriched crude mixed cultures w
Jan 1, 1985
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Biodegradation of manganese dioxide tailingsBy Madgwick J. C
Microaerobic biodegradation oflow-grade manganese dioxide slurry tailings was demonstrated in enrichment cultures treated with dilute molasses at 30°C and pH 5·8. Supplementary nitrogenous n
Jan 1, 1986
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Biodiversity Offsets - An Overview of Selected Recent Developments New Zealand - Where to From Here?By M Baker
Biodiversity offsets are conservation actions intended to compensate for the residual, unavoidable harm to biodiversity caused by development projects. The use of biodiversity offsets in the context o
Jan 1, 2007
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Bioflotation of Sarcheshmeh Copper Sulfide OreBy Y S. M Tabatabaei, R Hosseini Tabata
Application of Acidithiobacillus ferrooxidans bacteria to flotation of Sarcheshmeh low-grade copper sulfide ore was studied. Sarcheshmeh low-grade ore contains pyrite, which causes some problems in th
Jan 1, 2004
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Biofracturing and Methanogenesis in Black Shales With Reference to Coal Bed MethaneBy L C. Thompson
A new understanding of the formation of black organic shales in the Illinois Basin has contributed to insights on how to produce methane from these complex reservoirs. These shales are far from simple
Jan 1, 2004
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Biogeochemical Prospecting for Zinc and Lead in the Te Aroha Region of New ZealandThe uptake of zinc, lead, and copper by the flora of the Tui Base Mine area near Te Aroha is described.Vegetation and soil samples were taken from two traverses across the Raukaka Lode. Results. after
Jan 1, 1969
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Bioheapleaching of Black Schist-Hosted Nickel-Copper-Cobalt- Zinc Ore in Subarctic Conditions at Talvivaara, FinlandTalvivaara deposits, Kuusilampi and Kolmisoppi, comprise one of the largest sulfide nickel resources in the world with 642 Mt in Measured and Indicated Resource categories. TalvivaaraÆs preferred extr
Jan 1, 2009
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BioHeap® – Breaking the Grade/Recovery Curve for Nickel ConcentratorsBy J Fewings, T McCredden, S Seet, C Fitzmaurice
"Flotation of nickel sulfide ores are generally constrained by nickel grade and impurity concentrations (notably magnesium and arsenic) in the product delivered to smelters. Being a physical separatio
Oct 10, 2016
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Biohydrometallurgy of Gold: Present-Day Status and Future ProspectsBy Groudeva VI
The biohydrometallurgy of gold is based on different processes which could be grouped into four main groups (Attia, Litchfield and Vaaler, 1985; Karavaiko et al, 1988; Groudev, 1990): 1. bacterial o
Jan 1, 1993
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Bioleaching Metals from Waste Printed Circuit Boards and the Shapes of MicroorganismsBioleaching Metals from Waste Printed Circuit Boards and the Shapes of Microorganisms
Sep 13, 2010
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Bioleaching of Nickel-Cobalt Oxide OresBy P Tzeferis
An exploratory laboratory work was carried out on microbial leaching of poor non-sulphide nickel ores, not amenable to conventional mineral processing operations. The results have shown that domestic
Jan 1, 1997
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Bioleaching of Valuable Metals from Waste Cathode Materials of the Lithium Ion Battery Industry Using Acidithiobacillus ferrooxidansBy D E. Ralph, D-J Kim, G-J Ahn, Y-H Rhee
The amount of discarded dry batteries are presently found to be increasing globally and waste cathode active materials of the lithium ion battery industry are among them. Hydrometallurgical operations
Jan 1, 2006
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Bioleaching of Weathered Saprolite - Heavy Metal Adaptation Mechanisms of Aspergillus foetidusBioleaching of Weathered Saprolite - Heavy Metal Adaptation Mechanisms of Aspergillus foetidus Nickel laterite ores remain important to the future supply of Ni and Co as they contain the bulk of know
Sep 13, 2010
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BioLix ù An Alternative to Cyanide for the Extraction of Precious Metals From OreBy L C. Thompson
BioLix is the term for a new class of biologically-derived lixiviants for precious metals (gold and silver) recovery. BioLix can be used as an alternative to cyanide on virgin and spent ores. The BioL
Jan 1, 2004
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Biological Column Leaching of Chalcocite OreA biological column leach testwork program was undertaken on a chalcocite ore. Three tests were conducted in all, using 65 in x 100 mm columns in three sections. The tests were started with varying
Jan 1, 1994
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Biological Filtration of Industrial Effluent Water: A Successful Case StudyThe production of 100,000 tonnes per year of synthetic rutile from the processing of ilmenite, coal and copperas (iron sulphate) produces 200 cubic metres per hour of effluent water. A 2.0 hectare
Jan 1, 1988
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Biological Mining and Bio-Hydrometallurgy-Prospects and OpportunitiesBiologically-mediated phenomena are involved in many of the natural processes by which mineral deposits are formed and ore bodies transformed and degraded. They may facilitate the environmentally
Jan 1, 1982
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Biological Processes for Gold RecoveryBy I R. F MacCulloch
Bacterial oxidation of sulfide minerals is a familiar and commercially available process to enhance gold recovery with problem ores. Pintail Systems, a Colorado, USA based company had developed bio-pr
Jan 1, 2004
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Biological Removal of Sulfur Using Coal Derived InoculaBy L B. Sukla, V N. Misra
Microbial desulfurisation of coal has significant advantages over physicochemical desulfurisation processes since the former process selectively removes the inorganic sulfur compounds and heavy metals
Jan 1, 2004