Diverse <i>Sulfuriferula</i> spp. from sulfide mineral weathering environments oxidize ferrous iron and reduced inorganic sulfur compounds. [PDF]
Hobart KK +4 more
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On the path to generate electricity from wastewater through genetic engineering of Escherichia coli. [PDF]
Cialek CA.
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Assessment of microbial communities from cold mine environments and subsequent enrichment, isolation and characterization of putative antimony- or copper-metabolizing microorganisms. [PDF]
Prieto-Fernández F +2 more
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Acidophilic heterotrophs: basic aspects and technological applications. [PDF]
González E +8 more
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Engineered bacteria as living therapeutics: Next-generation precision tools for health, industry, environment, and agriculture. [PDF]
Zalila-Kolsi I.
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Bio-accelerated weathering of ultramafic minerals with Gluconobacter oxydans. [PDF]
Lee JJ +9 more
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Increase in lipid portion of <i>Phycomyces blakesleeanus</i> biomass induced by vanadate uptake and accumulation. [PDF]
Lukičić JM +6 more
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Complete genome sequence for the thermoacidophilic archaeon Metallosphaera sedula (DSM:5348). [PDF]
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Biomining comprises of processing and extraction of metal from their ores and concentrates using microbial techniques. Currently this is used by the mining industry to extract copper, uranium and gold from low grade ores but not for low grade manganese ore in industrial scale.
Lala Behari Sukla +2 more
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Thermophilic microorganisms in biomining
World Journal of Microbiology and Biotechnology, 2016Biomining is an applied biotechnology for mineral processing and metal extraction from ores and concentrates. This alternative technology for recovering metals involves the hydrometallurgical processes known as bioleaching and biooxidation where the metal is directly solubilized or released from the matrix for further solubilization, respectively ...
Maria Sofia Urbieta, Urbieta Maria Sofia
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