Biooxidation of Arsenopyrite by <i>Acidithiobacillus ferriphilus</i> QBS 3 Exhibits Arsenic Resistance Under Extremely Acidic Bioleaching Conditions. [PDF]
Liu R, Liu S, Bai X, Liu S, Liu Y.
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Bio-accelerated weathering of ultramafic minerals with Gluconobacter oxydans. [PDF]
Lee JJ +9 more
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pH Threshold Impacts Chalcopyrite Bioleaching Dynamics for the Extreme Thermoacidophile Sulfurisphaera ohwakuensis. [PDF]
Willard DJ +3 more
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Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatment. [PDF]
Fereydouni H, Naseri T, Mousavi SM.
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Bioleaching of uranium from ores and rocks using filamentous fungi. [PDF]
Bhatti TM, Tuovinen OH.
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Improving process granularity of life cycle inventories for battery grade nickel. [PDF]
Roy S +4 more
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Evaluation of disposal techniques for electronic circuit board waste based on fuzzy multi-criteria decision analysis. [PDF]
Ijaz B +6 more
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From Waste to Resource: Reframing End-of-Life Materials for a Circular Future: Within MSE Symposium Sustainable Reprocessing of End-of-Life Materials and Side Streams. [PDF]
Jovičević-Klug M +3 more
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Bioleaching is an ecofreindly process, which can be carried out by certain potential microorganism. There are enormous avail of microorganism in bioleaching. There are many merits and minor demrits too. Since this technique will not create an ill effect to the environment, bioleaching began to wide acceptance.
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