2020
DOI: 10.1007/s12649-020-01161-8
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Sustainable Metal Recovery from Secondary Resources: Screening and Kinetic Studies Using Analogue Heterotrophic Metabolites

Abstract: This study presents a sustainable approach for metal extraction from a range of secondary resources. Organic acids analogue to those commonly produced by heterotrophic microbes are applied via a two-step heterotrophic bioleaching approach. New insights into leaching mechanisms are developed and the potential use of the leaching residues as cementitious component is evaluated. Tested materials include a jarosite sludge from Zn refining, four ferrous metallurgy residue sludges and two dry automotive recycling sh… Show more

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Cited by 2 publications
(1 citation statement)
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“…Compared with chemolithotrophic bacteria, heterotrophic microorganisms utilize a wider array of metabolic pathways, using organics as carbon sources for the synthesis of organic acids. The bioprocess coupling to the acidity generated by organic metabolites promotes the bioleaching process [ 26 , 27 ]. Moreover, bioleaching by heterotrophic microorganisms can break the metal–oxygen bond and release the metal by directly consuming the organic components in ores.…”
Section: Introductionmentioning
confidence: 99%
“…Compared with chemolithotrophic bacteria, heterotrophic microorganisms utilize a wider array of metabolic pathways, using organics as carbon sources for the synthesis of organic acids. The bioprocess coupling to the acidity generated by organic metabolites promotes the bioleaching process [ 26 , 27 ]. Moreover, bioleaching by heterotrophic microorganisms can break the metal–oxygen bond and release the metal by directly consuming the organic components in ores.…”
Section: Introductionmentioning
confidence: 99%