Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatment

Abstract Mining activities produce a significant amount of gold mine tailings (GMT) rich in rare earth elements. Despite this, little information is available regarding the effective extraction of these precious elements from GMT. We describe a novel strategy for removing Pr, Ce, and Eu from GMT usi...

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Main Authors: Hoda Fereydouni, Tannaz Naseri, Seyyed Mohammad Mousavi
Format: Article
Language:English
Published: Nature Portfolio 2025-02-01
Series:Scientific Reports
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Online Access:https://doi.org/10.1038/s41598-025-88594-0
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author Hoda Fereydouni
Tannaz Naseri
Seyyed Mohammad Mousavi
author_facet Hoda Fereydouni
Tannaz Naseri
Seyyed Mohammad Mousavi
author_sort Hoda Fereydouni
collection DOAJ
description Abstract Mining activities produce a significant amount of gold mine tailings (GMT) rich in rare earth elements. Despite this, little information is available regarding the effective extraction of these precious elements from GMT. We describe a novel strategy for removing Pr, Ce, and Eu from GMT using Acidithiobacillus thiooxidans combined with a pretreatment step. For the pretreatment, GMT was exposed to 2 M oxalic acid for 6 h at 90 °C and 500 rpm at a liquid-to-solid ratio of 60 mL/g, which selectively removed iron and enhanced rare earth element bioavailability. As a result, GMT powder was introduced during the logarithmic growth phase of A. thiooxidans to maximize the bacterial activity and acid production during bioleaching. Surface modifications revealed by structural analysis validated the progress of the bioleaching procedure. Based on kinetic modeling, it was determined that chemical reactions determined the rate-limiting stage. The results showed a notable improvement in the recovery of rare earth elements after iron removal, with recovery of Pr, Ce, and Eu increasing by 24.4%, 14.4%, and 9.1%, respectively. A promising approach to resource recovery in mining operations could be achieved by integrating pretreatment and bioleaching for enhancing the recovery of rare earth elements from GMT.
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spelling doaj-art-e017e1f6cebd41e0922751e2a7adc7ee2025-02-09T12:36:16ZengNature PortfolioScientific Reports2045-23222025-02-0115111210.1038/s41598-025-88594-0Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatmentHoda Fereydouni0Tannaz Naseri1Seyyed Mohammad Mousavi2Biotechnology Group, Chemical Engineering Department, Tarbiat Modares UniversityBiotechnology Group, Chemical Engineering Department, Tarbiat Modares UniversityBiotechnology Group, Chemical Engineering Department, Tarbiat Modares UniversityAbstract Mining activities produce a significant amount of gold mine tailings (GMT) rich in rare earth elements. Despite this, little information is available regarding the effective extraction of these precious elements from GMT. We describe a novel strategy for removing Pr, Ce, and Eu from GMT using Acidithiobacillus thiooxidans combined with a pretreatment step. For the pretreatment, GMT was exposed to 2 M oxalic acid for 6 h at 90 °C and 500 rpm at a liquid-to-solid ratio of 60 mL/g, which selectively removed iron and enhanced rare earth element bioavailability. As a result, GMT powder was introduced during the logarithmic growth phase of A. thiooxidans to maximize the bacterial activity and acid production during bioleaching. Surface modifications revealed by structural analysis validated the progress of the bioleaching procedure. Based on kinetic modeling, it was determined that chemical reactions determined the rate-limiting stage. The results showed a notable improvement in the recovery of rare earth elements after iron removal, with recovery of Pr, Ce, and Eu increasing by 24.4%, 14.4%, and 9.1%, respectively. A promising approach to resource recovery in mining operations could be achieved by integrating pretreatment and bioleaching for enhancing the recovery of rare earth elements from GMT.https://doi.org/10.1038/s41598-025-88594-0BioleachingGold mine tailingAcidithiobacillus thiooxidansRare earthsPretreatmentOxalic acid
spellingShingle Hoda Fereydouni
Tannaz Naseri
Seyyed Mohammad Mousavi
Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatment
Scientific Reports
Bioleaching
Gold mine tailing
Acidithiobacillus thiooxidans
Rare earths
Pretreatment
Oxalic acid
title Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatment
title_full Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatment
title_fullStr Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatment
title_full_unstemmed Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatment
title_short Synergistic recovery of Pr, Eu, and Ce from gold mine tailings using bioleaching and oxalic acid pretreatment
title_sort synergistic recovery of pr eu and ce from gold mine tailings using bioleaching and oxalic acid pretreatment
topic Bioleaching
Gold mine tailing
Acidithiobacillus thiooxidans
Rare earths
Pretreatment
Oxalic acid
url https://doi.org/10.1038/s41598-025-88594-0
work_keys_str_mv AT hodafereydouni synergisticrecoveryofpreuandcefromgoldminetailingsusingbioleachingandoxalicacidpretreatment
AT tannaznaseri synergisticrecoveryofpreuandcefromgoldminetailingsusingbioleachingandoxalicacidpretreatment
AT seyyedmohammadmousavi synergisticrecoveryofpreuandcefromgoldminetailingsusingbioleachingandoxalicacidpretreatment