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Fungal Bioleaching for Metal Recovery: Recent Progress and Technological Advances

Angélica Ribeiro Soares, Xinran Xu

2026enbioleachingmetal recoveryfungisustainabilitygreen technology

Abstract

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Fungal bioleaching, as a green and sustainable technology for metal recovery, demonstrates unique advantages in addressing growing global metal demand and utilizing secondary resources. This review systematically summarizes recent progress and technological advances in fungal bioleaching for metal recovery. Fungi solubilize metals through three core mechanisms, acidolysis, complexolysis, and redoxolysis, mediated by organic acids (citric, oxalic, gluconic), while cell wall functional groups enable biosorption. Most frequently used genera in modern bioleaching (Aspergillus, Penicillium, Trichoderma) have achieved remarkable recoveries from e-waste (Cu, Li, Co up to 100%), rare earth elements (consortia up to 76%), tailings, and spent catalysts. Optimization of key parameters (pH, temperature, pulp density) and application of intelligent strategies (response surface methodology, machine learning) have further enhanced leaching efficiency. Strain engineering and synthetic biology offer new avenues for constructing hyper-efficient strains. Despite remaining bottlenecks such as slow kinetics and scale-up difficulties, fungal bioleaching holds broad industrial prospects for advancing the circular metal economy and the green metallurgical transition.

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Cite This Work

@article{da28c9ef-a627-4e3c-890d-d1d7f184937c,
  title={Fungal Bioleaching for Metal Recovery: Recent Progress and Technological Advances},
  author={Angélica Ribeiro Soares and Xinran Xu},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Fungal Bioleaching for Metal Recovery: Recent Progress and Technological Advances
AU  - Angélica Ribeiro Soares
AU  - Xinran Xu
PY  - 2026
LA  - en
ER  -

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