A review on recent advancements in recovery of valuable and toxic metals from e-waste using bioleaching approach

This review is intent on the environmental pollution generated from printed circuit boards and the methods employed to retrieve valuable and hazardous metals present in the e-wastes. Printed circuit boards are the key components in the electronic devices and considered as huge e-pollutants in pollut...

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Veröffentlicht in:Chemosphere (Oxford) 2022-01, Vol.287, p.132230-132230, Article 132230
Hauptverfasser: Yaashikaa, P.R., Priyanka, B., Senthil Kumar, P., Karishma, S., Jeevanantham, S., Indraganti, Sravya
Format: Artikel
Sprache:eng
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Zusammenfassung:This review is intent on the environmental pollution generated from printed circuit boards and the methods employed to retrieve valuable and hazardous metals present in the e-wastes. Printed circuit boards are the key components in the electronic devices and considered as huge e-pollutants in polluting our surroundings and the environment as a whole. Composing of toxic heavy metals, it causes serious health effects to the plants, animals and humans in the environment. A number of chemical, biological and physical approaches were carried out to recover the precious metals and to remove the hazardous metals from the environment. Chemical leaching is one of the conventional PCBs recycling methods which was carried out by using different organic solvents and chemicals. Need of high cost for execution, generation of secondary wastes in the conventional methods, forces to discover the advanced recycling methods such as hydrometallurgical, bio-metallurgical and bioleaching processes to retrieve the valuable metals generate through e-wastes. Among them, bioleaching process gain extra priority due to its higher efficiency of metal recovery from printed circuit boards. There are different classes of microorganisms have been utilized for precious metal recovery from the PCBs through bioleaching process such as chemolithoautotrophy, heterotrophy and different fungal species including Aspergillus sp. and Penicillium sp. The current status and scope for further studies in printed circuit boards recycling are discussed in this review. [Display omitted] •Different recycling methods of PCBs for metal recovery were discussed.•Disadvantages of various conventional PCBs recycling methods are highlighted.•Bioleaching mechanism and its associated factors were discussed in detail.•Penicillium sp. and Aspergillus sp. are the major fungal species utilized for PCB metal recovery.•Scopes for future research in PCBs recycling methods were highlighted.
ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2021.132230