Toxic Metal Recovery from Waste Printed Circuit Boards: A Review of Advanced Approaches for Sustainable Treatment Methodology

The rapid advancement of technical advancements has resulted in the generation of substantial amount of electronic trash (e-waste). The volume of e-waste created, as well as the presence of both dangerous and beneficial elements, enhances the business potential of recovery and recycling significantl...

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Main Authors: Murugesan Manikkampatti Palanisamy, Venkata Ratnam Myneni, Badhane Gudeta, Srikanth Komarabathina
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2022/6550089
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author Murugesan Manikkampatti Palanisamy
Venkata Ratnam Myneni
Badhane Gudeta
Srikanth Komarabathina
author_facet Murugesan Manikkampatti Palanisamy
Venkata Ratnam Myneni
Badhane Gudeta
Srikanth Komarabathina
author_sort Murugesan Manikkampatti Palanisamy
collection DOAJ
description The rapid advancement of technical advancements has resulted in the generation of substantial amount of electronic trash (e-waste). The volume of e-waste created, as well as the presence of both dangerous and beneficial elements, enhances the business potential of recovery and recycling significantly. Waste printed circuit boards (PCBs) include a number of hazardous heavy metals, including copper (Cu), tin (Sn), lead (Pb), and others (Zn, Ni, Fe, Br, Mn, Mg etc.). These discarded metals without treatment threaten the economy, the environment, and human health. Heavy metal recovery from PCBs is a big difficulty for researchers. The present review focuses on technological advances in the recovery of toxic, precious metals from PCBs.
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institution Kabale University
issn 1687-8442
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publishDate 2022-01-01
publisher Wiley
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series Advances in Materials Science and Engineering
spelling doaj-art-1bcc5345d3c44a7c9f33a7155637664f2025-02-03T06:05:55ZengWileyAdvances in Materials Science and Engineering1687-84422022-01-01202210.1155/2022/6550089Toxic Metal Recovery from Waste Printed Circuit Boards: A Review of Advanced Approaches for Sustainable Treatment MethodologyMurugesan Manikkampatti Palanisamy0Venkata Ratnam Myneni1Badhane Gudeta2Srikanth Komarabathina3Department of Food TechnologyDepartment of Chemical EngineeringDepartment of Chemical EngineeringDepartment of Chemical EngineeringThe rapid advancement of technical advancements has resulted in the generation of substantial amount of electronic trash (e-waste). The volume of e-waste created, as well as the presence of both dangerous and beneficial elements, enhances the business potential of recovery and recycling significantly. Waste printed circuit boards (PCBs) include a number of hazardous heavy metals, including copper (Cu), tin (Sn), lead (Pb), and others (Zn, Ni, Fe, Br, Mn, Mg etc.). These discarded metals without treatment threaten the economy, the environment, and human health. Heavy metal recovery from PCBs is a big difficulty for researchers. The present review focuses on technological advances in the recovery of toxic, precious metals from PCBs.http://dx.doi.org/10.1155/2022/6550089
spellingShingle Murugesan Manikkampatti Palanisamy
Venkata Ratnam Myneni
Badhane Gudeta
Srikanth Komarabathina
Toxic Metal Recovery from Waste Printed Circuit Boards: A Review of Advanced Approaches for Sustainable Treatment Methodology
Advances in Materials Science and Engineering
title Toxic Metal Recovery from Waste Printed Circuit Boards: A Review of Advanced Approaches for Sustainable Treatment Methodology
title_full Toxic Metal Recovery from Waste Printed Circuit Boards: A Review of Advanced Approaches for Sustainable Treatment Methodology
title_fullStr Toxic Metal Recovery from Waste Printed Circuit Boards: A Review of Advanced Approaches for Sustainable Treatment Methodology
title_full_unstemmed Toxic Metal Recovery from Waste Printed Circuit Boards: A Review of Advanced Approaches for Sustainable Treatment Methodology
title_short Toxic Metal Recovery from Waste Printed Circuit Boards: A Review of Advanced Approaches for Sustainable Treatment Methodology
title_sort toxic metal recovery from waste printed circuit boards a review of advanced approaches for sustainable treatment methodology
url http://dx.doi.org/10.1155/2022/6550089
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AT venkataratnammyneni toxicmetalrecoveryfromwasteprintedcircuitboardsareviewofadvancedapproachesforsustainabletreatmentmethodology
AT badhanegudeta toxicmetalrecoveryfromwasteprintedcircuitboardsareviewofadvancedapproachesforsustainabletreatmentmethodology
AT srikanthkomarabathina toxicmetalrecoveryfromwasteprintedcircuitboardsareviewofadvancedapproachesforsustainabletreatmentmethodology