156
5 Recovery of Metals from Electronic Waste
15. Dascalescu L, Mihalcioiu A, Tilmatine A, Mihailescu M, Iuga A, Samuila A (2004)
Electrostatic separation processes. IEEE Ind Appl Mag 10(6):19–25
16. Gurgul A, Szczepaniak W, Zabłocka-Malicka M (2017) Incineration, pyrolysis vs. steam
gasification of electronic waste. Sci Total Environ 624:1119–1124
17. Debnath B, Chowdhury R, Ghosh SK (2018) sustainability of metal recovery from e-waste.
Front Environ Sci Eng 12(6):1–12
18. Ebin B, Isik MI (2016) Pyrometallurgical processes for the recovery of metals from WEEE.
In: WEEE Recycling, Elsevier Inc., pp 107–137
19. Baniasadi M, Vakilchap F, Bahaloo-Horeh N, Mousavi SM, Farnaud S (2019) Advances in
bioleaching as a sustainable method for metal recovery from e-waste: a review. J Ind Eng
Chem 76:75–90
20. Cui J, Zhang L (2008) Metallurgical recovery of metals from electronic waste: a review. J
Hazard Mater 158:228–256
21. Khaliq A, Rhamdhani MA, Brooks G, Masood S (2014) Metal extraction processes for electronic waste and existing industrial routes: a review and australian perspective. Resources
3(1):152–179
22. Liu J, Guo X, Liu Y, Jiang X, Huang G (2016) Effects of Alkali-salt fusion process on recovery
of amphoteric metals from waste printed circuit boards. Trans Institutions Min Metall Sect C
Miner Process Extr Metall 125(4):211–215
23. Tan Q, Li J (2019) Rare earth metal recovery from typical e-waste. In: Waste electrical and
electronic equipment (WEEE) handbook. Elsevier Ltd, pp 393–421
24. Guo X, Liu J, Qin H, Liu Y, Tian Q, Li D (2015) Recovery of metal values from waste
printed circuit boards using an Alkali fusion-leaching-separation process. Hydrometallurgy
156:199–205
25. Ashiq A, Kulkarni J, Vithanage M (2019) Hydrometallurgical recovery of metals from e-waste.
In: Electronic waste management and treatment technology. Elsevier Inc., pp 225–246
26. Jin W, Zhang Y (2020) Sustainable electrochemical extraction of metal resources from waste
streams: from removal to recovery. ACS Sustain Chem Eng 8(12):4693–4707
27. Paul Chen J, Lim LL (2005) Recovery of precious metals by an electrochemical deposition
method. Chemosphere 60(10):1384–1392
28. Hubicki Z, Kotodynska D (2012) Selective removal of heavy metal ions from waters and waste
waters using ion exchange methods. In: Ion exchange technologies, pp 193–240
29. Sheindorf C, Rebhun M, Sheintuch M (1981) A freundlich-type multicomponent isotherm. J
Colloid Interface Sci 79(1):136–142
30. Fritz W, Schluender EU (1974) Simultaneous adsorption equilibria of organic solutes in dilute
aqueous solutions on activated carbon. Chem Eng Sci 29(5):1279–1282
31. Mpinga CN, Bradshaw SM, Akdogan G, Snyders CA, Eksteen JJ (2014) Evaluation of the
Merrill-Crowe process for the simultaneous removal of platinum, palladium and gold from
cyanide leach solutions. Hydrometallurgy 142:36–46
32. Ding X, Liu Q, Hou X, Fang T (2017) Supercritical fluid extraction of metal chelate: a review.
Crit Rev Anal Chem 47(2):99–118
33. An L (2019) Recycling of spent lithium-ion batteries: processing methods and environmental
impacts. Springer Nature
34. Bosecker K (1997) Bioleaching: metal solubilization by microorganisms. FEMS Microbiol
Rev 20(3–4):591–604
35. Arya S, Kumar S (2020) Bioleaching: urban mining option to curb the menace of e-waste
challenge. Bioengineered, 11(1):640–660
36. Ojima Y, Kosako S, Kihara M, Miyoshi N, Igarashi K, Azuma M (2019) Recovering metals from
aqueous solutions by biosorption onto phosphorylated dry Baker’s yeast. Sci. Rep. 9(1):1–9
37. Mack C, Wilhelmi B, Duncan JR, Burgess JE (2007) Biosorption of precious metals. Biotechnol
Adv 25(3):264–271. https://doi.org/10.1016/j.biotechadv.2007.01.003
38. https://www.aurubis.com/en/about-aurubis/overview
5 Recovery of Metals from Electronic Waste
15. Dascalescu L, Mihalcioiu A, Tilmatine A, Mihailescu M, Iuga A, Samuila A (2004)
Electrostatic separation processes. IEEE Ind Appl Mag 10(6):19–25
16. Gurgul A, Szczepaniak W, Zabłocka-Malicka M (2017) Incineration, pyrolysis vs. steam
gasification of electronic waste. Sci Total Environ 624:1119–1124
17. Debnath B, Chowdhury R, Ghosh SK (2018) sustainability of metal recovery from e-waste.
Front Environ Sci Eng 12(6):1–12
18. Ebin B, Isik MI (2016) Pyrometallurgical processes for the recovery of metals from WEEE.
In: WEEE Recycling, Elsevier Inc., pp 107–137
19. Baniasadi M, Vakilchap F, Bahaloo-Horeh N, Mousavi SM, Farnaud S (2019) Advances in
bioleaching as a sustainable method for metal recovery from e-waste: a review. J Ind Eng
Chem 76:75–90
20. Cui J, Zhang L (2008) Metallurgical recovery of metals from electronic waste: a review. J
Hazard Mater 158:228–256
21. Khaliq A, Rhamdhani MA, Brooks G, Masood S (2014) Metal extraction processes for electronic waste and existing industrial routes: a review and australian perspective. Resources
3(1):152–179
22. Liu J, Guo X, Liu Y, Jiang X, Huang G (2016) Effects of Alkali-salt fusion process on recovery
of amphoteric metals from waste printed circuit boards. Trans Institutions Min Metall Sect C
Miner Process Extr Metall 125(4):211–215
23. Tan Q, Li J (2019) Rare earth metal recovery from typical e-waste. In: Waste electrical and
electronic equipment (WEEE) handbook. Elsevier Ltd, pp 393–421
24. Guo X, Liu J, Qin H, Liu Y, Tian Q, Li D (2015) Recovery of metal values from waste
printed circuit boards using an Alkali fusion-leaching-separation process. Hydrometallurgy
156:199–205
25. Ashiq A, Kulkarni J, Vithanage M (2019) Hydrometallurgical recovery of metals from e-waste.
In: Electronic waste management and treatment technology. Elsevier Inc., pp 225–246
26. Jin W, Zhang Y (2020) Sustainable electrochemical extraction of metal resources from waste
streams: from removal to recovery. ACS Sustain Chem Eng 8(12):4693–4707
27. Paul Chen J, Lim LL (2005) Recovery of precious metals by an electrochemical deposition
method. Chemosphere 60(10):1384–1392
28. Hubicki Z, Kotodynska D (2012) Selective removal of heavy metal ions from waters and waste
waters using ion exchange methods. In: Ion exchange technologies, pp 193–240
29. Sheindorf C, Rebhun M, Sheintuch M (1981) A freundlich-type multicomponent isotherm. J
Colloid Interface Sci 79(1):136–142
30. Fritz W, Schluender EU (1974) Simultaneous adsorption equilibria of organic solutes in dilute
aqueous solutions on activated carbon. Chem Eng Sci 29(5):1279–1282
31. Mpinga CN, Bradshaw SM, Akdogan G, Snyders CA, Eksteen JJ (2014) Evaluation of the
Merrill-Crowe process for the simultaneous removal of platinum, palladium and gold from
cyanide leach solutions. Hydrometallurgy 142:36–46
32. Ding X, Liu Q, Hou X, Fang T (2017) Supercritical fluid extraction of metal chelate: a review.
Crit Rev Anal Chem 47(2):99–118
33. An L (2019) Recycling of spent lithium-ion batteries: processing methods and environmental
impacts. Springer Nature
34. Bosecker K (1997) Bioleaching: metal solubilization by microorganisms. FEMS Microbiol
Rev 20(3–4):591–604
35. Arya S, Kumar S (2020) Bioleaching: urban mining option to curb the menace of e-waste
challenge. Bioengineered, 11(1):640–660
36. Ojima Y, Kosako S, Kihara M, Miyoshi N, Igarashi K, Azuma M (2019) Recovering metals from
aqueous solutions by biosorption onto phosphorylated dry Baker’s yeast. Sci. Rep. 9(1):1–9
37. Mack C, Wilhelmi B, Duncan JR, Burgess JE (2007) Biosorption of precious metals. Biotechnol
Adv 25(3):264–271. https://doi.org/10.1016/j.biotechadv.2007.01.003
38. https://www.aurubis.com/en/about-aurubis/overview
