Waste of electric-electronic equipment (WEEE) with an annual growth rate of about 3-5% is the fastest growing waste stream in municipal wastes. Notwithstanding their environmental pollution potential, waste of electrical and electronic equipment (WEEE) with their high content of base and precious metals, in particular, are regarded as a potential secondary resource when compared with ores. For the recovery of metals from WEEE, various treatment options based on conventional physical, hydrometallurgical and pyrometallurgical processes are available. These process options with particular reference to hydrometallurgical processes were reviewed in this study. With their relatively low capital cost, reduced environmental impact (e.g. no hazardous gases/dusts), potential for high metal recoveries and suitability for small scale applications, hydrometallurgical processes are promising options for the treatment of WEEE. Since the metals are present in native form and/or as alloys, an oxidative leaching process is required for the effective extraction of base and precious metals of interest. A two-stage process based on oxidative acid leaching of base metals (Cu in particular) followed by leaching of precious metals using cyanide, thiosulfate, thiourea or halide as lixiviant(s) can be suitably developed for the hydrometallurgical treatment of WEEE. However, further research is required to develop new, cost effective and environmentally friendly processes and/or refine existing ones for leaching and, in particular, downstream processes. © 2011 Elsevier Ltd. All rights reserved.

Aqueous metal recovery techniques from e-scrap. Hydrometallurgy in recycling / Tuncuk, A.; Stazi, V.; Akcil, A.; Yazici, E. Y.; Deveci, H.. - In: MINERALS ENGINEERING. - ISSN 0892-6875. - 25:1(2012), pp. 28-37. [10.1016/j.mineng.2011.09.019]

Aqueous metal recovery techniques from e-scrap. Hydrometallurgy in recycling

Stazi V.;
2012

Abstract

Waste of electric-electronic equipment (WEEE) with an annual growth rate of about 3-5% is the fastest growing waste stream in municipal wastes. Notwithstanding their environmental pollution potential, waste of electrical and electronic equipment (WEEE) with their high content of base and precious metals, in particular, are regarded as a potential secondary resource when compared with ores. For the recovery of metals from WEEE, various treatment options based on conventional physical, hydrometallurgical and pyrometallurgical processes are available. These process options with particular reference to hydrometallurgical processes were reviewed in this study. With their relatively low capital cost, reduced environmental impact (e.g. no hazardous gases/dusts), potential for high metal recoveries and suitability for small scale applications, hydrometallurgical processes are promising options for the treatment of WEEE. Since the metals are present in native form and/or as alloys, an oxidative leaching process is required for the effective extraction of base and precious metals of interest. A two-stage process based on oxidative acid leaching of base metals (Cu in particular) followed by leaching of precious metals using cyanide, thiosulfate, thiourea or halide as lixiviant(s) can be suitably developed for the hydrometallurgical treatment of WEEE. However, further research is required to develop new, cost effective and environmentally friendly processes and/or refine existing ones for leaching and, in particular, downstream processes. © 2011 Elsevier Ltd. All rights reserved.
2012
e-scrap; hydrometallurgy; leaching; metal recovery; recycling
01 Pubblicazione su rivista::01a Articolo in rivista
Aqueous metal recovery techniques from e-scrap. Hydrometallurgy in recycling / Tuncuk, A.; Stazi, V.; Akcil, A.; Yazici, E. Y.; Deveci, H.. - In: MINERALS ENGINEERING. - ISSN 0892-6875. - 25:1(2012), pp. 28-37. [10.1016/j.mineng.2011.09.019]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1426764
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