Identyfikatory
DOI
Warianty tytułu
Języki publikacji
Abstrakty
The continuous changing technologies of electronic devices, mainly mobile phones cause that their life is shorten from year to year (even to 8-12 months); that is way there is a constantly increasing amount of generated waste. Such waste treatment to recover mainly copper and other base metals should be really profitable. The process of metals recovery could be done using different methods including pyro- and hydrometallurgical process. The paper describes the research of leaching process of Printed Circuit Boards (PCB) coming from waste mobile phones. As a leaching agent sulfuric acid was used with addition of hydrogen peroxides. Experiments were carried out for different temperature, acid concentration and addition of hydrogen peroxide. As a result the concentration of copper, zinc, iron and aluminium in the obtained solution was measured. The results were discussed.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
143--147
Opis fizyczny
Bibliogr. 36 poz., rys., tab.
Twórcy
autor
- Silesian University of Technology, Faculty of Engineering Materials and Metallurgy, 8 Krasińskiego Str., 40-019 Katowice, Poland
autor
- Silesian University of Technology, Faculty of Engineering Materials and Metallurgy, 8 Krasińskiego Str., 40-019 Katowice, Poland
autor
- Silesian University of Technology, Faculty of Engineering Materials and Metallurgy, 8 Krasińskiego Str., 40-019 Katowice, Poland
Bibliografia
- [1] A. Tripathi, M. Kumar, International Journal of Metallurgical Engineering 1 (2), 17-21 (2012).
- [2] K. Huang, J. Guo, Z. Xu, J. Hazard, Mater. 164, 399-408 (2009).
- [3] C.P. Balde, F. Wang, J. Wong, R. Kuehr, J. Huisman, The global e-waste monitor, United Nations University, IAS-SCYCLE, Bonn, Germany (2014).
- [4] P.M.H. Petter, H.M. Veit, A.M. Bernardes, Waste Management 34, 475-482 (2014).
- [5] A. Fornalczyk, J. Willner, K. Francuz, J. Cebulski, Arch. Mater. Sci. Eng. 63, 87-92, (2013).
- [6] A. Fornalczyk, M. Saternus, Metalurgija 50, 261-264 (2011).
- [7] M. Saternus, A. Fornalczyk, J. Willner, H. Kania, Przemysł chemiczny 95 (1), 78-83 (2016).
- [8] C. Xu, W. Zhang, W. He, G. Li, J. Huang, Waste Management 58, 341-347 (2016).
- [9] M. Kaya, Waste Management, 57, 64-90 (2016).
- [10] G. Chao, W. Hui, L. Wei, F. Jiangang, Y. Xin, Waste Management 31, 2161-2166 (2011).
- [11] J. Willner, A. Fornalczyk, Przemysł chemiczny 90 (11), 517-521 (2011).
- [12] A. Woynarowska, W. Żukowski, Współczesne metody recyklingu odpadów elektronicznych, Wydawnictwo Politechniki Krakowskiej, Kraków, 2012.
- [13] L. H. Yamane, V. T. de Moraes, D. C. Espinosa, J. A. Tenório, Waste Management 31, 2553-2558 (2011).
- [14] A. Khaliq, M. A. Rhamdhani, G. Brooks, S. Masood, Resources 3, 152-179, (2014).
- [15] S. A. Shuey, P. Taylor, Proceedings of the SME Annual Meeting, Denver, CO, USA, February, 23-25 (2004).
- [16] B. S. Kim, J. C. Lee, S. P. Seo, Y. K. Park, H. Y. Sohn, JOM 56, 55-58 (2004).
- [17] M. Iji, S. Yokoyama, Circuit World 23, 10-15, (1997).
- [18] http://ewasteguide.info/valuable_materials_in_e_waste, 05.06.2017 r.
- [19] J. Ficeriová, P. Baláž, E. Gock, Acta Montanistica Slovaca 16 (2), 128-137 (2011).
- [20] Y. J. Park, D. J. Fray, Journal of Hazardous Materials 164, 1152-1158 (2009).
- [21] T. Yang, Z. Xu, J. Wen, L. Yang, Hydrometallurgy 97 (1-2), 29-32, (2009).
- [22] J. Guo, Z. Xu, Journal of Hazardous Materials 168 (2-3), 567-590, (2009).
- [23] M. Goosey, R. A. Kellner, Scoping Study: End-of-Life Printed Circuit Boards, 2002, http://www.cfsd.org.uk/seeba/TD/reports/PCB_Study.pdf., 05.07.2017.
- [24] E. Y. L. Sum, JOM 43, 53-61, (2005).
- [25] A. Behnamfard, M. M. Salarirad, F. Veglio, Waste Management 33, 2354-2363 (2013).
- [26] Z. Ahamd, Extracion of Metals from Electronic Waste, Final Report (CPT – II Mini Project), Department of Chemical Engineering, COMSATS Institute of Information Technology, Defense Road, Lahore (2015).
- [27] P. P. Sheng, T. H. Etsell, Waste Manag. Res. 25, 380-383, (2007).
- [28] P. Quinet, J. Proost, A. van Lierde, Miner. Metall. Process. 22, 17-22, (2005).
- [29] A. G. Chmielewski, T. S. Urbański, W. Migdał, Hydrometallurgy 45, 333-344 (1997).
- [30] P. Zhou, Z. Zheng, J. Tie, Chin. Patent 1603432, 6 April 2005.
- [31] V. Kogan, Int. Patent WO/2006/013568, 9 February 2006.
- [32] H. M. Veit, A. M. Bernardes, J. Z. Ferreira, J.A. Tenório, C. de Fraga Malfatti, J. Hazard. Mater. 137 (3), 1704-1709, (2006).
- [33] A. Mecucci, K. Scott, J. Chem. Technol. Biotechnol. 77, 449-457, (2002).
- [34] A. Tuncuk, V. Stazi, A. Akcil, E. Y. Yazici, H. Devici, Minerals Engineering 25, 28-37, (2012).
- [35] H. Yang, J. Liu, J. Yang, J. Hazard. Mater. 187, 393-400, (2011).
- [36] A. Adebayo, K. O. Ipinmoroti, O. O. Ajayi, Chemical and biochemical Engineering Quarterly 17, 213-218, (2003).
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bc2a09b8-48dc-4df5-9afb-2546e8f5e0ab