Czasopismo
2012
|
R. 109, z. 1-Ch
|
175--185
Tytuł artykułu
Autorzy
Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Modern methods of electronic waste recycling
Języki publikacji
Abstrakty
W artykule przedstawiono problematykę gospodarki odpadami elektronicznymi na świecie. Wskazano ich szkodliwy charakter dla ludzkiego zdrowia oraz środowiska. Przedstawiono przykładowe metody obecnie stosowane do przetwarzania oraz recyklingu tych niebezpiecznych odpadów w takich krajach jak Japonia, Korea Południowa oraz krajach Unii Europejskiej.
The paper presents the issue of electronic waste management around the world. Harmful nature to human health and the environment was emphasized. Examples of modern methods used for processing and recycling of this hazardous waste in countries such as Japan, Korea, UE were presented.
Czasopismo
Rocznik
Tom
Strony
175--185
Opis fizyczny
Bibliogr. 25 poz., il., wz.
Twórcy
autor
- Instytut Chemii i Technologii Nieorganicznej, Wydział Inżynierii i Technologii Chemicznej, Politechnika Krakowska
autor
- Instytut Chemii i Technologii Nieorganicznej, Wydział Inżynierii i Technologii Chemicznej, Politechnika Krakowska
Bibliografia
- [1] Khetriwal D.S., Kraeuchi P., Widmer R., Producer responsibility for e-waste management: key issues for consideration e learning from the Swiss experience, Journal of Environmental Management, 90/2009, 153-165.
- [2] Drechse C.H., Mechanical Processes for Recycling Waste Electric and Electronic Equipment with the Rotor shredder and Rotor Impact Mill, Aufbereitungs Technik, 2006, 47.
- [3] Petranikova M., Treatment of End of Life Computers, Diploma work. Technical University of Kosice, Kosice, Slovakia 2008.
- [4] Rao S.R., Recycling Metal, Waste Management Series, vol. 7 – Resources Recovery and Recycling from Metallurgical Wastes, Elsevier Science (Chapter 7), 2006.
- [5] Elektroeko (www.elektroeko.pl).
- [6] Zużyte świetlówki (http://www.zuzyteswietlowki.pl/?page_id=56).
- [7] Wang H.M., Yu I.J., Han M., Yang S.W., Estimated PBDE and PBB congeners in soil from an electronic waste disposal site, Bulletin of Environmental Contamination and Toxicology, 83/2009, 789-793.
- [8] Dyrektywa 2002/96/WE Parlamentu Europejskiego i Rady z dnia 27 stycznia 2003 r. w sprawie zużytego sprzętu elektrycznego i elektronicznego (WEEE).
- [9] WWF (www.wwf.pl).
- [10] Williams P.T., Valorization of Printed Circuit Boards from Waste Electrical and Electronic Equipment by Pyrolysis, Waste Biomass Valor, 1/2010, 107-120.
- [11] Hayes P., Process Principles in Minerals and Materials Production, Sherwood, Australia 1993, 28-32.
- [12] Aizawa H., Yoshida H., Sakai S., Current results and future perspective for Japanese recycling of home appliances, Resour Conserv Recycl, 52/2008, 1339-1410.
- [13] Masahiro O., Hirofumi S., Atsushi T., Hidetaka T., Fate of metals contained in waste electrical and electronic equipment in a municipal waste treatment process, Waste Management, 32 (2012), 96-103.
- [14] Jang Y., Lim S., National survey of e-waste material flow analysis, Final Report submitted to Korean Association of Electronics Environment, Yongin 2007.
- [15] Yong-Chul J., Waste electrical and electronic equipment (WEEE) management in Korea: generation, collection, and recycling systems, Waste Management Research in Korea II, 12/2010, 283-294.
- [16] Wang D., Cai Z., Jiang G., Leung A., Wong M., Wong W., Determination of polybrominated diphenyl ethers in soil and sediment from an electronic waste recycling facility, Chemosphere, 60/2005, 810-816.
- [17] Sjödin A., Carlsson H., Thuresson K., Sjölin S., Bergman Å., Östman C., Flame retardants in indoor air at an electronic recycling plant and at other work environments, Environ Sci Technol, 35/2001, 448-454.
- [18] Cui J., Zhang L., Metallurgical recovery of metals from electronic waste: a review, Journal of Hazardous Materials, 158/2008, 228-256.
- [19] Yazici E.Y., Deveci H., Recovery of metals from E-wastes, The Journal of the Chamber of Mining Engineers of Turkey, 48 (3)/2009, 3-18.
- [20] Antrekowitsch H., Potesser M., Spruzina W., Prior F., Metallurgical recycling of electronic scrap, EPD Congress 2006, 899-908.
- [21] Cui J., Forssberg E., Mechanical recycling of waste electric and electronic equipment: a review, Journal of Hazardous Materials B99, 2003, 243-263.
- [22] Duan C., Wen X., Shi C., Zhao Y., Wen B., He Y., Recovery of metals from waste printed circuit boards by a mechanical method using a water medium, Journal of Hazardous Materials, 166 (1)/2009, 478-482.
- [23] Chmielewski A.G., Urbański T.S., Migdał W., Separation technologies for metals recovery from industrial wastes, Hydrometallurgy, 45/1997, 333-344.
- [24] Lee C.H., Tang L.W., Popuri S.R., A study on the recycling of scrap integrated circuits by leaching, Waste Management & Research, 2010, 1-9.
- [25] Tuncuk A., Stazi V., Akcil A., Yazici E.Y., Deveci H., Aqueous metal recovery techniques from e-scrap: Hydrometallurgy in recycling, Minerals Engineering, 25/2012, 28-37.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-b59a8ec8-0f1b-4ede-907c-b2a1359643ab