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Tytuł artykułu

The Recycling of Secondary Waste in Polish Recycling Companies

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article analyses the recycling of secondary waste in Polish recycling companies. An innovative method of processing PCBs is presented and trends that should be followed by plants processing non-ferrous metal waste are indicated. In conclusion, it is emphasised that the Polish WEEE recycling market is still at the early development and growth stage and the most important goals that enterprises should set themselves include cost optimisation, improvement of waste management logistics and increases in the level of recycling.
Rocznik
Tom
Strony
715--730
Opis fizyczny
Bibliogr. 41 poz., rys., tab.
Twórcy
  • Department of Metallurgy and Materials Engineering, Institute of Materials and Biomedical Engineering, Faculty of Mechanical Engineering, University of Zielona Góra, Poland
autor
  • Department of Economics and Management in Industry, Faculty of Materials Science and Technology, VSB – Technical University of Ostrava, Czech Republic
  • Department of Metallurgy and Materials Engineering, Institute of Materials and Biomedical Engineering, Faculty of Mechanical Engineering, University of Zielona Góra, Poland
  • Department of Metallurgy and Materials Engineering, Institute of Materials and Biomedical Engineering, Faculty of Mechanical Engineering, University of Zielona Góra, Poland
autor
  • Department of Metallurgy and Materials Engineering, Institute of Materials and Biomedical Engineering, Faculty of Mechanical Engineering, University of Zielona Góra, Poland
Bibliografia
  • Biswajit, D., Chowdhury, R. Ghosh, K., (2018). Sustainability of metal recovery from Ewaste. Frontiers of Environmental Science and Engineering, 1-12.
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  • Central Statistical Office (2017), Material Economy in 2016, Warsaw 2017
  • Chamier-Gliszczynski, N., Krzyzynski, T. (2005). On modelling three-stage system of receipt and automotive recycling. REWAS’04, Global Symposium on Recycling, Waste Treatment and Clean Technology 2005, 2813-2814, Madrid, Spain, 26-29 September 2004, Conference Paper, ISBN: 8495520060.
  • Chamier-Gliszczyński, N. (2010). Optimal Design for the Environment of the Means Transportation: a Case Study of Reuse and Recycling Materials. Sold State Phenomena, 165, 244-249. DOI: 10.4028/www.scientific.net/SSP.165.244
  • Chamier-Gliszczyński, N. (2011). Environmental aspects of maintenance of transport means, end-of life stage of transport means. Eksploatacja i Niezawodnosc – Maintenance and Reliability, 50(2), 59-71. In: http://ein.org.pl/podstrony/wydania/50/pdf/07.pdf
  • Chamier-Gliszczyński, N. (2011a). Reuse, Recovery and Recycling System of End-of Life Vehicles. Key Engineering Materials, 450, 425-428. DOI: 10.4028/ www.scientific.net/KEM.450.425
  • Chamier-Gliszczyński, N. (2011b). Recycling Aspect of End-of Life Vehicles. Recovery of Components and Materials from ELVs. Key Engineering Materials, 450, 421-424. DOI: 10.4028/www.scientific.net/KEM.450.421
  • Czwajda, L., Kosacka-Olejnik, M., Kudelska, I., Kostrzewski, M., Sethanan, K., Pitakaso, R. (2019). Application of prediction markets phenomenon as decision support instrument in vehicle recycling sector. Logforum, 15(2), 265-278. DOI: 10.17270/J.LOG.2019.329
  • Dobrzycki, A., Filipiak, M., Jajczyk, J. (2019). Changes in the range of electric vehicles during operation, ITM Web of Conferences, 28 (01009), DOI: https://doi.org/10.1051/itmconf/20192801009
  • Duan, C., Wen, X. & Shi, C. (2009). Recovery of metals from waste printed circuit boards by a mechanical method using a water medium. Journal of Hazardous Materials, 1(166), 478-482.
  • Gabryelewicz, I., Stryjski, R., Wędrychowicz, M., Dąbrowski, T. (2020). The State of the Air Quality in Poland. Rocznik Ochrona Środowiska, 22(2), 998-1013.
  • Gabryelewicz, I., Krupa, P., Sąsiadek, M. (2018). International Business Information Management Association Conference – IBIMA: Innovation Management and Education Excellence through Vision 2020, Milan, Włochy, Norristown: International Business Information Management Association (IBIMA), 4720-4727.
  • Havlik, T. (2010). Leaching of copper and Tin from used printed circuit boards after thermal treatment. Journal of Hazardous Materials, 183, 866-873.
  • Hausner, J. (2017). The future of the market economy – from opportunistic to relational economic gamej, Cracow: Open Eyes Book (in Polish).
  • Huisman, J., Botezatu, I. i Herreras, L. (2015). Countering WEEE Illegal Trade Summary Report, Croatia: CWIT consortium.
  • Institute for Research on Market Economy, (2017). Functioning and irregularities in the management system of waste electrical and electronic equipment (WEEE) in Poland, Warszawa (in Polish).
  • Jachowicz, T., Sikora, J., Dulebova, L. (2017). Investigating effects of prodegradant content on selected properties of polymer composite materials. Environmental Engineering and Management Journal, 16(12), 2879-2886.
  • Jacyna, M., Wasiak, M., Lewczuk, K., Chamier-Gliszczyński, N., Dąbrowski, T. (2018). Decision Problems in Developing Proecological Transport System. Rocznik Ochrona Środowiska, 20(2), 1007-1025.
  • Jajczyk, J. (2016). Use of Personal Computers with Multi-core Processors for Optimisation Using the Genetic Algorithm Method, IEEEXplore Electronic. DOI: https://doi.org/10.1109/CPEE.2016.7738731.
  • Jajczyk, J., Filipiak, M., Dąbrowski T. (2020). Reducing the Use of Electrochemical Sources of Electricity Through the Use of Wireless Power Supply. Rocznik Ochrona Środowiska, 22(1), 444-455.
  • Kanalikova, A., Behunova, A., Mandicak, T., Mesaros, P. (2019) New technologies for sustaining development in infrastructure, logistics and construction industry. Acta Logistica, 6(4), 171-177. DOI: 10.22306/al.v6i4.145
  • Kosacka-Olejnik, M. (2019). How manage waste from End-of-Life Vehicles? – method proposal. IFAC Papersonline, 52, 13, 1733-1737. DOI: 10.1016/j.ifacol.2019.11.451
  • Kulczycka, J., Karaś, H. (2016). Legal versus illegal trade in waste electrical and electronic equipment – effects and threats. CUPRUM – Czasopismo Naukowo-Techniczne Górnictwa Rud, 78(1), 65-75 (in Polish).
  • Lee, J., Lee, J. (2012). Disassembly and physical separation of electric/electronic components layered in printed circuit boards (PCB). Journal of Hazardous Materials, October, 241-242.
  • Main Environmental Inspectorate, (2018). The state of the environment in Poland, Report2018. Warszawa: Biblioteka Monitoringu Środowisowego.
  • Marczewska, M., Jaskanis, A., Kostrzewski, M. (2020). Knowledge, Competences and Competitive Advantage of the Green-Technology Companies in Poland. Sustainability, 12(21), 8826. DOI: 10.3390/su12218826
  • Merkisz-Guranowska, A. (2018). Waste recovery of end-of-life vehicles. International Automotive Conference (KONMOT 2018), 421, 032019. DOI: 10.1088/1757-899X/421/3/032019
  • National Fund for Environmental Protection, (2015). Standards for the processing of individual types of waste equipment and requirements for waste equipment processing plants, Report Ministry of the Environment (in Polish).
  • Report of the Main Statistical Office, Environmental Protection 2. (2017). Environmental Protecion, Warszawa: Main Statistical Office.
  • Reconomy, Koalicja na rzecz Gospodarki Obiegu Zamkniętego. (2017). Gospodarka obiegu zamkniętego – Biznes i konsument na ścieżce zmiany. Warszawa: no name of the author.
  • Stena Recycling Innovating, (2016). In: https://odpady.net.pl/2016/04/20/przedsiebiorcystawiaja-na-odpowiedzialne-gospodarowanie-odpadami/ (Date of Access: 2020).
  • Stena Recycling, (2016). In: https://biznesalert.pl/raport-potrzeby-oczekiwania-i-obawyprzedsiebiorstw-wytwarzajacych-odpady/ (Date of Access: 04.05.2021).
  • Straka, M., Tausova, M., Rosova, A., Cehlar, M., Kacmary, P., Sisol, M., Ignacz, P., Farkas C. Big Data Analytics of a Waste Recycling Simulation Logistics System. Polish Journal of Environmental Studies, 29(3), 2355-2364, DOI: 10.15244/pjoes/108684.
  • Woynarowska, A., Żukowski, W., (2009). Modern methods of recycling electronic waste. Chemia – Czasopismo Techniczne, 06(10), 177-182.
  • Woźniak, W., Nawrocki, W., Stryjski, R., Jakubowski, J. (2017). Identification and reduction of product defects in mass production at toyota motor manufacturing, Poland. W: Proceedings of the 30th International Business Information Management Association Conference – IBIMA 2017 4774-4782, Madrid, Spain, 2017.
  • Woźniak, W., Nawrocki, W., Stryjski, R., Jakubowski, J. (2017). Diagnosis of process parameters which reduce the defective parts in mass production. W: Proceedings of the 29th International Business Information Management Association Conference – IBIMA 2017, 2628-2635, Vienna, Austria 2017.
  • Yazici, E., Daveci, H. (2009). Recovery of metals from E-wastes. Journal of the Chamber of Mining Engineers of Turkey, 3(43), 3-18.
  • Zajac, P., Kwasniowski, S. (2017). Modeling forklift truck movement in the VDI cycle and the possibility of energy recovery. In 23rd International conference on engineering mechanics, 1094-1097. In: https://engmechx.it.cas.cz/improc/2017/1094.pdf
  • Zajac, P., Stas, D., Lenort, R. (2020). Noise Charge in Rail Transport-EU Regulations Versus Operation of Logistics Systems. Rocznik Ochrona Środowiska, 22.
  • Zhang, L. Xu, (2016). A review of current progress of recycling technologies for metals from waste electrical and electronic equipment. Journal of Cleaner Production.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7590ee3a-e217-44bd-b6dd-56767f2d528d
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