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Tytuł artykułu

State of the Art in the End-of-Life Vehicle Recycling

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Growing ecological awareness in society and legal regulations aimed at reducing the negative impact of used products on the environment means that waste management begins to play a significant role in the modern world. Therefore, it is necessary to conduct research towards the organization and implementation of waste management. It has been noticed that an important link in the economy is the recycling of used products. Thus, numerous studies are undertaken in the direction of organization, improvement, automation and computerization of the product and material recycling process. The article presents the results of literature research in terms of the implementation of the end-of-life vehicle recycling process.
Rocznik
Tom
Strony
902--913
Opis fizyczny
Bibliogr. 69 poz., tab.
Twórcy
autor
  • ŠKODA AUTO University, Czech Republic
autor
  • ŠKODA AUTO University, Czech Republic
autor
  • ŠKODA AUTO University, Czech Republic
  • Technical University of Košice, Slovakia
Bibliografia
  • 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). Sustainable operation of transport system in cities. Key Engineering Materials, 486, 175-178. DOI: 10.4028/www.scientific.net/KEM.486.175
  • Chamier-Gliszczyński, N. (2011a). 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
  • Chamier-Gliszczyński, N. (2011b). 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. (2011c). Environmental aspects of maintenance of transport means, end-of life stage of transport means. Eksploatacja i Niezawodnosc – Maintenance and Reliability, 50(2), 59-71. http://ein.org.pl/podstrony/wydania/50/pdf/07.pdf
  • Chamier-Gliszczyński, N., Bohdal, T. (2016). Mobility in urban areas in environment protection. Rocznik Ochrona Srodowiska, 18(1), 387-399.
  • Chamier-Gliszczynski, N. (2016a). City Logistics – Sustainable Urban Mobility. CLC 2015: Carpathian Logistics Congress – Conference Proceedings, 263-268, Jesenik, Czech Republic, 04-06 November 2015.
  • 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
  • Deng, HX., Wang, WQ., Zhao, Y. (2018). Optimization design of end-of-life vehicle recycling system based on ExtendSim. University Politehnica of Bucharest Scientific Bulletin Series C-Electrical Engineering and Computer Science, 80(3), 95-108.
  • Dia, G., Zhou, Z. (2018). Human Centered Automation System for ELV Disassembly Line. Lecture Notes in Electrical Engineering, 451, 347-355. DOI: 10.1007/978-981-10-5768-7_37
  • Filipiak, M., Jajczyk J., Dobrzycki A. (2019). Changes in the range of electric vehicles during operation. ITM Web of Conferences, 28, 01009, DOI: https://doi.org/10.1051/itmconf/20192801009.
  • Gabryelewicz, I., Stryjski, R., Wędrychowicz, M., Dąbrowski, T. (2020). The State of the Air Quality in Poland. Rocznik Ochrona Srodowiska, 22(2), 998-1013, ISSN: 1506-218X
  • Gabryelewicz, I., Wędrychowicz, M., Pántya, P., Krupa, P. (2021). Raw material and environmental safety of industrial processes. P: Environmental safety – non-energy and raw materials: scientific monograph, / ed. I. Gabryelewicz, M. Wędrychowicz, Zielona Góra: Oficyna Wydaw. Uniwersytetu Zielonogórskiego, 11-37, ISBN: 9788378424437
  • Gołębiewski, B., Trajer, J., Jaros, M., Winiczenko, R. (2019). Modelling of the location of vehicle recycling facilities: A case study in Poland. Resources, Conservation and Recycling, 80(1), 10-20. DOI: 10.1016/j.resconrec.2013.07.005
  • Hovest, G.G., Grama, C., Urosevic, L., Stokic, D. (2016). Collaborative environment for virtual collaborative networks of ELV recycling SEEs. 2008 IEEE International Technology Management Conference, ICE 2008, 27 April 2016, 7461998.
  • Izdebski, M., Jacyna, M. (2018). The Organization of Municipal Waste Collection: the Decision Model. Rocznik Ochrona Srodowiska, 20, 919-933.
  • Jacyna, M., Wasiak, M., Lewczuk, K., Chamier-Gliszczyński, N., Dąbrowski, T. (2018). Decision Problems in Developing Proecological Transport System. Rocznik Ochrona Srodowiska, 20(2), 1007-1025. http://ros.edu.pl/images/roczniki/2018/059_ROS_V20_R2018.pdf
  • Jajczyk, J., Słomczyński, K. (2019). A dedicated battery for an electric bike. ITM Web of Conferences, 28, 01033. DOI: https://doi.org/10.1051/itmconf/20192801033.
  • Jajczyk, J., Lorkiewicz, W. (2018). Data bus modelling in city buses. ITM Web of Conferences, 19, 01036. DOI: https://doi.org/10.1051/itmconf/20181901036.
  • Jakubowski, J., Woźniak, W. (2016). Development of a new educational model for virtual measurement machina. Proceedings of the 27th International Business Information Management Association(IBIMA), ISBN: 9780986041969, 4-5 May 2016, Milan, Italy, 2102-2109.
  • Jakubowski, J., Woźniak, W. (2017). The management of product-development technologies supported by CAx techniques. Proceedings of the 29th International Business Information Management Association (IBIMA), ISBN: 9780986041976, 3-4 May 2017, Vienna, Austria, 3218-3229.
  • Jakubowski, J., Woźniak, W., Stryjski, R. (2018). The Use of 3D Scanning and Measurements, as Modern Tools in the Management of Quality. Proceedings of the 31st International Business Information Management Association (IBIMA), ISBN: 9780999855102, 25-26 April 2018, Milan, Italy, 5946-5955.
  • Karagoz, S., Aydin, N., Simic, V. (2020). End-of-life vehicle management: a comprehensive review. J. Mater. Cycles Waste Manag, 22, 416-442. DOI: 10.1007/s10163-019-00945.
  • Khan, S.A.R., Godil, D.I., Thomas, G., Tanveer, M., Zia-Ul-Hang, H.M., Mahmood, H. (2021). The decision-making analysis on end-of-life vehicle recycling and remanufacturing under extended producer responsibility policy. Sustainability, 13(20), 11215. DOI: 10.3390/su132011215
  • Kielec, R., Sąsiadek, M., Woźniak, W. (2018). Adoption of the Evolutionary Algorithm to Automate the Scheduling of the Production Processes. Proceedings of the 31st International Business Information Management Association (IBIMA). ISBN: 9780 999855102, 25-26 April 2018, Milan, Italy 5039-5046.
  • Kosacka, M., Werner-Lewandowska, K. (2017). Methodology for Sustainable Resource Management Measurement at a Company Level – Case Study. Procedia Manufacturing, 11, 725-733. DOI: 10.1016/j.promfg.2017.07.173
  • Kosacka-Olejnik, M. (2019). How manage waste from End-of-Life Vehicles? – method proposal. IFAC-PapersOnLine, 52(13), 1733-1737.
  • Kostrzewski, M., Chamier-Gliszczynski, N., Królikowski, T. (2020). Selected reflections on formal modeling in Industry 4.0. Procedia Computer Science, 176, 3293-3300. DOI: 10.1016/j.procs.2020.09.118
  • Królikowski, T., Knitter, R., Blazejewski, A., Glowinski, S., Kaminski, K. (2019a). Emission of particles and VOCs at 3D printing in automotive. Smart Innovation, Systems and Technologies, 155, 485-494. DOI: 10.1007/978-981-13-9271-9_40
  • Królikowski, T., Knitter, R., Blazejewski, A., Zmuda Trzebiatowski, P., Zuchniewicz, J., Bak, A. (2021). Industry 4.0 – supporting industry in design solutions-all-in-one computer cover. Smart Innovation, Systems and Technologies, 200, 93-105. DOI: 10.1007/978-981-15-8131-1_9
  • Królikowski, T., Knitter, R., Stachnik, M. (2019). Hermo-mechanic tests using 3d printed elements. Procedia Computer Science, 159, 2552-2559. DOI: 10.1016/j.procs.2019 .09.430
  • Kudelska, I., Kosacka, M., Lewandowska, K. W. (2017). How to support storage process in dismantling facility with IT solutions? – case study. Procedia Manufacturing, 11, 703-710. DOI: 10.1016/j.promfg.2017.07.170
  • Kusacki, A.O., Ayvaz, B., Cin, E., Aydin, N. (2019). Optimization of reverse logistics network of End of Life Vehicles under fuzzy supply: A case study for Istanbul Metropolitan Area. Journal of Cleaner Production, 215, 1036-1051. DOI: 10.1016/j.jclepro.2019.01.090
  • Lenort, R., Baran, J., Wysokiński, M., Gołasa, P., Bieńkowska-Gołasa, W., Golonko, M., Chamier-Gliszczyński, N. (2019). Economic and environmental efficiency of the chemical industry in Europe in 2010-2016. Rocznik Ochrona Srodowiska, 21(2), 1398-1404.
  • Li, C.J., Yang, W.X., Liu, X.D., Wang, Y.M., Feng, S.H., He, Y.A. (2021). Research on vehicle recycling based on ELV Directive. IOP Conference Series: Earth and Environmental Science, 687(1), 012196. DOI: 10.1088/1755-1315/687/1/012196
  • Li, H., Wang, Y., Fan, F., Yu, H., Chu, J. (2021). Sustainable Plant Layout Design for End of Life Vehicle Recycling and Disassembly Industry Based on SLP Method, A Typical Case in China. IEEE Access. DOI: 10.1109/ACCESS.2021.3086402
  • Li, J., Barwood, M., Rahimifard, S. (2019). A multi-criteria assessment of robotic disassembly to support recycling and recovery. Resources Conservation and Recycling, 140, 158-165. DOI: 10.1016/j.resconrec.2018.09.019
  • Liu, M., Chen, X., Zhang, M., Lv, X., Wang, H., Chen, Z., Huand, X., Zhang, X., Zhang, S. (2020). End-of-life passenger vehicles recycling decision system in China based on dynamic material flow analysis and life cycle assessment. Waste Management, 117, 81-92. DOI: 10.1016/j.wasman.2020.08.002
  • Meng, YF., Liang, HJ., Zhao, CD., Li, WH., Gu, ZY., Yu, MX., Zhao, B., Hou, XK., Wu, XL. (2022). Concurrent recycling chemistry for cathode/anode in spent graphite/ LiFePO4 batteries: Designing a unique cation/anion-co-workable dual-ion battery. Journal of Energy Chemistry, 64, 166-171. DOI: 10.1016/j.jechem.2021.04.047
  • Merkisz-Guranowska, A. (2010). Issues related to the optimization of location of vehicle recycling network entities. Archives of Transport, 22(3), 303-318. DOI: 10.2478/v10174-010-0018-x
  • Merkisz-Guranowska, A. (2013). Multicriteria optimization model for end-of-life vehicles’ recycling network. International Journal of Sustainable Development and Planning, 8(1), 88-99. DOI: 10.2495/SDP-V8-N1-88-99
  • Merkisz-Guranowska, A. (2020). A comparative study on end-of-life vehicles network design. Archives of Transport, 54(2), 107-123.
  • Mohan, TVK., Amit, RK. (2021). Modeling oligopsony market for end-of-life vehicle recycling. Sustainable Production and Consumption, 25, 325-346.
  • Nawrocki, W., Stryjski, R., Woźniak, W., Jakubowski, J. (2018). Improving the Quality of Manufacturing Processes in Toyota Motor Manufacturing, Poland. Proceedings of the 31st International Business Information Management Association (IBIMA) ISBN: 9780999855102, 25-26 April 2018, Milan, Italy 5931-5945.
  • Numfor, S.A., Omosa, G.B., Zhang, Z., Matsubae, K. (2021). A review of challenges and opportunities for end-of-life vehicle recycling in developing countries and emerging economies: A swot analysis. Sustainability, 13(9), 4918. DOI: 10.3390/su13094918
  • Pałka Ł., Kuryło P., Klekiel T., Pruszyński P. (2020). A Mechanical Study of Novel Additive Manufactured Modular Mandible Fracture Fixation Plates – Preliminary Study with Finite Element Analysis 2020, Injury: International Journal of the Care of the Injured, 51(7), 1527-1535, ISSN: 0020-1383, eISSN: 1879-0267.
  • Petronijevic, V., Dordevic, A., Stefanovic, M., Arsovski, S., Krivokapic, Z., Misic, M. (2020). Energy Recovery through End-of-Life Vehicles Recycling in Developing Countries. Sustainability, 12(21), 8764. DOI: 10.3390/su12218764
  • Sakai, S., Yoshida, H., Hiratsuka, J., Vandecasteele, C., Kohlmeyer, R., Rotter, VS., Passarini, F., Santini, A., Peeler, M., Li, JH. (2014). An international comparative study of end-of-life vehicle (ELV) recycling systems. Journal of Material Cycles and Waste Management, 16(1), 1-20. DOI: 10.1007/s10163-013-0173-2
  • Sąsiadek, M., Kielec, R., Woźniak, W., Niedziela, M. (2018). Planning and Management of the Mechanical Assembly Sequences. Proceedings of the 31st International Business Information Management Association (IBIMA) ISBN: 9780999855102, 25-26 April 2018, Milan, Italy 4712-4719.
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  • Woźniak, W., Nawrocki, W., Stryjski, R., Jakubowski, J. (2017). Identification and Reduction of Product Defects in Mass Production at Toyota Motor Manufacturing, Poland. Proceedings of the 30th International Business Information Management Association (IBIMA), ISBN: 9780986041990 8-9 November 2017, Madrid, Spain 4774-4782.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f545d9d5-6c09-48fe-863b-8680bf045e26
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