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Tytuł artykułu

Use of Simulation for Waste Management and Reverse Material Flow

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The wastes which infiltrate into the environment are created from unexpended materials and products. The environment can manage a great amount of waste, but this process requires time. Nature always attempts to achieve the balance . However, degradation of some materials in nature takes about 1000 years, which is a very long period of time in terms of the length of a human life, also in view of the rising trend of wastes generation. The need for appropriate waste management is steadily rising, as does the production of wastes and our living standards. Incorrect waste management has a negative impact on all components of the environment. Waste management, their processing and recycling additionally contribute to human health protection and preservation of a healthy environment. Another benefit is in the form of raw materials extraction, the global supplies of which are constantly reducing. One of the possible ways of effective waste management is improving environmental awareness but the science brings different ways of solution, for example in connection with waste management and simulation of wastes flow. The paper presents one of this ways by help with the creation of centralized collection point of wastes using a universal model which is usable for different countries with the problem of wastes and waste management.
Słowa kluczowe
Twórcy
  • Faculty of Mining, Ecology, Process Control and Geotechnology, Technical University of Košice, Letná 9, 042 00 Košice, Slovakia
autor
  • Faculty of Mining, Ecology, Process Control and Geotechnology, Technical University of Košice, Letná 9, 042 00 Košice, Slovakia
  • Faculty of Mechanical Engineering, Technical University of Košice, Letná 9, 042 00 Košice, Slovakia
  • Faculty of Maritime Studies, University of Rijeka, Studentska ulica 2, 51000 Rijeka, Croatia
  • Faculty of Maritime Studies, University of Rijeka, Studentska ulica 2, 51000 Rijeka, Croatia
autor
  • Faculty of Manufacturing Technologies, Technical University of Košice, Bayerova 1, 080 01 Prešov, Slovakia
Bibliografia
  • 1. Alves, O., Passos, J., Brito, P., Goncalves, M., Monteiro, E. Characterization of municipal, construction and demolition wastes for energy production through gasification – A case study for a portuguese waste management company (Conference Paper). Lecture Notes in Electrical Engineering. Vol 505, 2018, 619–625.
  • 2. Eckart, K., McPhee, Z., Bolisetti, T. Performance and implementation of low impact development – A review. Science of the Total Environment, 607–608, 2017, 413–432.
  • 3. Eurostat statistics explained: Statistics of wastes [online]. 2017. [2018–3–9]. Available on <http:// ec.europa.eu/eurostat/statisticsexplained/index. php/Waste_statistics /sk#.C4.8Eal.C5.A1ie_in-form.C3.A1cie_z_Eurostatu>
  • 4. Favara, P., Gamlin, J. Utilization of waste materials, non-refined materials, and renewable energy in insitu remediation and their sustainability benefits. Journals of Environmental Management. 204, 2017, 730–737.
  • 5. Fedorko G., Molnár V., Strohmandl J. and Vasil M. Development of Simulation Model for Light-Controlled Road Junction in the Program Technomatix Plant Simulation. Transport Means 2015 – Proceedings of the International Conference. pp. 466–469, 2015.
  • 6. Jachowicz T. and Sikora R. Methods of forecasting of the changes of polymeric products properties, Polimery 51, 2006, 177–185.
  • 7. Lemming, G., Chambon, J.C., Binning, P.J., Bjerg, P.L. Is there an environmental benefit from remediation of a contaminated site? Combined assessments of the risk reduction and life cycle impact of remediation. Journal of Environmental Management. 112, 2012. 392–403.
  • 8. Neradilova H. and Fedorko, G. The use of computer simulation methods to reach data for economic analysis of automated logistic systems. Open Engineering 6, 2016, 700 –710.
  • 9. Rudawska A. and Debski, H. Experimental and numerical analysis of adhesively bonded aluminium alloy sheets joints. Eksploatacja i Niezawodnosc– Maintenance and Reliability 1, 2011, 4–10.
  • 10. Stasser, G. Computer simulation as a research tool: the discuss model of group decision making. Journal of Experimental Social Psychology. 24 (5), 1988, 393–422.
  • 11. Wäger, P.A., Hischier, R., Eugster, M. Environmental impacts of the Swiss collection and recovery systems for waste electrical and electronic equipments. Science of the Total Environment, 409 (10), 2011, 1746–1756.
  • 12. Zeigler, P.B., Praehoffer, H., Kim, T.G. Integrate Discrete Event and continuous complex dynamic systems. 2000, 485. ISBN 0–12–778955–1
  • 13. Zhu, X., Wang, J., Tang, J. Recycling pricing and coordination of WEEE dual-channel closed-loop supply chain considering consumers bargaining. International Journal of Environmental Research and Public Health. 14 (12), 2017
Uwagi
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-466ea574-32ef-4698-a38d-328847d72eee
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