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Waste management of half-finished products and thermosetting wastes

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Plastics are the widely used materials and their application increases every year considerably. Therefore, appropriate waste management policy should be used in relation to the utilization or recycling of scrap plastic components. Although most of these materials refer to thermoplastics, a huge widening demand is observed in the field of thermosets. They find a wide range of applications as the dielectric or insulating materials, high-current breaker switches, sensors and other electrical and electronic devices, as well as high-resistant sleeves in mechanical devices. The substantial part of the thermohardening products is used in a car, heavy, light, chemical industry and agriculture as well. The thermohardening wastes contain a large amount of combustible fraction as thermosetting resins, and various materials as a different kind of metals group like ferromagnetic and copper. Therefore, they are potential sources of energy and secondary materials. Application of thermal methods for the utilization of these wastes in the pyrolysis process was investigated. The development of the utilization of these wastes with the possibility of gas and liquid substance recovery as a potential source of energy on a commercial scale is the main aim of this paper.
Rocznik
Strony
122--126
Opis fizyczny
Bibliogr. 11 poz., rys., tab.
Twórcy
  • AGH University of Science and Technology, Department of Heat Engineering and Environmental Protection, al. A. Mickiewicza 30, 30-059 Krakow, leszczyn@metal.agh.edu.pl
Bibliografia
  • 1. Bledzki A.: (1997), Recycling of Polymeric Materials, WNT, Warsaw (in Polish).
  • 2. GUS (2001), Industry Statistical Yearbook, Warsaw
  • 3. Plastics Waste Management Institute (1993), Plastics Recovery in Perspective, Report, Plastics Waste Management Institute, Brussels.
  • 4. Zevenhoven R.: et al. (1995), Laboratory Scale Characterisation of Plastics Derived Fuel, Report 95/3, Abo Akademi, Department of Chemical Engineering, Finland
  • 5. Hornbogen E., Bode R., Dooner P.: (1993), Recykling Materialwissenschaftliche Aspekte, Berlin-Haidelberg.
  • 6. Pickering S. J., Benson M.: (1991), The Recycling of Thermosetting Plastics, Plastic Recycling Meeting, London.
  • 7. Koszkul J (1999), Polymer Materials, Wyd. Politechniki Częstochowskiej, Częstochowa.
  • 8. Lewis F. M.: (1976), Thermodynamic Fundamentals for the Pyrolysis of Refuse, Solid Waste Processing Conference, Boston.
  • 9. Burney S. J. (1992), Combustion of Densified Refuse Derived Fuel, ETSU Report.
  • 10. Zelkowski J.: (1994), Burnout Behaviour of Two Coal and PE Foil Waste, Report for the Spanish Federation of Polymer Producers, University Clausthal Zellerfeld, Clausthal.
  • 11. Kozaczka J., Horbaj P.: (2003), Computation of combustion and gasification processes. Gaswärme International, No. 6.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0046-0054
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