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Steel Packaging Production Process and a Review of New Trends

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Packaging steels are thin gauge flat carbon steels coated with tin or chrome on both sides. They are very important raw materials for the production of steel packaging, which allow food to be stored safely and with an extended shelf life. The publication focuses on the production process of ETP and ECCS steel, as well as the problem of corrosion of steel packaging. The topic of legislative changes that require the elimination of chromium (VI) compounds from the steel passivation process was also discussed. The packaging steel industry is currently facing the need to develop a new passivation technology. Leading packaging steel manufacturers in cooperation with varnish and paint suppliers have developed chromium (VI) free technologies by implementing chromium (III) compounds and titanium oxide technology. Authors focus also on new trends and potential development directions for the packaging steel industry.
Słowa kluczowe
EN
Twórcy
autor
  • AGH University of Science and Technology, Faculty of Non-Ferrous Metals, Department of Physical Chemistry and Metallurgy of Non-Ferrous Metals, Al. A. Mickiewicza 30, 30-059 Kraków, Poland
  • Can-Pack Metal Closures Sp. z o.o., 1 Jasnogórska Str., 31-358 Kraków, Poland
autor
  • Can-Pack Metal Closures Sp. z o.o., 1 Jasnogórska Str., 31-358 Kraków, Poland
autor
  • Can-Pack Metal Closures Sp. z o.o., 1 Jasnogórska Str., 31-358 Kraków, Poland
  • AGH University of Science and Technology, Faculty of Non-Ferrous Metals, Department of Physical Chemistry and Metallurgy of Non-Ferrous Metals, Al. A. Mickiewicza 30, 30-059 Kraków, Poland
Bibliografia
  • [1] https://echa.europa.eu/documents/10162/fbedd274-b02f-f2f9-4df8-0b9e7acbb9c8/19.05.2020.
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  • [6] Gordon L. Robertson Food Packaging Principles and Practice (3rd Edition), Robertson 2013.
  • [7] Caterina Barone, Luciana Bolzoni Giorgia Caruso, Angela Montanari Salvatore Parisi, Izabela Steinka - Food Packaging Hygiene, Springer 2015.
  • [8] Shreir L.L., Jarman R.A., Burstein G.T., Corrosion, vol. 1. third edition, Butterworth-Heinemann, 1994.
  • [9] UNI EN 10202:2004. Cold reduced tinmill products-electrolytic tinplate and electrolytic chromium/chromium oxide coated steel.
  • [10] Massini R., Montanari A., Milanese G., De Anna P.L., Improvements in electrochemical techniques for evaluating the corrosion behaviour of tinplate. In: Proceedings of the third international tinplate conference, London, 1984, p. 481-492.
  • [11] Turner T.A. Canmaking. The technology of metal protection and decoration. Blackie Academic & Professional, London 1998.
  • [12] APEAL Steel: the sustainable packaging solution.
  • [13] TATA STEEL Patent WO2015/177315A1 - Method for manufacturing chromium-chromium oxide coated substrates and coated substrates produces thereby.
  • [14] thyssenkrupp - Product Range Packaging Steel.
  • [15] Christopher Melvin, Eifon Jewell, Arnoud de Vooys, Koen Lammers, Neil Mc Murray, Journal of Packaging Technology and Research 2, 93-103 (2018).
  • [16] Andrew Allman, Eifon Jewell, Arnoud de Vooys, Rachel Hayes, Journal of Packaging Technology and Research, published online:17 May 2018.
  • [17] N. Mora, E. Cano, J.M. Bastidas, E. Almeida, J.M. Puente, Journal of Coatings Technology 74, 935, December 2002.
  • [18] Jolanta Skowron, Podstawy i Metody Oceny Środowiska Pracy nr 2 (88), 15-112 (2016).
  • [19] Thomas Petry, Ruth Knowles, Richard Meads, Regulatory Toxicology and Pharmacology 44, 24-32 (2006).
  • [20] Rozporządzenie Komisji (UE) NR 348/2013 z dnia 17 kwietnia 2013 r.
  • [21] https://www.reachlaw.fi/chromium-trioxide-authorisation-application-ctacsub/ 19.05.2020.
  • [22] J.H.O.J. Wijenberg, M. Steegh, M.P. Aarnts, K.R. Lammers, J.M.C. Mol, Electrochimica Acta 173, 10 August 2015, p. 819-826.
  • [23] Berend Boelen, Hans den Hartog, Hans van der Weijde, Progress in Organic Coatings 50, 40-46 (2004).
  • [24] https://pzppa.pl/wp-content/uploads/thyssenkrupp-rasselstein-CrVI-free-for-packaging-steel.pdf
  • [25] APEAL, Steel for packaging, chromium free passivation alternative brochure.
  • [26] https://www.cantechonline.com/news/23954/thyssenkrupp-rasselstein-now-offers-chromium-free-passivation-alternative/ 19.05.2020.
  • [27] Jianzhong Li, Jiugui Huang, Gengrui Zhou, Yanwen Tian, Ying Li, Advanced Materials Research 154-155, 663-666.
  • [28] N. Wint, A.C.A. de Vooy, H.N. McMurray, Electrochimica Acta 203, 326-336 (2016).
  • [29] Anna Zalewska, Joanna Kowalik, Inż. Ap. Chem. 56, 6, 224-225 (2017).
  • [30] E. Almeida, M.R. Costa, N. De Cristofaro, N. Mora, R. Catala, J. M. Puente, J.M. Bastidas, Corrosion Engineering, Science and Technology 40, 2 (2005).
  • [31] https://www.apeal.org/news2/inside-brussels-alexis-van-maercke-on-steel-for-packaging-in-eu-policy-discussions-3/ 30.05.2020.
  • [32] https://www.apeal.org/news/steel-packaging-hits-a-new-recycling-milestone-of-82-5/ 30.05.2020.
  • [33] http://www.lsdasteel.com/langsida-steel-plate.html/ 30.05.2020.
  • [34] http://www.tsyuheng.com/Black-Annealed-Prime-Q195-Cold-Rolled-Steel-Strip-In-Coil_347.html/ 30.05.2020
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2aac59e2-5851-458d-87bd-c7d81999d337
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