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Utilization of Household Plastic Waste in Technologies with Final Biodegradation

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Języki publikacji
EN
Abstrakty
EN
We have carried out research on multi-stage handling of polyethylene terephthalate and polystyrene household waste. The method has been developed for both their safe utilization in manufacturing technologies and the use of encapsulated mineral fertilizers. The technical feasibility of implementing all stages of plastic waste processing has been defined: separate collection, creation of a film-forming composition, encapsulation of granular fertilizers. Our study has confirmed the safe biodegradation of polymer shell residues in the soil environment after the dissolution of the fertilizers. The proposed method of handling of these wastes is a method of their safe utilization.
Twórcy
  • Viacheslav Chornovil Institute of Sustainable Development, Lviv Polytechnic National University, 12 S. Bandera St, Lviv, 79013, Ukraine
  • Viacheslav Chornovil Institute of Sustainable Development, Lviv Polytechnic National University, 12 S. Bandera St, Lviv, 79013, Ukraine
  • Viacheslav Chornovil Institute of Sustainable Development, Lviv Polytechnic National University, 12 S. Bandera St, Lviv, 79013, Ukraine
  • Viacheslav Chornovil Institute of Sustainable Development, Lviv Polytechnic National University, 12 S. Bandera St, Lviv, 79013, Ukraine
  • Institute of Chemistry and Chemical Technology, Lviv Polytechnic National University, 12 S. Bandera St, Lviv, 79013, Ukraine
  • Viacheslav Chornovil Institute of Sustainable Development, Lviv Polytechnic National University, 12 S. Bandera St, Lviv, 79013, Ukraine
  • Viacheslav Chornovil Institute of Sustainable Development, Lviv Polytechnic National University, 12 S. Bandera St, Lviv, 79013, Ukraine
  • Viacheslav Chornovil Institute of Sustainable Development, Lviv Polytechnic National University, 12 S. Bandera St, Lviv, 79013, Ukraine
Bibliografia
  • 1. Denysenko T.M. 2014. Doslidzhennia suchasnykh tekhnolohii pererobky plastykovykh vyrobiv. Visnyk Chernihivskoho derzhavnoho tekhnolohichnoho universytetu. Tekhnichni nauky, 1, 55–64.
  • 2. Fotopoulou, K.N., Karapanagioti, H.K. 2016. The degradation potential of PET bottles in the marine environment: An ATR-FTIR based approach. Scientific Reports, 6(1), 1–8.
  • 3. Geyer R. 2017. Production, use, and fateofall plastic severmade. Science Advances 3(7), 1–5.
  • 4. https://rethink.com.ua/uk/news-and-events/ekologichni-problemi/pererobka-plastikovikhvidkhodiv-u-nimechchini-mifi-realii-ta-perspektivi
  • 5. https://mistosite.org.ua/uk/articles/vyrobliaty-menshe-iak-vriatuvaty-planetu-vid-plastyku
  • 6. https://galpet.com.ua/
  • 7. https://vtor-resursy.com.ua/ua/priem-polistirola
  • 8. https://ecolos.com.ua/polisterol
  • 9. https://nowaste.com.ua/sort-station/
  • 10.Levytskyi, V., Katruk, D. 2021. Resistance of polylactide materials to water mediums of the various natures. Chemistry and Chemical Technology, 15(2), 191–197.
  • 11. Madeleine, S., David, C. 2018.Microplastics in Seafood and the Implications for Human Health. Current Environmental Health Reports, 5(3), 375–386.
  • 12. Malovanyi, M.S., Synelnikov, S.D. Polimerna dyspersiia dlia kapsuliuvannia dobryv. Patent na korysnu model UA 142218/, MPK C05F 3/00 (2020.01) Nomer zaiavky u 2019 10785; data podannia zaiavky 31.10.2019; data publikatsii vidomostei pro vydachu patentu ta nomer biuletenia 25.05.2020, biul, 10.
  • 13. Masyuk, А.S., Levytskyi, V.E. 2021.Influence of Calcium Phosphates on the Morphology and Properties of Polylactide Composites. Materials Science, 56(6), 870–876.
  • 14. Nagursky, O.А. Gumnitsky, Ya.M. 2012. Release of capsulated mineral fertilizers components. Process simulation Chemistry and Chemical Technology, 6(3), 320–325.
  • 15. Nahurskyi O.A. 2012. Zakonomirnosti kapsuliuvannia rechovyn u stani psevdozridzhennia ta yikhdy fuziinohovyvilnennia. Monohrafiia. Lviv. Vydavnytstvo Lvivskoi politekhniky, 188.
  • 16. Nagursky, O., Gumnitsky, Y.M. 2015.Massexchangeofdispersed materials encapsulating inquasi-liquefactionstate. Chemistry and Chemical Technology, 9(3), 333–336.
  • 17. Nagursky, O.,Gumnitsky, J. 2015. Unsteadyheattrans ferduringen capsulation of dispersed materials in quasi-liquefied state. Chemistry and Chemical Technology, 9(4), 498–501.
  • 18. Nagurskiy O.A., Malovanyy M.S. 2020. Utilization of sortedsecondary PET waste – raw materials in the context of sustainable development of the modern city. Materials Science and Engineering, 907, 1–5.
  • 19. Nagurskyy, O., Krylova, H. 2022. Safety Usage of Encapsulated Mineral Fertilizers Basedon Polymeric Waste. Ecological Engineering and Environmental Technology, 23(1), 156–161.
  • 20. Nakaz Ministerstva rehionalnoho rozvytku, budivnytstva ta zhytlovo-komunalnoho hospodarstwa Ukrainy vid 01.08.2011 № 133 Pro zatverdzhennia Metodyky rozdilnoho zbyrannia pobutovykh vidkhodiv; Zareiestrovano v Ministerstvi yustytsii Ukrainy 10 zhovtnia 2011, 1157/19895
  • 21.Rhodes C.J. 2018. Plasticpollution and potential solutions. Science Progress, 101(3), 207–260.
  • 22. Vidomosti Verkhovnoi Rady Ukrainy (VVR) 1998, 36–37, 242
  • 23. Yashchuk L.B. 2011. Ekolohichni aspekty povodzhennia z tverdymy polimernymy vidkhodamy v Cherkaskii oblasti. Ekolohichna bezpeka, 1(11), 21–25.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8c295b1c-6210-4d7e-b772-6ad47a07259f
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