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Selected issues of coal-fired power generation in terms of maintaining its high share in the future structure of electricity generation in Poland

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The Polish economy is one of the most dynamically developing economies in Europe. However, this development over the next 30 years is threatened by the lack of adequate supply of cheap and reliable energy. This is due to an array of negligence and delays in the expansion and reconstruction of the energy system. Due to the increasingly urgent need to solve this problem, many concepts about the direction in which the development of the Polish power system should go have emerged. This article presents arguments emphasising the advisability of maintaining the maximum high share of coal-fired power plants in the future structure of power generation. There is proven that raw materials in Poland may ensure stable development of the economy for next 100 years. Also, thanks to new technologies, CO2emissions may by reduced by half.
Rocznik
Tom
Strony
62--80
Opis fizyczny
Bibliogr. 34 poz., tab., wykr.
Twórcy
autor
  • Wroclaw University of Science and Technology, Faculty of Mechanical and Power Engineering, Department of Mechanical Engineering and Energetic Systems
  • Wroclaw University of Science and Technology, Faculty of Mechanical and Power Engineering, Department of Cryogenic, Aeronautic and Process Engineering
Bibliografia
  • 1. Strupczewski A., Why renewable energy sources are not enough for Poland?, 13.06.2018, https://www.cire.pl/item, 164657,2,0,0,0,0,0,dlaczego-odnawialne-zrodla-energii-nie-wystarcza-dla-polski-html [access: 31.07.2018]
  • 2. PSE, Report 2016 Polish Power System, https://www.pse.pl/dane-systemowe/funkcjonowanie-rb/raporty-roczne-z-funkcjonowania-kse-za-rok/raporty-za-rok-2016 [access: 31.07.2018]
  • 3. Ministry of Economy, Conclusions from prognostic analyzes for the needs of Poland’s Energy Policy until 2050, Annex 2 to the Energy Policy of Poland until 2050, Project - version 0.2, Warsaw, June 2015
  • 4. Popławski T., Dudek G., Łyp J., Forecasting methods for balancing energy market in Poland. Electrical Power and Energy Systems 65, p. 94-101 October 2015
  • 5. Stankiewicz P., We will build a power plant for you (a nuclear one!). Technology assesment in development of nuclear energy in Poland. Studia socjologiczne 212, p.77-108, 2014
  • 6. Dolega W., Energy eggiciency - Case study Poland. Innovative Materials and Technologies in Electrical Engineering 1-6 April 2018
  • 7. Tomaszewski R., What will Poland do without lignite?, 13.07.2017, https://www.politykainsight.pl/gospodarka/pienergy/1712204,l,co-polska-zrobi-bez-wegla-brunatnego.read [access: 31.07.2018]
  • 8. Polish Geological Institute, Origin, occurrence, resources and deposits of hard coal in Poland and in the world https://www.pgi.gov.pl/psg-l/psg-2/infonnacja-i-szkolenia/wiadomosci-surowcowe/10416-geneza-wystepowanie-zasoby-i-zloza-wegla-kamiennego-w-polsce.html [access: 31.07.2018]
  • 9. wnp.pl, Siemens has broken the world efficiency rekord of Power unit, http://energetyka.wnp.pl/siemens-pobil-rekord-swiata-sprawnosci-bloku-energetycznego,266794_l_0_0.html [access: 31.07.2018]
  • 10. Polish Geological Institute, Coal mining in Poland, https://www.pgi.gov.pl/psg-l/psg-2/informacja-i-szkolenia/wiadomosci-surowcowe/10418-wydobycie-wegla-kamiennego-w-polsce.html [access: 31.07.2018]
  • 11. Szuflicki M., Malon A., Tymiński M. (red): Balance sheet of mineral resources in Poland untill December 31, 2016, Polish Geological Institute - National Research Institute, Warsaw, 2017
  • 12. Central Statistical Office, Ministry of Energy, Department of Energy: Fuel and Energy Economy in 2015 and 2016, 27.10.2017,https://stat.gov.pl/obszarytematyczne/srodowiskoenergia/energia/gospodarka-paliwowo-energetyczna-w-latach-2015-Í-2016,4,12.html [access: 31.07.2018]
  • 13. Kassenberg A., Wilczyński M., Poland. It’s not easy to identify resources, 20.06.2016, https://pl.boell.org/pl/2016/06/20/polska-nie-tak-latwo-okreslic zasoby [access: 31.07.2018]
  • 14. Cholewiński M.: The reduction of atmospheric emissions after the implementation of first Polish nuclear power plant, EPJ Web Conf., Vol 177, 2018
  • 15. Cholewiński M., Estimation of mercury from solid fuel combustion processes, Zeszyty Energetyczne, Vol. 4, p. 74-87, Wroclaw, 2017
  • 16. Central Statistical Office, Ministry of Energy, Department of Energy: Fuel and Energy Economy in 2015 and 2016, Zakład Wydawnictw Statystycznych, Warsaw, 2017.
  • 17. Wierzbowski M., Filipiak I., Łyżwa W., Polish Energy Policy 2050 - an instrument to system. Renewable and Sustainable Energy Reviews 74, p. 51-70 June 2017
  • 18. Pawlik M., High-tech power units in the national power system. Archiwum energetyki, XLIII, No. 1-2, p. 75-85 (2013)
  • 19. Information from the President of the Energy Regulatory Office No. 153/2014 regarding the average price of electricity sales on the competitive market for the year 2013. 31.03.2014, Warsaw
  • 20. Information from the President of the Energy Regulatory Office No. 12/2015 regarding the average price of electricity sales on the competitive market for the year 2014. 30.03.2015, Warsaw
  • 21. Information from the President of the Energy Regulatory Office No. 13/2016 regarding the average price of electricity sales on the competitive market for the year 2015. 25.03.2016, Warsaw
  • 22. Information from the President of the Energy Regulatory Office No. 17/2017 regarding the average price of electricity sales on the competitive market for the year 2016. 28.03.2017, Warsaw
  • 23. Information from the President of the Energy Regulatory Office No. 28/2018 regarding the average price of electricity sales on the competitive market for the year. 30.03.2018, Warsaw
  • 24. Information from the President of the Energy Regulatory Office No. 45/2018 regarding the average price of electricity sales on the competitive market for the first quarter of 2018. 20.06.2018, Warsaw
  • 25. Czaplicki A., The evolution of the EU greenhouse gas emission allowance trading system (EU ETS), Energy Policy, 2017, 20 (2), p. 5-24.
  • 26. European Commission, ETS Market Stability Reserve will start by reducing auction volume by almost 265 million allowances over the first 8 months of 2019, 15.05.2018 https://ec.europa.eu/clima/news/ets-market-stability-reserve-will-start-reducing-auction-volume-almost-265-million-allowances_en [access: 31.07.2018]
  • 27. gramwzielone.pl, Polish power industry under pressure. The costs of CO2 emissions are expected to increase rapidly, 4.05.2018, http://gramwzielone.pl/trendy/30979/polska-energetyka-pod-presja-koszty-emisji-co-2-maja-szybko-wzrosnac [access: 31.07.2018]
  • 28. wnp.pl, Winter package with Poland’s support. Support for coal-fired power plants only until 2030, 19.12.2017, http://energetyka.wnp.pl/pakiet-zimowy-z-poparciem-polski-wsparcie-dla-elektrowni-weglowych-tylko-do-2030-roku,313503_l_0_2.html [access: 31.07.2018]
  • 29. Commission Implementing Decision (EU) 2017/1442 of 31 July 2017 establishing the Best Available Techniques (BAT) Conclusions for large combustion plants under the Directive of the European Parliament and of the Council 2010/75 / EU (notified as dokument C (2017) 5225), https://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:32017D1442&from=PL [access: 31.07.2018]
  • 30. Piotr Kocoł, New BAT conclusions for LCP accepted, 18.05.2017, https://www.cire.pl/ item, 145879,14,0,0,0,0,0,nowe-konkluzje-bat-dla-lcp-przyjete.html [access: 31.07.2018]
  • 31. wszystkooemisjach.pl, BAT conclusions for large LCP combustion plants, http://wszystkooemisjach.pl/342/konkluzje-bat-dla-duzych-obiektow-energetycznego-spalania-lcp [access: 31.07.2018]
  • 32. Regulation of the Council of Ministers of 22 December 2017 on unit fees for the use of the environment, 29/12/2017, http://prawo.sejm.gov.p1/isap.nsf/download.xsp/WDU20170002490/0/D20172490.pdf//prawo.sejm.gov.pl/isap.nsi7download.xsp/WDU20170002490/0/D20172490.pdf [access: 31.07.2018]
  • 33. Thierry Lecomte, José Félix Ferreria de la Fuente, FrederikNeuwahl, Michele Canova, Antoine Pinasseau, Ivan Jankov, Thomas Brinkmann, Serge Roudier, Luis Delgado Sancho,Best Available Techniques (BAT) Reference Document for Large Combustion Plants, 2017, http://eippcb.jrc.ec.europa.eu/reference/BREF/LCP/JRC107769_LCPBref_2017.pdf [access: 31.07.2018]
  • 34. Piotr W. Saługa, Jacek Kamiński, Power market in Poland - a single-price auction versus discriminatory one, Zeszyty Naukowe Instytutu Gospodarki Surowcami Mineralnymi i Energią Polskiej Akademii Nauk, 2017, No. 98, p. 167-176.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e586044d-c20a-45a0-9b43-046c1918df41
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