Zacytuj

1. Bresciani, G., Heiligtag, S., Lambert, P., & Rogers, M. (2020). The Future of Liquefied Natural Gas: Opportunities for Growth. [online]. [accessed 1 December 2020]. Available at https://www.mckinsey.com/industries/oil-and-gas/our-insights/the-future-of-liquefied-natural-gas-opportunities-for-growthSearch in Google Scholar

2. Nersesian, R. L. (2010). Energy for the 21st century: A comprehensive guide to conventional and alternative sources. M.E. Sharp.Search in Google Scholar

3. Whitney, G., & Behrens, C. E. (2010). Energy: Natural Gas: The Production and Use of Natural Gas, Natural Gas Imports and Exports, EPAct Project, Liquefied Natural Gas (LNG) Import Terminals and Infrastructure Security, Underground Working Gas Storage, Fisher-Tropsch Fuels from Coal, Natural Gas and Biomass, Gas Hydrates, Gas Shales, Hydraulic Fracturing, Alaska Natural Gas Pipelines. The Capitol.Net, Inc.Search in Google Scholar

4. US Office of Fossil Energy. Liquefied Natural Gas (LNG). (n.d.). [online]. [accessed 12 January 2021]. Available at https://www.energy.gov/fe/science-innovation/oil-gas/liquefied-natural-gasSearch in Google Scholar

5. Swennen, R. (ed.) (2017). China’s gas development strategies. Springer.Search in Google Scholar

6. DG Energy. (2020). Quarterly Report on European Gas Markets. [online]. [accessed 5 March 2021]. Available at https://ec.europa.eu/energy/sites/ener/files/quarterly_report_on_european_gas_markets_q4_2019_final.pdfSearch in Google Scholar

7. EC. (2020). EU-U.S. LNG Trade. U.S. liquefied natural gas (LNG) has the potential to help match EU gas needs. [online]. [accessed 10 January 2021]. Available at https://ec.europa.eu/energy/sites/ener/files/eu-us_lng_trade_folder.pdfSearch in Google Scholar

8. IEA. (2019). The Role of Gas in Today’s Energy Transitions. [online]. [accessed 5 February 2021]. Available at https://www.iea.org/reports/the-role-of-gas-in-todays-energy-transitionsSearch in Google Scholar

9. Bryden, D., & Denton, S.-J. (2020). The European Green Deal – Overview and Status Report. [online]. [accessed 25 January 2021]. Available at https://www.lexology.com/library/detail.aspx?g=b18af039-49eb-484e-ac52-25820a7513e3Search in Google Scholar

10. EC. (n.d.). What is the European Green Deal? [online]. [accessed 14 January 2021]. Available at https://ec.europa.eu/commission/presscorner/detail/en/fs_19_6714Search in Google Scholar

11. Hokerts, J. (2020). Gāze – ekoloģiskiem un ekonomiskiem risinājumiem. In Heat Supply Conference, Riga.Search in Google Scholar

12. Energia Market Research. (2019). Baltic Countries Small-Scale LNG Market Outlook, Trend and Opportunity Analysis, Competitive Insights, Actionable Segmentation & Forecast 2020–2030. [online]. [accessed 14 January 2021]. Available at https://www.energiasmarketresearch.com/baltic-small-scale-lng-market-report/Search in Google Scholar

13. Gas Processing and LNG. (2020). Lithuania to Import LNG until at least 2044, to Purchase LNG Vessel. [online]. [accessed 10 March 2021]. Available at http://www.gasprocessingnews.com/news/lithuania-to-import-lng-until-at-least-2044,-to-purchase-lng-vessel.aspxSearch in Google Scholar

14. Gaso. (2019). Kundziņsalas dienvidu projekts. Tehniskie noteikumi.Search in Google Scholar

15. Sināts, M. (2020). Compressed Natural Gas as an Alternative Fuel for Road Transport in Latvia. Master Thesis. Riga: RTU.Search in Google Scholar

16. Skulte LNG Terminal. (2019). [online]. [accessed 3 February 2021]. Available at https://www.skultelng.lv/en/the_project/#i32Search in Google Scholar

17. Summary: Revised TEN-E Regulation – Future Financing of European Energy Infrastructure. (2020). [online]. [accessed 16 January 2021]. Available at https://hsfnotes.com/energy/tag/pcis/Search in Google Scholar

18. Conexus Baltic Grid. (n.d.). Medium-Term Strategy for 2019–2023. [online]. [accessed 9 January 2021]. Available at https://www.conexus.lv/uploads/filedir/Media/conexus_mid_term_strategy.pdfSearch in Google Scholar

19. GRIP Annex A: Infrastructure Projects. (2017). [online]. [accessed 6 January 2021]. Available at https://entsog.eu/public/uploads/files/publications/GRIPs/2017/entsog_BEMIP_GRIP_2017_Annex_A_web.pdfSearch in Google Scholar

20. Tallinn LNG. [online]. [accessed 31 January 2021]. Available at https://www.tallinnlng.com/Search in Google Scholar

21. Seatrade Maritime News. (2020). Lithuania’s Klaipeda Port Embarks on LNG Bunkering. [online]. [accessed 31 January 2021]. Available at https://www.seatrade-maritime.com/bunkering/lithuaniasklaipeda-port-embarks-lng-bunkeringSearch in Google Scholar

22. World Maritime News. (2019). Nauticor to Become Sole Charterer of LNG Bunker Vessel Kairos. [online]. [accessed 10 February 2021]. Available at https://www.offshore-energy.biz/nauticor-to-become-sole-charterer-of-lng-bunker-vessel-kairos/Search in Google Scholar

23. Vessel Finder. (2021). PGNiG Received its Fourth LNG Delivery in Klaipėda. [online]. [accessed 1 February 2021]. Available at https://www.vesselfinder.com/news/19934-PGNiG-received-its-fourth-LNG-delivery-in-KlaipdaSearch in Google Scholar

24. Eesti Gaas. (n.d.). LNG – Clean Fuel with Reasonable Cost. [online]. [accessed 1 March 2021]. Available at https://www.gaas.ee/en/for-business/lng-liquefied-natural-gas/lng-bunkering/Search in Google Scholar

25. Ministry of Economic Affairs and Employment of Finland. (2019). Finland’s Integrated Energy and Climate Plan. [online]. [accessed 1 February 2021]. Available at https://ec.europa.eu/energy/sites/ener/files/documents/fi_final_necp_main_en.pdfSearch in Google Scholar

26. Hydrocarbons Technology. (n.d.). Skangas LNG Import Terminal, Port of Tahkoluoto, Pori. [online]. [accessed 1 February 2021]. Available at https://www.hydrocarbons-technology.com/projects/skangas-lng-import-terminal-port-of-tahkoluoto-pori/Search in Google Scholar

27. LNG World News. (2019). Manga LNG Inaugurates Tornio Receiving Terminal. [online]. [accessed 10 February 2021]. Available at https://www.offshore-energy.biz/manga-lng-inaugurates-tornio-receiving-terminal/Search in Google Scholar

28. Archana Rani, K.S. (2019). Finland Commissions Tornio Manga LNG Receiving Terminal. [online]. [accessed 2 February 2021]. Available at https://www.nsenergybusiness.com/news/finland-torniomanga-lng-terminal/Search in Google Scholar

29. Manga LNG Terminal. (n.d.). [online]. [accessed 5 February 2021]. Available at https://www.torniomangalng.fi/en/hankkeen-esittely/Search in Google Scholar

30. Gasum. (2020). Gasum Partners with New Customer in Liquefied Natural Gas Deliveries from Manga LNG Terminal in Tornio, Finland. [online]. [accessed 23 January 2021]. Available at https://www.gasum.com/en/About-gasum/for-the-media/News/2019/gasum-partners-with-new-customer-in-liquefied-natural-gas-deliveries-from-manga-lng-terminal-in-tornio-finland/Search in Google Scholar

31. Mediatiedote. (2020). Tukes has Authorised the Construction of the Hamina LNG Terminal. [online]. [accessed 2 February 2021]. Available at https://tukes.fi/en/-/tukes-has-authorised-the-construction-ofthe-hamina-lng-terminalSearch in Google Scholar

32. Directive 2014/94/EU of the European Parliament and of the Council of 22 October 2014 on the deployment of alternative fuels infrastructure. [online]. [accessed 4 February 2021]. Available at https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=celex%3A32014L0094Search in Google Scholar

33. EC. (2020.) Cleaner Air in 2020: 0.5 % Sulphur Cap for Ships Enters into Force Worldwide. [online]. [accessed 4 March 2021]. Available at https://ec.europa.eu/transport/modes/maritime/news/2020-01-03-sulphur-cap_enSearch in Google Scholar

34. Directive 2016/802/EU of the European Parliament and of the Council relating to a reduction in the sulphur content of certain liquid fuels. [online]. [accessed 4 March 2021]. Available at https://eur-lex.europa.eu/eli/dir/2016/802/ojSearch in Google Scholar

35. International Maritime Organization. (n.d.). Emission Control Areas (ECAs) Designated under MARPOL Annex VI. [online]. [accessed 1 March 2021]. Available at https://www.imo.org/en/OurWork/Environment/Pages/Emission-Control-Areas-(ECAs)-designated-under-regulation-13-of-MARPOL-Annex-VI-(NOx-emission-control).aspxSearch in Google Scholar

36. Damgaard, J. (2020). Low Sulphur Regulations after 1 January 2020. [online]. [accessed 6 January 2021]. Available at https://britanniapandi.com/2020/01/low-sulphur-regulations-after-1-january-2020/Search in Google Scholar

37. International Maritime Organization. (2016). Air Pollution and Energy Efficiency. Study on effects of the entry into force of the global 0.5% fuel oil sulphur content limit on human health. [online]. [accessed 9 March 2021]. Available at https://wwwcdn.imo.org/localresources/en/MediaCentre/HotTopics/Documents/Finland%20study%20on%20health%20benefits.pdfSearch in Google Scholar

38. Osorio-Tejada, J., Llera, E., & Scarpellini, S. (2015). LNG: Aan Alternative Fuel for Road Freight Transport in Europe. [online]. [accessed 1 March 2021]. Available at https://zaguan.unizar.es/record/62843/files/texto_completo.pdf10.2495/SD150211Search in Google Scholar

39. European Automobile Manufacturers Association. (2018). Vehicles in Use. [online]. [accessed 9 March 2021]. Available at https://www.acea.be/statistics/tag/category/vehicles-in-useSearch in Google Scholar

40. Savickis, J., Zeltins, N., & Jansons, L. (2019). Synergy between the Natural Gas and RES in Enhancement of Security of Energy Supply in the Baltic Countries (Problem Statement). Latvian Journal of Physics and Technical Sciences, 56 (6), 17–31. DOI: https://doi.org/10.2478/lpts-2019-003210.2478/lpts-2019-0032Search in Google Scholar

41. ICCT. (2018). European Vehicle Market Statistics, 2018/2019. [online]. [accessed 3 March 2021]. Available at https://theicct.org/sites/default/files/publications/ICCT_Pocketbook_2018_Final_20190408.pdfSearch in Google Scholar

42. Savickis, J., Zemite, L., Zeltins, N., Bode, I., Jansons, L., Dzelzitis, E., …. & Ansone, A. (2020). The Biomethane Injection into the Natural Gas Networks: The EU’s Gas Synergy Path. Latvian Journal of Physics and Technical Sciences, 57 (4), 34–50. DOI: 10.2478/lpts-2020-002010.2478/lpts-2020-0020Search in Google Scholar

43. Sharafian, A., Talebian, H., Blomerus, P., Herrera, O., & Mérida, W. (2017). A Review of Liquefied Natural Gas Refueling Station Designs. Renewable and Sustainable Energy Reviews, 69 (November 2016), 503–513. https://doi.org/10.1016/j.rser.2016.11.18610.1016/j.rser.2016.11.186Search in Google Scholar

44. Reķis, J., Šmigins, R., Gailis, M., & Klāvs, G. (2018). Pētījums par Eiropas Parlamenta un Padomes 2014. gada 22. oktobra Direktīvas 2014/94/ES par alternatīvo degvielu ieviešanu scenārijiem autotransporta sektorā. 40003142793, 146.Search in Google Scholar

45. Bode, I. (2019). Alternatīvās degvielas izmantošana (presentation).Search in Google Scholar

46. On Alternative Fuels Development Plan 2017–2020. [online]. [accessed 8 March 2021] Available at https://likumi.lv/ta/en/en/id/290393-on-alternative-fuels-development-plan-20172020Search in Google Scholar

47. European Biogas Association, Gas Infrastructure Europe. (2020). The European Biomethane Map 2020. [online]. [accessed 3 March 2021]. Available at https://www.europeanbiogas.eu/wp-content/uploads/2020/06/GIE_EBA_BIO_2020_A0_FULL_FINAL.pdfSearch in Google Scholar

48. BioLNG Makes Carbon Neutrality a Reality for EU transport. (2020). [online]. [accessed 4 March 2021]. Available at https://www.europeanbiogas.eu/wp-content/uploads/2020/11/News-Release_BioLNG_Paper_EBA-GIE-NGVA-Europe-SEA-LNG-WEB.pdfSearch in Google Scholar

49. Franco A., & Casarosa C. (2014). Thermodynamic and Heat Transfer Analysis of LNG Energy Recovery for Power Production. Journal of Physics: Conference Series, 54710.1088/1742-6596/547/1/012012Search in Google Scholar

50. Ministry of Economic Affairs and Employment of Finland. (2020). Investment Incentives to Promote Rapid Phase-Out of Coal in Energy Production. [online]. [accessed 9 January 2021]. Available at https://valtioneuvosto.fi/en/-/1410877/asetuksella-investointikannuste-hiilen-energiakaytostaripeasti-luopuvilleSearch in Google Scholar

eISSN:
0868-8257
Język:
Angielski
Częstotliwość wydawania:
6 razy w roku
Dziedziny czasopisma:
Physics, Technical and Applied Physics