References
- AL MATIN M.A., TAKEDA S., TANAKA Y., SAKURAI S., TEZUKA T. 2019. LCOE analysis for grid-connected pv systems of utility scale across selected ASEAN countries. ERIA Discussion Paper Series, 305. Eria.org
- AMBAYE T.G., VACCARI M., BONILLA-PETRICIOLET A., PRASAD S., VAN HULLEBUSCH E.D., RTIMI S. 2021. Emerging technologies for biofuel production: a critical review on recent progress, challenges and perspectives. Journal of Environmental and Economic Management 290, 112627.
https://doi.org/10.1016/j.jenvman.2021.112627 [accessed 05.11.2022]. - ANDERSON D.A. 2019. Environmental Economics and Natural Resource Management. Routledge, New York.
- ANDERSSON J.J. 2019. Carbon taxes and CO2 emissions: Sweden as a case study. American Economic Journal: Economic Policy 11: 4.
https://www.aeaweb.org/articles?id=10.1257/pol.20170144 [accessed 06.11.2022]. - ARE. 2016. aktualizacja analizy porównawczej kosztów wytwarzania energii elektrycznej w elektrowniach jądrowych, węglowych i gazowych oraz odnawialnych źródłach energii,
https://www.gov.pl/web/klimat/publikacje-jadrowe-raporty-analizy-opracowania [accessed 11.11.2022]. - BAKER L. 2021. Procurement, finance and the energy transition: Between global processes and territorial realities. Environment and Planning E: Nature and Space 5, 4.
https://journals.sagepub.com/doi/full/10.1177/2514848621991121 [accessed 08.11.2022]. - BANKS J.P. 2022. The decarbonization transition and U.S. electricity markets: Impacts and innovations. WIREs Energy and Environment 11, 6: e449.
https://doi.org/10.1002/wene.449 . [accessed 08.11.2022]. - BAUMOL W.J., OATES W.E. 1971. The use of standards and prices for protection of the environment. In The economics of environment. Palgrave Macmillan, London.
- BLONDEEL M., BRADSHAW M.J., BRIDGE G., KUZEMKO C. 2021. The geopolitics of energy system transformation: A review. Geography Compass 15, 7.
- BURGER S.P., JENKINS J.D., HUNTINGTON S.C., PEREZ-ARRIAGA I.J. 2019a. Why distributed? A critical review of the trade-offs between centralized and decentralized resources. IEEE Power and Energy Magazine 17, 2.
https://ieeexplore.ieee.org/abstract/document/8643507 [accessed 09.11.2022]. - BURGER S.P., JENKINS J.D., BATLLE C., PEREZ-ARRIAGA I.J. 2019b. Restructuring revisited, part 2: coordination in electricity distribution systems. The Energy Journal 40, 3.
https://www.iaee.org/en/publications/ejarticle.aspx?id=3353 [accessed 06.11.2022]. - CAPELLÁN-PÉREZ I., ARTO I., POLANCO-MARTÍNEZ J.M., GONZÁLEZ-EGUINO M., NEUMANN M.B. 2016 Likelihood of climate change pathways under uncertainty on fossil fuel resource availability. Energy and Environmental Science 9, 8.
https://pubs.rsc.org/en/content/articlelanding/2016/EE/C6EE01008C [accessed 03.11.2022]. - Center for Global Development. 2016. Energy Access Targets Working Group, ‘More Than a Lightbulb: Five Recommendations to Make Modern Energy Access Meaningful for People and Prosperity’.
www.cgdev.org/node/3124016 [accessed 09.11.2022]. - CHOROWSKI M. 2022. Dekarbonizacja polskiej energetyki – szansa na sukces czy pewna porażka? Kongres Obywatelski,
https://www.kongresobywatelski.pl/idee-dla-polski-kategoria/dekarbonizacja-polskiej-energetyki-szansa-na-sukces-czy-pewna-porazka-2/ [accessed 11.11.2022]. - CHRISTOPHERS B. 2022. Taking renewables to market: Prospects for the after-subsidy energy transition. The 2021 Antipode RGS-IBG Lecture, 54, 5.
https://doi.org/10.1111/anti.12847 [accessed 08.11.2022]. - CHRUSZCZOW T., MITROCZUK I. 2022. “Neutralność klimatyczna – jak to osiągnąć?”. In IOŚ-PIB materials for the Climate and Energy post-diploma studies, IOŚ-PIB 2022.
https://ios.edu.pl/dzialalnosc-wydawnicza/pozycje-wydane/# [accessed 23.08.2022]. - CHOJNACKI I. 2021. Kolejny unijny cel w górę. Energii z OZE ma być znacznie więcej. w wnp.pl
https://www-wnppl.cdn.ampproject.org/c/s/www.wnp.pl/energetyka/kolejny-unijny-cel-w-gore-energii-z-oze-ma-bycznacznie-wiecej,483828.amp [accessed 27.07.2021]. - CLUDIUS J.M. 2015. Distributional effects of energy and climate policy. PhD thesis, Doctor of Philosophy, UNSW Business School, UNSW Australia.
- COCHRAN J., MAI T., BAZILIAN M. 2014. Meta-analysis of high penetration renewable energy scenarios. Renewable and Sustainable Energy Reviews 29, 246–253.
https://www.sciencedirect.com/science/article/pii/S1364032113006291 [accessed 09.11.2022]. - CREUTZIG F., AGOSTON P., GOLDSCHMIDT J.C., LUDERER G., NEMET G., PIETZCKER R.C. 2017. The underestimated potential of solar energy to mitigate climate change. Nature Energy 2, 9: 1–9.
- DARBY M., GERRETSEN I. 2020. Which countries have a net zero carbon goal?
https://www.climatechangenews.com/2019/06/14/countries-net-zero-climate-goal [accessed 08.11.2022]. - DAS A., DI VALDALBERO D.R., VIRDIS M.R. 2007. ACROPOLIS: An example of international collaboration in the field of energy modelling to support greenhouse gases mitigation policies. Energy Policy 35, 2.
- DELOITTE. 2020. Dekarbonizacja najszybsza w sektorze energetycznym, Inwestycje w odnawialne źródła energii oraz ponowne wykorzystanie odpadów będą kluczowe dla firm w ich strategiach energetycznych, informacja prasowa 17 grudnia 2020 r.
https://www2.deloitte.com/pl/pl/pages/press-releases/articles/dekarbonizacja-najszybsza-w-sektorze-energetycznym.html [accessed 11.11.2022]. - DERSKI S. 2022. Wysokie Napięcie, Ceny prądu na 2023 rok pobiły kolejne rekordy. Dokłada się susza, available online:
https://wysokienapiecie.pl/74116-ceny-pradu-na-2023-rok-pobily-kolejne-rekordy/ [access: 10.08.2022]. - D’HAESELEER W. 2013. Synthesis of the Economics of Nuclear Energy, Study for the European Commission, DG Energy, November 27th, 2013.
- EC EUROPEAN COMMISSION. 2014. A policy framework for climate and energy in the period from 2020 to 2030.
https://www.eea.europa.eu/policy-documents/com-2014-15-final [accessed 10.11.2022]. - ECF ROADMAP, E. C. F. 2010. 2050: a practical guide to a prosperous, low carbon Europe.
- EIA. 2021a. Annual electric power industry report, Form EIA-861 detailed data files. U.S. Energy Information Administration (EIA).
https://www.eia.gov/electricity/data/eia861/ [accessed 08.11.2022]. - EIA. 2021b. Annual energy outlook 2021—With projections to 2050. U.S. Energy Information Administration (EIA).
https://www.eia.gov/outlooks/aeo/pdf/00%20AEO2021%20Chart%20Library.pdf [accessed 10.11.2022]. - EIA. 2021c. Electric power plants, capacity, generation, fuel consumption, sales, prices and customers. U.S. Energy Information Administration (EIA).
https://www.eia.gov/electricity/data.php [accessed 03.11.2022]. - EPA U.S. ENVIRONMENTAL PROTECTION AGENCY 2019. Inventory of U.S. Greenhouse Gases and Sinks, 1990–2017. EPA 430-R-19-001.
https://www.epa.gov/sites/production/files/2019-04/documents/us-ghg-inventory-2019-main-text.pdf [accessed 08.11.2022]. - Europe S.P. 2017. Solar PV jobs and value added in Europe,
https://www.solarpowereurope.org/wp-content/uploads/2018/08/Solar-PV-Jobs-Value-Added-in-Europe-November-2017 [accessed 03.11.2022]. - FALVO M.C., QUAGLIA F., LUZI L., PERFETTI S., CARLINI E.M., CAPRABIANCA M. 2021. Assessment of alternative reserve procurement strategies for the Italian Power System. In 2021 AEIT International Annual Conference, IEEE Terna. Piano di Sviluppo, 2019. Available from
https://www.terna.it/it/sistema-elettrico/rete/piano-sviluppo-rete . [accessed 08.11.2022]. - FISHER S. 2013. Low carbon resilient development in the least developed countries. IIED Issue Paper. IIED, London.
- FISHER B.S., NAKICENOVIC N., ALFSEN K., CORFEE MORLOT J., DE LA CHESNAYE F., HOURCADE J-CH. 2007. Issues related to mitigation in the long-term context, In: B Metz and O. Davidson (Eds.), IPCC fourth assessment report. Report of Working Group III Mitigation, Cambridge University Press; Cambridge.
- FOFRICH R., TONG D., CALVIN K., DE BOER H.S., EMMERLING J., FRICKO O., FUJIMORI S., LUDERER G., ROGELJ J., DAVIS S.J. 2020. Early retirement of power plants in climate mitigation scenarios. Environmental Research Letters 15, 9.
https://iopscience.iop.org/article/10.1088/1748-9326/ab96d3/meta [accessed 09.11.2022]. - FORUM ENERGII. 2019. Elastyczność krajowego systemu elektroenergetycznego | Diagnoza, potencjał, rozwiązania,
https://www.forum-energii.eu/pl/analizy/elastycznosckse - FORUM ENERGII. 2022. Struktura wytwarzania energii elektrycznej, on the basis of ENTSO-E Transparency Platform, available on-line:
https://forumetr.forum-energii.eu/ - FRAUNHOFER I.S.E., ENERGIEWENDE. 2015. Current and future cost of photovoltaics. long-term scenarios for market development, system prices and lcoe of utility-scale pv systems. Agora Energiewende 82.
- GAWLIKOWSKA-FYK A. 2021. Forum Energii, Po 2025 r. węgiel będzie wychodził z polskiego systemu energetycznego falami
https://www.forum-energii.eu/pl/blog/luka-weglowa-2025 [accessed 09.11.2022]. - GOULDER L.H. 1995. Environmental taxation and the double dividend: a reader's guide. International tax and public finance 2, 2: 157–183.
https://link.springer.com/article/10.1007/BF00877495 [accessed 08.11.2022]. - GUO H., SHI T., WANG F., Zhang L., Lin Z. 2020. Adaptive clustering-based hierarchical layout optimisation for large-scale integrated energy systems. IET Renewable Power Generation 14, 17: 3336–3345.
https://doi.org/10.1049/iet-rpg.2020.0105 [accessed 09.11.2022]. - HA Y-H., BYRNE J. 2019. The rise and fall of green growth: Korea's energy sector experiment and its lessons for sustainable energy policy, Wiley Interdisciplinary Reviews: Energy and Environment, vol 8,
https://www.researchgate.net/publication/330421290_The_rise_and_fall_of_green_growth_Korea's_energy_sector_experiment_and_its_lessons_for_sustainable_energy_policy/citation/download [accessed 20.12.2022] - HANSEN J., KHARECHA P., SATO M. MASSON-DELMOTTE V., ACKERMAN F., BEERLING D.J., HEARTY P.J., HOEGHGULDBERG O., HSU S.L., PARMESAN C., ROCKSTROM J. 2013. Assessing “dangerous climate change”: Required reduction of carbon emissions to protect young people, future generations and nature. PLoS ONE, 8, 12.
https://doi.org/10.1371/journal.pone.0081648 [accessed 08.11.2022]. - IBS. 2018. Polska polityka energetyczna na rozdrożu: koszty i korzyści potencjalnej dekarbonizacji, IBS, Warszawa.
https://ibs.org.pl/app/uploads/2018/11/IBS_Research_Report_05_2018_wnioski_pl.pdf [accessed 11.11.2022]. - IEA. 2020. World Energy Outlook 2020.
https://www.iea.org/reports/world-energy-outlook-2020 [accessed 08.11.2022]. - INFIELD D., FRERIS L. 2020. Renewable energy in power systems. John Wiley & Sons, Hoboken, NJ.
- IPCC (International Panel on Climate Change). 2018. Rogelj, J., Shindell, D., Jiang, K., Fifita, S., Forster, P., Ginzburg, V., Handa, C., Kheshgi, H., Kobayashi, S., Kriegler, E. and Mundaca, L., Global Warming of 1.5° C. An IPCC Special Report on the impacts of global warming of 1.5° C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of strengthening the global response to the threat of climate change, sustainable development, and efforts to eradicate poverty. Sustainable Development, and Efforts to Eradicate Poverty. V. Masson-Delmotte et al. (Eds.). Cambridge University Press, Geneva.
- IRENA. 2016. Renewable energy benefits: Measuring the economics, IRENA 2016.
- JACOBS M. 2012. Green growth: Economic theory and political discourse (Vol. 108). Grantham Research Institute on Climate Change and the Environment, London.
- JESZKE R., Biznes Alert. 2021. „Wahania cen uprawnień do emisji CO2 utrudniają inwestycje na rzecz ich redukcji” availabe on-line:
https://biznesalert.pl/ceny-uprawiendo-emisji-co2-eu-ets-system-handlu-emisjami-wegiel-energetyka/ [accessed 10.07.2021]. - JONEK-KOWALSKA I. 2022. Towards the reduction of CO2 emissions. Paths of pro-ecological transformation of energy mixes in European countries with an above-average share of coal in energy consumption. Resources Policy 77, 102701.
- JOSKOW P.L. 2020. Competition for electric transmission projects in the USA: Ferc order 1000. In Transmission Network Investment in Liberalized Power Markets. Springer, Cham
https://link.springer.com/chapter/10.1007/978-3-030-47929-9_10 [acceseds 04.11.2022]. - KARKOUR S., ICHISUGI Y., ABEYNAYAKA A., ITSUBO N. 2020. “External-Cost Estimation of Electricity Generation in G20 Countries: Case Study Using a Global Life-Cycle Impact-Assessment Method” available on-line:
https://mdpi-res.com/d_attachment/sustainability/sustainability-12-02002/article_deploy/sustainability-12-02002.pdf?version=1583420042 [accessed 23.08.2022]. - KELES D., YILMAZ H.Ü. 2020. Decarbonisation through coal phase-out in Germany and Europe — impact on Emissions, electricity prices and power production A national phase-out leads to a significant reduction of domestic carbon emissions. Energy Policy 141, 111472.
https://doi.org/10.1016/j.enpol.2020.111472 [accessed 08.11.2022]. - KENNEDY S.F., STOCK R. 2021. Alternative energy capital of the world? Fix, risk, and solar energy in Los Angeles’ urban periphery. Environment and Planning E: Nature and Space,
https://journals.sagepub.com/doi/abs/10.1177/25148486211054334 [accessed 09.11.2022] - KNUTH. S. 2021. Rentiers of the low-carbon economy? Renewable energy's extractive fiscal geographies. Environment and Planning A: Economy and Space,
https://journals.sagepub.com/doi/full/10.1177/0308518X211062601 [accessed 09.11.2022]. - KOEPPL A., KRATENA K., PICHL C., SCHEBECK F., SCHLEICHER S., WUEGER M. 1996. Macroeconomic and sectoral effects of energy taxation in Austria. Environmental and Resource Economics 8, 4: 417–430.
https://link.springer.com/article/10.1007/BF00357411 [accessed 09.11.2022]. - KPRM. 2022. Założenia do aktualizacji Polityki Energetycznej Polski do 2040 r. (PEP2040) – wzmocnienie bezpieczeństwa i niezależności energetycznej, KPRM.
https://www.gov.pl/web/premier/zalozeniado-aktualizacji-polityki-energetycznej-polski-do-2040-r-pep2040--wzmocnienie-bezpieczenstwa-i-niezaleznosci-energetycznej [accessed 09.11.2022]. - KULOVESI, OBERTHÜR. 2019 Assessing the EU's 2030 Climate and Energy Policy Framework: Incremental change toward radical transformation? Review of European, Comparative & International Environmental Law Volume 29, Issue 2 available on-line:
https://onlinelibrary.wiley.com/doi/10.1111/reel.12358 [accessed 20.12.2022]. - KURTYKA M. Energetyka rozproszona jako element polskiej transformacji energetycznej, available on-line:
https://doi.org/10.7494/er.2021.5-6.7 [accessed 14.07.2021]. - LAUGS G.A., MOLL, H.C. 2017. A review of the bandwidth and environmental discourses of future energy scenarios: Shades of green and gray. Renewable and Sustainable Energy Reviews 67: 520–530.
https://www.sciencedirect.com/science/article/pii/S1364032116305470 [accessed 09.11.2022]. - LAZARD, Lazard's Levelized Cost of Energy Analysis—Version 14.0, 2020, p. 8 Retrieved from
https://www.lazard.com/media/451419/lazards-levelized-cost-of-energy-version-140.pdf [accessed 09.11.2022]. - LEDERER M., WALLBOTT L., URBAN F. 2019. Green transformations and state bureaucracy. In R. Fouquet (Ed.), Handbook on Green Growth. Edward Elgar, Cheltenham, UK.
- LUDERER G., BOSETTI V., JAKOB M., LEIMBACH M., STECKEL J.C., WAISMAN H., EDENHOFER O. 2012. The economics of decarbonizing the energy system—results and insights from the RECIPE model intercomparison. Climatic Change, 114, 1: 9–37.
https://link.springer.com/article/10.1007/s10584-011-0105-x [accessed 09.11.2022]. - LUND P.D., BYRNE J., HAAS, R., FLYNN D. 2019. Advances in energy systems: The large-scale renewable energy integration challenge. John Wiley & Sons, Hoboken, NJ.
- MACKINSEY & COMPANY. 2021. Neutralna emisyjnie Polska 2050,
https://www.mckinsey.com/pl/our-insights/carbon-neutral-poland-2050 [accessed 11.11.2022]. - MANDLEY S., WICKE B., JUNGINGER H., VAN VUUREN D., DAIOGLOU V. 2021. Integrated assessment of the role of bioenergy within the EU energy transition targets to 2050, GCB Bioenergy 14, 2: 157–172.
- MAI T., HAN M.M., BALDWIN S.F., WISER R.H., BRINKMAN G.L., DENHOLM P., ARENT D., PORRO G., SANDOR D., HOSTICK D., MILLIGAN D., DEMEO E.D., BAZILIAN M. 2013. Renewable electricity futures for the United States. IEEE Transactions on Sustainable Energy 5, 2.
- MAI T., SANDOR D., WISER R., SCHNEIDER T. 2012. Renewable electricity futures study. executive summary (No. NREL/TP-6A20-52409-ES). National Renewable Energy Lab. (NREL), Golden.
- METCALF G.E., STOCK J.H. 2020a. May. Measuring the macroeconomic impact of carbon taxes. In AEA papers and Proceedings 110, 101–106.
https://www.aeaweb.org/articles?id=10.1257/pandp.20201081 [accessed 08.11.2022]. - METCALF G.E., STOCK J.H. 2020b. The macroeconomic impact of Europe's carbon taxes No. w27488 National Bureau of Economic Research.
https://www.nber.org/papers/w27488 [accessed 09.11.2022]. - MINAS S. 2020. EU climate law sans frontières: The extension of the 2030 Framework to the Energy Community contracting parties, Review of European, Comparative and International Environmental Law Volume 29, Issue 2, Special Issue: Assessing the EU 2030 Climate and Energy Policy Framework
https://doi.org/10.1111/reel.12352 [accessed 08.11.2022]. - MKiŚ, Ministerstwo Klimatu i Środowiska. 2020. Badanie świadomości i zachowań ekologicznych mieszkańców Polski, MKiŚ, październik 2020.
- NAKATA T. 2004. Energy-economic models and the environment. Progress in energy and combustion science 30, 4: 417–475.
- NYANGON J., BYRNE J. 2021. Spatial energy efficiency patterns in New York and implications for energy demand and the rebound effect. Energy Sources, Part B: Economics, Planning, and Policy 16, 2: 135–161.
https://www.tandfonline.com/doi/abs/10.1080/15567249.2020.1868619 [accessed 09.11.2022]. - NYANGON J., BYRNE J. 2022. Estimating the impacts of natural gas power generation growth on solar electricity development: PJM's evolving resource mix and ramping capability, Wiley Interdisciplinary Reviews: Energy and Environment, e454.
- OLSSON A., HILDINGSSON R., KHAN J. 2020. The green economy and the Nordic welfare state: Reconceptualizing green economy narratives from a Nordic perspective (No. 3104). Miljö-och energisystem, LTH, Lunds universitet
https://lup.lub.lu.se/search/publication/8b1dc459-6c48-44bb-a013-732d296a4925 [accessed 09.11.2022]. - PAPAPETROU M., KOSMADAKIS G. 2022. Salinity Gradient Heat Engines, Woodhead Publishing Series in Energy.
- PEARCE D. 1991. The role of carbon taxes in adjusting to global warming. The Economic Journal 101, 407: 938–948.
https://www.jstor.org/stable/2233865 [accessed 10.11.2022]. - PIE. 2019. Dywersyfikacja polskiego miksu energetycznego już nie tylko konieczna, ale i możliwa, PIE
https://pie.net.pl/dywersyfikacja-polskiego-miksu-energetycznegojuz-nie-tylko-konieczna-ale-i-mozliwa/ [accessed 11.11.2022]. - PIE. 2021. Impact on Households of the Inclusion of Transport and Residential Buildings in the EU ETS,
https://pie.net.pl/wp-content/uploads/2021/06/PIERaport_ETS.pdf [accessed 10.11.2022]. - PILLAI G., ALLISON M., TUN T.P., JYOTHI C.H.K., BABU E.K. 2021. Facilitating higher photovoltaic penetration in residential distribution networks using demand side management and active voltage control. Engineering Reports 3, 10, e12410.
https://doi.org/10.1002/eng2.12410 [accessed 09.11.2022]. - PINDYCK R.S. 2013. Climate change policy: what do the models tell us? Journal of Economic Literature 51, 3: 860–872.
https://www.aeaweb.org/articles?id=10.1257/jel.51.3.860 [accessed 10.11.2022] - PINDYCK R.S. 2019. The social cost of carbon revisited. Journal of Environmental Economics and Management, 94.
https://www.sciencedirect.com/science/article/pii/S0095069617307131 [accessed 10.11.2022] - PLESS J., ARENT D.J., LOGAN J., COCHRAN J., ZINAMAN O. 2016. Quantifying the value of investing in distributed natural gas and renewable electricity systems as complements: Applications of discounted cash flow and real options analysis with stochastic inputs. Energy Policy 97, 378–390.
https://www.sciencedirect.com/science/article/pii/S0301421516303548 [accessed 09.11.2022]. - POPKIEWICZ M., KARDAŚ A., MALINOWSKI S.Z. 2019. Nauka o Klimacie, Post Factum.
- POPKIEWICZ M. 2022, Zrozumieć transformację energetyczną Od depresji do wizji albo jak wykopywać się z dziury, w której jesteśmy, Wydawnictwo Sonia Draga, Warszawa.
- PREISS P.H., FRIEDRICH R., BLESL M., WISSEL S., MAYER-SPOHN O., KLOTZ V. 2008. Social Costs of Innovative Electricity Generation Technologies in the Present and in 2030. Universität Stuttgart, IER, Stuttgart.
- REID W.V., ALI M.K., FIELD C.H.B. 2019. The future of bioenergy. Global Change Biology 26, 1.
https://doi.org/10.1111/gcb.14883 [accessed 09.11.2022]. - RINGKJØB H.K., HAUGAN P.M., SOLBREKKE I.M. 2018. A review of modelling tools for energy and electricity systems with large shares of variable renewables. Renewable and Sustainable Energy Reviews 96, C: 440–459.
- SÖDERHOLM P., HILDINGSSON R., JOHANSSON B., KHAN J., WILHELMSSON F. 2011. Governing the transition to low-carbon futures: A critical survey of energy scenarios for 2050. Futures, 43, 10
https://www.sciencedirect.com/science/article/pii/S0016328711001753 [accessed 10.11.2022]. - SOVACOOL B.K. 2016. How long will it take? Conceptualizing the temporal dynamics of energy transitions. Energy Research & Social Science 13, 202–215.
https://www.sciencedirect.com/science/article/pii/S2214629615300827 [accessed 09.11.2022]. - SPECK S. 2006. The use of economic instruments in Nordic and Baltic environmental policy 2001–2005. Nordic Council of Ministers.
- STREZOSKI L. 2022. Distributed energy resource management systems—DERMS: State of the art and how to move forward, Wiley Interdisciplinary Reviews: Energy and Environment.
- TANAKA Y., CHAPMAN A., SAKURAI S., TEZUKA T. 2017. Feed-in tariff pricing and social burden in Japan: evaluating international learning through a policy transfer approach. Social Sciences 6, 4: 127.
- TATAREWICZ I., LEWARSKI M., SKWIERZ S., PYRKA M., BORATYŃSKI J., JESZKE R., WITAJEWSKI-BALTVILKS J., SEKULA M. 2022. Poland net-zero 2050 transformation of the Polish and EU energy sector until 2050. Centre for Climate and Energy Analyses.
https://climatecake.ios.edu.pl/download/98/ [accessed 22.08.2022]. - TOL R.S. 2000. Modelling the costs of emission reduction: different approaches. Pacific and Asian Journal of Energy 10, 1: 1–7.
- TORRES J.F., PETRAKOPOULOU F. 2022. A Closer Look at the Environmental Impact of Solar and Wind Energy Global Challenges 6, 8.
- UNFCCC. 2020. Commitments to net zero double in less than a year - Press release
https://unfccc.int/news/commitments-to-net-zero-double-in-less-than-a-year [accessed 09.11.2022]. - UNFCCC. 2021. Glasgow climate pact.
https://unfccc.int/sites/default/files/resource/cop26_auv_2f_cover_decision.pdf [accessed 10.11.2022]. - UNGA. 2015. Transforming Our World: the 2030 Agenda for Sustainable Developmen, UN Doc A/RES/70/1 (21 October 2015).
- VALENTINE S.V., BROWN M.A., SOVACOOL B.K. 2019. Empowering the great energy transition policy for a low-carbon future. Columbia University Press, New York.
- VERONESE E., MANZOLINI G., MOSER D. 2021, Improving the traditional levelized cost of electricity approach by including the integration costs in the techno-economic evaluation of future photovoltaic plants. Special Issue: Progress in Alternative Fuels and Energies International Journal of Energy Research 45, 6.
https://doi.org/10.1002/er.6456 [accessed 10.11.2022]. - WATKISS P., DOWNING T. 2008. The social cost of carbon: Valuation estimates and their use in UK policy. Integrated Assessment Journal 8, 1.
- WEALER B., BAUER S., COEKE L., VON HIRSCHHAUSEN C.H., KEMFERT C. 2019. Economics of Nuclear Power Plant Investment, DIW Berlin Discussion Papers 1833.
- WEWERINKE-SINGH M. 2021. Review of European, Comparative and International Environmental Law, Special Issue: Human Rights and the Climate Change Crisis, 31,1
https://doi.org/10.1111/reel.12412 [accessed 10.11.2022]. - WILLIAMS J.H., DEBENEDICTIS A., GHANADAN R., et al. 2012 The technology path to deep greenhouse gas emissions cuts by 2050: the pivotal role of electricity. Science 2012; 335(6064)
https://www.science.org/doi/10.1126/science.1208365 [accessed 10.11.2022]. - WILLIAMS J.H., JONES R.A., HALEY B., KWOK G., HARGREAVES J., FARBES J., TORN M.S. 2021. Carbon-neutral pathways for the United States. AGU Advances 2, 1.
- WIMBADI R.W., DJALANTE R. 2020. From decarbonization to low carbon development and transition: A systematic literature review of the conceptualization of moving toward net-zero carbon dioxide emission (1995–2019). Journal of Cleaner Production, 256.
https://doi.org/10.1016/j.jclepro.2020.120307 [accessed 10.11.2022]. - WNP. 2009. Steinhoff: Rząd Jerzego Buzka uratował polskie górnictwo, WNP,
https://www.wnp.pl/gornictwo/steinhoff-rzad-jerzego-buzka-uratowal-polskiegornictwo,70013.html [accessed 11.11.2022]. - WNP. 2022. W kopalniach brakuje rąk do pracy, bo restrukturyzację traktowano jak likwidację górnictwa, WNP
https://www.wnp.pl/gornictwo/w-kopalniachbrakuje-rak-do-pracy-bo-restrukturyzacje-traktowanojak-likwidacje-gornictwa,586205.html [accessed 11.11.2022]. - WYSOKIE NAPIĘCIE. 2022. Modernizacja elektrowni węglowych leży odłogiem,
https://wysokienapiecie.pl/76933-modernizacja-elektrowni-weglowych-lezy-odlogiem/ [accessed 11.11.2022]. - XU J., LUO N., LI M., XIE H. 2017. A novel paradigm-oriented approach towards NG-RE hybrid power generation. Energy Conversion and Management 145, 220–232.
https://www.sciencedirect.com/science/article/pii/S0196890417302881 [accessed 10.11.2022]. - YANG J., DONG Z.Y., WEN F., SIOSHANSI R., HESAMZADEH M., CHEN O., ZHOU Y. 2022. Special Issue: Enhancing hosting capability for renewable energy generation in active distribution networks. IET Renewable Power Generation 16, 4.
https://doi.org/10.1049/rpg2.12434 [accessed 09.11.2022] - EU. 2019. The European Green Deal.
https://eur-lex.europa.eu/resource.html?uri=cellar:b828d165-1c22-11ea-8c1f-01aa75ed71a1.0002.02/DOC_1%26format=PDF [accessed 09.11.2022]. - EU. 2022a. EU Solar Energy Strategy COM (2022)221.
- EU. 2022b. REPowerEU Communication COM (2022)230 final.
- MONITOR POLSKI, PEP 2040: Obwieszczenie Ministra Klimatu i Środowiska z dnia 2 marca 2021 r. w sprawie polityki energetycznej państwa do 2040 r., Dziennik Urzędowy Rzeczypospolitej Polskiej Warszawa, dnia 10 marca 2021 r., poz. 264.
- UNGA. 2015. Paris Agreement.