Czasopismo
2024
|
Vol. 50, nr 3
|
27--39
Tytuł artykułu
Autorzy
Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
Abstrakty
Humanity’s vision of designing energy production technologies by using diverse energy resources has been oriented to steadily increasing its quality of life. Registered developments have however emphasized that economic activities can have besides positive desired impacts on humanity’s quality of life negative undesired effects. In the present time of sustained debates regarding appropriate energy supply systems needed to be designed in the future, it is relevant to consider not only the availabilityof corresponding needed energy resources but also their environmental impacts. The process of analyzing and assessing the environmental impacts of energy supply systems must be carefully carried out by considering fossil fuels and more recently renewable energy resources. In this context, an environmental impact analyzing model because of using energy resources must be coupled with an assessing model finally resulting in an integrative model. Applying a designed integrative model future usage odds of energy resources will be shaped by considering the currently debated European Green Deal to ensure sustainable energy production.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
27--39
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
autor
- Technical University of Cluj-Napoca, Romania, marius.berca@ceoltenia.ro
- Oltenia Energy Complex, Targu Jiu, Romania
autor
- Technical University of Cluj-Napoca, Romania
- University 1 Decembrie 1918, Alba Iulia, Romania.
- Clausthal University of Technology, Germany
Bibliografia
- [1] European Commission, The European Green Deal, 2019, Brussels, https://eur-lex.europa.eu/legal- content/EN/TXT/?uri=COM%3A2019%3A640%3AFIN [accessed 9 August 2023].
- [2] BERCA M., T ULBURE I., Environmental impact assessment of energy supply systems, Environ. Eng. Manage. J., 2023, 22 (12), 2035–2044, DOI: 10.30638/eemj.2023.175.
- [3] TULBURE I., State description and dynamics of environmental systems, Papierflieger Publishing House, Clausthal-Zellerfeld, 1997 (in German).
- [4] IONEL I., UNGUREANU C., BISORCA D., Thermoenergetics and environment, Politehnica Publishing House Timisoara, Timisoara 2006 (in Romanian).
- [5] European Environment Agency, Emissions and energy use in large combustion plants in Europe, 2023, https://www.eea.europa.eu/ims/emissions-and-energy-use-in [accessed 10 August 2023].
- [6] JISCHA M.F., Energy, symbol of progress or energy systems in transition, [In:] Future challenge, Elsevier, Spektrum Publishing House, Heidelberg 2014, 61–83 (in German).
- [7] T ULBURE I., Methods for the development of strategies for sustainable energy supply, Humboldt Research Report, Energy Research Center, EFZN, Goslar, Germany, 2011 (in German).
- [8] TULBURE I., BERCA M., Shaping sustainable energy supply systems on regional level, Proc. 21st International Multidisciplinary Scientific Geoconference, SGEM, 2021, 21 (4.1), 89–94. DOI: 10.5593/sgem2021/4.1/s17.19.
- [9] European Commission, Proposal for a council implementing decision on the approval of the assessment of the recovery and resilience plan for Romania and annex, 2021, Brussels, https://commission.europa.eu/publications/proposal-council-implementing-decision-approval-assessment-recovery-and-resilience-plan-romania-and_en [accessed 5 August 2023].
- [10] MEADOWS D.H., M EADOWS D.L., RANDERS J., BEHRENS W.W., The limits to growth, Universe Books, New York 1972.
- [11] TULBURE I., Integrative Modelling to Describe Transformation Processes, VDI Publishing House, Düsseldorf 2003 (in German).
- [12] LUDWIG B., Methods for modelling in technology assessment, Papierflieger Publishing House, Clausthal-Zellerfeld 1995 (in German).
- [13] MESAROVIC M., P ESTEL E., Mankind at the turning point; 2nd Report to the Club of Rome, DVA Publishing House, Stuttgart 1974 (in German).
- [14] TULBURE I., Technology Assessment. Lecture Notes, Clausthal University of Technology, Clausthal-Zellerfeld 2013 (in German).
- [15] HANSCHKE T., ZIEGEN H., Connection of Simulation to Optimization, [In:] M. Raabe, U. Clausen (Eds.),Simulation in Production and Logistics, Fraunhofer IRB, Stuttgart 2015, 111–118.
- [16] BECK H.P., L IEBING M., Bridges to the Future, Publishing House of Clausthal University of ogy, Clausthal-Zellerfeld 2000 (in German).
- [17] TERRA 2000, Information Society and Sustainable Development. Final Project Report, J. Cave, S. Simmons, (Eds.), Towards a Sustainable Information Society, Rand Europe, Leiden, The Netherlands, ac.uk/fac/soc/economics/staff/jakcave/publications/story_of_terra_v.6c.pdf [accessed 20 August 2023].
- [18] GRUNWALD A., Technology assessment. An introduction, 2nd Ed., Sigma, Berlin 2010 (in German).
- [19] HUGHES B.B., International Futures. Choices in the Creation of a New World Order (Dilemmas in World Politics), Westview Press, 1st Ed., Boulder 1993.
- [20] TULBURE I., BERCA M., Environmental impact analysing and assessing model of energy resources usage technologies, Proc. 22nd International Multidisciplinary Scientific GeoConference, SGEM, 2022, 22 (4.2), DOI: 10.5593/sgem2022V/4.2/s19.33.
- [21] Complexul Energetic Oltenia, Annual Environmental Reports 2015–2022, Targu Jiu (in Romanian), https://www.ceoltenia.ro [accessed 6 August 2023].
- [22] European Commission, Regulation (EU) No. 2018/2066 on the monitoring and reporting of green-house gas emissions pursuant to Directive 2003/87/EC of the European Parliament and of the European Council and amending Commission Regulation (EU) No. 601/2012, https://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:32018R2066 [accessed 19 August 2023].
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-dbf00bc9-843c-4ad7-a350-b2e9ab31fd44