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Abstract

The Energy Law of April 10, 1997 initiated changes in the energy market in Poland. Actions taken on the basis of this law were aimed at the modernization and development of the power sector. Organizational and legal changes causing the development of distributed generation, thus increasing the level of market competition have been introduced. The care for high quality of customer service, including the protection of vulnerable customers, environmental protection, growing share of renewable energy and emission reduction requirements have become a reality. It seems, therefore, that it is necessary for the Polish energy sector to undergo permanent modernization, to develop the production and industrial infrastructure and to develop modern conventional technologies by way of implementing innovations in the field of energy companies. The author of the paper argues that it is indispensable to make a broadly understood transfer of knowledge and technology to the energy sector on the basis of a knowledge-based economy. This also applies to energy clusters, which currently constitute a platform for cooperation: entrepreneurs, scientific-research units, and public authorities. The functioning of these entities is an important catalyst for the transfer of knowledge and technologies. Their regional nature boosts competitiveness of the involved enterprises, and is a natural way of transferring knowledge to the energy market.
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Authors and Affiliations

Radosław Miśkiewicz
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Abstract

The condition of the Polish energy sector does not inspire any trust of its customers. Outdated machinery and the lack of investment in new technologies make it necessary to take action to ensure the stability and continuity of electricity supplies to the end-user. In Poland, the industrial power sector is based on the use of coal and despite the Government’s announcements to resign from this raw material, more and more power investments are being made to generate energy from coal (Ostrołęka power plant). The solution which compensates for the current state of the Polish power industry is the development of distributed generation. The article presents a description of dispersed sources, power market, its organization and problems arising from its implementation. Distributed energy sources in the form of micro installations, energy clusters and virtual power plants have been described and characterized as well. It also assesses the impact of power market introduction on the development of distributed energy sources. The impact of the power market on the development of distributed sources is very hard to predict and determine. The functioning and further development of the energy sector, including the capacity market, strongly depends on the laws, regulations, as well as the economic and political situation in Poland and Europe. The social factor will also play an important role as the introduction of the capacity market will burden the financial side of each energy consumer. On the basis of the data presented on particular sources and distributed systems, one can only make predictions related to the possible effects of introducing the capacity market for the development of distributed sources.

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Authors and Affiliations

Sławomir Sowa
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Abstract

The introduction of energy conservation and resource conservation measures has a positive impact on the environment and is one of the components of sustainable development at the macro level. In turn, at the micro level, such measures lead to a systematic decrease in the production costs of companies and thereby expand their economic and financial security. This article is devoted to the development of methodological tools for modeling the environmental and economic effect of added value created in the energy service market. For this, the peculiarities and components of the energy service contract have been identified. It has been established that one of the indicators of the conclusion of such a contract is the indicator of energy efficiency and environmental friendliness of measures in the structure of the added value of an energy service company. An analysis of existing models of added value created in the energy service market is carried out. A model of economic value added is taken as the basis for modeling the ecological and economic effect of added value created in the energy service market. The rationale is that such value-added is a modification of the economic profit indicator, which measures the financial result of a company, considering not only accounting costs but also the opportunity costs of invested capital for energy efficiency and environmental measures.
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Bibliography


Bertoldi et al. 2019 – Bertoldi, P., Boza-Kiss, B. and Toleikyte, A. 2019. Energy Service Market in the EU. Publications Office of the European Union, Luxembourg.
Borysiak, O. and Brych, V. 2021. Methodological Approach to Assessing the Management Model of Promoting Green Energy Services in the Context of Development Smart Energy Grids. Financial and Credit Activity: Problems of Theory and Practice 4(39), pp. 302–309, DOI: 10.18371/fcaptp.v4i39.241319.
Borysova et al. 2021 – Borysova, T., Monastyrskyi, G., Borysiak, O. and Protsyshyn, Y. 2021. Priorities of Marketing, Competitiveness, and Innovative Development of Transport Service Providers under Sustainable Urban Development. Marketing and Management of Innovations 3, pp. 78–89, DOI: 10.21272/mmi.2021.3-07.
Boza-Kiss et al. 2019 – Boza-Kiss, B., Toleikyté, A. and Bertoldi, P. 2019. Energy Service Market in the EU – Status review and recommendations. Scientific and Technical Report. European ESCO Market Reports series. European Commission, Luxembourg.
Brych et al. 2020 – Brych, V., Manzhula, V., Borysiak, O., Liakhovych, G., Halysh, N. and Tolubyak, V. 2020. Communication Model of Energy Service Market Participants in the Context of Cyclic Management City Infrastructure. 2020 10th International Conference on Advanced Computer Information Technologies (ACIT), pp. 678-681, DOI: 10.1109/ACIT49673.2020.9208902.
Brych et al. 2021 – Brych, V., Mykytyuk, P., Halysh, N., Borysiak, O., Zhekalo, G. and Sokol, M. 2021. Management Model of Energy Enterprises Innovative Development Within Physiological Working Conditions. Propósitos y Representaciones, 9(SPE3), 1173. [Online] http://revistas.usil.edu.pe/index.php/pyr/article/view/1173 [Accessed: 2021-10-16].
Brych et al. 2021 – Brych, V., Zatonatska, T., Dluhopolskyi, O., Borysiak, O. and Vakun, O. 2021. Estimating the Efficiency of the Green Energy Services’ Marketing Management Based on Segmentation. Marketing and Management of Innovations 3, pp. 188–198, DOI: 10.21272/mmi.2021.3-16.
Davydov, O.I. 2017. Models of value added of enterprises: economic content and features of construction. Scientific Bulletin of the International Humanities University, 28, pp. 167–172. [Online] http://nbuv.gov.ua/j-pdf/Nvmgu_eim_2017_28_35.pdf [Accessed: 2021-11-05].
Fraser, M. and Montross, C. 1998. Energy service companies – the sky’s the limit! [Online] https://www.semanticscholar.org/paper/Energy-service-companies-The-sky’s-the-limit-Fraser-Montross/42c8a2c8507421fc50ecc2256e3a709ff56f837b [Accessed: 2021-11-05].
Hansen et al. 2009 – Hansen, S.J., Bertoldi, P. and Langlois, P. 2009. ESCOs Around the World: Lessons Learned in 49 Countries. Lilburn, The Fairmont Press.
Kovtoniuk et al. 2021 – Kovtoniuk, K., Molchanova, E., Dluhopolskyi, O., Weigang, G. and Piankova, O. 2021. The factors’ analysis of influencing the development of digital trade in the leading countries. 11th International Conference on Advanced Computer Information Technologies (September 15–17, 2021). Deggendorf, Germany, pp. 290–293.
Koziuk et al. 2020 – Koziuk, V., Hayda, Y., Dluhopolskyi, O. and Kozlovskyi, S. 2020. Ecological performance: ethnic fragmentation versus governance quality and sustainable development. Problemy Ekorozwoju / Problems of Sustainable Development 15(1), pp. 53–64. Law of Ukraine “On the introduction of new investment opportunities, ensuring the rights and legitimate interests of business entities for large-scale energy modernization”, April 9, 2015, №327-VIII.
Liakhovych et al. 2021 – Liakhovych, G., Kupchak, V., Borysiak, O., Huhul, O., Halysh, N., Brych, V. and Sokol, M. 2021. Innovative human capital management of energy enterprises and the role of shaping the environmental behavior of consumers of green energy based on the work of smart grids. Propósitos y Representaciones 9(SPE3), 1293. [Online] https://revistas.usil.edu.pe/index.php/pyr/article/view/1293 [Accessed: 2021-10-26].
Maki et al. 2021 – Maki, E., Kannari, L., Hannula, I. and Shemeikka, J. 2021. Decarbonisation of a district heating system with a combination of solar heat and bioenergy: A techno-economic case study in the Northern European context. Renewable Energy 175, pp. 1174–1199, DOI: 10.1016/j.renene.2021.04.116.
Milinchuk, O.V. 2016. Value-Based Management Effectiveness: Key Indicators. Bulletin of Zhytomyr State Technological University 1, pp. 86–96.
Penate-Valentín et al. 2021 – Penate-Valentín, M.C., Sanchez-Carreira, M.C. and Pereira, A. 2021. The promotion of innovative service business models through public procurement. An analysis of Energy Service Companies in Spain. Sustainable Production and Consumption 27, pp. 1857–1868. Report extract ESCO contracts. 2021. [Online] https://www.iea.org/reports/energy-service-companies-escos-2/esco-contracts [Accessed: 2021-11-10].
Romanenko, O.V. 2013. Strategic enterprise value analysis. Scientific notes of the National University “Ostroh Academy”: Economics series 21, pp. 256–261.
Sotnik, I.N. and Mazin, Y.A. 2015. Energy service companies in the market of resource-saving goods and services in Ukraine. Actual economic problems 1, pp. 321–328. The site of the energy service company “Ecological Systems”. [Online] https://www.ecosys.com.ua [Accessed: 2021-11-10].
Urge-Vorsatz et al. 2007 – Urge-Vorsatz, D., Koppel, S. and Liang, C. 2007. An Assessment of Energy Service Companies (ESCOs) Worldwide. Central European University. [Online] www.worldenergy.org [Accessed: 2021-09-23].
Van Der Kam et al. 2019 – Van Der Kam, M., Peters, A., Van Sark, W. and Alkemade, F. 2019. Agent- based modelling of charging behaviour of electric vehicle drivers. Journal of Artificial Societies and Social Simulation, 22(4), 7, DOI: 10.18564/jasss.4133.
Vence, X. and Pereira, A. 2019. Eco-innovation and Circular Business Models as drivers for a circular economy. Contaduría y Administración 64(1), pp. 1–19.
Volkov, D.L. 2008. Value-Based Management Theory: Financial and Accounting Aspects. SPb.: Medical High School.
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Authors and Affiliations

Oleksandr Dluhopolskyi
1
ORCID: ORCID
Vasyl Brych
2
ORCID: ORCID
Olena Borysiak
2
ORCID: ORCID
Mykhailo Fedirko
2
ORCID: ORCID
Nataliya Dziubanovska
2
ORCID: ORCID
Nataliya Halysh
2
ORCID: ORCID

  1. West Ukrainian National University, Ternopil Volodymyr Hnatiuk National Pedagogical University, Ukraine
  2. West Ukrainian National University, Ukraine
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Abstract

Is climate neutrality an attainable goal for Poland? What does the term mean, and what challenges does it pose to human civilization? These and other questions are addressed by Prof. Bolesław Zaporowski of the Institute of Electric Power Engineering, Poznań University of Technology.
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Authors and Affiliations

Bolesław Zaporowski
1
ORCID: ORCID

  1. Institute of Electric Power Engineering, Poznań University of Technology, Poznan, Poalnd

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