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Biomass as the Most Popular Renevable Energy Source in EU

Author

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  • Dorota Janiszewska
  • Luiza Ossowska

Abstract

Purpose: The aim of this research is to assess and discuss the diversity of European Union countries due to renewable energy production from biomass and changes over time. Design/Methodology/Approach: The diversity of EU countries was examined using the cluster analysis. Analysis was conducted based on data from Eurostat. The time scope covers the years 2007 and 2016. The analysis includes four diagnostic features; the share of solid biofuels in total biomass and renewable waste production, the share of biogas in total biomass and renewable waste production, the share of renewable municipal waste in total biomass and renewable waste production and the share of liquid biofuels in total biomass and renewable waste production. Findings: The analysis shows that the European Union countries are characterized by diversity in the use of individual biomass sources as an energy source. The countries of the central part of Europe mainly use biomass from municipal waste. A fairly large share was also recorded in the use of biogas and liquid biofuels. The countries of northern and partly eastern Europe mainly use solid biomass. In contrast, countries in partly Eastern and Western Europe mainly use solid and liquid biomass. Practical Implications: The results refer to the assumptions of energy policy. Originality/Value: The study is related to the EU current issues energy policy and circular economy. The results can be a contribution to the analysis of the circular economy implementation.

Suggested Citation

  • Dorota Janiszewska & Luiza Ossowska, 2020. "Biomass as the Most Popular Renevable Energy Source in EU," European Research Studies Journal, European Research Studies Journal, vol. 0(3), pages 315-326.
  • Handle: RePEc:ers:journl:v:xxiii:y:2020:i:3:p:315-326
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    References listed on IDEAS

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    4. Miguel-Angel Perea-Moreno & Esther Samerón-Manzano & Alberto-Jesus Perea-Moreno, 2019. "Biomass as Renewable Energy: Worldwide Research Trends," Sustainability, MDPI, vol. 11(3), pages 1-19, February.
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    6. Bridgwater, A. V. & Toft, A. J. & Brammer, J. G., 2002. "A techno-economic comparison of power production by biomass fast pyrolysis with gasification and combustion," Renewable and Sustainable Energy Reviews, Elsevier, vol. 6(3), pages 181-246, September.
    7. Imbert, Enrica & Ladu, Luana & Morone, Piergiuseppe & Quitzow, Rainer, 2017. "Policy strategies for a transition to a bioeconomy in Europe: the case of Italy and Germany," MPRA Paper 78143, University Library of Munich, Germany.
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    Cited by:

    1. Adam Csuvar & Robert Barna, 2020. "Econometric Analysis of Residential Trash Incineration Based on Cross-Sectional Data," European Research Studies Journal, European Research Studies Journal, vol. 0(4), pages 771-784.
    2. Rafał Wyszomierski & Piotr Bórawski & Lisa Holden & Aneta Bełdycka-Bórawska & Tomasz Rokicki & Andrzej Parzonko, 2024. "The Trade of Woody Biomass in the Context of Environmental Economics in Poland," Energies, MDPI, vol. 17(19), pages 1-31, September.
    3. Dorota Janiszewska & Luiza Ossowska, 2022. "The Role of Agricultural Biomass as a Renewable Energy Source in European Union Countries," Energies, MDPI, vol. 15(18), pages 1-14, September.

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    More about this item

    Keywords

    European Union; renewable energy; solid biomass; biogas; municipal waste; liquid biomass.;
    All these keywords.

    JEL classification:

    • O13 - Economic Development, Innovation, Technological Change, and Growth - - Economic Development - - - Agriculture; Natural Resources; Environment; Other Primary Products
    • P18 - Political Economy and Comparative Economic Systems - - Capitalist Economies - - - Energy; Environment
    • Q42 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Energy - - - Alternative Energy Sources

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