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Sensitivity of the Agribusiness Sector to Sudden Changes in the Prices of Energy Carriers on the Example of Poland: Current State and Challenges

Author

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  • Piotr Gołasa

    (Institute of Economics and Finance, Warsaw University of Life Sciences—SGGW, 02-787 Warsaw, Poland)

  • Wioletta Bieńkowska-Gołasa

    (Institute of Economics and Finance, Warsaw University of Life Sciences—SGGW, 02-787 Warsaw, Poland)

  • Magdalena Golonko

    (Institute of Economics and Finance, Warsaw University of Life Sciences—SGGW, 02-787 Warsaw, Poland)

  • Paulina Trębska

    (Institute of Economics and Finance, Warsaw University of Life Sciences—SGGW, 02-787 Warsaw, Poland)

  • Piotr Gradziuk

    (Poland Economic Modelling Department, Institute of Rural and Agricultural Development, Polish Academy of Sciences, 00-002 Warsaw, Poland)

  • Arkadiusz Gromada

    (Institute of Economics and Finance, Warsaw University of Life Sciences—SGGW, 02-787 Warsaw, Poland)

  • Marcin Wysokiński

    (Institute of Economics and Finance, Warsaw University of Life Sciences—SGGW, 02-787 Warsaw, Poland)

Abstract

The article provides an overview of various studies on energy consumption in agriculture. The focus was in particular on the sensitivity of farms and agribusiness to fluctuations in the prices of energy carriers, which is currently a problem for the entire food industry. In addition to the prices of direct energy carriers, biofuels, the EU ETS system, and fertilizers were identified as the main areas that play a key role in shaping the direct and indirect impact on the economic performance of agricultural producers. Moreover, it was presented how sensitive the food sector is to the limitations of fertilizer production, during which by-products necessary in food processing are produced. The production of fertilizers consumes almost half of the energy used in agriculture, but the lack of fertilizers means yield drops of 30–50%. Therefore, high energy prices and disruptions in its supply are a threat to the food security of a country, both from the perspective of agriculture and processing. Based on the literature review, research gaps have been identified that should guide future research.

Suggested Citation

  • Piotr Gołasa & Wioletta Bieńkowska-Gołasa & Magdalena Golonko & Paulina Trębska & Piotr Gradziuk & Arkadiusz Gromada & Marcin Wysokiński, 2022. "Sensitivity of the Agribusiness Sector to Sudden Changes in the Prices of Energy Carriers on the Example of Poland: Current State and Challenges," Energies, MDPI, vol. 15(22), pages 1-10, November.
  • Handle: RePEc:gam:jeners:v:15:y:2022:i:22:p:8352-:d:967104
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    References listed on IDEAS

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    1. Yongxi Ma & Lu Zhang & Shixiong Song & Shuao Yu, 2022. "Impacts of Energy Price on Agricultural Production, Energy Consumption, and Carbon Emission in China: A Price Endogenous Partial Equilibrium Model Analysis," Sustainability, MDPI, vol. 14(5), pages 1-14, March.
    2. Tim Lloyd & Steve McCorriston & Wyn Morgan & Evious Zgovu, 2013. "European Retail Food Price Inflation," EuroChoices, The Agricultural Economics Society, vol. 12(2), pages 37-44, August.
    3. Jean-Christophe Bureau & Jo Swinnen, 2017. "EU policies and global food security," Working Papers of Department of Economics, Leuven 578549, KU Leuven, Faculty of Economics and Business (FEB), Department of Economics, Leuven.
    4. Zhao, Yuanheng & Powell-Palm, Matthew J. & Wang, Junjie & Bilbao-Sainz, Cristina & McHugh, Tara & Rubinsky, Boris, 2021. "Analysis of global energy savings in the frozen food industry made possible by transitioning from conventional isobaric freezing to isochoric freezing," Renewable and Sustainable Energy Reviews, Elsevier, vol. 151(C).
    5. Canakci, M. & Akinci, I., 2006. "Energy use pattern analyses of greenhouse vegetable production," Energy, Elsevier, vol. 31(8), pages 1243-1256.
    6. Sands, Ron & Westcott, Paul & Price, J. Michael & Beckman, Jayson & Leibtag, Ephraim & Lucier, Gary & McBride, William D. & McGranahan, David & Morehart, Mitch & Roeger, Edward & Schaible, Glenn & Woj, 2011. "Impacts of Higher Energy Prices on Agriculture and Rural Economies," Economic Research Report 262236, United States Department of Agriculture, Economic Research Service.
    7. Farhad Taghizadeh Hesary & Naoyuki Yoshino & Ghahraman Abdoli & Asadollah Farzinvash, 2013. "An Estimation of the Impact of Oil Shocks on Crude Oil Exporting Economies and Their Trade Partners," Frontiers of Economics in China-Selected Publications from Chinese Universities, Higher Education Press, vol. 8(4), pages 571-591, December.
    8. Tomasz Rokicki & Aleksandra Perkowska & Bogdan Klepacki & Piotr Bórawski & Aneta Bełdycka-Bórawska & Konrad Michalski, 2021. "Changes in Energy Consumption in Agriculture in the EU Countries," Energies, MDPI, vol. 14(6), pages 1-21, March.
    9. Paris, Bas & Vandorou, Foteini & Balafoutis, Athanasios T. & Vaiopoulos, Konstantinos & Kyriakarakos, George & Manolakos, Dimitris & Papadakis, George, 2022. "Energy use in open-field agriculture in the EU: A critical review recommending energy efficiency measures and renewable energy sources adoption," Renewable and Sustainable Energy Reviews, Elsevier, vol. 158(C).
    10. Dodder, Rebecca S. & Kaplan, P. Ozge & Elobeid, Amani & Tokgoz, Simla & Secchi, Silvia & Kurkalova, Lyubov A., 2015. "Impact of energy prices and cellulosic biomass supply on agriculture, energy, and the environment: An integrated modeling approach," Energy Economics, Elsevier, vol. 51(C), pages 77-87.
    11. Piotr Gołasa & Marcin Wysokiński & Wioletta Bieńkowska-Gołasa & Piotr Gradziuk & Magdalena Golonko & Barbara Gradziuk & Agnieszka Siedlecka & Arkadiusz Gromada, 2021. "Sources of Greenhouse Gas Emissions in Agriculture, with Particular Emphasis on Emissions from Energy Used," Energies, MDPI, vol. 14(13), pages 1-20, June.
    12. Taghizadeh-Hesary, Farhad & Rasoulinezhad, Ehsan & Yoshino, Naoyuki, 2019. "Energy and Food Security: Linkages through Price Volatility," Energy Policy, Elsevier, vol. 128(C), pages 796-806.
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    1. Aleksandra Kowalska & Mateusz Hałka & Anna Budzyńska & Mariusz Kicia & Konrad Terpiłowski, 2024. "Fertilizer Price Surge in Poland and Beyond: Seeking the Way Forward towards Sustainable Development," Sustainability, MDPI, vol. 16(16), pages 1-18, August.

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