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Energy Security and Sustainability in Eurasian Economic Union in the Terms of Economic Growth: The Case of Kazakhstan s Energy Sector up to 2040 Perspectives

Author

Listed:
  • Galiya Movkebayeva

    (Al-Farabi Kazakh National University, Almaty, Kazaksthan,)

  • Aliya Aktymbayeva

    (Al-Farabi Kazakh National University, Almaty, Kazaksthan,)

  • Yuliya Tyurina

    (Financial University under the Government of the Russian Federation, Moscow, Russia,)

  • Nurken Baikadamov

    (Z. Aldamzhar Kostanay Social-Technical University, Kostanay, Kazaksthan,)

  • Kamar Beketova

    (Korkyt Ata Kyzylorda State University, Kazaksthan,)

  • Marija Troyanskaya

    (Orenburg State University, Russia,)

  • Sholpan Smagulova

    (Narxoz University, Almaty, Kazaksthan,)

  • Aizhan Imangaliyeva

    (Tynyshpayev Kazakh Academy of Transport and Communication, Almaty, Kazaksthan.)

Abstract

The economy of Kazakhstan is the first economy in Central Asia and the second among Eurasian Economic Union (EAEU) countries after Russia. On rates of hydrocarbon raw materials extraction Kazakhstan is included into first ten countries of the world. Kazakhstani economy is based on heavy industry, ferrous and non-ferrous metals, and oil and gas. And it allows Kazakhstan is being on the road of economic growth. With economic growth, the energy production and consumption are also increasing rapidly, resulting first of all, on harmful carbon emissions. Thus, the purpose of this research is to carry out a comparative assessment in the energy sector development and to submit forecast of its demand and its environmental impact in terms of Kazakhstani economic growth up to 2040. First scenario (Base Case) assumes conventional development pattern together with neither significant changes in the patterns of energy supply and demand nor extensively changed policies and measures. The second one (Mitigation) assumes a technological improvement, regulation and industrial development policies and additional policies which have been designed to promote energy efficiency and reduce emissions across the economy. The simulations are applied until the year 2040, while 2015 is set as the base year. The findings suggest in both scenarios Kazakhstan will continue to pursue its economic development driving energy demand and carbon emissions will also raise. However, under Mitigation Scenario, emission intensity will be lower insignificantly.

Suggested Citation

  • Galiya Movkebayeva & Aliya Aktymbayeva & Yuliya Tyurina & Nurken Baikadamov & Kamar Beketova & Marija Troyanskaya & Sholpan Smagulova & Aizhan Imangaliyeva, 2020. "Energy Security and Sustainability in Eurasian Economic Union in the Terms of Economic Growth: The Case of Kazakhstan s Energy Sector up to 2040 Perspectives," International Journal of Energy Economics and Policy, Econjournals, vol. 10(2), pages 497-503.
  • Handle: RePEc:eco:journ2:2020-02-58
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    References listed on IDEAS

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    1. Karatayev, Marat & Hall, Stephen & Kalyuzhnova, Yelena & Clarke, Michèle L., 2016. "Renewable energy technology uptake in Kazakhstan: Policy drivers and barriers in a transitional economy," Renewable and Sustainable Energy Reviews, Elsevier, vol. 66(C), pages 120-136.
    2. Makpal Bekturganova & Azimkhan Satybaldin & Bakhyt Yessekina, 2019. "Conceptual Framework for the Formation of Low-carbon Development: Kazakhstan s Experience," International Journal of Energy Economics and Policy, Econjournals, vol. 9(1), pages 48-56.
    3. Mirlan Aldayarov & Istvan Dobozi & Thomas Nikolakakis, 2017. "Stuck in Transition," World Bank Publications - Books, The World Bank Group, number 25742.
    4. Cai, Wenjia & Wang, Can & Wang, Ke & Zhang, Ying & Chen, Jining, 2007. "Scenario analysis on CO2 emissions reduction potential in China's electricity sector," Energy Policy, Elsevier, vol. 35(12), pages 6445-6456, December.
    5. Zhanar ABDUKARIMOVA & Kairat BITEMIROV & Nurlan BIZHAN & Askat ESENALIYEV & Nursultan POSHANOV & Zhanna KALKANOVA, 2018. "Features of Compensation for Damage Caused to Natural Resources in Kazakhstan," Journal of Advanced Research in Law and Economics, ASERS Publishing, vol. 9(4), pages 1169-1175.
    6. Karatayev, Marat & Clarke, Michèle L., 2016. "A review of current energy systems and green energy potential in Kazakhstan," Renewable and Sustainable Energy Reviews, Elsevier, vol. 55(C), pages 491-504.
    7. Wang, Ke & Wang, Can & Lu, Xuedu & Chen, Jining, 2007. "Scenario analysis on CO2 emissions reduction potential in China's iron and steel industry," Energy Policy, Elsevier, vol. 35(4), pages 2320-2335, April.
    8. repec:srs:journl:jarle:v:9:y:2018:i:4:p:1169-1175 is not listed on IDEAS
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    1. Aliya Aktymbayeva & Arailym Orazgaliyeva & Aizhan Omarova & Anvar Tulaganov & Aigul Akhmetova & Yuliya Tyurina & Marija Troyanskaya, 2021. "The Central Asian Economies of Water-energy security: The Future Role of Hydro and Fuel-based Systems," International Journal of Energy Economics and Policy, Econjournals, vol. 11(1), pages 417-425.

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    More about this item

    Keywords

    Kazakhstan; energy; carbon dioxide; economic growth;
    All these keywords.

    JEL classification:

    • O13 - Economic Development, Innovation, Technological Change, and Growth - - Economic Development - - - Agriculture; Natural Resources; Environment; Other Primary Products
    • Q40 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Energy - - - General
    • Q43 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Energy - - - Energy and the Macroeconomy

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