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CO2 Emissions in the Visegrad Group Countries and the European Union Climate Policy
Author(s) -
Dorota Wawrzyniak
Publication year - 2020
Publication title -
comparative economic research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.244
H-Index - 8
eISSN - 2082-6737
pISSN - 1508-2008
DOI - 10.18778/1508-2008.23.05
Subject(s) - divisia index , european union , per capita , context (archaeology) , energy intensity , renewable energy , energy mix , climate change , economics , natural resource economics , energy consumption , energy policy , greenhouse gas , climate change mitigation , economy , economic policy , geography , electricity generation , engineering , power (physics) , population , ecology , archaeology , sociology , biology , quantum mechanics , physics , demography , electrical engineering
Climate change is one of the most pressing challenges of our time and several policies trying to mitigate this negative phenomenon have been implemented. The reduction of GHG emissions along with the improvement in energy efficiency and the increase in the share of energy consumption from renewable sources also constitute the European Union policy priority. In this context, the aim of this article is to explore factors that affect changes in CO2 emissions in the four EU member states that form the Visegrad Group, during the period 1993–2016. The analysis was conducted using the Logarithmic Mean Divisia Index (LMDI) decomposition method and the Kaya identity, which enables the factors contributing most to the CO2 emissions changes to be identified. It also allows the results to be discussed in relation to the European Union’s climate policy. According to the decomposition analysis results, energy intensity and economic growth measured in terms of GDP per capita were the main factors driving changes in CO2 emissions across all countries considered. The emissions decrease resulted mainly from an improvement in energy efficiency and to a lesser extent from the change in the energy mix towards renewables.

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