The Validity of the Tourism-induced EKC Hypothesis: The Case of Turkey
Year 2021,
, 124 - 138, 31.12.2021
Emine Kılavuz
,
Burcu Oralhan
,
Sevgi Sumerli Sarıgül
,
Eyup Emre Uluğ
Abstract
This paper examines the existence of relationship between international tourist arrivals (TA), and Carbon dioxide emissions per capita (CO2) in Turkey over the period 1960-2015. We also use energy use per capita (EU) and GDP per capita (GDP) as a control variables. The autoregressive distributed lag (ARDL) bounds test approach was applied to analyze the long-run relationship among the variables. The results confirmed the validity of the tourism-induced Environmental Kuznets Curve (EKC) hypothesis. An increased tourism demand increases environmental pollution up to a point where the sector attains a certain development level, after which emissions begin to fall. On the other hand, the results indicate that the EKC hypothesis between income and CO2 emissions has not been confirmed. Energy usage has positive and significant effects on carbon dioxide emissions as expected. For sustainable tourism and to the reduction of emissions in Turkey, environmental protection and the use of renewable energy should be supported by policy makers.
References
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The Validity of the Tourism-induced EKC Hypothesis: The Case of Turkey
Year 2021,
, 124 - 138, 31.12.2021
Emine Kılavuz
,
Burcu Oralhan
,
Sevgi Sumerli Sarıgül
,
Eyup Emre Uluğ
Abstract
This paper examines the existence of relationship between international tourist arrivals (TA), and Carbon dioxide emissions per capita (CO2) in Turkey over the period 1960-2015. We also use energy use per capita (EU) and GDP per capita (GDP) as a control variables. The autoregressive distributed lag (ARDL) bounds test approach was applied to analyze the long-run relationship among the variables. The results confirmed the validity of the tourism-induced Environmental Kuznets Curve (EKC) hypothesis. An increased tourism demand increases environmental pollution up to a point where the sector attains a certain development level, after which emissions begin to fall. On the other hand, the results indicate that the EKC hypothesis between income and CO2 emissions has not been confirmed. Energy usage has positive and significant effects on carbon dioxide emissions as expected. For sustainable tourism and to the reduction of emissions in Turkey, environmental protection and the use of renewable energy should be supported by policy makers.
References
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- Al-Mulali, U., Ozturk, I., & Lean, H. H. (2015). The Influence of Economic Growth, Urbanization, Trade Openness, Financial Fevelopment, and Renewable Energy on Pollution in Europe. Nat Hazards 79: 621-644. DOI: 10.1007/s11069-015-1865-9.
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- Balli, E., Ciler Sigeze, C., Manga, M., Birdir, S., & Birdir, K. (2019). The Relationship Between Tourism, CO2 Emissions and Economic Growth: A Case of Mediterranean Countries. Asia Pacific Journal of Tourism Research, 24:3, 219-232, DOI: 10.1080/10941665.2018.1557717.
- Balsalobre-Lorente, D., Driha, O. M., Shahbaz, M., & Sinha, A. (2020). The Effects of Tourism and Globalization Over Environmental Degradation in Developed Countries. Environmental Science and Pollution Research, 27, 7130-7144. https://doi.org/10.1007/s11356-019-07372-4.
- Becken, S.&Simmons, D.G. (2002). Understanding energy consumption patterns of tourist attractions and activities in New Zeland, Tourism Management, 23, 343-354.
- Ben Jebli, M., Ben Youssef, S., & Apergis, N. (2019). The Dynamic Linkage Between Renewable Energy, Tourism, CO2 Emissions, Economic Growth, Foreign Direct Investment, and Trade. Latin American Economic Review 28, 2(2019). https://doi.org/10.1186/s40503-019-0063-7.
- Ben Jebli, M., Ben Youssef, S., & Apergis, N. (2015). The Dynamic Interaction Between Combustible Renewables and Waste Consumption and International Tourism: The Case of Tunisia. Environ Sci Pollut Res Int, 22(16): 12050-61. Doi: 10.1007/s11356-015-4483-x.
- Chishti, M. Z., Ullah, S., & Ozturk, I.&Usman,Al. (2020). Examining The Asymmetric Effects of Globalization and Tourism on Pollution Emissions in South Asia. Environ Sci Pollut Res 27, 27721–27737 https://doi.org/10.1007/s11356-020-09057-9.
- Churkina, G. (2016). The Role of Urbanization in the Global Carbon Cycle. Frontiers in Ecology and Evolution, https://doi.org/10.3389/fevo.2015.00144.
- Crippa, M., Guizzardi, D., Muntean, M., Schaaf, E., Solazzo, E., Monforti-Ferrario, F., Olivier, J. G. J., & Vignati, E. (2020). Fossil CO2 Emissions of All World Countries- 2020 Report. Publications Office of the European Union, Luxembourg.
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- Dogan, E., Seker, F., & Bulbul, S. (2017). Investigating The Impacts of Energy Consumption, Real GDP, Tourism and Trade on CO2 Emissions by Accounting for Cross-Sectional Dependence: A Panel Study of OECD Countries. Curr Issues Tour 20:1701–1719.
- Dogan, E., & Aslan, A. (2017). Exploring The Relationship Among CO2 Emissions, Real GDP, Energy Consumption and Tourism in The EU and Candidate Countries: Evidence From Panel Models Robust to Heterogeneity and Cross-Sectional Dependence. Renewable & Sustaınable Energy Reviews, Vol.77, 239-245.
- Durbarry, R., & Seetanah, B. (2015). The Impact of Long Haul Destinations on Carbon Emissions: The Case of Mauritius. Journal of Hospitality Marketing & Management, 24:4, 401-410, DOI: 10.1080/19368623.2014.914363.
- Dwyer, L., Forsyth, P., Spurr, R., & Hoque, S. (2010). Estimating The Carbon Footprint of Australian Tourism. Journal of Sustainable Tourism, 18(3), 355–376.
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- Engle, Robert F., & Granger, C. W. J. (1987). Con-Integration and Error Correction: Representation, Estimation and Testing. Econometrica, Vol. 55, Issue 2, 251-276.
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- Fang, Y., Yin, J., & Wu, B. (2018). Climate Change and Tourism: A Scientometric Analysis Using Citespace. Journal of Sustainable Tourism, 26:1, 108-126.
- Forster, P. M., Forster, H. I., & Evans, M. J. et al. (2020). Current and Future Global Climate Impacts Resulting from COVID-19. Nat. Clim. Chang. 10, 913–919 https://doi.org/10.1038/s41558-020-0883-0.
- Gössling, S. (2013). National emissions from tourism: An overlooked policy challenge? Energy Policy Vol. 59, 433-442.
- Gössling, S., Scott, D., & Hall, C.M. (2020). Pandemics, Tourism and Global Change: A Rapid Assessment of COVID-19. Journal of Sustainable Tourism, 29:1, 1-20.
- Grossman, G. M., & Krueger, A. B. (1991). Environmental Impacts of A North American Free Trade Agreement. NBER Working Paper No. 3914.
- Grossman, G. M., & Krueger, A. B. (1995). Economic Growth and The Environment. The Quarterly Journal of Economics, 110(2), 353–378. https://doi.org/10.2307/2118443.
- Hansen, B. E., & Phillips P. C. B. (1990). Estimation and Inference ın Models of Cointegration: A Simulation Study. Advances in Econometrics, Vol. 8, 225-248.
- Hoogendoorn, G., & Fitchett, J. M. (2016). Tourism and Climate Change: A Review of Threats and Adaptation Strategies for Africa, Current Issues in Tourism, 21(7), 742–759.
- Høyer, K. G. (2000). Sustainable Tourism or Sustainable Mobility? The Norwegian Case. Journal of Sustainable Tourism, 8:2, 147-160, DOI: 10.1080/09669580008667354.
- Isik, C., Evangelia K., & Ongan S. (2017). Analyzing the Causalities Between Economic Growth, Financial Development, International Trade, Tourism Expenditure and/on The CO2 Emissions in Greece. Energy Sources, Part B: Economics, Planning, and Policy, 12:7, 665-673, DOI: 10.1080/15567249.2016.1263251.
- Johansen, S., (1988). Statistical Analysis Of Cointegration Vectors. Journal of Economic Dynamics and Control, Vol. 12, 231-254.
- Katircioglu, S. T., Feridun, M., & Kilinc, C. (2014). Estimating Tourism-Induced Energy Consumption and CO2 Emissions: The Case of Cyprus, Renewable and Sustainable Energy Reviews 29, 634-640.
- Katircioglu, S. T. (2014a). International Tourism, Energy Consumption, and Environmental Pollution: The Case of Turkey. Renewable and Sustainable Energy Reviews, Elsevier, Vol. 36(C), pages 180-187. DOI: 10.1016/j.rser.2014.04.058
- Katircioglu, S.T. (August 2014b).Testing the tourism-induced EKC hypothesis: The case of Singapore, Economic Modelling, Vol: 41, 383-391
- Kelly, J., & Williams, P. W. (2007). Modelling Tourism Destination Energy Consumption and Greenhouse Gas Emissions: Whistler, British Columbia, Canada. Journal of Sustainable Tourism, 15:1, 67-90, DOI: 10.2167/jost609.0.i
- Khan, A., Bibi, S., Ardito, L., Lyu, J., Hayat, H., & Arif A. M. (2020). Revisiting The Dynamics of Tourism, Economic Growth, and Environmental Pollutants in The Emerging Economies—Sustainable Tourism Policy Implications. Sustainability, 1-23.
- Koçak, E., Ulucak, R., Ulucak Z. S. (2020). The Impact of Tourism Developments on CO2 Emissions: An Advanced Panel Data Estimation. Tour Manag Perspect 33:100611.
- Lee, W. L., & Brahmasrene, T. (2013). Investigating The Influence of Tourism on Economic Growth and Carbon Emissions: Evidence from Panel Analysis of The European Union. Tourism Management, Elsevier, vol. 38(C), 69-76.
- Lenzen, M., Ya Yen S., Futu F., Yuan P. T., Arne, G., & Arunima M. (2018). The Carbon Footprint of Global Tourism. Nature Climate Change 8 (6): 522–28.
- Liu, J., Feng, T., & Yang, X. (2011). The Energy Requirements and Carbon Dioxide Emissions of Tourism Industry of Western China: A Case of Chengdu City. Renewable& Sustainable Energy Reviews, 15, 2887-2894.
- Liu, Z., Ciais, P., & Deng, Z. et al. (2020). Near-Real-Time Monitoring of Global CO2 Emissions Reveals The Effects of The COVID-19 Pandemic. Nature Communications 11, 5172. https://doi.org/10.1038/s41467-020-18922-7.
- Nepal, S. K. (2008). Tourism-Induced Rural Energy Consumption in The Annapurna Region of Nepal, Tourism Management, 29, 89-100.
- Nepal, R., Al Irsyad, M. I., & Nepal, S. K. (2019). Tourist Arrivals, Energy Consumption and Pollutant Emissions in A Developing Economy-Implications for Sustainable Tourism, Tourism Management, 72, 145-154. https://doi.org/10.1016/j.tourman.2018.08.025.
- Pandy, W. R. (2017). Tourism Enterprises and Climate Change: Some Research Imperatives. African Journal of Hospitality Tourism and Leisure, Volume 6 (4), 1-18.
- Panwar, N. L., Kaushik, S. C., & Kothari, S. (2011). Role of Renewable Energy Sources in Environmental Protection: A Review. Renewable and Sustainable Energy Reviews 15: 1513-1524. doi:10.1016/j.rser.2010.11.037.
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