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Impact of Economic Growth and FDI on Indonesia Environmental Degradation: EKC and Pollution Hypothesis Testing

Authors

  • Dominikus Leonardo Parahyangan Catholic University
  • Muhammad Maulana Parahyangan Catholic University
  • Justin Hartanto Parahyangan Catholic University

DOI:

https://doi.org/10.22219/jep.v21i01.24294

Keywords:

Economic Growth , FDI, Environmental Degradation, Error Correction Model, EKC Hypothesis, Pollution Haven Hypothesis, Pollution Halo Hypothesis

Abstract

This study examines the impact of economic growth and FDI on environmental degradation in Indonesia through a two-hypotheses model. Environmental degradation is a crucial matter that needs attention and is often associated with economic growth and the FDI required by developing countries. Based on the externality theory, this study uses the EKC hypothesis, followed by pollution haven vs. pollution halo. With time series data from 1980–2021, two hypothesis models were estimated using the error correction method. This study's results support the EKC and pollution haven hypotheses. First, for the EKC hypothesis model, this study found that economic growth at an early stage increases environmental degradation, but economic growth beyond the turning point would reduce ecological degradation. Besides testing the EKC hypothesis, renewable energy consumption can reduce environmental degradation caused by carbon emissions. Second, for the pollution hypothesis model, it's been found that increased FDI can increase ecological degradation, thereby supporting a pollution haven. This research suggests that policymakers should require foreign investors to apply the green economy concept supported by a green taxonomy and then provide fiscal incentives to those who do so.

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References

Abu-Qarn, A. S., & Abu-Bader, S. (2004). The validity of the ELG hypothesis in the MENA region: Cointegration and error correction model analysis. Applied Economics, 36(15), 1685–1695. https://doi.org/10.1080/0003684042000266865

Akbostancı, E., Türüt-Aşık, S., & Tunç, G. İ. (2009). The relationship between income and environment in Turkey: Is there an environmental Kuznets curve? Energy Policy, 37(3), 861–867. https://doi.org/10.1016/j.enpol.2008.09.088

Azomahou, T., Laisney, F., & Van, P. N. (2006). Economic development and CO2 emissions: A nonparametric panel approach. Journal of Public Economics, 90(6–7), 1347–1363. https://doi.org/10.1016/j.jpubeco.2005.09.005

Azwar, I. (2019). Economic growth and CO2 emissions in Indonesia: Investigating the environmental Kuznets curve hypothesis existence. Jurnal BPPK, 12(1), 45–52.

Investment Coordinating Board. (2022). Sustainable investment guideline version 1.0 2022. https://www.bkpm.go.id/images/uploads/printing/R4_Sustainable_Investment_Guidline_removed.pdf

Dong, K., Dong, X., & Jiang, Q. (2019). How renewable energy consumption lower global CO2 emissions? Evidence from countries with different income levels. The World Economy, 43(6), 1665–1698. https://doi.org/10.1111/twec.12898

Duan, Y., & Jiang, X. (2021). Pollution haven or pollution halo? A re-evaluation on the role of multinational enterprises in global CO2 emissions. Energy Economics, 97(5), 1–15. https://doi.org/10.1016/j.eneco.2021.105181

Fosten, J., Morley, B., & Taylor, T. (2012). Dynamic misspecification in the environmental Kuznets curve: Evidence from CO2 and SO2 emissions in the United Kingdom. Ecological Economics, 76(4), 25–33. https://doi.org/10.1016/j.ecolecon.2012.01.023

Granger, C. W. J., & Weiss, A. A. (1983). Time series analysis of error-correction models. In S. Karlin, T. Amemiya, & L. A. Goodman (Eds.), Studies in econometrics, time series, and multivariate statistics, (pp. 255–278). Elsevier Inc. https://doi.org/10.1016/B978-0-12-398750-1.50018-8

Grossman, G. M., & Helpman, E. (1991). Trade, knowledge spillovers, and growth. European Economic Review, 35(2-3), 517-526. https://doi.org/10.1016/0014-2921(91)90153-A

Grossman, G. M., & Krueger, A. B. (1995). Economic growth and the environment. The Quarterly Journal of Economics, 110(2), 353–377. https://doi.org/10.2307/2118443

Gujarati, D. N., & Porter, D. C. (2009). Basic econometrics (5th ed.). New York: McGraw Hill Inc.

Halicioglu, F. (2009). An econometric study of CO2 emissions, energy consumption, income and foreign trade in Turkey. Energy Policy, 37(3), 1156-1164. https://doi.org/10.1016/j.enpol.2008.11.012

Heil, M. T., & Selden, T. M. (2001). Carbon emissions and economic development: Future trajectories based on historical experience. Environment and Development Economics, 6(1), 63–83. https://doi.org/10.1017/S1355770X01000043

Hitam, M. B., & Borhan, H. B. (2012). FDI, growth and the environment: Impact on quality of life in Malaysia. Procedia - Social and Behavioral Sciences, 50, 333–342. https://doi.org/10.1016/j.sbspro.2012.08.038

Ilham, M. I. (2021). Economic development and environmental degradation in Indonesia: Panel data analysis. Jurnal Ekonomi & Studi Pembangunan, 22(2), 185–200. https://doi.org/10.18196/jesp.v22i2.7629

Kanjilal, K., & Ghosh, S. (2013). Environmental Kuznet's curve for India: Evidence from tests for cointegration with unknown structuralbreaks. Energy Policy, 56, 509-515. https://doi.org/10.1016/j.enpol.2013.01.015

Maryaningsih, N., Hermansyah, O., & Savitri, M. (2014). Pengaruh infrastruktur terhadap pertumbuhan ekonomi Indonesia. Bulletin of Monetary Economics and Banking Volume, 17(1), 1–38. doi: 10.21098/bemp.v17i1.44.

Mert, M., & Caglar, A. E. (2020). Testing pollution haven and pollution halo hypotheses for Turkey: A new perspective. Environmental Science and Pollution Research, 27(26), 32933–32943. https://doi.org/10.1007/s11356-020-09469-7

Nasir, M. A., Huynh, T. L. D., & Tram, H. T. X. (2019). Role of financial development, economic growth & foreign direct investment in driving climate change: A case of emerging ASEAN. Journal of Environmental Management, 242, 131–141. https://doi.org/10.1016/j.jenvman.2019.03.112

Neequaye, N. A., & Oladi, R. (2015). Environment, growth, and FDI revisited. International Review of Economics & Finance, 39(5), 47–56. https://doi.org/10.1016/j.iref.2015.06.002

Neves, S. A., Marques, A. C., & Patrício, M. (2020). Determinants of CO2 emissions in European Union countries: Does environmental regulation reduce environmental pollution? Economic Analysis and Policy, 68(4), 114-125. https://doi.org/10.1016/j.eap.2020.09.005

Pressman, S. (2006). Fifty major economists (2nd ed.). New York: Routledge.

Salvatore, D. (2013). International economics (11th ed.). New York: John Wiley & Sons, Inc.

National Secretariat of SDGs. Life on land. Retrieved December 11, 2022, from https://sdgs.bappenas.go.id/tujuan-15

National Secretariat of SDGs. Affordable and clean energy. Retrieved December 11, 2022, from https://sdgs.bappenas.go.id/tujuan-7

National Secretariat of SDGs. Sustainable cities and communities. Retrieved December 11, 2022, from https://sdgs.bappenas.go.id/tujuan-11

National Secretariat of SDGs. Climate action. Retrieved December 11, 2022, from https://sdgs.bappenas.go.id/tujuan-13

Shahbaz, M., Dube, S., Ozturk, I., & Jalil, A. (2015a). Testing the environmental Kuznets curve hypothesis in Portugal. International Journal of Energy Economics and Policy, 5(2), 475–481.

Shahbaz, M., Nasreen, S., Abbas, F., & Anis, O. (2015b). Does foreign direct investment impede environmental quality in high-, middle-, and low-income countries? Energy Economics, 51, 275–287. https://doi.org/10.1016/j.eneco.2015.06.014

Soytas, U., & Sari, R. (2009). Energy consumption, economic growth, and carbon emissions: Challenges faced by an EU candidate member. Ecological Economics, 68(6), 1667–1675. https://doi.org/10.1016/j.ecolecon.2007.06.014

Sugiawan, Y., & Managi, S. (2016). The environmental Kuznets curve in Indonesia: Exploring the potential of renewable energy. Energy Policy, 98, 187-198. https://doi.org/10.1016/j.enpol.2016.08.029

Taskin, F., & Zaim, O. (2000). Searching for a Kuznets curve in environmental efficiency using kernel estimation. Economics Letters, 68(2), 217–223. https://doi.org/10.1016/S0165-1765(00)00250-0

Wang, Y., Liao, M., Wang, Y., Xu, L., & Malik, A. (2021). The impact of foreign direct investment on China’s carbon emissions through energy intensity and emissions trading system. Energy Economics, 97, 1–11. https://doi.org/10.1016/j.eneco.2021.105212

Zugravu-Soilita, N. (2017). How does foreign direct investment affect pollution? Toward a better understanding of the direct and conditional effects. Environmental and Resource Economics, 66, 293–338. https://doi.org/10.1007/s10640-015-9950-9

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Published

2023-06-28

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