Does the material recycling rate matter in the effect of the generated waste on environmental pollution? Panel smooth transition regression approach
Yıl 2024,
Cilt: 7 Sayı: 3, 435 - 447, 30.09.2024
Fahriye Merdivenci
,
Celil Aydın
,
Hayrullah Altınok
Öz
This study examined the effect of material recycling on the relationship between the waste amount and environmental pollution in EU-15 countries for the 1995-2019 period through panel smooth regression analysis by using the material recycling rate as the threshold variable. Based on the analysis results, the material recycling rate threshold level was estimated as 11.79. In these countries, if the material recycling rate is below the threshold level, the rise in the waste amount will increase environmental pollution. If the material recycling rate is above the threshold value, the rise in the waste amount will still increase environmental pollution, but the pollution increase rate will decrease. With the increase in the waste amount in the long term, environmental pollution can only be reduced by raising the material recycling rate. For the reduction of environmental pollution, which is one of the most prioritized issues in Europe in recent years, policy makers should take measures to increase the material recycling rate by taking the results of this study into consideration and pay attention to the implementation of these measures.
Etik Beyan
There are no ethical issues with the publication of this manuscript.
Destekleyen Kurum
This research did not receive any specific grant from funding agencies in the public, commercial, or not-for-profit sectors.
Teşekkür
The authors would like to thank the editor and anonymous reviewers for their helpful comments on an earlier draft of this paper.
Kaynakça
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Yıl 2024,
Cilt: 7 Sayı: 3, 435 - 447, 30.09.2024
Fahriye Merdivenci
,
Celil Aydın
,
Hayrullah Altınok
Kaynakça
- K. D. Sharma, and S. Jain, “Overview of municipal solid waste generation, composition, and management in India,” Journal of Environmental Engineering, Vol. 145(3), Article 04018143. 2019. [CrossRef]
- A. G. Mukherjee, U. R. Wanjari, R. Chakraborty, K. Renu, B. Vellingiri, A. George…, and A. V. Gopalakrishnan, “A review on modern and smart technologies for efficient waste disposal and management,” Journal of Environmental Management, Vol. 297, Article 113347. 2021. [CrossRef]
- S. Guoyan, A. Khaskheli, S. A. R. Syed Ali, and M. Ahmed, “Nonlinear impact of municipal solid waste recycling and energy efficiency on environmental performance and economic growth: Evidence from non-parametric causality-in-quantiles,” Environmental Science and Pollution Research, Vol. 29, pp. 16066-16081. 2022. [CrossRef]
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- C. F. Chien, K. Aviso, M. L. Tseng, M. Fujii, and M. K. Lim, “Solid waste management in emerging economies: Opportunities and challenges for reuse and recycling,” Resources, Conservation and Recycling, Vol. 188, Article 106635, 2023. [CrossRef]
- T. A. Kurniawan, M. H. D. Othman, X. Liang, H. H. Goh, P. Gikas, T. D. Kusworo..., and K. W. Chew, “Decarbonization in waste recycling industry using digitalization to promote net-zero emissions and its implications on sustainability,” Journal of Environmental Management, Vol. 338, Article 117765, 2023. [CrossRef]
- T. R. Ayodele, M. A. Alao, and A. S. O. Ogunjuyigbe, “Recyclable resources from municipal solid waste: Assessment of its energy, economic and environmental benefits in Nigeria,” Resources, Conservation and Recycling, Vol. 134, pp.165-173, 2018. [CrossRef]
- M. Barma, and U. M. Modibbo, “Multiobjective mathematical optimization model for municipal solid waste management with economic analysis of reuse/recycling recovered waste materials,” Journal of Computational and Cognitive Engineering, Vol. 1(3), pp. 122-137, 2022. [CrossRef]
- G. Haseli, A. E. Torkayesh, M. Hajiaghaei-Keshteli, and S. Venghaus, “Sustainable resilient recycling partner selection for urban waste management: Consolidating perspectives of decision-makers and experts,” Applied Soft Computing, Vol. 137, Article 110120, 2023. [CrossRef]
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- T. C. Kinnaman, “Policy watch: Examining the justification for residential recycling,” Journal of Economic Perspectives, Vol. 20(4), pp. 219-232, 2006. [CrossRef]
- M. Martin, I. D. Williams, and M. Clark, “Social, cultural and structural influences on household waste recycling: A case study,” Resources, Conservation and Recycling, Vol. 48(4), pp. 357-395, 2006. [CrossRef]
- D. Hoornweg, and P. Bhada-Tata, “What a waste: A global review of solid waste management,”Available at: https://documents1.worldbank.org/curated/en/302341468126264791/pdf/68135-REVISED-What-a-Waste-2012-Final-updated.pdf Accessed on Jul 17, 2024.
- C. Aydin, and Ö. Esen, “Reducing CO2 emissions in the EU member states: Do environmental taxes work?” Journal of Environmental Planning and Management, Vol. 61(13), pp. 2396-2420, 2018. [CrossRef]
- C. Aydin, and Y. Cetintas, “Does the level of renewable energy matter in the effect of economic growth on environmental pollution? New evidence from PSTR analysis,” Environmental Science and Pollution Research, 1-12, 2022. [CrossRef]
- C. Aydin, and R. D. Onay, “Does energy intensity affect the relationship between financial development and environmental pollution?” BRAIN. Broad Research in Artificial Intelligence and Neuroscience, Vol. 11(1), pp. 144-156, 2020. [CrossRef]
- D. Fiorillo, “Household waste recycling: National survey evidence from Italy,” Journal of Environmental Planning and Management, Vol. 56(8), pp. 1125-1151, 2013. [CrossRef]
- A. González, T. Teräsvirta, and D. van Dijk, “Panel Smooth Transition Regression Models,” SSE/EFI Working Paper Series in Economics and Finance, WP No. 604, Stockholm, 2005. [CrossRef]
- B. E. Hansen, “Threshold effects in non-dynamic panels: Estimation, testing and inference,” Journal of Econometrics, Vol. 93(2), pp. 345-368, 1999. [CrossRef]
- A. Periathamby, “Chapter 8- Municipal Waste Management.” Edited by T. M. Letcher, T. M., and Vallero, D. A. Academic Press. pp. 109-125, 2011. [CrossRef]
- W. Leontief, “Environmental repercussions and the economic structure an input output approach,” The Review of Economics and Statistics, Vol. 52, pp. 262-271, 1970. [CrossRef]
- F. Duchin, “The conversion of biological materials and wastes to useful products,” Structural Change and Economic Dynamics, Vol. 1(2), pp. 243-261, 1990. [CrossRef]
- S. Nakamura, “An interindustry approach to analyzing economic and environmental effects of the recycling of waste,” Ecological Economics, Vol. 28, pp. 133-145, 1999. [CrossRef]
- U. N. Ngoc, and H. Schnitzera, “Sustainable solutions for solid waste management in Southeast Asian countries,” Waste Management, Vol. 29(6), pp. 1982-1995, 2009. [CrossRef]
- S. Mani, and S. Singh, “Sustainable municipal solid waste management in India: A policy agenda,” Procedia Environmental Sciences, Vol. 35, pp. 150-157, 2016. [CrossRef]
- H. I. Abdel-Shafy, and M. S. M. Mansour, “Solid waste issue: Sources, composition, disposal, recycling, and valorization,” Egyptian Journal of Petroleum, Vol. 27(4), pp. 1275–1290, 2018. [CrossRef]
- Z. Xu, A. Elomri, S. Pokharel, Q. Zhang, X. G. Ming, and W. Liu, “Global reverse supply chain design for solid waste recycling under uncertainties and carbon emission constraint,” Waste Management, Vol. 64, pp. 358-370, 2017. [CrossRef]
- A. Shekdar, “Sustainable solid waste management: An integrated approach for Asian countries,” Waste Management, Vol. 29, pp. 1438-1448, 2009. [CrossRef]
- J. Malinauskaite, H. Jouhara, D. Czajczyn´ska, P. Stanchev, E. Katsou, P. Rostowksi…, and N. Spencer, “Municipal solid waste management and waste-to-energy in the context of a circular economy and energy recycling in Europe,” Energy, Vol. 141, pp. 2013–2044, 2017. [CrossRef]
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