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The Relationship Between Carbon Emissions and Logistics Performance: The Case of Transition Economies

Yıl 2025, Cilt: 6 Sayı: 2, 129 - 138, 24.09.2025
https://doi.org/10.57116/isletme.1740140

Öz

The purpose of this study is to investigate the relationship between the logistics performance and carbon emissions of 24 countries which are called transition or transformation economies. The logistics performance index was first published in 2007 and is announced on average every two years. Since the data is discrete, the analysis period covers 2007-2022 and unbalanced panel data analysis technique is used. The study first presents the descriptive statistics of the variables and then continues with the Breusch-Pagan LM test for the estimation of the optimal unbalanced panel data model. As a result of the analysis conducted with the Maximum Likelihood Regression (MLE) method for model estimation, it was revealed that the effect of logistics performance index on carbon emissions is significant. In this context, it can be said that a 1 percent increase in the logistics performance index in these Transition Economies reduces carbon emissions by approximately 12%. These results reveal that logistics activities, which are an important driver of economic growth in transition economies, also have significant impacts on environmental degradation.

Kaynakça

  • Ahn, K.S., Park, S.H., Chan, L.H. and Gi-Tae, Y. (2020). An Evaluation of Cold Chain Cluster Competitiveness in the Metropolitan Area, Journal of Digital Convergence, 18(10), 181-194.
  • Amiruddin, S. Z., Hishamuddin, H., Darom, N. A., & Naimin, H. H. (2021). A Case Study of Carbon Emissions from Logistic Activities During Supply Chain Disruptions. Jurnal Kejuruteraan, 33(2), 221-228.
  • Arvis, J.F. Ojala, L. Wiederer, C. Shepherd, B. Raj, A. Dairabayeva, K. and Kiiski, T. (2018). Connecting to compete 2018: trade logistics in the global economy”, The World Bank, https://documents1.worldbank.org/curated/en/576061531492034646/pdf/Connecting-to-compete-2018-trade-logistics-in-the-global-economy-the-logistics-performance-index-and-its-indicators.pdf.
  • Attari, M.I.J., Hussain, M. and Javid, A.Y.(2016). Carbon emissions and industrial growth: an ARDL analysis for Pakistan, Int. J. Energy Sect. Manag., 10(4), 1-28.
  • Akalan, Kaan. “Türkiye Lojistik Sektöründe Araç Kullanımının Sera Gazı Emisyonları Üzerindeki Etkilerinin Vektör Otoregresif Model İle Analizi ”. Hitit Ekonomi ve Politika Dergisi Cilt No 3/Sayı No 3 (Aralık 2023), 53-70.
  • Bin, L., Jiawei, L., Aiqiang, C., Theodorakis, P.E., Zongsheng, Z. and Jinzhe, Y. (2022). Selection of the cold logistics model based on the carbon footprint of fruits and vegetables in China, Journal of Cleaner Production 334 (2022) 130251.
  • Bozduman, E.T. ve Erkan, B. (2023). The Impact of Logistics Performance on Economic Complexity in PIIGS Countries, International Social Sciences Studies Journal, 9(117), 9043-9047.
  • Craig, A. J., Blanco, E. E., & Sheffi, Y. (2013). Estimating the CO2 intensity of intermodal freight transportation. Transportation Research Part D: Transport and Environment, 22, 49-53.
  • Ekmen Özçelik, S., & Töngür, Ü. (2024). Logistics Performance and Environmental Degradation: The Case of MENA Countries. Ekonomi-Tek, 13(2), 198-229.
  • Fan, L. and Wang, A. (2013). CO2 emissions and technical efficiency of logistics sector: an empirical research from China. In: 2013 IEEE International Conference on Service Operations and Logistics and Informatics (SOLI), 89-94.
  • Hao, H., Geng, Y., Wang, H., Ouyang, M., 2014. Regional disparity of urban passenger transport associated GHG emissions in China. Energy, 68, 783-793.
  • Hofman, B. (2017), “Performance and prospects of global logistics: keynote speech at the CaiNiao global smart logistics conference”, The World Bank, available at: www.worldbank.org/en/news/speech/2017/05/22/performance-and-prospects-of-global-logistics.
  • Hu, B., Huang, B., Liu, Z., Guo, H., Chen, Z., Shi, L., Qu, X., (2021). Optimization Model of Carbon Footprint of Fresh Products in Cold Chain from the Energy Conservation and Emission Reduction Perspective. Mathematical Problems in Engineering, 1-11.
  • Huang, H. (2010). A study of developing Chinese low carbon logistics in the new railway period. In 2010 International Conference on E-Product E-Service and E-Entertainment, IEEE, 1-4.
  • Jaegler, A., & Gondran, N. (2013, May). How to reduce the carbon footprint of road freight on supply chains? In 2013 International Conference on Advanced Logistics and Transport, IEEE, 104-109.
  • Karaduman, H.A., Karaman-Akgül, A., Çağlar, M. and Akbaş, H.E. (2020). The relationship between logistics performance and carbon emissions: an empirical investigation on Balkan countries, International Journal of Climate Change Strategies and Management, 12(4), 449-461.
  • Khan, S.A.R., Qianli, D., SongBo, W., Zaman, K. and Zhang, Y. (2017). Environmental logistics performance indicators affecting per capita income and sectoral growth: evidence from a panel of selected global ranked logistics countries”, Environmental Science and Pollution Research, 24(2), 1518-1531.
  • Khan, S.A.R., Zhang, Y. and Nathaniel, S. (2020), “Green supply chain performance and environmental sustainability: a panel study”, LogForum, 16(1), 141-159.
  • Konieczny, P., Dobrucka, R., & Mroczek, E. (2013). Usıng Carbon Footprınt to Evaluate Envıronmental Issues Of Food Transportatıon. LogForum, 9(1).
  • Lai, K.H. and Wong, C.W. (2012). Green logistics management and performance: some empirical evidence from Chinese manufacturing exporters. Omega 40(3), 267-282.
  • Liang, C. C., & Lee, J. P. (2018). Carbon footprint model for reverse logistics of waste disposal in interior design industry. Asia Pacific Journal of Marketing and Logistics.
  • Liu, J., Yuan, C., Hafeez, M. and Yuan, Q. (2018), “The relationship between environment and logistics performance: evidence from Asian countries”, Journal of Cleaner Production, 204, 282-291.
  • Liu, B., Su, X., Shi, J. and Hou, R. (2020). Does urbanization drive economic growth decoupled from energy consumption in China’s logistics?, Journal of Cleaner Production, 257, 120468.
  • Liu, M., Chen, Z., Sowah, J.K. Ahmed, Z. and Kırıkkaleli, D. (2023). The dynamic impact of energy productivity and economic growth on environmental sustainability in South European countries, Gondwana Research, 115, 116-127.
  • Liljestrand, K., Christopher, M., & Andersson, D. (2015). Using a transport portfolio framework to reduce carbon footprint. The International Journal of Logistics Management.
  • Liu, J., Yuan, C., Hafeez, M. and Yuan, Q. (2018), “The relationship between environment and logistics performance: evidence from Asian countries”, Journal of Cleaner Production, Vol. 204, 282-291.
  • Mariano, E.B., Gobbo, J.A. and Camioto, F.C. (2017). CO2 emissions and logistics performance: a composite index proposal, Journal of Cleaner Production 163, 166-178.
  • Martí, L., Puertas, R. and García, L. (2014), “The importance of the logistics performance index in international trade”, Applied Economics, Vol. 46 No. 24, pp. 2982-2992.
  • Mohsin, A.K.M., Tushar, H., Hossain, S.F.A., Chisty, K.K.S., Iqbal, M.M. and Kamruzzaman, S.R. (2022). Green logistics and environment, economic growth in the context of the Belt and Road Initiative, Heliyon, 8(6).
  • Muslija, A., Cinac, D. and Šahić, A. (2021). The relationship between economic growth and logistics sector in the case of G-7 countries, Transportation Research Procedia, 55, 326-333.
  • Pang, J., Li, H., Lu, C., Lu, C. and Chen, X. (2020). Regional Differences and Dynamic Evolution of Carbon Emission Intensity of Agriculture Production in China, International Journal of Environmental Research and Public Health, 17(20), 7541.
  • Pizzol, M. (2019). Deterministic and stochastic carbon footprint of intermodal ferry and truck freight transport across Scandinavian routes. Journal of Cleaner Production, 224, 626-636.
  • Rezaei, J., van Roekel, W.S. and Tavasszy, L. (2018), “Measuring the relative importance of the logistics performance index indicators using best worst method”, Transport Policy, Vol. 68, 158-169.
  • Saidi, K., Mbarek, M.B., 2017. The impact of income, trade, urbanization, and financial development on CO2 emissions in 19 emerging economies. Environ. Sci. Pollut. Control Ser., 24(14), 12748-12757.
  • Saidi, S., Mani, V., Mefteh, H., Shahbaz, M. and Akhtar, P. (2020). Dynamic linkages between transport, logistics, foreign direct Investment, and economic growth: Empirical evidence from developing countries, Transportation Research Part A: Policy and Practice, 141, 277-293.
  • Sarkar, B., Guchhait, R., Sarkar, M., & Cárdenas-Barrón, L. E. (2019). How does an industry manage the optimum cash flow within a smart production system with the carbon footprint and carbon emission under logistics framework?. International Journal of Production Economics, 213, 243-257.
  • Sevinç, H., Akıncı, M., Kırıkkaleli, D. (2022). Kentleşme ve Çevresel Gelişim: BRICS-T Ülkeleri Üzerine Panel Dinamik Eşik Modeli Analizi, Journal of Yasar University, 2022, 17/66, 351-366.
  • Shen, Y., Liu, J. and Tian, W. (2022). Interaction between international trade and logistics carbon emissions, Energy Reports 8 (2022) 10334-10345.
  • Turgut, A. & Budak, T. (2022). Lojistik ve Taşımacılığın Karbon Ayak İzi: Sistematik Bir Literatür İncelemesi, Kent Akademisi Dergisi, 15(2), 916-930.
  • Ubeda, S., Arcelus, F.J., Faulin, J., 2011. Green logistics at Eroski: a case study. Int. J. Prod. Econ., 131(1), 44-51.
  • Witting, H. (2015). Standards as a controlling mechanism: Methods and effects of carbon footprinting in the logistic sector. Zeıtschrıft fur Wırtschaftsgeographıe, 59(2), 102-114.
  • World Bank. (2007). Connecting to Compete: Trade Logistics in the Global Economy.
  • Yurtkuran, S. (2021). Türkiye’de Kirlilik Sığınağı Hipotezi Geçerli mi? Fourier Eşbütünleşme ve Nedensellik Yöntemlerinden Kanıtlar, Akademik Araştırmalar ve Çalışmalar Dergisi, 13(24), 61-77.
  • Zaman, K. and Shamsuddin, S. (2017). “Green logistics and national scale economic indicators: evidence from a panel of selected European countries”, Journal of Cleaner Production, 143, 51-63.
  • Zhang, Y., Fan, X., Ma, Y. and Sun, Y. (2022). Spatial impacts of cold chain logistics for fresh agri-products on carbon emissions, Transportation Research Part D, 113, 103525.
  • Zhu, S., Bell, M.G.H., Schulz, V., Stokoe, M., 2023. Co-modality in city logistics: Sounds good, but how? Transp. Res. A Policy Pract. 168.

Karbon Emisyonu ve Lojistik Performansı Arasındaki İlişki: Geçiş Ekonomileri Örneği

Yıl 2025, Cilt: 6 Sayı: 2, 129 - 138, 24.09.2025
https://doi.org/10.57116/isletme.1740140

Öz

Bu çalışmanın amacı geçiş veya dönüşüm ekonomileri olarak adlandırılan 24 ülkenin lojistik performansları ile karbon emisyonları arasındaki ilişkileri araştırmaktadır. Lojistik performans endeksi ilk olarak 2007 yılında yayınlamaya başlamış ve ortalama iki yıllık periyotlarla açıklanmıştır. Verilerin kesikli olması sebebiyle analiz yılı 2007-2022 dönemini kapsamış ve dengesiz panel veri analiz tekniği kullanılmıştır. Çalışma ilk olarak değişkenlere ait tanımlayıcı istatistikleri içermekte ve daha sonra en uygun dengesiz panel veri modeli tahmini için Breusch-Pagan LM testiyle devam etmektedir. Model tahminine yönelik olarak Maksimum Olabilirlik Regresyonu (MLE) yöntemiyle yapılan analiz sonucunda ise lojistik performans endeksinin karbon emisyonları üzerindeki etkisinin anlamlı olduğu ortaya çıkmıştır. Bu bağlamda söz konusu Geçiş Ekonomilerinde lojistik performans endeksinde meydana gelen 1 birimlik artışın karbon emisyonlarını yaklaşık olarak % 12 oranında azalttığı söylenebilir. Bu sonuçlar geçiş ekonomilerinde ekonomik büyümenin önemli bir destekleyicisi konumunda olan lojistik faaliyetlerin çevresel bozulmalar üzerinde de önemli etkiler oluşturduğunu gözler önüne sermektedir.

Kaynakça

  • Ahn, K.S., Park, S.H., Chan, L.H. and Gi-Tae, Y. (2020). An Evaluation of Cold Chain Cluster Competitiveness in the Metropolitan Area, Journal of Digital Convergence, 18(10), 181-194.
  • Amiruddin, S. Z., Hishamuddin, H., Darom, N. A., & Naimin, H. H. (2021). A Case Study of Carbon Emissions from Logistic Activities During Supply Chain Disruptions. Jurnal Kejuruteraan, 33(2), 221-228.
  • Arvis, J.F. Ojala, L. Wiederer, C. Shepherd, B. Raj, A. Dairabayeva, K. and Kiiski, T. (2018). Connecting to compete 2018: trade logistics in the global economy”, The World Bank, https://documents1.worldbank.org/curated/en/576061531492034646/pdf/Connecting-to-compete-2018-trade-logistics-in-the-global-economy-the-logistics-performance-index-and-its-indicators.pdf.
  • Attari, M.I.J., Hussain, M. and Javid, A.Y.(2016). Carbon emissions and industrial growth: an ARDL analysis for Pakistan, Int. J. Energy Sect. Manag., 10(4), 1-28.
  • Akalan, Kaan. “Türkiye Lojistik Sektöründe Araç Kullanımının Sera Gazı Emisyonları Üzerindeki Etkilerinin Vektör Otoregresif Model İle Analizi ”. Hitit Ekonomi ve Politika Dergisi Cilt No 3/Sayı No 3 (Aralık 2023), 53-70.
  • Bin, L., Jiawei, L., Aiqiang, C., Theodorakis, P.E., Zongsheng, Z. and Jinzhe, Y. (2022). Selection of the cold logistics model based on the carbon footprint of fruits and vegetables in China, Journal of Cleaner Production 334 (2022) 130251.
  • Bozduman, E.T. ve Erkan, B. (2023). The Impact of Logistics Performance on Economic Complexity in PIIGS Countries, International Social Sciences Studies Journal, 9(117), 9043-9047.
  • Craig, A. J., Blanco, E. E., & Sheffi, Y. (2013). Estimating the CO2 intensity of intermodal freight transportation. Transportation Research Part D: Transport and Environment, 22, 49-53.
  • Ekmen Özçelik, S., & Töngür, Ü. (2024). Logistics Performance and Environmental Degradation: The Case of MENA Countries. Ekonomi-Tek, 13(2), 198-229.
  • Fan, L. and Wang, A. (2013). CO2 emissions and technical efficiency of logistics sector: an empirical research from China. In: 2013 IEEE International Conference on Service Operations and Logistics and Informatics (SOLI), 89-94.
  • Hao, H., Geng, Y., Wang, H., Ouyang, M., 2014. Regional disparity of urban passenger transport associated GHG emissions in China. Energy, 68, 783-793.
  • Hofman, B. (2017), “Performance and prospects of global logistics: keynote speech at the CaiNiao global smart logistics conference”, The World Bank, available at: www.worldbank.org/en/news/speech/2017/05/22/performance-and-prospects-of-global-logistics.
  • Hu, B., Huang, B., Liu, Z., Guo, H., Chen, Z., Shi, L., Qu, X., (2021). Optimization Model of Carbon Footprint of Fresh Products in Cold Chain from the Energy Conservation and Emission Reduction Perspective. Mathematical Problems in Engineering, 1-11.
  • Huang, H. (2010). A study of developing Chinese low carbon logistics in the new railway period. In 2010 International Conference on E-Product E-Service and E-Entertainment, IEEE, 1-4.
  • Jaegler, A., & Gondran, N. (2013, May). How to reduce the carbon footprint of road freight on supply chains? In 2013 International Conference on Advanced Logistics and Transport, IEEE, 104-109.
  • Karaduman, H.A., Karaman-Akgül, A., Çağlar, M. and Akbaş, H.E. (2020). The relationship between logistics performance and carbon emissions: an empirical investigation on Balkan countries, International Journal of Climate Change Strategies and Management, 12(4), 449-461.
  • Khan, S.A.R., Qianli, D., SongBo, W., Zaman, K. and Zhang, Y. (2017). Environmental logistics performance indicators affecting per capita income and sectoral growth: evidence from a panel of selected global ranked logistics countries”, Environmental Science and Pollution Research, 24(2), 1518-1531.
  • Khan, S.A.R., Zhang, Y. and Nathaniel, S. (2020), “Green supply chain performance and environmental sustainability: a panel study”, LogForum, 16(1), 141-159.
  • Konieczny, P., Dobrucka, R., & Mroczek, E. (2013). Usıng Carbon Footprınt to Evaluate Envıronmental Issues Of Food Transportatıon. LogForum, 9(1).
  • Lai, K.H. and Wong, C.W. (2012). Green logistics management and performance: some empirical evidence from Chinese manufacturing exporters. Omega 40(3), 267-282.
  • Liang, C. C., & Lee, J. P. (2018). Carbon footprint model for reverse logistics of waste disposal in interior design industry. Asia Pacific Journal of Marketing and Logistics.
  • Liu, J., Yuan, C., Hafeez, M. and Yuan, Q. (2018), “The relationship between environment and logistics performance: evidence from Asian countries”, Journal of Cleaner Production, 204, 282-291.
  • Liu, B., Su, X., Shi, J. and Hou, R. (2020). Does urbanization drive economic growth decoupled from energy consumption in China’s logistics?, Journal of Cleaner Production, 257, 120468.
  • Liu, M., Chen, Z., Sowah, J.K. Ahmed, Z. and Kırıkkaleli, D. (2023). The dynamic impact of energy productivity and economic growth on environmental sustainability in South European countries, Gondwana Research, 115, 116-127.
  • Liljestrand, K., Christopher, M., & Andersson, D. (2015). Using a transport portfolio framework to reduce carbon footprint. The International Journal of Logistics Management.
  • Liu, J., Yuan, C., Hafeez, M. and Yuan, Q. (2018), “The relationship between environment and logistics performance: evidence from Asian countries”, Journal of Cleaner Production, Vol. 204, 282-291.
  • Mariano, E.B., Gobbo, J.A. and Camioto, F.C. (2017). CO2 emissions and logistics performance: a composite index proposal, Journal of Cleaner Production 163, 166-178.
  • Martí, L., Puertas, R. and García, L. (2014), “The importance of the logistics performance index in international trade”, Applied Economics, Vol. 46 No. 24, pp. 2982-2992.
  • Mohsin, A.K.M., Tushar, H., Hossain, S.F.A., Chisty, K.K.S., Iqbal, M.M. and Kamruzzaman, S.R. (2022). Green logistics and environment, economic growth in the context of the Belt and Road Initiative, Heliyon, 8(6).
  • Muslija, A., Cinac, D. and Šahić, A. (2021). The relationship between economic growth and logistics sector in the case of G-7 countries, Transportation Research Procedia, 55, 326-333.
  • Pang, J., Li, H., Lu, C., Lu, C. and Chen, X. (2020). Regional Differences and Dynamic Evolution of Carbon Emission Intensity of Agriculture Production in China, International Journal of Environmental Research and Public Health, 17(20), 7541.
  • Pizzol, M. (2019). Deterministic and stochastic carbon footprint of intermodal ferry and truck freight transport across Scandinavian routes. Journal of Cleaner Production, 224, 626-636.
  • Rezaei, J., van Roekel, W.S. and Tavasszy, L. (2018), “Measuring the relative importance of the logistics performance index indicators using best worst method”, Transport Policy, Vol. 68, 158-169.
  • Saidi, K., Mbarek, M.B., 2017. The impact of income, trade, urbanization, and financial development on CO2 emissions in 19 emerging economies. Environ. Sci. Pollut. Control Ser., 24(14), 12748-12757.
  • Saidi, S., Mani, V., Mefteh, H., Shahbaz, M. and Akhtar, P. (2020). Dynamic linkages between transport, logistics, foreign direct Investment, and economic growth: Empirical evidence from developing countries, Transportation Research Part A: Policy and Practice, 141, 277-293.
  • Sarkar, B., Guchhait, R., Sarkar, M., & Cárdenas-Barrón, L. E. (2019). How does an industry manage the optimum cash flow within a smart production system with the carbon footprint and carbon emission under logistics framework?. International Journal of Production Economics, 213, 243-257.
  • Sevinç, H., Akıncı, M., Kırıkkaleli, D. (2022). Kentleşme ve Çevresel Gelişim: BRICS-T Ülkeleri Üzerine Panel Dinamik Eşik Modeli Analizi, Journal of Yasar University, 2022, 17/66, 351-366.
  • Shen, Y., Liu, J. and Tian, W. (2022). Interaction between international trade and logistics carbon emissions, Energy Reports 8 (2022) 10334-10345.
  • Turgut, A. & Budak, T. (2022). Lojistik ve Taşımacılığın Karbon Ayak İzi: Sistematik Bir Literatür İncelemesi, Kent Akademisi Dergisi, 15(2), 916-930.
  • Ubeda, S., Arcelus, F.J., Faulin, J., 2011. Green logistics at Eroski: a case study. Int. J. Prod. Econ., 131(1), 44-51.
  • Witting, H. (2015). Standards as a controlling mechanism: Methods and effects of carbon footprinting in the logistic sector. Zeıtschrıft fur Wırtschaftsgeographıe, 59(2), 102-114.
  • World Bank. (2007). Connecting to Compete: Trade Logistics in the Global Economy.
  • Yurtkuran, S. (2021). Türkiye’de Kirlilik Sığınağı Hipotezi Geçerli mi? Fourier Eşbütünleşme ve Nedensellik Yöntemlerinden Kanıtlar, Akademik Araştırmalar ve Çalışmalar Dergisi, 13(24), 61-77.
  • Zaman, K. and Shamsuddin, S. (2017). “Green logistics and national scale economic indicators: evidence from a panel of selected European countries”, Journal of Cleaner Production, 143, 51-63.
  • Zhang, Y., Fan, X., Ma, Y. and Sun, Y. (2022). Spatial impacts of cold chain logistics for fresh agri-products on carbon emissions, Transportation Research Part D, 113, 103525.
  • Zhu, S., Bell, M.G.H., Schulz, V., Stokoe, M., 2023. Co-modality in city logistics: Sounds good, but how? Transp. Res. A Policy Pract. 168.
Toplam 46 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Çevre ve İklim Finansmanı
Bölüm Makaleler
Yazarlar

Demet Eroğlu Sevinç 0000-0003-3510-8970

Yayımlanma Tarihi 24 Eylül 2025
Gönderilme Tarihi 11 Temmuz 2025
Kabul Tarihi 8 Eylül 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 6 Sayı: 2

Kaynak Göster

APA Eroğlu Sevinç, D. (2025). Karbon Emisyonu ve Lojistik Performansı Arasındaki İlişki: Geçiş Ekonomileri Örneği. İşletme, 6(2), 129-138. https://doi.org/10.57116/isletme.1740140