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Green Supply Chain Management: The Effect of Procurement Sustainability on Reverse Logistics

Author

Listed:
  • Nataliia Letunovska

    (Department of Marketing, Sumy State University, 2, Rimskoho-Korsakova St., 40007 Sumy, Ukraine)

  • Felix Amoako Offei

    (Academic and Research Institute of Business, Economics and Management, Sumy State University, 2, Rimskoho-Korsakova St., 40007 Sumy, Ukraine)

  • Prince Amoh Junior

    (Department of Supply Chain and Information Systems, Kwame Nkrumah University of Science and Technology, Business School, Kumasi AK-385-1973, Ghana)

  • Oleksii Lyulyov

    (Faculty of Applied Sciences, WSB University, 41-300 Dabrowa Gornicza, Poland
    The London Academy of Science and Business, 120 Baker St., London W1U 6TU, UK)

  • Tetyana Pimonenko

    (Faculty of Applied Sciences, WSB University, 41-300 Dabrowa Gornicza, Poland
    The London Academy of Science and Business, 120 Baker St., London W1U 6TU, UK)

  • Aleksy Kwilinski

    (Faculty of Applied Sciences, WSB University, 41-300 Dabrowa Gornicza, Poland
    The London Academy of Science and Business, 120 Baker St., London W1U 6TU, UK)

Abstract

Background : Sustainable procurement is about considering social and environmental factors alongside financial factors in making procurement decisions and purchasing goods and services that take into account the social, economic, and environmental impact that such purchasing has on people and communities. This study was carried out to address the effects of procurement sustainability on reverse logistics. It considered four objectives: to establish the relationship between environmental procurement sustainability and reverse logistics, to examine the relationship between economic procurement sustainability and reverse logistics, to examine the relationship between social sustainability procurement and reverse logistics, and to examine the moderating role of government policy. Methods : This study applied structural equation modeling to check the research hypotheses. A purposive sampling technique was used. A structured questionnaire was used to gather primary data. The data gathered were analyzed using descriptive and inferential analysis. The data were analyzed in SPSS version 21. The study found that environmental, economic, and social procurement sustainability has a significant and positive effect on reverse logistics. Government policy moderates the relationships between environmental, economic, and social procurement sustainability and reverse logistics. Conclusions : This study recommends that organizations team up with environmental protection agencies to produce environmentally friendly products. Social interventions that can help protect society from damage should be acknowledged. Good economic policies that ensure that organizations increase their wealth should also be acknowledged.

Suggested Citation

  • Nataliia Letunovska & Felix Amoako Offei & Prince Amoh Junior & Oleksii Lyulyov & Tetyana Pimonenko & Aleksy Kwilinski, 2023. "Green Supply Chain Management: The Effect of Procurement Sustainability on Reverse Logistics," Logistics, MDPI, vol. 7(3), pages 1-17, August.
  • Handle: RePEc:gam:jlogis:v:7:y:2023:i:3:p:47-:d:1209580
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    References listed on IDEAS

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    1. Chen, Daqiang & Ignatius, Joshua & Sun, Danzhi & Zhan, Shalei & Zhou, Chenyu & Marra, Marianna & Demirbag, Mehmet, 2019. "Reverse logistics pricing strategy for a green supply chain: A view of customers' environmental awareness," International Journal of Production Economics, Elsevier, vol. 217(C), pages 197-210.
    2. Kumar, Sameer & Putnam, Valora, 2008. "Cradle to cradle: Reverse logistics strategies and opportunities across three industry sectors," International Journal of Production Economics, Elsevier, vol. 115(2), pages 305-315, October.
    3. Alhamzah Alnoor & Bilal Eneizan & Hebah Zaki Makhamreh & Ibrahim Ali Rahoma, 2019. "The Effect of Reverse Logistics on Sustainable Manufacturing," International Journal of Academic Research in Accounting, Finance and Management Sciences, Human Resource Management Academic Research Society, International Journal of Academic Research in Accounting, Finance and Management Sciences, vol. 9(1), pages 71-79, January.
    4. Zhu, Qinghua & Sarkis, Joseph & Lai, Kee-hung, 2008. "Confirmation of a measurement model for green supply chain management practices implementation," International Journal of Production Economics, Elsevier, vol. 111(2), pages 261-273, February.
    5. Muhammad Waqas & Qian-li Dong & Naveed Ahmad & Yuming Zhu & Muhammad Nadeem, 2018. "Critical Barriers to Implementation of Reverse Logistics in the Manufacturing Industry: A Case Study of a Developing Country," Sustainability, MDPI, vol. 10(11), pages 1-25, November.
    6. Govindan, Kannan & Soleimani, Hamed & Kannan, Devika, 2015. "Reverse logistics and closed-loop supply chain: A comprehensive review to explore the future," European Journal of Operational Research, Elsevier, vol. 240(3), pages 603-626.
    7. Corrêa, Henrique Luiz & Xavier, Lucia Helena, 2013. "Concepts, design and implementation of Reverse Logistics Systems for Sustainable Supply Chains in Brazil," Journal of Operations and Supply Chain Management (JOSCM), Fundação Getulio Vargas, Escola de Administração de Empresas de São Paulo (FGV EAESP), vol. 6(1), June.
    8. Ehsan Shekarian & Behrang Ijadi & Amirreza Zare & Jukka Majava, 2022. "Sustainable Supply Chain Management: A Comprehensive Systematic Review of Industrial Practices," Sustainability, MDPI, vol. 14(13), pages 1-30, June.
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    Cited by:

    1. Mohammad Abul Kashem & Mohammad Shamsuddoha & Tasnuba Nasir, 2024. "Digital-Era Resilience: Navigating Logistics and Supply Chain Operations after COVID-19," Businesses, MDPI, vol. 4(1), pages 1-17, January.
    2. Aleksy Kwilinski, 2024. "Mapping Global Research on Green Energy and Green Investment: A Comprehensive Bibliometric Study," Energies, MDPI, vol. 17(5), pages 1-24, February.
    3. Henryk Dzwigol & Aleksy Kwilinski & Oleksii Lyulyov & Tetyana Pimonenko, 2024. "Digitalization and Energy in Attaining Sustainable Development: Impact on Energy Consumption, Energy Structure, and Energy Intensity," Energies, MDPI, vol. 17(5), pages 1-17, March.
    4. Wuttichai Youngswaing & Sajjakaj Jomnonkwao & Ekkapong Cheunkamon & Vatanavongs Ratanavaraha, 2024. "Key Factors Shaping Green Logistics in Thailand’s Auto Industry: An Application of Structural Equation Modeling," Logistics, MDPI, vol. 8(1), pages 1-25, February.
    5. Marcin Relich & Janusz Adamczyk & Robert Dylewski & Agnieszka Kister, 2024. "Case-Based Reasoning in Achieving Sustainability Targets of New Products," Sustainability, MDPI, vol. 16(4), pages 1-18, February.

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