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Erschienen in: Clean Technologies and Environmental Policy 6/2019

16.05.2019 | Original Paper

An environmentally sustainable manufacturing network model under an international ecosystem

verfasst von: Shraddha Mishra, Surya Prakash Singh

Erschienen in: Clean Technologies and Environmental Policy | Ausgabe 6/2019

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Abstract

There is a growing consensus that the increase in greenhouse gases results in unfavorable changes to the Earth’s climate and is responsible for global warming. Due to this ecological imbalance, governments are under growing pressure to enact strict legislation to control these emissions in their respective countries. Consumers also demand eco-friendly products and are moving toward firms that are socially and environmentally responsible. Therefore, industries are facing increased pressure to adopt sustainable production approaches. This paper demonstrates how a mixed integer linear program can be used to optimize the balance of overall cost and carbon emissions in the production, storage, and distribution of products in a regulatory environment that includes a cap and trade policy. The model is computationally tested for fifteen case instances of different sizes. The main contributions of the proposed model are (a) to link the emission parameters to various decision variables to support the decision making related to carbon costs and carbon emissions, (b) to address international trade issues by considering international parameters such as imports, exports, and government subsidies and perform a country-specific analysis for carbon emissions, and (c) to identify the extent to which the operational adjustment can be used as an alternative to the costly investment in carbon reduction technologies to reduce emissions.

Graphical abstract

Proposed MILP model framework

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Literatur
Zurück zum Zitat Amin SH, Baki F (2017) A facility location model for global closed-loop supply chain network design. Appl Math Model 41:316–330CrossRef Amin SH, Baki F (2017) A facility location model for global closed-loop supply chain network design. Appl Math Model 41:316–330CrossRef
Zurück zum Zitat Arampantzi C, Minis I (2017) A new model for designing sustainable supply chain networks and its application to a global manufacturer. J Clean Prod 156:276–292CrossRef Arampantzi C, Minis I (2017) A new model for designing sustainable supply chain networks and its application to a global manufacturer. J Clean Prod 156:276–292CrossRef
Zurück zum Zitat Avagyan AB (2017) Environmental building policy by the use of microalgae and decreasing of risks for Canadian oil sand sector development. Environ Sci Pollut Res 24(25):20241–20253CrossRef Avagyan AB (2017) Environmental building policy by the use of microalgae and decreasing of risks for Canadian oil sand sector development. Environ Sci Pollut Res 24(25):20241–20253CrossRef
Zurück zum Zitat Avagyan AB (2018) Algae to energy and sustainable development. Technologies, resources, economics and system analyses. New design of global environmental policy and live conserve industry. Amazon, ISBN-13: 978-1718722552, ISBN-10: 1718722559, ASIN: B07DFQBFFD Avagyan AB (2018) Algae to energy and sustainable development. Technologies, resources, economics and system analyses. New design of global environmental policy and live conserve industry. Amazon, ISBN-13: 978-1718722552, ISBN-10: 1718722559, ASIN: B07DFQBFFD
Zurück zum Zitat Bag S, Anand N, Pandey KK (2017) Green supply chain management model for sustainable manufacturing practices. In: Green supply chain management for sustainable business practice. IGI Global, pp 153–189 Bag S, Anand N, Pandey KK (2017) Green supply chain management model for sustainable manufacturing practices. In: Green supply chain management for sustainable business practice. IGI Global, pp 153–189
Zurück zum Zitat Benjaafar S, Li Y, Daskin M (2013) Carbon footprint and the management of supply chains: insights from simple models. IEEE Trans Autom Sci Eng 10(1):99–116CrossRef Benjaafar S, Li Y, Daskin M (2013) Carbon footprint and the management of supply chains: insights from simple models. IEEE Trans Autom Sci Eng 10(1):99–116CrossRef
Zurück zum Zitat Bhatnagar R, Viswanathan S (2000) Re-engineering global supply chains: alliances between manufacturing firms and global logistics services providers. Int J Phys Distrib Logist Manag 30(1):13–34CrossRef Bhatnagar R, Viswanathan S (2000) Re-engineering global supply chains: alliances between manufacturing firms and global logistics services providers. Int J Phys Distrib Logist Manag 30(1):13–34CrossRef
Zurück zum Zitat Carvalho H, Govindan K, Azevedo SG, Cruz-Machado V (2017) Modelling green and lean supply chains: an eco-efficiency perspective. Resour Conserv Recycl 120:75–87CrossRef Carvalho H, Govindan K, Azevedo SG, Cruz-Machado V (2017) Modelling green and lean supply chains: an eco-efficiency perspective. Resour Conserv Recycl 120:75–87CrossRef
Zurück zum Zitat Cholette S, Venkat K (2009) The energy and carbon intensity of wine distribution: a study of logistical options for delivering wine to consumers. J Clean Prod 17(16):1401–1413CrossRef Cholette S, Venkat K (2009) The energy and carbon intensity of wine distribution: a study of logistical options for delivering wine to consumers. J Clean Prod 17(16):1401–1413CrossRef
Zurück zum Zitat Cohen MA, Lee HL (1988) Strategic analysis of integrated production-distribution systems: models and methods. Oper Res 36(2):216–228CrossRef Cohen MA, Lee HL (1988) Strategic analysis of integrated production-distribution systems: models and methods. Oper Res 36(2):216–228CrossRef
Zurück zum Zitat Creazza A, Dallari F, Melacini M (2010) Evaluating logistics network configurations for a global supply chain. Supply Chain Manag Int J 15(2):154–164CrossRef Creazza A, Dallari F, Melacini M (2010) Evaluating logistics network configurations for a global supply chain. Supply Chain Manag Int J 15(2):154–164CrossRef
Zurück zum Zitat Das R, Shaw K (2017) Uncertain supply chain network design considering carbon footprint and social factors using two-stage approach. Clean Technol Environ Policy 19(10):2491–2519CrossRef Das R, Shaw K (2017) Uncertain supply chain network design considering carbon footprint and social factors using two-stage approach. Clean Technol Environ Policy 19(10):2491–2519CrossRef
Zurück zum Zitat Dekker R, Bloemhof J, Mallidis I (2012) Operations research for green logistics–an overview of aspects, issues, contributions and challenges. Eur J Oper Res 219(3):671–679CrossRef Dekker R, Bloemhof J, Mallidis I (2012) Operations research for green logistics–an overview of aspects, issues, contributions and challenges. Eur J Oper Res 219(3):671–679CrossRef
Zurück zum Zitat Dong L, Kouvelis P, Su P (2013) Global facility network design in the presence of competition. Eur J Oper Res 228(2):437–446CrossRef Dong L, Kouvelis P, Su P (2013) Global facility network design in the presence of competition. Eur J Oper Res 228(2):437–446CrossRef
Zurück zum Zitat Ferdows K (1989) Mapping international factory networks. Managing international manufacturing, 3, p 21 Ferdows K (1989) Mapping international factory networks. Managing international manufacturing, 3, p 21
Zurück zum Zitat Ganji EN, Shah S, Coutroubis A (2017) December. Sustainable supply and demand chain integration within global manufacturing industries. In: 2017 IEEE international conference on Industrial Engineering and Engineering Management (IEEM). IEEE, pp 1807–1811 Ganji EN, Shah S, Coutroubis A (2017) December. Sustainable supply and demand chain integration within global manufacturing industries. In: 2017 IEEE international conference on Industrial Engineering and Engineering Management (IEEM). IEEE, pp 1807–1811
Zurück zum Zitat Jiang Y, Li B, Qu X, Cheng Y (2016) A green vendor-managed inventory analysis in supply chains under carbon emissions trading mechanism. Clean Technol Environ Policy 18(5):1369–1380CrossRef Jiang Y, Li B, Qu X, Cheng Y (2016) A green vendor-managed inventory analysis in supply chains under carbon emissions trading mechanism. Clean Technol Environ Policy 18(5):1369–1380CrossRef
Zurück zum Zitat Kaur H, Singh SP (2018) Heuristic modeling for sustainable procurement and logistics in a supply chain using big data. Comput Oper Res 98:301–321CrossRef Kaur H, Singh SP (2018) Heuristic modeling for sustainable procurement and logistics in a supply chain using big data. Comput Oper Res 98:301–321CrossRef
Zurück zum Zitat Kouvelis P, Rosenblatt MJ, Munson CL (2004) A mathematical programming model for global plant location problems: analysis and insights. IIE Trans 36(2):127–144CrossRef Kouvelis P, Rosenblatt MJ, Munson CL (2004) A mathematical programming model for global plant location problems: analysis and insights. IIE Trans 36(2):127–144CrossRef
Zurück zum Zitat MacCarthy BL, Atthirawong W (2003) Factors affecting location decisions in international operations a Delphi study. Int J Oper Product Manag 23(7/8):794–819CrossRef MacCarthy BL, Atthirawong W (2003) Factors affecting location decisions in international operations a Delphi study. Int J Oper Product Manag 23(7/8):794–819CrossRef
Zurück zum Zitat Meijboom B, Voordijk H (2003) International operations and location decisions: a firm level approach. Tijdschrift voor economische en sociale geografie 94(4):463–476CrossRef Meijboom B, Voordijk H (2003) International operations and location decisions: a firm level approach. Tijdschrift voor economische en sociale geografie 94(4):463–476CrossRef
Zurück zum Zitat Melo MT, Nickel S, Da Gama FS (2006) Dynamic multi-commodity capacitated facility location: a mathematical modeling framework for strategic supply chain planning. Comput Oper Res 33(1):181–208CrossRef Melo MT, Nickel S, Da Gama FS (2006) Dynamic multi-commodity capacitated facility location: a mathematical modeling framework for strategic supply chain planning. Comput Oper Res 33(1):181–208CrossRef
Zurück zum Zitat Nagurney A, Liu Z, Woolley T (2006) Optimal endogenous carbon taxes for electric power supply chains with power plants. Math Comput Model 44(9–10):899–916CrossRef Nagurney A, Liu Z, Woolley T (2006) Optimal endogenous carbon taxes for electric power supply chains with power plants. Math Comput Model 44(9–10):899–916CrossRef
Zurück zum Zitat Rusinko C (2007) Green manufacturing: an evaluation of environmentally sustainable manufacturing practices and their impact on competitive outcomes. IEEE Trans Eng Manage 54(3):445–454CrossRef Rusinko C (2007) Green manufacturing: an evaluation of environmentally sustainable manufacturing practices and their impact on competitive outcomes. IEEE Trans Eng Manage 54(3):445–454CrossRef
Zurück zum Zitat Srinivasan S, Khan SH (2018) Multi-stage manufacturing/re-manufacturing facility location and allocation model under uncertain demand and return. Int J Adv Manuf Technol 94(5–8):2847–2860CrossRef Srinivasan S, Khan SH (2018) Multi-stage manufacturing/re-manufacturing facility location and allocation model under uncertain demand and return. Int J Adv Manuf Technol 94(5–8):2847–2860CrossRef
Zurück zum Zitat Sundarakani B, De Souza R, Goh M, Shun C (2008) Measuring carbon footprints across the supply chain. In: Proceedings of the 13th international symposium on logistics, July 2008, Bangkok, Thailand, pp 555–562 Sundarakani B, De Souza R, Goh M, Shun C (2008) Measuring carbon footprints across the supply chain. In: Proceedings of the 13th international symposium on logistics, July 2008, Bangkok, Thailand, pp 555–562
Zurück zum Zitat Sundarakani B, De Souza R, Goh M, Wagner SM, Manikandan S (2010) Modeling carbon footprints across the supply chain. Int J Prod Econ 128(1):43–50CrossRef Sundarakani B, De Souza R, Goh M, Wagner SM, Manikandan S (2010) Modeling carbon footprints across the supply chain. Int J Prod Econ 128(1):43–50CrossRef
Zurück zum Zitat Turken N, Carrillo J, Verter V (2017) Facility location and capacity acquisition under carbon tax and emissions limits: to centralize or to decentralize? Int J Prod Econ 187:126–141CrossRef Turken N, Carrillo J, Verter V (2017) Facility location and capacity acquisition under carbon tax and emissions limits: to centralize or to decentralize? Int J Prod Econ 187:126–141CrossRef
Zurück zum Zitat Wang G, Gunasekaran A (2017) Modeling and analysis of sustainable supply chain dynamics. Ann Oper Res 250(2):521–536CrossRef Wang G, Gunasekaran A (2017) Modeling and analysis of sustainable supply chain dynamics. Ann Oper Res 250(2):521–536CrossRef
Zurück zum Zitat Xu L, Wang C (2017) Sustainable manufacturing in a closed-loop supply chain considering emission reduction and remanufacturing. Resour Conserv Recycl 131:297–304CrossRef Xu L, Wang C (2017) Sustainable manufacturing in a closed-loop supply chain considering emission reduction and remanufacturing. Resour Conserv Recycl 131:297–304CrossRef
Zurück zum Zitat Xu L, Mathiyazhagan K, Govindan K, Haq AN, Ramachandran NV, Ashokkumar A (2013) Multiple comparative studies of green supply chain management: pressures analysis. Resour Conserv Recycl 78:26–35CrossRef Xu L, Mathiyazhagan K, Govindan K, Haq AN, Ramachandran NV, Ashokkumar A (2013) Multiple comparative studies of green supply chain management: pressures analysis. Resour Conserv Recycl 78:26–35CrossRef
Zurück zum Zitat Yang J, Guo J, Ma S (2016) Low-carbon city logistics distribution network design with resource deployment. J Clean Prod 119:223–228CrossRef Yang J, Guo J, Ma S (2016) Low-carbon city logistics distribution network design with resource deployment. J Clean Prod 119:223–228CrossRef
Metadaten
Titel
An environmentally sustainable manufacturing network model under an international ecosystem
verfasst von
Shraddha Mishra
Surya Prakash Singh
Publikationsdatum
16.05.2019
Verlag
Springer Berlin Heidelberg
Erschienen in
Clean Technologies and Environmental Policy / Ausgabe 6/2019
Print ISSN: 1618-954X
Elektronische ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-019-01704-1

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