Green Closed-Loop Supply Chain Networks' Response to Various Carbon Policies during COVID-19

被引:121
作者
Abbasi, Sina [1 ]
Erdebilli, Babek [2 ]
机构
[1] Islamic Azad Univ, Dept Ind Engn, Lahijan Branch, Lahijan 1616, Iran
[2] Ankara Yildirim Beyazit Univ, Dept Ind Engn, TR-06760 Ankara, Turkiye
关键词
CO2; policies; green supply chain; closed-loop; COVID-19; pandemic; Mixed integer linear programming; EMISSION REDUCTION; ENVIRONMENTAL CONSTRAINTS; PLANNING-MODEL; DESIGN PROBLEM; COORDINATION; DECISION; RETAILERS; IMPACT; TAX; PREFERENCES;
D O I
10.3390/su15043677
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As concerns about the environment continue to increase and restrictions become tougher, professionals in business and legislators are being compelled to investigate the environmental effects of the activities associated with their supply chains. The control of carbon emissions by governments all over the world has involved the adoption of a variety of strategies to lower such emissions. This research optimizes COVID-19 pandemic logistics management as well as a green closed-loop supply chain design (GCLSCD) by basing it on carbon regulatory rules. This research looks at three of the most common types of normal CO2 restrictions. In the models that have been proposed, both costs and emissions are optimized. When it comes to supply chain (SC) activities, there is a delicate balance to strike between location selection, the many shipment alternatives, and the fees and releases. The models illustrate these tensions between competing priorities. Based on the numerical experiment, we illustrate the impact that a variety of policies have on costs in addition to the efficiency with which they reduce emissions. By analyzing the results of the models, managers can make predictions concerning how regulatory changes may affect overall emissions from SC operations.
引用
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页数:30
相关论文
共 132 条
[51]   Low-carbon product design for product life cycle [J].
He, Bin ;
Wang, Jun ;
Huang, Shan ;
Wang, Yan .
JOURNAL OF ENGINEERING DESIGN, 2015, 26 (10-12) :321-339
[52]   Green Supply Chain Management: Conceptual Framework and Models for Analysis [J].
Herrmann, Felipe Fehlberg ;
Barbosa-Povoa, Ana Paula ;
Butturi, Maria Angela ;
Marinelli, Simona ;
Sellitto, Miguel Afonso .
SUSTAINABILITY, 2021, 13 (15)
[53]   An Evolutionary Game Model Between Governments and Manufacturers Considering Carbon Taxes, Subsidies, and Consumers' Low-Carbon Preference [J].
Hu, Zhi-Hua ;
Wang, Shu-Wen .
DYNAMIC GAMES AND APPLICATIONS, 2022, 12 (02) :513-551
[54]   Comparisons of initial carbon allowance allocation rules in an O2O retail supply chain with the cap-and-trade regulation [J].
Ji, Jingna ;
Zhang, Zhiyong ;
Yang, Lei .
INTERNATIONAL JOURNAL OF PRODUCTION ECONOMICS, 2017, 187 :68-84
[55]   A carbon footprint based reverse logistics network design model [J].
Kannan, Devika ;
Diabat, Ali ;
Alrefaei, Mahmoud ;
Govindan, Kannan ;
Yong, Geng .
RESOURCES CONSERVATION AND RECYCLING, 2012, 67 :75-79
[56]   Sustainable development of global supply chains-part 2: investigation of the European automotive industry [J].
Kannegiesser, Matthias ;
Guenther, Hans-Otto ;
Gylfason, Olafur .
FLEXIBLE SERVICES AND MANUFACTURING JOURNAL, 2014, 26 (1-2) :48-68
[57]   Optimizing inventory decisions for a closed-loop supply chain model under a carbon tax regulatory mechanism [J].
Konstantaras, Ioannis ;
Skouri, Konstantina ;
Benkherouf, Lakdere .
INTERNATIONAL JOURNAL OF PRODUCTION ECONOMICS, 2021, 239
[58]   Do cap-and-trade policies drive environmental and social goals in supply chains: Strategic decisions, collaboration, and contract choices [J].
Kuiti, Mithu Rani ;
Ghosh, Debabrata ;
Basu, Preetam ;
Bisi, Arnab .
INTERNATIONAL JOURNAL OF PRODUCTION ECONOMICS, 2020, 223
[59]   Collection activity channels selection in a reverse supply chain under a carbon cap-and-trade regulation [J].
Kushwaha, Siddhartha ;
Ghosh, Arindam ;
Rao, A. K. .
JOURNAL OF CLEANER PRODUCTION, 2020, 260
[60]  
Kyoto Protocol, STAT RAT