A Green Dual-Channel Closed-Loop Supply Chain Network Design Model
Loading...

Date
2022
Authors
Yigit Kazancoglu
Damla Yuksel
Muruvvet Deniz Sezer
Sachin Kumar Mangla
Lianlian Hua
Journal Title
Journal ISSN
Volume Title
Publisher
ELSEVIER SCI LTD
Open Access Color
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
Environmental considerations have become a significant issue in the design of supply chain networks due to today's increasing globalization trends. Therefore supply chain network design needs to be managed in an efficient way to deal with the complex networks involved. The aim of this article is to present a multi-objective optimization model for a green dual-channel supply chain network that handles economic and environmental objectives to optimize network flow. A complex mixed-integer linear programming model (MILP) has been proposed in a green dual-channel and closed-loop supply chain (CLSC) network design. The main objective of the generated MILP model is to investigate the optimal selection of echelons and the optimal selection of transportation alternatives between these echelons in a CLSC network that includes an e-commerce channel structure based on economic and environmental considerations. Environmental aims are achieved by decreasing CO2 emissions and by reducing PM (particulate matter) concentration throughout the network. In addition economic aims are also met by minimizing the overall cost. The validity of the presented model is supported by a case study in the home appliances industry. The results indicate that this model provides valuable knowledge and various alternatives to managers and policymakers depending on the different weight combinations.
Description
Keywords
Green supply chain, Closed-loop network design, Dual-channel supply chain, Multi-objective optimization, Particulate matter, CIRCULAR ECONOMY, OPTIMIZATION, MANAGEMENT, IMPACT, ALGORITHM, DEMANDS, Closed-Loop Network Design, Particulate Matter, Dual-Channel Supply Chain, Green Supply Chain, Multi-Objective Optimization
Fields of Science
0502 economics and business, 05 social sciences, 0211 other engineering and technologies, 02 engineering and technology
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
50
Source
Journal of Cleaner Production
Volume
332
Issue
Start Page
130062
End Page
PlumX Metrics
Citations
CrossRef : 12
Scopus : 60
Captures
Mendeley Readers : 101
Google Scholar™


