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Title Centralized Collaborative Planning of an Industrial Symbiosis: Mixed-integer linear model
ID_Doc 29786
Authors Daquin, C; Allaoui, H; Goncalves, G; Hsu, T
Title Centralized Collaborative Planning of an Industrial Symbiosis: Mixed-integer linear model
Year 2023
Published
DOI 10.1016/j.cie.2023.109171
Abstract Currently, the production, distribution and consumption modes disrupt ecosystems. To preserve the environ-ment, circular economy (CE) proposes to reduce the environmental footprint in a social approach. Among the principles of CE, industrial ecology seeks to limit the impact of industries on the environment by involving them in collaboration schemes through industrial symbioses (IS). IS enables the upcycling of a company's waste, called by-products, by another company as raw material. In this context, the goal of this study is to optimize the production planning of supply chains involved in an IS. We formulate this problem as a multi-level collaborative lot-sizing problem applied to industrial symbiosis. Thus, we introduce and define a new problem class: Centralized Collaborative Planning of an Industrial Symbiosis with N actors (CCP-IS-N). First, a new mixed-integer linear (MILP) model is presented, and then the complexity of the problem is studied. Finally, the proposed model is analyzed to understand its behavior and draw some key properties allowing to identify situation(s) in which IS is economically interesting or not.
Author Keywords Optimization; Industrial symbiosis; Collaboration; Production planning; Lot-sizing
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000984849600001
WoS Category Computer Science, Interdisciplinary Applications; Engineering, Industrial
Research Area Computer Science; Engineering
PDF http://manuscript.elsevier.com/S036083522300195X/pdf/S036083522300195X.pdf
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