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Title Network design and technology management for waste to energy production: An integrated optimization framework under the principles of circular economy
ID_Doc 5857
Authors Balaman, SY; Wright, DG; Scott, J; Matopoulos, A
Title Network design and technology management for waste to energy production: An integrated optimization framework under the principles of circular economy
Year 2018
Published
DOI 10.1016/j.energy.2017.11.058
Abstract The design of waste to bioenergy supply chains (W-BESC) is critically important for meeting the circular economy (CE) goals, whilst also ensuring environmental sustainability in the planning and operation of energy systems. This study develops a novel optimization methodology to aid sustainable design and planning of W-BESC that comprise multiple technologies as well as multiple product and feedstock types. The methodology identifies the optimum supply chain configuration and plans the logistics operations in a given region to meet the energy demand of specified nodes. A scenario based fuzzy multi objective modelling approach is proposed and utilized to capture the economic and environmental sustainability aspects in the same framework. We test the proposed model using the entire West Midlands (WM) region from the United Kingdom (UK) as a case study. In this scope, a comprehensive regional supply chain is designed to meet the energy and biofertilizer demand of specific nodes considering available waste and crop type biomass in the region. Further analysis is conducted to reveal the impacts of main economic and technological parameters on the supply chain performance indicators. (C) 2017 Elsevier Ltd. All rights reserved.
Author Keywords Waste to energy supply chains; Network design; Technology management; Mathematical modelling; Fuzzy multi objective decision making
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED); Social Science Citation Index (SSCI)
EID WOS:000425565700075
WoS Category Thermodynamics; Energy & Fuels
Research Area Thermodynamics; Energy & Fuels
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