Towards the synthesis of wastewater recovery facilities using enviroeconomic optimization
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Accepted version
Author(s)
Type
Chapter
Abstract
The wastewater treatment industry is undergoing a major shift towards a proactive interest in recovering materials and energy from wastewater streams, driven by both economic incentives and environmental sustainability. With the array of available treatment technologies and recovery options growing steadily, systematic approaches to determining the inherent trade-off between multiple economic and environmental objectives become necessary, namely enviroeconomic optimization.
The main objective of this chapter is to present one such methodology based on superstructure modeling and multi-objective optimization, where the main environmental impacts are quantified using life cycle assessment (LCA). This methodology is illustrated with the case study of a municipal wastewater treatment facility. The results show that accounting for LCA considerations early on in the synthesis problem may lead to dramatic changes in the optimal process configuration, thereby
supporting LCA integration into decision-making tools for wastewater treatment alongside economical selection criteria.
The main objective of this chapter is to present one such methodology based on superstructure modeling and multi-objective optimization, where the main environmental impacts are quantified using life cycle assessment (LCA). This methodology is illustrated with the case study of a municipal wastewater treatment facility. The results show that accounting for LCA considerations early on in the synthesis problem may lead to dramatic changes in the optimal process configuration, thereby
supporting LCA integration into decision-making tools for wastewater treatment alongside economical selection criteria.
Editor(s)
Mujtaba, IM
Srinivasan, R
Elbashir, NO
Date Issued
2017-09-07
Citation
The Water-Food-Energy Nexus - Processes, Technologies, and Challenges, 2017
ISBN
9781498760843
Journal / Book Title
The Water-Food-Energy Nexus - Processes, Technologies, and Challenges
Copyright Statement
© 2018 by Taylor & Francis Group. This is an Accepted Manuscript of a book chapter published by Routledge/CRC Press in The Water-Food-Energy Nexus: Processes, Technologies, and Challenges in 2018.
Sponsor
Engineering & Physical Science Research Council (EPSRC)
Commission of the European Communities
Sydney Water Corporation
Grant Number
EP/J006572/1
PCIG9-GA-2011-293953
CEPSE_P44875
Publication Status
Published
Article Number
3.2