Cargando…

Integrated AHP-TOPSIS under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana: A Performance Analysis and Socio-Enviro-Economic Feasibility Study

Energy recovery from waste presents a promising alternative for several countries, including Ghana, which has struggled with unsustainable waste treatment methods and an inadequate power supply for several decades. The current study adopts a comprehensive multi-criteria decision-making approach for...

Descripción completa

Detalles Bibliográficos
Autores principales: Afrane, Sandylove, Ampah, Jeffrey Dankwa, Agyekum, Ephraim Bonah, Amoh, Prince Oppong, Yusuf, Abdulfatah Abdu, Fattah, Islam Md Rizwanul, Agbozo, Ebenezer, Elgamli, Elmazeg, Shouran, Mokhtar, Mao, Guozhu, Kamel, Salah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317798/
https://www.ncbi.nlm.nih.gov/pubmed/35886280
http://dx.doi.org/10.3390/ijerph19148428
_version_ 1784755144342110208
author Afrane, Sandylove
Ampah, Jeffrey Dankwa
Agyekum, Ephraim Bonah
Amoh, Prince Oppong
Yusuf, Abdulfatah Abdu
Fattah, Islam Md Rizwanul
Agbozo, Ebenezer
Elgamli, Elmazeg
Shouran, Mokhtar
Mao, Guozhu
Kamel, Salah
author_facet Afrane, Sandylove
Ampah, Jeffrey Dankwa
Agyekum, Ephraim Bonah
Amoh, Prince Oppong
Yusuf, Abdulfatah Abdu
Fattah, Islam Md Rizwanul
Agbozo, Ebenezer
Elgamli, Elmazeg
Shouran, Mokhtar
Mao, Guozhu
Kamel, Salah
author_sort Afrane, Sandylove
collection PubMed
description Energy recovery from waste presents a promising alternative for several countries, including Ghana, which has struggled with unsustainable waste treatment methods and an inadequate power supply for several decades. The current study adopts a comprehensive multi-criteria decision-making approach for the selection of an optimal waste-to-energy (WtE) technology for implementation in Ghana. Four WtE technologies are evaluated against twelve selection criteria. An integrated AHP-fuzzy TOPSIS method is applied to estimate the criteria’s weights and rank the WtE alternatives. From the AHP results, technical criteria obtained the highest priority weight, while social criteria emerged as the least important in the selection process. The overall ranking order of WtE technologies obtained by fuzzy TOPSIS is as follows: anaerobic digestion > gasification > pyrolysis > plasma gasification. The sensitivity analysis indicates highly consistent and sturdy results regarding the optimal selection. This study recommends adopting a hybrid system of anaerobic digestion and gasification technologies, as this offers a well-balanced system under all of the evaluation criteria compared to the standalone systems. The results of the current study may help the government of Ghana and other prospective investors select a suitable WtE technology, and could serve as an index system for future WtE research in Ghana.
format Online
Article
Text
id pubmed-9317798
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93177982022-07-27 Integrated AHP-TOPSIS under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana: A Performance Analysis and Socio-Enviro-Economic Feasibility Study Afrane, Sandylove Ampah, Jeffrey Dankwa Agyekum, Ephraim Bonah Amoh, Prince Oppong Yusuf, Abdulfatah Abdu Fattah, Islam Md Rizwanul Agbozo, Ebenezer Elgamli, Elmazeg Shouran, Mokhtar Mao, Guozhu Kamel, Salah Int J Environ Res Public Health Article Energy recovery from waste presents a promising alternative for several countries, including Ghana, which has struggled with unsustainable waste treatment methods and an inadequate power supply for several decades. The current study adopts a comprehensive multi-criteria decision-making approach for the selection of an optimal waste-to-energy (WtE) technology for implementation in Ghana. Four WtE technologies are evaluated against twelve selection criteria. An integrated AHP-fuzzy TOPSIS method is applied to estimate the criteria’s weights and rank the WtE alternatives. From the AHP results, technical criteria obtained the highest priority weight, while social criteria emerged as the least important in the selection process. The overall ranking order of WtE technologies obtained by fuzzy TOPSIS is as follows: anaerobic digestion > gasification > pyrolysis > plasma gasification. The sensitivity analysis indicates highly consistent and sturdy results regarding the optimal selection. This study recommends adopting a hybrid system of anaerobic digestion and gasification technologies, as this offers a well-balanced system under all of the evaluation criteria compared to the standalone systems. The results of the current study may help the government of Ghana and other prospective investors select a suitable WtE technology, and could serve as an index system for future WtE research in Ghana. MDPI 2022-07-10 /pmc/articles/PMC9317798/ /pubmed/35886280 http://dx.doi.org/10.3390/ijerph19148428 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Afrane, Sandylove
Ampah, Jeffrey Dankwa
Agyekum, Ephraim Bonah
Amoh, Prince Oppong
Yusuf, Abdulfatah Abdu
Fattah, Islam Md Rizwanul
Agbozo, Ebenezer
Elgamli, Elmazeg
Shouran, Mokhtar
Mao, Guozhu
Kamel, Salah
Integrated AHP-TOPSIS under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana: A Performance Analysis and Socio-Enviro-Economic Feasibility Study
title Integrated AHP-TOPSIS under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana: A Performance Analysis and Socio-Enviro-Economic Feasibility Study
title_full Integrated AHP-TOPSIS under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana: A Performance Analysis and Socio-Enviro-Economic Feasibility Study
title_fullStr Integrated AHP-TOPSIS under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana: A Performance Analysis and Socio-Enviro-Economic Feasibility Study
title_full_unstemmed Integrated AHP-TOPSIS under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana: A Performance Analysis and Socio-Enviro-Economic Feasibility Study
title_short Integrated AHP-TOPSIS under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana: A Performance Analysis and Socio-Enviro-Economic Feasibility Study
title_sort integrated ahp-topsis under a fuzzy environment for the selection of waste-to-energy technologies in ghana: a performance analysis and socio-enviro-economic feasibility study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317798/
https://www.ncbi.nlm.nih.gov/pubmed/35886280
http://dx.doi.org/10.3390/ijerph19148428
work_keys_str_mv AT afranesandylove integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT ampahjeffreydankwa integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT agyekumephraimbonah integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT amohprinceoppong integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT yusufabdulfatahabdu integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT fattahislammdrizwanul integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT agbozoebenezer integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT elgamlielmazeg integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT shouranmokhtar integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT maoguozhu integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy
AT kamelsalah integratedahptopsisunderafuzzyenvironmentfortheselectionofwastetoenergytechnologiesinghanaaperformanceanalysisandsocioenviroeconomicfeasibilitystudy