An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method

Impurities are commonly found in natural gas which is produced from reservoirs deposit. The predominant impurities come in CO2 forms. Hence, the selection of proper CO2 removal technologies is a significant step in process engineering as it strongly affects the size of CAPEX and OPEX. However, the s...

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Main Authors: Nugroho, Agung Azan, Azis, Muhammad Mufti, Ariyanto, Teguh
Format: Article
Language:English
Published: Tamkang University 2023
Subjects:
Online Access:https://repository.ugm.ac.id/285880/1/An%20Approach%20For%20Selecting%20CO2%20Removal%20Technology.pdf
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author Nugroho, Agung Azan
Azis, Muhammad Mufti
Ariyanto, Teguh
author_facet Nugroho, Agung Azan
Azis, Muhammad Mufti
Ariyanto, Teguh
author_sort Nugroho, Agung Azan
collection UGM
description Impurities are commonly found in natural gas which is produced from reservoirs deposit. The predominant impurities come in CO2 forms. Hence, the selection of proper CO2 removal technologies is a significant step in process engineering as it strongly affects the size of CAPEX and OPEX. However, the selection of the CO2 removal process is not always trivial and further it must be conducted in the beginning of the project feasibility study. Currently, there are several CO2 removal technologies including absorption, adsorption and membranes. Considering their advantages and limitations, there is a need to analyse the relationship between the CO2 removal cost with the required product gas, impurities, flow capacity, geographical factor and CO2 tax in Indonesia. Thus, these criteria are evaluated through the multi-criteria decision-making (MCDM) technique for selecting the most suitable technology for removing CO2. In this study, Analytic Hierarchy Process (AHP) is chosen and applied to evaluate the significance of each criterion. The results showed that absorption using the amine system is frequently used in Indonesia's upstream natural gas industry. Furthermore, the use of the adsorption method (pressure swing adsorption) for a low-quantity gas feed also showed good results. The use of AHP method for selecting CO2 removal technology in Indonesia's upstream natural gas industry can be used by investors and policymakers as a useful pre-investment tool analysis in developing new fields. The current proposed method aims to screen the best CO2 removal technology by taking into accounts technical performance, revenue and cost, as well as reducing emissions.
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spelling oai:generic.eprints.org:2858802024-03-04T07:47:51Z https://repository.ugm.ac.id/285880/ An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method Nugroho, Agung Azan Azis, Muhammad Mufti Ariyanto, Teguh Chemical Engineering not elsewhere classified Impurities are commonly found in natural gas which is produced from reservoirs deposit. The predominant impurities come in CO2 forms. Hence, the selection of proper CO2 removal technologies is a significant step in process engineering as it strongly affects the size of CAPEX and OPEX. However, the selection of the CO2 removal process is not always trivial and further it must be conducted in the beginning of the project feasibility study. Currently, there are several CO2 removal technologies including absorption, adsorption and membranes. Considering their advantages and limitations, there is a need to analyse the relationship between the CO2 removal cost with the required product gas, impurities, flow capacity, geographical factor and CO2 tax in Indonesia. Thus, these criteria are evaluated through the multi-criteria decision-making (MCDM) technique for selecting the most suitable technology for removing CO2. In this study, Analytic Hierarchy Process (AHP) is chosen and applied to evaluate the significance of each criterion. The results showed that absorption using the amine system is frequently used in Indonesia's upstream natural gas industry. Furthermore, the use of the adsorption method (pressure swing adsorption) for a low-quantity gas feed also showed good results. The use of AHP method for selecting CO2 removal technology in Indonesia's upstream natural gas industry can be used by investors and policymakers as a useful pre-investment tool analysis in developing new fields. The current proposed method aims to screen the best CO2 removal technology by taking into accounts technical performance, revenue and cost, as well as reducing emissions. Tamkang University 2023 Article PeerReviewed application/pdf en https://repository.ugm.ac.id/285880/1/An%20Approach%20For%20Selecting%20CO2%20Removal%20Technology.pdf Nugroho, Agung Azan and Azis, Muhammad Mufti and Ariyanto, Teguh (2023) An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method. Journal of Applied Science and Engineering (Taiwan), 27 (5). pp. 2489-2500. ISSN 15606686 http://jase.tku.edu.tw/articles/jase-202405-27-5-0013 10.6180/jase.202405_27(05).0013
spellingShingle Chemical Engineering not elsewhere classified
Nugroho, Agung Azan
Azis, Muhammad Mufti
Ariyanto, Teguh
An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method
title An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method
title_full An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method
title_fullStr An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method
title_full_unstemmed An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method
title_short An Approach For Selecting CO2 Removal Technology In Indonesia's Upstream Natural Gas Industry Using AHP Method
title_sort approach for selecting co2 removal technology in indonesia s upstream natural gas industry using ahp method
topic Chemical Engineering not elsewhere classified
url https://repository.ugm.ac.id/285880/1/An%20Approach%20For%20Selecting%20CO2%20Removal%20Technology.pdf
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