System Modelling and Safety Risk Assessment for Region-Wide CCUS Systems

Carbon capture, utilization, and sequestration (CCUS) is an important option for meeting national carbon neutrality targets. However, the application of CCUS on an industrial scale and the extension of supply chain networks inevitably increase the exchange of information and material flows, creating...

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Main Authors: Fang Wang, Jinkang Cao, Zhiwei Li, Kathleen B. Aviso, Raymond R. Tan, Xiaoping Jia
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2022-09-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/12584
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author Fang Wang
Jinkang Cao
Zhiwei Li
Kathleen B. Aviso
Raymond R. Tan
Xiaoping Jia
author_facet Fang Wang
Jinkang Cao
Zhiwei Li
Kathleen B. Aviso
Raymond R. Tan
Xiaoping Jia
author_sort Fang Wang
collection DOAJ
description Carbon capture, utilization, and sequestration (CCUS) is an important option for meeting national carbon neutrality targets. However, the application of CCUS on an industrial scale and the extension of supply chain networks inevitably increase the exchange of information and material flows, creating a "media shifting" from environmental to safety risk issues. This work proposed system modeling and safety risk assessment for integrated regional CCUS systems. Considering CCUS modules, Aspen Plus simulation-based regional CCUS system is constructed. An integrated inherent safety index system is proposed to evaluate the risk characteristics. A CCUS system in Shandong Province is illustrated as a case study to analyze its safety risk. The results show that in terms of the overall inherent safety index, the emission source module has the highest risk, which is 2.67 times higher than that of the biological/geological utilization module.
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spelling doaj.art-7bb847640c60424ab5175160658d99582022-12-22T04:25:10ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162022-09-019410.3303/CET2294027System Modelling and Safety Risk Assessment for Region-Wide CCUS SystemsFang WangJinkang CaoZhiwei LiKathleen B. AvisoRaymond R. TanXiaoping JiaCarbon capture, utilization, and sequestration (CCUS) is an important option for meeting national carbon neutrality targets. However, the application of CCUS on an industrial scale and the extension of supply chain networks inevitably increase the exchange of information and material flows, creating a "media shifting" from environmental to safety risk issues. This work proposed system modeling and safety risk assessment for integrated regional CCUS systems. Considering CCUS modules, Aspen Plus simulation-based regional CCUS system is constructed. An integrated inherent safety index system is proposed to evaluate the risk characteristics. A CCUS system in Shandong Province is illustrated as a case study to analyze its safety risk. The results show that in terms of the overall inherent safety index, the emission source module has the highest risk, which is 2.67 times higher than that of the biological/geological utilization module.https://www.cetjournal.it/index.php/cet/article/view/12584
spellingShingle Fang Wang
Jinkang Cao
Zhiwei Li
Kathleen B. Aviso
Raymond R. Tan
Xiaoping Jia
System Modelling and Safety Risk Assessment for Region-Wide CCUS Systems
Chemical Engineering Transactions
title System Modelling and Safety Risk Assessment for Region-Wide CCUS Systems
title_full System Modelling and Safety Risk Assessment for Region-Wide CCUS Systems
title_fullStr System Modelling and Safety Risk Assessment for Region-Wide CCUS Systems
title_full_unstemmed System Modelling and Safety Risk Assessment for Region-Wide CCUS Systems
title_short System Modelling and Safety Risk Assessment for Region-Wide CCUS Systems
title_sort system modelling and safety risk assessment for region wide ccus systems
url https://www.cetjournal.it/index.php/cet/article/view/12584
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