Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: Review and perspective

Industrial flue gas and solid waste with the characteristics of large emissions and complicated distributions are two issues for industry, due to that sequential CO2 capture and utilization for flue gas shows high energy-cost penalties and solid waste faces with low reutilization ratio. As a powerfu...

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Main Authors: Bo Jin, Ruiyue Wang, Dongtao Fu, Tong Ouyang, Yihan Fan, Haiyan Zhang, Zhiwu Liang
Format: Article
Language:English
Published: Elsevier 2024-03-01
Series:Carbon Capture Science & Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2772656823000738
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author Bo Jin
Ruiyue Wang
Dongtao Fu
Tong Ouyang
Yihan Fan
Haiyan Zhang
Zhiwu Liang
author_facet Bo Jin
Ruiyue Wang
Dongtao Fu
Tong Ouyang
Yihan Fan
Haiyan Zhang
Zhiwu Liang
author_sort Bo Jin
collection DOAJ
description Industrial flue gas and solid waste with the characteristics of large emissions and complicated distributions are two issues for industry, due to that sequential CO2 capture and utilization for flue gas shows high energy-cost penalties and solid waste faces with low reutilization ratio. As a powerful process intensification strategy, chemical looping CO2 capture and in-situ conversion (CL-ICCC) provides an effective solution to handle those two issues. However, current researches on CL-ICCC aim to develop process configurations, design bifunctional materials, and reveal reaction mechanisms, which ignore how to apply CL-ICCC for realizing flue gas purification and solid waste reutilization simultaneously in industry. Herein, after reviewing the current status of CL-ICCC for flue gas upgrade, industrial solid waste reutilization and industrial system integration, a perspective is proposed to highlight CL-ICCC as a promising platform for green and low-carbon industry transition. In the proposed system, industrial flue gas enters the capture reactor and reacts with industrial solid waste derived bifunctional materials to separate CO2 from other impurities. In the conversion reactor, reduction agents are introduced to spill CO2 over bifunctional materials and convert it into value-added chemicals. This review and perspective provide a new pathway to establish a low-carbon and self-digestion industrial system.
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spelling doaj.art-43ee4191cdd746328bf4f5bc985a5aba2024-03-10T05:13:32ZengElsevierCarbon Capture Science & Technology2772-65682024-03-0110100169Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: Review and perspectiveBo Jin0Ruiyue Wang1Dongtao Fu2Tong Ouyang3Yihan Fan4Haiyan Zhang5Zhiwu Liang6Joint International Center for CO2 Capture and Storage (iCCS), Provincial Hunan Key Laboratory for Cost-effective Utilization of Fossil Fuel Aimed at Reducing Carbon-dioxide Emissions, Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering, Hunan University, Lushannan 1, Changsha 410082, Hunan, China; Corresponding authors.Joint International Center for CO2 Capture and Storage (iCCS), Provincial Hunan Key Laboratory for Cost-effective Utilization of Fossil Fuel Aimed at Reducing Carbon-dioxide Emissions, Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering, Hunan University, Lushannan 1, Changsha 410082, Hunan, ChinaJoint International Center for CO2 Capture and Storage (iCCS), Provincial Hunan Key Laboratory for Cost-effective Utilization of Fossil Fuel Aimed at Reducing Carbon-dioxide Emissions, Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering, Hunan University, Lushannan 1, Changsha 410082, Hunan, ChinaJoint International Center for CO2 Capture and Storage (iCCS), Provincial Hunan Key Laboratory for Cost-effective Utilization of Fossil Fuel Aimed at Reducing Carbon-dioxide Emissions, Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering, Hunan University, Lushannan 1, Changsha 410082, Hunan, ChinaJoint International Center for CO2 Capture and Storage (iCCS), Provincial Hunan Key Laboratory for Cost-effective Utilization of Fossil Fuel Aimed at Reducing Carbon-dioxide Emissions, Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering, Hunan University, Lushannan 1, Changsha 410082, Hunan, ChinaGuangxi Key Laboratory of Green Chemical Materials and Safety Technology, Guangxi Engineering Research Center for New Chemical Materials and Safety Technology, Beibu Gulf University, Qinzhou 535011, Guangxi, ChinaJoint International Center for CO2 Capture and Storage (iCCS), Provincial Hunan Key Laboratory for Cost-effective Utilization of Fossil Fuel Aimed at Reducing Carbon-dioxide Emissions, Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering, Hunan University, Lushannan 1, Changsha 410082, Hunan, China; Corresponding authors.Industrial flue gas and solid waste with the characteristics of large emissions and complicated distributions are two issues for industry, due to that sequential CO2 capture and utilization for flue gas shows high energy-cost penalties and solid waste faces with low reutilization ratio. As a powerful process intensification strategy, chemical looping CO2 capture and in-situ conversion (CL-ICCC) provides an effective solution to handle those two issues. However, current researches on CL-ICCC aim to develop process configurations, design bifunctional materials, and reveal reaction mechanisms, which ignore how to apply CL-ICCC for realizing flue gas purification and solid waste reutilization simultaneously in industry. Herein, after reviewing the current status of CL-ICCC for flue gas upgrade, industrial solid waste reutilization and industrial system integration, a perspective is proposed to highlight CL-ICCC as a promising platform for green and low-carbon industry transition. In the proposed system, industrial flue gas enters the capture reactor and reacts with industrial solid waste derived bifunctional materials to separate CO2 from other impurities. In the conversion reactor, reduction agents are introduced to spill CO2 over bifunctional materials and convert it into value-added chemicals. This review and perspective provide a new pathway to establish a low-carbon and self-digestion industrial system.http://www.sciencedirect.com/science/article/pii/S2772656823000738CO2 captureIn-situ CO2 conversionChemical loopingIndustry transitionSolid waste reutilization
spellingShingle Bo Jin
Ruiyue Wang
Dongtao Fu
Tong Ouyang
Yihan Fan
Haiyan Zhang
Zhiwu Liang
Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: Review and perspective
Carbon Capture Science & Technology
CO2 capture
In-situ CO2 conversion
Chemical looping
Industry transition
Solid waste reutilization
title Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: Review and perspective
title_full Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: Review and perspective
title_fullStr Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: Review and perspective
title_full_unstemmed Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: Review and perspective
title_short Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: Review and perspective
title_sort chemical looping co2 capture and in situ conversion as a promising platform for green and low carbon industry transition review and perspective
topic CO2 capture
In-situ CO2 conversion
Chemical looping
Industry transition
Solid waste reutilization
url http://www.sciencedirect.com/science/article/pii/S2772656823000738
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