Corrosion in CO2 Capture, Transportation, Geological Utilization and Storage - Causes and Mitigation Strategies
This book systematically discusses the operational stages with high risk of CO2-induced corrosion in CCUS projects, and related measures for corrosion control. CO2 capture, utilization, and storage (CCUS) is a key technology to mitigate climate change and substantially reduce greenhouse gas emission...
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Main Author | |
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Format | eBook |
Language | English |
Published |
Singapore
Springer Nature
2023
Springer Springer Nature Singapore |
Edition | 1 |
Series | Engineering Materials |
Subjects | |
Online Access | Get full text |
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Abstract | This book systematically discusses the operational stages with high risk of CO2-induced corrosion in CCUS projects, and related measures for corrosion control. CO2 capture, utilization, and storage (CCUS) is a key technology to mitigate climate change and substantially reduce greenhouse gas emissions from fossil fuels. CCUS deals with high concentration CO2, which is very corrosive in a humid environment. Therefore, it is very important to characterize, monitor, and mitigate CO2-induced corrosion in all processes of the CCUS operation chain. Some corrosion control techniques included in this book (e.g., CO2-resisting wellbore cement additives) are beneficial for corrosion control research and engineering practices. This book belongs to the field of corrosion science and engineering, and the expected readership is researchers and engineers working on CCUS. |
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AbstractList | This book systematically discusses the operational stages with high risk of CO2-induced corrosion in CCUS projects, and related measures for corrosion control. CO2 capture, utilization, and storage (CCUS) is a key technology to mitigate climate change and substantially reduce greenhouse gas emissions from fossil fuels. CCUS deals with high concentration CO2, which is very corrosive in a humid environment. Therefore, it is very important to characterize, monitor, and mitigate CO2-induced corrosion in all processes of the CCUS operation chain. Some corrosion control techniques included in this book (e.g., CO2-resisting wellbore cement additives) are beneficial for corrosion control research and engineering practices. This book belongs to the field of corrosion science and engineering, and the expected readership is researchers and engineers working on CCUS. This book systematically discusses the operational stages with high risk of CO2-induced corrosion in CCUS projects, and related measures for corrosion control. CO2 capture, utilization, and storage (CCUS) is a key technology to mitigate climate change and substantially reduce greenhouse gas emissions from fossil fuels. CCUS deals with high concentration CO2, which is very corrosive in a humid environment. Therefore, it is very important to characterize, monitor, and mitigate CO2-induced corrosion in all processes of the CCUS operation chain. Some corrosion control techniques included in this book (e.g., CO2-resisting wellbore cement additives) are beneficial for corrosion control research and engineering practices. This book belongs to the field of corrosion science and engineering, and the expected readership is researchers and engineers working on CCUS. |
Author | Zhang Liwei |
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Copyright | 2023 The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023 |
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DOI | 10.1007/978-981-99-2392-2 |
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SubjectTerms | Alternative & Renewable Energy Sources & Technologies Carbon dioxide Carbon dioxide mitigation Chemistry Chemistry and Materials Science Chemistry/Food Science, general Corrosion Corrosion and anti-corrosives Energy Materials Fossil Fuels (incl. Carbon Capture) General References Inorganic Chemistry Metals & Metallurgy Oil & Gas Engineering Surfaces and Interfaces, Thin Films Sustainable Energy & Development Tribology, Corrosion and Coatings |
TableOfContents | Title Page
Preface
Table of Contents
1. Background
2. Corrosion Theory and Corrosion Characterization Techniques
3. Corrosion in CO2 Capture and Transportation
4. Corrosion in CO2 Geological Utilization and Storage
5. Corrosion Control (I): Corrosion-Resistant Steel and Cement
6. Corrosion Control (II): Anti-Corrosion Coating
7. Corrosion Control (III): Corrosion Inhibitors |
Title | Corrosion in CO2 Capture, Transportation, Geological Utilization and Storage - Causes and Mitigation Strategies |
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