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Geophysical Monitoring of Subsurface CO2 Storage

 

Table Of Contents


Chapter 1

: Introduction
1.1 Importance of CO2 Storage Monitoring
1.2 Objectives of the Study
1.3 Overview of CCS Technology
1.4 Significance of Geophysical Monitoring
1.5 Scope and Limitations
1.6 Relevance to Climate Change Mitigation
1.7 Implications for Sustainable Energy Strategies

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Chapter 2

: Literature Review
2.1 Principles of CO2 Geophysical Monitoring
2.2 Geophysical Techniques for CO2 Detection
2.3 Monitoring Parameters and Indicators
2.4 Case Studies of Subsurface CO2 Monitoring Projects
2.5 Advances in Geophysical Monitoring Technology
2.6 Challenges and Limitations in CO2 Monitoring
2.7 Regulatory Framework for CO2 Storage Monitoring

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Chapter 3

: Methodology
3.1 Selection of Geophysical Monitoring Techniques
3.2 Installation and Calibration of Monitoring Equipment
3.3 Data Acquisition and Processing Protocols
3.4 Integration with Other Monitoring Methods (e.g., Geochemical)
3.5 Assessment of Monitoring Site Characteristics
3.6 Risk Assessment and Contingency Planning
3.7 Community Engagement and Stakeholder Consultation

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Chapter 4

: Results and Analysis
4.1 Continuous Monitoring of CO2 Injection and Migration
4.2 Detection of Potential Leakage Pathways
4.3 Assessment of CO2 Plume Behavior and Distribution
4.4 Evaluation of Reservoir Integrity and Caprock Sealing
4.5 Comparison with Predictive Models
4.6 Identification of Monitoring Uncertainties
4.7 Implications for CCS Operation and Risk Management

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Chapter 5

: Discussion
5.1 Synthesis of Monitoring Results
5.2 Implications for CCS Policy and Regulation
5.3 Challenges in Long-Term Monitoring
5.4 Integration of Monitoring Data into Decision-Making
5.5 Public Perception and Trust in CCS Technology
5.6 Future Research Directions
5.7 Conclusion and Recommendations


Thesis Abstract

Abstract

This research focuses on the geophysical monitoring of subsurface CO2 storage sites. The study aims to assess the effectiveness and safety of carbon capture and storage (CCS) operations by employing various geophysical techniques for monitoring CO2 injection, migration, and trapping within subsurface reservoirs.


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