Skip to content
F~Climate

A Sociotechnical Review of Carbon Capture, Utilization, and Storage (CCUS) Technologies for Industrial Decarbonization: Current Challenges, Emerging Solution, and Future Directions

The Combine·10d ago·4 views
Authors: Ritu Bala, Manpreet Kaur, Himani Thakur, Piyush Kashyap, Arun Karnwal, Tabarak MalikField: International Journal of Chemical EngineeringYear: 2025DOI: 10.1155/ijce/7195300 32 citations

Industrial decarbonization is crucial for mitigating climate change, with carbon capture, utilization, and storage (CCUS) technologies playing a key role in reducing emissions from hard‐to‐abate sectors such as steelmaking, cement production, and chemical manufacturing. This review adopts a sociotechnical perspective to examine the challenges, emerging solutions, and future CCUS development and implementation prospects. Recent advancements in CCUS encompass postcombustion, precombustion, oxy‐fuel combustion, and direct air capture (DAC), facilitating enhanced carbon capture efficiency. Utilization pathways diversify, converting CO2 into synthetic fuels, chemicals, and materials. Storage techniques range from geological sequestration to innovative approaches like mineralization and ocean‐based storage. However, significant barriers persist. Technically, the high energy demand and scalability limitations of CCUS systems present challenges, while economic hurdles such as high costs and insufficient market incentives hinder widespread adoption. Social factors, including public perception and environmental justice concerns, further complicate deployment. Regulatory frameworks remain underdeveloped, with gaps in governance obstructing progress. Emerging solutions are targeting these barriers, with innovations in materials science improving storage efficiency and capture performance. Artificial intelligence and machine learning are enhancing system optimization and monitoring. Hybrid approaches integrating CCUS with renewable energy and collaborative public–private models show promise. Future research should focus on integrating CCUS technologies with societal needs and policy frameworks, prioritizing economic incentives, regulatory development, and addressing gaps in storage safety and lifecycle assessments. CCUS, within a circular carbon economy, presents substantial potential for sustainable industrial practices.

View external link ↗ (opens in a new tab)
Score: 0

Related papers

Sharing this paper's topic and concept tags, via OpenAlex. These aren't in Graze — they link straight out to the source.

  • Carbon Capture and Storage: A Controversial Climate Mitigation Approach

    Jennie C. Stephens · The International Spectator · 2015

  • Can Carbon Capture and Storage Unlock ‘Unburnable Carbon’?

    Sara Budinis, Niall Mac Dowell, Samuel Krevor, Tim Dixon · Energy Procedia · 2017

  • Evaluating Carbon Capture and Storage in a Climate Model with Directed Technical Change

    Tunç Durmaz, Fred Schroyen · RePEc: Research Papers in Economics · 2013

  • Carbon Dioxide Capture and Storage (CSS) Technology as a Climate Change Mitigation Option: What are the Legal and Regulatory Frameworks for Its Deployment?

    Bayuasi Nammei Luki, Nusrat-Jahan Abubakar · Journals & Books Hosting (International Knowledge Sharing Platform) · 2015

0 Comments

The summary above is machine-written and the abstract is the authors' own pitch. This is where people who read the paper say what it actually found, what the summary missed, and which part is worth your time.

Log in to join the discussion.