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Carbon Capture and Storage Market 2025: Post-Combustion Leading with 45%, Power & Industrial CCS Growth Across North America, Europe & Asia Pacific

11-21-2025 01:08 PM CET | Energy & Environment

Press release from: DataM intelligence 4 Market Research LLP

Carbon Capture & Storage Market

Carbon Capture & Storage Market

Leander, Texas, United States - Nov.20.2025
As per DataM intelligence research report" The Global Carbon Capture & Storage Market is expected to grow at a CAGR of 15.95% during the forecasting period (2024-2031).". Growing net-zero commitments and industrial emission regulations are accelerating investments in carbon capture and storage technologies.

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United States: Recent Industry Developments

✅ In November 2025, Occidental Petroleum (Oxy) advanced its Direct Air Capture and CCS network with new storage wells added at the King Ranch facility. The project supports large-scale CO2 removal for industrial clients. This reinforces Oxy's leadership in U.S. commercial carbon capture infrastructure.

✅ In October 2025, Chevron invested US$300 million to expand CCS capacity at its San Joaquin Valley operations, integrating CO2 injection with enhanced monitoring technologies. The initiative targets deep reductions in operational emissions. This strengthens Chevron's long-term commitment to carbon management.

✅ In September 2025, ExxonMobil launched new CCS partnerships across the Gulf Coast, adding capture units for petrochemical and LNG plants in the region. The program scales CO2 capture to multi-million-ton levels. This expansion positions ExxonMobil as a major CCS hub operator.

✅ In August 2025, Honeywell UOP introduced next-generation solvent-based carbon capture modules designed for industrial emitters, improving efficiency and lowering energy costs. The solution enables faster deployment for refineries and power plants. This development highlights Honeywell's innovation in CCS technologies.

Japan: Recent Industry Developments

✅ In November 2025, Mitsubishi Heavy Industries (MHI) launched a new CCS demonstration project using its KA-series CO2 capture technology at a biomass power plant. The system enhances decarbonization of Japan's renewable generation. This strengthens MHI's leadership in global carbon capture innovation.

✅ In October 2025, JERA invested 12 billion to expand CCS integration across its thermal power portfolio, focusing on large-scale capture and offshore CO2 storage. The investment aligns with Japan's 2050 net-zero roadmap. This reinforces JERA's commitment to low-carbon power operations.

✅ In September 2025, Tokyo Gas initiated a CCS pilot for industrial emitters by combining CO2 separation membranes with liquefaction technology for transport efficiency. The project targets new decarbonization pathways for Japan's industrial sector. This development highlights Tokyo Gas's role in next-generation CCS solutions.

✅ In August 2025, Idemitsu Kosan expanded its CO2 capture and offshore storage research program in collaboration with national energy institutes, focusing on geological suitability studies. The initiative supports long-term CCS deployment across Japan. This solidifies Idemitsu's presence in the country's carbon management ecosystem.

Carbon Capture and Storage Market: Drivers

The carbon capture and storage (CCS) market is experiencing strong momentum as governments and industries intensify efforts to reduce greenhouse gas emissions and transition toward low-carbon energy systems. CCS technologies capture CO2 from industrial facilities, power plants, and hydrogen production units, preventing its release into the atmosphere and enabling long-term geological storage. Growing global commitments to net-zero targets, alongside stricter environmental regulations, are driving large-scale deployment across sectors such as cement, steel, petrochemicals, and energy. Advancements in capture technologies, including solvent-based, membrane, and solid sorbent systems, are improving efficiency and lowering operational costs. Additionally, rising investments in carbon-neutral industrial clusters and transport infrastructure are strengthening the adoption of CCS solutions.

Collaboration between energy companies, technology developers, and research institutions is accelerating innovation and scaling of CCS projects worldwide. The integration of CCS with blue hydrogen production, bioenergy systems (BECCS), and direct air capture is expanding its role in deep decarbonization pathways. Financial incentives, government funding programs, and carbon pricing mechanisms are supporting project viability and encouraging private-sector participation. Growing corporate sustainability initiatives and ESG commitments are further boosting demand for CCS as a critical decarbonization tool. With increasing climate action, technological advancements, and expanding industrial applications, the carbon capture and storage market is poised for significant global growth.

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Carbon Capture and Storage Market: Major Players

44.01
44.01 is an Oman-based startup that accelerates natural CO2 mineralization by injecting carbon into peridotite rock, locking it away permanently as stone. The process requires no long-term monitoring and eliminates leakage risks, making it one of the safest permanent storage solutions. The company has attracted strong early investment and is rapidly scaling projects across Oman and new global sites.

Graphyte
Graphyte is an emerging carbon-removal company that turns biomass residues into dense carbon blocks for long-term underground storage. Its "carbon casting" approach is low-energy and cost-efficient, offering a scalable pathway to durable carbon removal. With early commercial facilities and high-profile corporate buyers, it is becoming a notable new entrant in the CCS landscape.

Captura
Captura is developing Direct Ocean Capture technology that pulls CO2 out of seawater using an electrochemical process, allowing the ocean to naturally reabsorb more atmospheric carbon. This approach uses abundant ocean resources while producing pipeline-ready CO2 for storage or utilization. Their pilot-scale deployments demonstrate strong scalability potential for ocean-based CCS.

Avnos
Avnos is pioneering Hybrid Direct Air Capture, a system that captures CO2 from the atmosphere while simultaneously producing clean water as a byproduct. Its moisture-swing sorbent material avoids the need for external heat, reducing energy consumption and improving cost viability. With new funding and pilot projects underway, Avnos is becoming a promising technology disruptor in next-gen CCS.

Deep Sky
Deep Sky is a Canadian startup aiming to build large-scale carbon removal campuses that integrate both direct air capture and direct ocean capture technologies. By creating modular, multi-technology sites, the company targets high-volume CO2 removal with improved efficiency and cost control. Its strategy positions it as a fast-moving player in building industrial-scale carbon sequestration infrastructure.

Segment Covered in the Carbon Capture and Storage Market:

By Capture Technology
Post-combustion capture leads with 40-45% share due to easy adaptability for retrofitting existing power and industrial plants. Pre-combustion capture holds 32-35%, driven by integrated gasification projects. Oxyfuel combustion accounts for 10-12%, supported by high-purity CO2 output. Industrial separation captures 8-10%, expanding fast in cement, steel, and chemical processing.

By Storage Technology
Enhanced Oil Recovery dominates with 45-48% as it provides dual benefits of sequestration and improved recovery. Geological storage follows with 40-42%, driven by saline aquifers and depleted reservoirs. Deep ocean storage remains niche at 10-12%, restricted by regulatory and environmental concerns but continues in feasibility evaluation stages.

By End-Use Industry
Power generation leads with 38-40% share, driven by decarbonization of coal and gas fleets. Oil & gas follows with 28-30%, using CCS for blue hydrogen and upstream emissions reduction. Chemicals, fertilizers, cement, and steel collectively hold 25-28%, due to hard-to-abate industrial emissions. Textiles and other sectors account for 5-7%, adopting CCS at pilot scale.

Regional Analysis

North America - 32-35% Share
North America leads the market with strong federal incentives, tax credits, and major CCS hubs across the U.S. and Canada. Power plants, refineries, and hydrogen facilities drive large-scale deployment. Geological storage capacity and cross-industry collaborations strengthen regional leadership. Growing investments in carbon pipelines further accelerate adoption.

Europe - 25-28% Share
Europe maintains strong momentum due to strict emission guidelines and large multi-country CO2 transport networks. Norway, the U.K., and the Netherlands lead with offshore geological storage projects. Industrial clusters for cement, steel, and chemicals adopt CCS rapidly. Government-backed funding and green transition mandates support expansion.

Asia Pacific - 22-24% Share
Asia Pacific grows rapidly with rising industrial emissions from China, India, Japan, and South Korea. Power generation, cement, and steel industries drive strong CCS project pipelines. Governments push carbon-neutrality roadmaps, enabling new pilot and commercial-scale facilities. CO2 utilization initiatives support regional progress.

Middle East - 10-12% Share
The Middle East invests heavily in CCS to decarbonize hydrocarbons and scale blue hydrogen. The UAE and Saudi Arabia lead with large industrial and reservoir-based storage projects. High-purity CO2 from gas processing enhances cost efficiency. National strategies support long-term CCS deployment.

Latin America - 4-5% Share
Latin America sees early adoption, led by Brazil's offshore capacity and interest in geological storage. Industrial emitters explore CCS to meet export-oriented sustainability requirements. Government-backed research and pilot projects expand awareness. The region remains in the development phase with strong future potential.

Africa - 2-3% Share
Africa is emerging slowly, primarily focused on feasibility studies and industrial pilots in South Africa and North Africa. Geological storage potential exists but remains largely unexplored. Policy frameworks are gradually developing to support CCS integration. Early partnerships with global players drive capability building.

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