Top 10 Companies in the Carbon Capture Chemical Equipments Market (2026): Market Leaders Driving Global Decarbonisation

In Business Insights
September 27, 2026


MARKET INTELLIGENCE OVERVIEW

Carbon Capture Chemical Equipments Market Insights

Global carbon capture chemical equipment market is driven by stringent emissions regulations, rising investment in net‑zero projects, and rapid adoption of solvent‑based and membrane technologies for CO₂ separation. While large‑scale CCS projects expand in North America and Europe, emerging industrial hubs in Asia‑Pacific accelerate demand for modular sorbent units and advanced regeneration systems.

Carbon Capture Chemical Equipments Market – View in Detailed Research Report

📊
Current Market Size
5,300

USD Mn

2025 Value

📈
CAGR
10.0%

2026–2034

🎯
Forecast Market Size
13,200

USD Mn

By 2034

The market is currently valued at USD 5,300 million in 2025, and the forecast indicates a shift to USD 13,200 million by 2034, underscoring the expanding role of carbon capture chemical equipment in meeting regulatory and sustainability objectives.

Carbon capture chemical equipment comprises solvent absorption columns, sorbent beds, membrane modules, cryogenic separators, and associated process units that facilitate the removal of CO₂ from power plant flue gases and industrial streams, enabling the transition to climate‑neutral operations.

Top 10 Companies in the Carbon Capture Chemical Equipments Market

1. Aker Solutions

Headquarters: Oslo, Norway

Key Offering: Integrated solvent‑based absorption systems, high‑pressure vessels, and control modules.

Aker Solutions leverages its extensive engineering heritage to deliver turnkey carbon capture solutions that can be embedded in existing power and industrial plants. The company emphasizes modularity, allowing clients to scale capacity in line with evolving demand.

Sustainability & Growth Initiatives:

  • Investment in low‑energy solvent regeneration technologies.
  • Partnerships with utilities to pilot hybrid capture‑utilization concepts.
  • Commitment to achieving a 50 % reduction in CO₂ intensity of its own operations by 2035.

2. Siemens Energy

Headquarters: Munich, Germany

Key Offering: Advanced membrane modules, integrated heat exchangers, and digital control platforms.

Siemens Energy’s portfolio focuses on high‑efficiency capture units that combine membrane separation with heat integration, reducing overall energy consumption. The company’s global service network supports rapid deployment across continents.

Sustainability & Growth Initiatives:

  • Development of AI‑driven process optimization tools.
  • Collaboration with research institutions to refine membrane materials.
  • Target to supply 10 GW of capture capacity by 2030.

3. Linde

Headquarters: Munich, Germany

Key Offering: Proprietary amine solvents and regeneration systems.

Linde’s solvent technology is known for high capture efficiency and lower operating costs. The company offers end‑to‑end solutions, from solvent synthesis to maintenance services.

Sustainability & Growth Initiatives:

  • Research into bio‑derived amine formulations.
  • Deployment of modular units in emerging markets.
  • Partnerships with hydrogen producers to integrate CO₂ utilization.

4. Air Liquide

Headquarters: Paris, France

Key Offering: Advanced sorbent materials and membrane solutions.

Air Liquide’s focus on material science enables the development of sorbents with high CO₂ uptake and rapid regeneration cycles, ideal for modular installations.

Sustainability & Growth Initiatives:

  • Investment in next‑generation sorbents with lower energy demand.
  • Collaboration with cement and steel producers to retrofit capture units.
  • Goal to reduce the carbon intensity of its supply chain by 30 % by 2035.

5. Honeywell UOP

Headquarters: Charlotte, USA

Key Offering: Plug‑and‑play solvent systems and membrane modules.

Honeywell UOP offers compact, modular equipment that can be quickly integrated into existing facilities, reducing installation time and capital outlay.

Sustainability & Growth Initiatives:

  • Development of solvent formulations with lower solvent loss.
  • Partnerships with petrochemical plants to co‑develop utilization pathways.
  • Target to deliver 2 GW of capture capacity by 2034.

6. Carbon Clean Solutions

Headquarters: London, United Kingdom

Key Offering: Modular, containerized capture units and advanced sorbents.

The company’s modular approach allows rapid deployment in mid‑size facilities, making it attractive for retrofits and new plants alike.

Sustainability & Growth Initiatives:

  • Deployment of solvent‑free sorbent systems in the UK’s power sector.
  • Collaboration with renewable energy developers to integrate capture with storage.
  • Goal to commercialise 5 GW of capture capacity by 2035.

7. Mitsubishi Heavy Industries

Headquarters: Tokyo, Japan

Key Offering: Hybrid capture‑utilisation platforms and advanced membrane technologies.

MIHI focuses on integrating capture units with downstream processes such as chemical synthesis, providing a seamless value chain.

Sustainability & Growth Initiatives:

  • Development of CO₂‑to‑chemicals pathways.
  • Partnerships with Japanese steel and cement plants for integrated solutions.
  • Target to supply 1 GW of integrated capture capacity by 2034.

8. Thyssenkrupp

Headquarters: Essen, Germany

Key Offering: Advanced sorbent beds and membrane modules for steel production.

Thyssenkrupp’s expertise in steel manufacturing informs its design of capture systems that align with the sector’s specific gas streams and operational constraints.

Sustainability & Growth Initiatives:

  • Investing in high‑purity CO₂ capture for steel plants.
  • Collaboration with European utilities to deploy modular units.
  • Goal to achieve 1 GW of capture capacity in the EU by 2030.

9. Air Products

Headquarters: Allentown, USA

Key Offering: Modular sorbent reactors and membrane modules.

Air Products emphasizes flexibility, enabling customers to scale capture units as production demands shift.

Sustainability & Growth Initiatives:

  • Development of low‑energy sorbent regeneration processes.
  • Partnerships with chemical manufacturers to integrate capture and utilisation.
  • Target to deliver 1.5 GW of capture capacity by 2034.

10. GE Renewable Energy

Headquarters: Schenectady, USA

Key Offering: Integration of capture units with renewable power plants.

GE Renewable Energy’s approach focuses on coupling capture with renewable energy generation, reducing the carbon footprint of both the capture process and the power supply.

Sustainability & Growth Initiatives:

  • Investing in hybrid capture‑renewable platforms.
  • Collaboration with wind and solar developers to embed capture units.
  • Goal to support 2 GW of capture capacity in renewable projects by 2035.



Download FREE Sample Report


Get Full Report

Strategic Market Outlook
Long‑Term Industry Perspective
Carbon capture chemical equipment spans solvents, sorbents, membranes, and associated process units that enable CO₂ removal from power plant flue gases and industrial streams, supporting climate‑neutral targets worldwide.

🌐
Leading Region
North America

🌍
Emerging Region
Asia‑Pacific

Future Trends Shaping the Market

1. Integrated Capture‑Utilisation Systems – Companies are moving beyond standalone capture units to integrated solutions that capture CO₂ and channel it into chemical, fuel, or material production, creating additional revenue streams.

2. Direct Air Capture (DAC) – Although still in early stages, DAC is gaining traction as dedicated capture units target CO₂ directly from ambient air, opening new markets in regions with low flue‑gas concentrations.

3. Digitalisation and AI‑Driven Optimization – Real‑time monitoring, predictive maintenance, and AI‑based process optimisation reduce operational costs and improve capture efficiency.

4. Low‑Energy Solvent and Sorbent Technologies – Ongoing R&D focuses on solvents and sorbents that require less energy for regeneration, directly addressing one of the main cost drivers in capture projects.

5. Modular and Containerised Units – Compact, plug‑and‑play units enable rapid deployment, especially in emerging markets and for retrofits in existing plants.