carbon capture

Reduce emissions without losing sight of the business case

Capture CO₂ from industrial flue gas with a fully electrified alternative to steam- and solvent-intensive processes. Our modular carbon capture solutions are engineered around your site, your flue gas composition and what happens to the captured CO₂ next.

Petrochemical complex representing refinery off-gas recovery, cracker gas recovery and reduced flaring
25,000 tonnes

of CO₂ captured per year

carbon capture

Reduce emissions without losing sight of the business case

Capture CO₂ from industrial flue gas with a fully electrified alternative to steam- and solvent-intensive processes. Our modular carbon capture solutions are engineered around your site, your flue gas composition and what happens to the captured CO₂ next.

Petrochemical complex representing refinery off-gas recovery, cracker gas recovery and reduced flaring
25,000 tonnes

of CO₂ captured per year

carbon capture

Reduce emissions without losing sight of the business case

Capture CO₂ from industrial flue gas with a fully electrified alternative to steam- and solvent-intensive processes. Our modular carbon capture solutions are engineered around your site, your flue gas composition and what happens to the captured CO₂ next.

Petrochemical complex representing refinery off-gas recovery, cracker gas recovery and reduced flaring
25,000 tonnes

of CO₂ captured per year

Validated on demanding flue gas

Containerised turnkey delivery

5+ demonstration units

Validated on demanding flue gas

Containerised turnkey delivery

5+ demonstration units

carbon capture

UniSieve membrane cartridge capturing carbon dioxide from flue gas for purification and storage

Our technology

Separate CO₂
by molecular size

High-precision molecular sieving continuously separates CO₂ from flue gas. The captured stream can then be conditioned for reuse, offtake or storage, helping reduce energy demand and strengthen the business case for capture.

carbon capture

UniSieve membrane cartridge capturing carbon dioxide from flue gas for purification and storage

Our technology

Separate CO₂
by molecular size

High-precision molecular sieving continuously separates CO₂ from flue gas. The captured stream can then be conditioned for reuse, offtake or storage, helping reduce energy demand and strengthen the business case for capture.

carbon capture

UniSieve membrane cartridge capturing carbon dioxide from flue gas for purification and storage

Our technology

Separate CO₂
by molecular size

High-precision molecular sieving continuously separates CO₂ from flue gas. The captured stream can then be conditioned for reuse, offtake or storage, helping reduce energy demand and strengthen the business case for capture.

Easy to integrate. Built around your site.

Our modular, containerised systems fit into existing infrastructure with limited process changes. The setup is configured around your stream, available space and required capacity.

Chemical plant with modular molecular sieving membrane equipment for energy-efficient gas separation

Easy to integrate. Built around your site.

Our modular, containerised systems fit into existing infrastructure with limited process changes. The setup is configured around your stream, available space and required capacity.

Chemical plant with modular molecular sieving membrane equipment for energy-efficient gas separation

Easy to integrate. Built around your site.

Our modular, containerised systems fit into existing infrastructure with limited process changes. The setup is configured around your stream, available space and required capacity.

Chemical plant with modular molecular sieving membrane equipment for energy-efficient gas separation

Benefits

Designed for efficient, continuous capture

Benefits

Designed for efficient, continuous capture

Industrial facility with emissions viewed from above
70%

Energy savings compared with traditional CO₂ capture methods*

Lower the energy demand

Separate CO₂ with a fully electrified, pressure-driven process that avoids solvent regeneration in the core capture step.

Industrial facility with emissions viewed from above
70%

Energy savings compared with traditional CO₂ capture methods*

Lower the energy demand

Separate CO₂ with a fully electrified, pressure-driven process that avoids solvent regeneration in the core capture step.

Industrial facility with emissions viewed from above
70%

Energy savings compared with traditional CO₂ capture methods*

Lower the energy demand

Separate CO₂ with a fully electrified, pressure-driven process that avoids solvent regeneration in the core capture step.

Industrial plant with smokestacks beside a river
>95%

CO₂ captured from the incoming gas stream*

Capture continuously at industrial scale

Run continuous membrane separation with modular capacity configured around your flue-gas volume, capture target and site conditions.

Industrial plant with smokestacks beside a river
>95%

CO₂ captured from the incoming gas stream*

Capture continuously at industrial scale

Run continuous membrane separation with modular capacity configured around your flue-gas volume, capture target and site conditions.

Industrial plant with smokestacks beside a river
>95%

CO₂ captured from the incoming gas stream

Capture continuously at industrial scale

Run continuous membrane separation with modular capacity configured around your flue-gas volume, capture target and site conditions.

*Performance depends on flue-gas composition, concentration, operating conditions and system configuration. Energy demand and capture rate are assessed separately for each application.

Wondering whether your site has a viable carbon capture case?

Industrial separation equipment illustration

End-to-end solution

From feasibility to operation

  • 1

    Establish feasibility

    We review your CO₂ source, flue-gas composition, annual quantity and intended destination. Together, we assess the capture opportunity, operating requirements and conditions for a viable project.

    Industrial plant diagram highlighting where modular membrane separation equipment integrates
  • Containerized molecular sieving membrane system for end-to-end industrial gas separation
    2

    Validate with a pilot

    Test on your own flue gas to establish relevant performance and operating data. The findings help your team evaluate technical fit and commercial potential before scaling.

  • Industrial plant diagram for turnkey molecular sieving membrane integration

    Directly installed on plant

    3

    Deploy & operate

    Once the case is proven, configure the full system around your site, operating requirements and CO₂ route. Then integrate and bring it into operation.

End-to-end solution

From feasibility to operation

  • 1

    Establish feasibility

    We review your CO₂ source, flue-gas composition, annual quantity and intended destination. Together, we assess the capture opportunity, operating requirements and conditions for a viable project.

    Industrial plant diagram highlighting where modular membrane separation equipment integrates
  • Containerized molecular sieving membrane system for end-to-end industrial gas separation
    2

    Validate with a pilot

    Test on your own flue gas to establish relevant performance and operating data. The findings help your team evaluate technical fit and commercial potential before scaling.

  • Industrial plant diagram for turnkey molecular sieving membrane integration

    Directly installed on plant

    3

    Deploy & operate

    Once the case is proven, configure the full system around your site, operating requirements and CO₂ route. Then integrate and bring it into operation.

End-to-end solution

From feasibility to operation

  • 1

    Establish feasibility

    We review your CO₂ source, flue-gas composition, annual quantity and intended destination. Together, we assess the capture opportunity, operating requirements and conditions for a viable project.

    Industrial plant diagram highlighting where modular membrane separation equipment integrates
  • Containerized molecular sieving membrane system for end-to-end industrial gas separation
    2

    Validate with a pilot

    Test on your own flue gas to establish relevant performance and operating data. The findings help your team evaluate technical fit and commercial potential before scaling.

  • Industrial plant diagram for turnkey molecular sieving membrane integration

    Directly installed on plant

    3

    Deploy & operate

    Once the case is proven, configure the full system around your site, operating requirements and CO₂ route. Then integrate and bring it into operation.

FAQ

Your carbon capture questions

FAQ

Your carbon capture questions

FAQ

Your carbon capture questions

Tell us what you’re trying to improve. We’ll explore what’s possible.

Share the separation challenge you’re dealing with today. We’ll help assess where molecular sieving could improve recovery, capacity, efficiency or emissions and what that could mean for your process.

Tell us what you’re trying to improve. We’ll explore what’s possible.

Share the separation challenge you’re dealing with today. We’ll help assess where molecular sieving could improve recovery, capacity, efficiency or emissions and what that could mean for your process.

Tell us what you’re trying to improve. We’ll explore what’s possible.

Share the separation challenge you’re dealing with today. We’ll help assess where molecular sieving could improve recovery, capacity, efficiency or emissions and what that could mean for your process.