Biomass

Create a route for your biogenic CO₂

Capture biogenic CO₂. Create a route for use or storage.

If your biomass plant is under pressure to reduce CO₂ emissions and create a credible route for its biogenic CO₂, capture can be part of the answer. Recover CO₂ from flue gas with a fully electrified membrane system and route it towards on-site use, external offtake or permanent storage.

Biomass

Create a route for your biogenic CO₂

Capture biogenic CO₂. Create a route for use or storage.

If your biomass plant is under pressure to reduce CO₂ emissions and create a credible route for its biogenic CO₂, capture can be part of the answer. Recover CO₂ from flue gas with a fully electrified membrane system and route it towards on-site use, external offtake or permanent storage.

Biomass

Create a route for your biogenic CO₂

Capture biogenic CO₂. Create a route for use or storage.

If your biomass plant is under pressure to reduce CO₂ emissions and create a credible route for its biogenic CO₂, capture can be part of the answer. Recover CO₂ from flue gas with a fully electrified membrane system and route it towards on-site use, external offtake or permanent storage.

Benefits

Build a business case around your CO₂ emission

For biomass plants, carbon capture can create value by reducing emissions while creating a route for biogenic CO₂ valorisation. The business case depends on your flue gas composition, operating profile and the destination of the captured CO₂.

Grid icon representing modular molecular sieving membrane applications

Create a route for biogenic CO₂

Recover CO₂ from your flue gas and condition the captured stream for on-site use, external offtake or permanent storage.

Grid icon representing modular molecular sieving membrane applications

Lower the energy burden

Use fully electrified, pressure-driven membrane separation without energy-intensive, solvent thermal regeneration in the core capture step.

Grid icon representing modular molecular sieving membrane applications

Build around your operation

Configure a modular, containerised system around your flue-gas volume, site constraints and the intended CO₂ route and extend capacity any time.

Benefits

Build a business case around your CO₂ emission

For biomass plants, carbon capture can create value by reducing emissions while creating a route for biogenic CO₂ valorisation. The business case depends on your flue gas composition, operating profile and the destination of the captured CO₂.

Grid icon representing modular molecular sieving membrane applications

Create a route for biogenic CO₂

Recover CO₂ from your flue gas and condition the captured stream for on-site use, external offtake or permanent storage.

Grid icon representing modular molecular sieving membrane applications

Lower the energy burden

Use fully electrified, pressure-driven membrane separation without energy-intensive, solvent thermal regeneration in the core capture step.

Grid icon representing modular molecular sieving membrane applications

Build around your operation

Configure a modular, containerised system around your flue-gas volume, site constraints and the intended CO₂ route and extend capacity any time.

Benefits

Build a business case around your CO₂ emission

For biomass plants, carbon capture can create value by reducing emissions while creating a route for biogenic CO₂ valorisation. The business case depends on your flue gas composition, operating profile and the destination of the captured CO₂.

Grid icon representing modular molecular sieving membrane applications

Create a route for biogenic CO₂

Recover CO₂ from your flue gas and condition the captured stream for on-site use, external offtake or permanent storage.

Grid icon representing modular molecular sieving membrane applications

Lower the energy burden

Use fully electrified, pressure-driven membrane separation without energy-intensive, solvent thermal regeneration in the core capture step.

Grid icon representing modular molecular sieving membrane applications

Build around your operation

Configure a modular, containerised system around your flue-gas volume, site constraints and the intended CO₂ route and extend capacity any time.

Have a storage or funding pathway taking shape for your biogenic CO₂?

That may be the capture case worth exploring.

Biogenic CO₂

on-site use, external offtake or permanent storage

Have a storage or funding pathway taking shape for your biogenic CO₂?

That may be the capture case worth exploring.

Biogenic CO₂

on-site use, external offtake or permanent storage

Have a storage or funding pathway taking shape for your biogenic CO₂?

That may be the capture case worth exploring.

Biogenic CO₂

on-site use, external offtake or permanent storage

End-to-end solution

Assess first. Validate on your stream. Then scale.

  • 1

    Establish feasibility

    Review your CO₂ source, flue-gas composition, annual volume, operating hours, biomass feedstock 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
  • 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

Assess first. Validate on your stream. Then scale.

  • 1

    Establish feasibility

    Review your CO₂ source, flue-gas composition, annual volume, operating hours, biomass feedstock 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
  • 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

Assess first. Validate on your stream. Then scale.

  • 1

    Establish feasibility

    Review your CO₂ source, flue-gas composition, annual volume, operating hours, biomass feedstock 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
  • 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

Questions about CO₂ capture from biomass

FAQ

Questions about CO₂ capture from biomass

FAQ

Questions about CO₂ capture from biomass

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.