methane abatement

Advanced Methane Abatement for Immediate Decarbonization

CDTi’s advanced methane abatement system delivers reliable performance by protecting the process at its most critical point, the catalyst. CDTi’s two-stage system combines a proprietary sulfur adsorber with a methane oxidation catalyst to achieve high conversion efficiency and longer catalyst life. Get consistent emissions reduction and lower operational costs over the long term.
The upstream sulfur adsorber captures sulfur compounds before they can deactivate the precious metals that make the catalyst effective. Maintain performance, reduce maintenance costs, and achieve consistent results in demanding operating environments.

Key Features & Benefits

Active at Low Temperatures: Provides critical protection during cold starts and rapid cycling.

Preserves Catalyst Activity: Maintains platinum and palladium efficiency, supporting consistent emissions control.

Operational Stability: Ensures reliable performance through fluctuations in load and duty cycles.

Reduced Maintenance Costs: Prevents catalyst deactivation (“poisoning”) for longer service intervals and lower total cost of ownership.

Applications

CDTi’s methane abatement system is designed for seamless integration into both new projects and retrofit applications. It’s proven effective for operators in:

  • Power Generation
  • Data Centers
  • Cogeneration Facilities
  • Gas Compression Plants
  • LNG-Fueled Marine Engines
Wherever methane control is required, CDTi delivers cost-effective, consistent solutions.

Innovative Two-Stage Methane Abatement

Sulfur Trap

Cleaned exhaust first passes through CDTi’s sulfur adsorber, where sulfur compounds are captured and contained.

Methane Oxidation Catalyst

Exhaust passes through an oxidation catalyst, converting methane into water and carbon dioxide.

Methane Abatement and Pathways to Decarbonization

Because methane’s global warming potential is 28 to 80 times higher than that of carbon dioxide, reducing methane emissions has a much bigger impact on lowering total greenhouse gas emissions (measured in CO₂ equivalents) than reducing the same amount of carbon dioxide.

Leaders in Calayst Technology

CDTi leverages decades of leadership in catalyst technology and materials engineering to create direct air capture solutions that are both efficient and reliable. Connect with our experts today to explore direct air capture solutions for your organization.