

Carbon Capture
Carbon Capture Systems Engineering & Integration
Design-driven CO₂ capture solutions
— from DAC to cryogenic capture —
engineered for precision, reliability, and long-term performance.
At TeOsTeam, we design and engineer advanced carbon capture systems tailored to the specific needs of energy, industrial, and climate-technology projects. Our multidisciplinary approach integrates cryogenics, process engineering, system architecture, supplier supervision, and commissioning oversight, ensuring every project meets the highest standards of quality and safety. With over 250+ years of engineering and production experience and a track record contributing to 7,500+ engineered systems in general, our team delivers technically robust, scalable, and standards-compliant CO₂ capture solutions across Europe, Turkey, and global markets.
Direct Air Capture (DAC)
We support projects that remove atmospheric CO₂ using advanced air-contacting and separation technologies. Our engineering scope includes:
Concept and process design
Sorbent/solvent system evaluation
Equipment specification & vendor assessment
Energy and mass balance modeling
Commissioning and performance verification
Carbon Capture at Power & Industrial Plants
We design systems that capture CO₂ before it enters the atmosphere, enabling emissions reduction at:
Thermal power plants
Refineries
Cement & steel plants
Chemical-processing facilities
Carbon Capture & Conversion (CCC)
TeOsTeam engineers systems that convert captured CO₂ into:
e-fuels
Industrial chemicals
Polymers
Carbon-neutral process streams
Bioenergy with Carbon Capture & Storage (BECCS)
We provide engineering support for BECCS systems that capture CO₂ produced from biomass energy. Our services include:
Process modeling
Capture technology selection
Storage integration engineering
Risk & safety evaluation
Vendor qualification and procurement oversight
Cryogenic Carbon Capture (CCCryo)
Leveraging TeOsTeam’s deep cryogenic expertise, we design low-temperature capture systems that remove CO₂ through controlled cooling and phase separation. Advantages include:
High capture efficiency
Faster processing compared to chemical systems
Strong compatibility with industrial exhaust streams
Reduced solvent usage
Cryogenic capture is especially promising for hard-to-abate industries.
System Integration & Lifecycle Services
Every carbon capture project is delivered with:
Standards compliance: EN, ASME, ISO
Supplier supervision & fabrication oversight
Quality assurance & FAT/SAT support
Commissioning & start-up assistance
Operational performance validation
TeOsTeam acts as your engineering owner’s representative, ensuring all deliverables meet technical, regulatory, and performance requirements. Our commitment is simple: Robust engineering, transparent execution, and long-term reliability.
From early-stage concept development to system commissioning, we help organizations deploy carbon-capture technologies with confidence and clarity.
Contact our engineering team: info@teosteam.com
