Nature doesn’t create waste. It creates systems.


AI-based carbon capture and storage.

CRYOCCS® is a next-generation modular carbon management platform designed to convert industrial emissions into liquid CO₂ while preserving usable energy. We build modular carbon infrastructure for the next industrial era.


CRYOCCS Power Plant, LN₂ and CO₂ storage and EV charging
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Natural Gas Power
99% Carbon Capture
CO₂-neutral

1 MW natural gas generator with V8 Motor, integrated CRYOCCS® cryogenic CO₂ capture and EV fast charging. Designed for low fuel cost, lower CO₂ intensity and fully monetised carbon capture.

CRYOCCS natural gas generator with vertical turbine, LN₂ and CO₂ storage and EV charging
USE CASE: Natural gas Generator · 99% carbon-captured
Generator rating
1250 kVA
Natural gas genset delivering up to 1 MW net electrical power for microgrids or fast charging hubs.
CO₂ captured
≈ 437 kg/h
Cryogenic capture and CO₂ −56 °C turns exhaust into liquid CO₂ ready for sale.
Effective energy cost
< 0.05 €/kWh
Natural gas + LCO₂ revenue reduce net production cost below 5 ct/kWh (site-dependent).
EV fast charging
up to 500 kW
High-power DC fast charging for multiple vehicles, fully independent from the public grid.
  • Lower CO₂ intensity than diesel — and up to 99 % of remaining CO₂ captured on site.
  • Liquid CO₂ becomes a second revenue stream for industry, cooling, beverages or e-fuels.
  • Ideal for ports, logistics hubs, data centres, islands and remote industrial sites.




Values indicative for a 1 MW class natural gas generator with CRYOCCS®. Exact KPIs depend on local gas price, duty cycle and LCO₂ market.

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1.2 GW Power Plant
99% Carbon Capture
CO₂-neutral

The 1.2 GW Modular Clean Power Plant is a next-generation energy system built from 400 ultra-efficient 1 MW gas-powered generator modules, each equipped with cryogenic CO₂ capture, 2 MWh energy storage, and AI-based grid balancing software. Together, these modules form a flexible, climate-neutral power plant capable of delivering up to 1.2 GW of stable electricity while simultaneously producing high-purity liquid CO₂ as a valuable industrial product. Unlike conventional power plants, this architecture allows the grid operator to scale output instantly—from 1 MW to 1,200 MW—because each module can be activated, throttled, or paused independently. Integrated 800 MWh of fast-response energy storage provides premium grid services such as frequency regulation, peak shaving, black-start capability, and real-time stabilisation during renewable intermittency.

CRYOCCS natural gas generator with vertical turbine, LN₂ and CO₂ storage and EV charging

The result is a clean, modular, export-ready energy factory that generates electricity, liquid CO₂, and grid-service revenue in parallel—with operational flexibility unmatched by any traditional 100 MW block-type power plant.

USE CASE: 1.2 GW Power Plant · 99% carbon-captured
Generator rating
400 MW
400 modules of 1 MW each, AI-controlled, responding dynamically to grid demand.
CO₂ captured
≈ 175 ton/h
Cryogenic capture and CO₂ −56 °C converts exhaust into liquid CO₂ ready for sale.
Effective energy cost
< 25 €/MWh
Natural gas + LCO₂ revenue lower net production cost below 2.5 ct/kWh.
800 MWh Storage
400 × 2 MWh
AI-optimised grid stabilisation with ultra-fast response for maximum flexibility.
Frequency Regulation
80k–150k €/MW·year
Fast-response storage provides FCR, aFRR and mFRR services. 400 modules = major grid-balancing capability across Europe.
Peak Shaving Revenue
5k–25k €/module·year
Reduction of peak loads lowers grid fees and avoids connection penalties. Scales linearly across all 400 energy-storage units.
Energy Arbitrage
20k–60k €/module·year
Charging at low-price hours and selling during high-price hours (0.05 → 0.20–0.40 €/kWh price spread). Automated by AI for continuous optimisation.
Black-Start & Resilience
10k–50k €/site·year
Full off-grid start capability for generators and grid segments. Extremely attractive for data centres, industries and microgrids.
  • Lower CO₂ intensity than diesel — and up to 99 % of remaining CO₂ captured on site.
  • Liquid CO₂ becomes a second revenue stream for industry, cooling, beverages or e-fuels.



Values indicative for a 1 MW class natural gas generator with CRYOCCS®. Exact KPIs depend on local gas price, duty cycle and LCO₂ market.

Our Projects

Explore our current CRYOCCS® CO₂-negative pilot and scale-up programs across the world.

EUROPE

  • Greece – Crete Pilot
  • European industrial & port clusters
  • Modular CRYOCCS® scale-up roadmap

ASIA

  • China – 5 pilot regions
  • ≥ 500 modular units by 2030
  • Port & industrial decarbonisation

MIDDLE EAST

  • Saudi Arabia Program
  • Reliable Power with Climate Finance
  • Modular CRYOCCS® scale-up roadmap

AFRICA

  • Africa Energy Access
  • ≥ 500 modular units by 2030
  • Home & industrial decarbonisation

Vision

This is essentially the end of the CO₂ debate for combustion engines, because for the first time we have a true "carbon-circular engine"—no offsetting, no marketing, but a physically closed balance.

Our contribution: less CO₂, a more circular economy, new jobs, and genuine energy independence. Technology that serves humanity. This is what the power plants of the future should look like.

CRYOCCS Power Plant, LN₂ and CO₂ storage and EV charging

Our thanks go to:

Contact

Interested in partnership, test facilities, or licensing? Send us a message – we'll get back to you quickly.