SOLUTIONS / ENERGY MANAGEMENT

Optimizing Energy Systems with Plasmalysis

Produce CO₂-free hydrogen, solid carbon, and recoverable process heat while improving energy efficiency through Graforce's modular Methane-Plasmalyzer® systems.

INDUSTRY OVERVIEW

Efficient Hydrogen Production for Modern Energy Systems

Graforce's Methane-Plasmalyzer® enables energy providers to generate low-carbon hydrogen using natural gas, biomethane, or digestate while simultaneously recovering valuable process heat and solid carbon. The modular technology supports cleaner and more efficient energy systems.

Low-Carbon Hydrogen

Efficient hydrogen production for modern energy systems.

Process Heat

Heat can be reused within industrial energy infrastructure.

Solid Carbon

A valuable co-product for industrial applications.

Modular Systems

Scalable systems for utilities and industrial facilities.

Modular energy system

GRAFORCE SOLUTION

Integrated Energy Conversion

Methane is converted into hydrogen and solid carbon through high-temperature plasmalysis. The produced hydrogen can be used for combined heat and power (CHP) systems, industrial energy supply, and renewable hydrogen applications, while recoverable process heat increases overall plant efficiency.

Integrated Energy Conversion

ENERGY RECOVERY

Recovering Valuable Process Heat

Recoverable industrial-grade heat generated during plasmalysis can be reused directly within existing energy infrastructure. Together with hydrogen production, this supports CHP plants, industrial utilities, and renewable energy systems, improving overall energy efficiency while reducing additional fuel demand.

Industrial Heat Recovery

Recover process heat for industrial operations.

Combined Heat & Power

Hydrogen supports efficient CHP generation.

Renewable Energy Integration

Compatible with biomethane and renewable electricity.

WHY GRAFORCE

Built for Efficient Energy Management

Modular plasma systems combine optimized hydrogen production with integrated heat recovery, flexible feedstocks, and scalable deployment for utilities and industrial facilities.

High Energy EfficiencyOptimized production
Flexible FeedstocksNatural gas, biomethane, digestate
Modular SystemsPilot to industrial scale
Lower Infrastructure CostsCost-effective integration

FAQ

Frequently asked questions

How is hydrogen produced?+

Methane or biomethane is dissociated in a high-temperature plasma reactor into hydrogen and solid carbon.

How is process heat recovered?+

High-temperature heat generated during plasmalysis is captured and reused directly within existing energy infrastructure.

Which feedstocks are supported?+

Natural gas, biomethane, and suitable digestate-based feedstocks can be evaluated.

Can existing energy infrastructure be used?+

Yes. Modular systems are designed to integrate with existing utilities, CHP plants, and industrial facilities.

Project Inquiry

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