Technology · Engineering development

Power, compute and carbon as one thermodynamic system.

Power generation produces heat. AI compute consumes power and produces more heat. Our engineering work connects these flows with heat recovery and carbon materials.

One architecture. Two revenue streams.

The Synterran Cycle and HydroCarbon Forge explore how power, heat and materials can work together. Individual developments can become useful on their own.

Development architecture connecting the HydroCarbon Forge, Synterran Cycle and AI Factory through material, energy and heat flows.
Engineering development concept · Integrated architecture

The Synterran Cycle · In development

Recovering heat within the power cycle.

The cycle is designed to convert recovered heat into chemical potential, using energy from power generation and a co-located compute load to reset the system for its next power stroke.

Carbon capture is part of the proposed cycle closure.

Synterran Cycle research topology, including the power stroke, LICO interchange and proposed heat and material connections.
Synterran Cycle · Research and development architecture

HydroCarbon Forge · In development

From hydrocarbons to durable carbon materials.

The proposed Forge process separates hydrocarbon feedstocks before combustion, producing durable carbon materials and hydrogen-enriched fuel.

Discuss engineering and partnerships →