Build
OTEC, SWAC, RAS, seaweed, microbial systems, materials and pilot hydrogen.
Integrated regenerative infrastructure
Deep-ocean power and cooling connect hydrogen research, water systems, biological manufacturing, aquaculture, advanced materials and digital infrastructure.
Continuous ocean energy and deep-water cooling serve the entire node through shared infrastructure.
Dedicated pilot chapter
OTEC supplies dependable electricity while enzyme and biogel systems are tested as a protected catalytic environment. Hydrogen remains a Phase 1 pilot—not the initial power source.
Science collection
Ocean thermal energy conversion as the continuous power backbone.
Pilot hydrogen storage and conversion infrastructure.
The protected catalytic reactor at the center of the hydrogen research pathway.
Gas separation, purification and collection after the pilot reactor.
Laboratory development of enzymes, biogels and hydrogel-supported systems.
A pathway for converting carbon-rich feedstocks into graphene materials.
Biological production connected to energy and material flows.
Seawater-derived feedstock through biogel reactor, separation and pilot use.
Science collection
Water-active building materials and passive environmental control.
Material development and performance testing.
A regional concept for water capture, recovery and reuse.
Living materials integrated into the built environment.
The biological and water relationship within the pilot hydrogen pathway.
Water production connected to seaweed and regenerative infrastructure.
Climate-adaptive materials for coastal settlements.
Desalination, recovery and reuse at community scale.
A conceptual water-capture and treatment surface.
Water, agriculture and coastal infrastructure operating together.
Hydrogels and biogels as functional biological materials.
Distributed water capture inspired by biological capillary systems.
Science collection
Digital infrastructure connected to renewable energy and cooperative cooling.
Material systems that reduce heat and water stress.
Laboratory validation before architectural deployment.
Automation coordinating water, energy, food and materials.
Science collection
Recirculating aquaculture as a productive Phase 1 asset.
Circular feed and nutrient pathways.
A visual model for controlled seafood production.
Aquaculture revenue helping activate the wider node.
Development strategy
OTEC, SWAC, RAS, seaweed, microbial systems, materials and pilot hydrogen.
Expand hydrogen, desalination, recovery and automation.
Measure integrated performance and economics.
Deploy only the systems that have been proven.