Marine Radiochemistry Lab

Fluxnium Seawater Uranium Extraction Simulator

Ocean & Array Controls Parametric Engine
Array Surface Area 10.0 km²
Current Velocity 15.0 cm/s
Fiber Mesh Density 450 g/m²
Exposure Duration 60 days
Salinity (ppt) 35.0 ppt
Fluxnium fibers utilize amidoxime ligand motifs to selectively bind uranyl tricarbonate complexes [UO₂(CO₃)₃]⁴⁻ naturally dissolved in seawater at ~3.3 ppb.
Fiber Array Adsorption Dynamics 60 FPS
UO₂²⁺ Flux: 142.8 mg/s
Adsorption Active: 0 ions
Fiber Saturation: 41.2%
Aqueous Uranyl Ion (UO₂²⁺)
Chelation Adsorption Bond
Fluxnium Braided Fiber Strand
Mechanism: Seawater current delivers dissolved uranyl ions directly through permeable Fluxnium polymer lattices. Contact frequency and residence time dictate ligand chelation kinetics before saturation equilibrium.
Harvest & Energy Yield Optimal Extraction Yield
Extraction Efficiency
68.5%
Amidoxime functional group binding efficacy
Uranium Harvested
182.4 t
Equivalent to 18.24 mg U / m² mesh
Energy Payback Ratio (EPR)
14.8
Output thermal energy vs extraction lifecycle cost
Equivalent Generation Capacity
1,250 yrs
Powers standard 1 GW light-water reactor fleet
Cumulative Fleet Power Potential 8,755 TWh

1 ton natural U yields ~48 GWh in modern LWR cycle. Ocean deposits hold 4.5 billion metric tons, sufficient for over 60,000 human generations of baseline power.

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