
An integrated Wyoming development combining decarbonized power, large-scale water infrastructure and domestic battery mineral supply.
14,000+ acres under exclusive project control.
Built on prior DOE-supported research.
Direct rail, highway, CO2 networks, natural gas pipelines, fiber-optic and power infrastructure.
Four distinct revenue streams from a single investment.

To produce water and lithium, you need a lithium-rich brine reservoir. To permanently store carbon, you need porous rock capped by seal-tight geology. Our Wyoming project possesses both, making it the optimal site for Vero3's production from a single subsurface system.

Established network of road, rail, power lines, fiber optic, natural gas pipelines, CO2 corridors and utility corridors.
Active industrial base with research institutions and skilled labor for the energy transition.
Ranked best U.S. business climate for five consecutive years. Pro-energy policy.
Favorable conditions:
no corporate tax and low sales tax.
Vero3 is combining complementary energy, water and resource opportunities within a single Wyoming development platform, creating multiple pathways for sustainable industrial growth.

Strategic land position in Wyoming —the foundation for our integrated development platform.

18 years of DOE validation and $25M+ in federal funding confirm our asset quality—
de-risking the path to market.

Existing rail, roads, power, fiber optic, and CO2 corridor and nat gas pipelines reduce capital requirements and accelerate time-to-revenue.
Our process begins with drilling wells to access lithium-rich brine deep underground. The geology contains vast reservoirs of brine accumulated over millions of years.
Natural ground pressure forces brine to the surface (artesian flow), significantly reducing upfront energy requirements.
We process the extracted brine to produce large volumes of clean water, which concentrates the lithium within the brine. Additionally, this creates storage capacity for carbon and manages the reservoir pressure while generating clean water.
Using IBC Advanced Technologies' Nobel Prize-winning Molecular Recognition TechnologyTM, we selectively extract lithium with a 99% recovery rate for sale at battery-grade purity.
The remaining brine, now stripped of lithium and clean water, is pumped (re-injected) underground into the original source rocks (formation).
Carbon is also injected underground either into the same formation or a formation devoid of lithium. This completes the closed-loop system, generating three revenue streams:
carbon storage, lithium, and clean water.

Preliminary economic aSSESSMENT
Advance resource definition, engineering and development planning.
Establish commerical and strategic partnerships across power, water and industrial development.
Advance engineering, permitting and financing toward investment readiness.
Progressively develop revenue-generating infrastructure and resource operations.
A DOE CarbonSAFE Phase 3 project exemplifying full U.S. regulatory alignment.
12–18 month initiative completed.
18–24 month initiative completed.
< 1.5 to 2-year initiative (Current).
< 2-year initiative (Upcoming).