/ Fort Cady Project
U.S. Critical Infrastructure

America's Largest New Boron Deposit

The Fort Cady Project in Southern California's Mojave Desert is the largest known new conventional boron deposit outside of Turkey, fully permitted, in production, and designated U.S. Critical Infrastructure.

5E Advanced Materials operates the Fort Cady Project near Newberry Springs, California. It is the largest known new conventional boron deposit outside of Turkey, with 28.3 million short tons of measured and indicated boric acid resources and a Pre-Feasibility Study confirming a pre-tax NPV7 of US$724.8 million.

/ Pre-Feasibility Study Highlights

Project at a Glance

Validated by an SK-1300 compliant Pre-Feasibility Study published August 2025. Phase 1 economics only, additional expansion phases retain significant optionality.

$725M
Pre-Tax NPV7
19.2% unlevered IRR
39.5
Year Mine Life
Phase 1 only; 41% of resource
130K
Tons/Year Boric Acid
~11% of global demand
28.3M
Tons M+I Resource
61% upgrade Nov 2025
5.4M
Tons Boric Acid Reserves
8.03% B₂O₃ grade
$435M
Total Initial Capital
Incl. contingency & owner's cost
$555
All-In Cash Cost/Ton
Including logistics
5.9
Year Payback
After-tax basis
/ Pre-Feasibility Study

Investment Highlights

Phase 1 alone delivers robust, multi-generational economics, validated under SK-1300.

39.5-year initial mine life on Phase 1 alone, converting just 41% of the resource into reserves.

5.4 million tons of boric acid reserves at an average grade of 8.03% B₂O₃.

130,000 tons of boric acid per year, roughly 11% of global boric acid demand today.

In-situ leaching mines the colemanite with minimal surface land disturbance.

Independent market study forecasts demand to exceed supply beginning in 2026.

Designated U.S. Critical Infrastructure by the Department of Homeland Security.

/ Strategic Location

Mojave Desert, Southern California

Fort Cady Project location map, Mojave Desert between Los Angeles and Las Vegas

The Fort Cady Project sits on both private and federal land, halfway between Los Angeles and Las Vegas, with direct access to transportation, energy, and logistics infrastructure.

Interstate Access~2 miles south of Interstate 40
Nearest City~25 miles east of Barstow, CA
RailBNSF rail line adjacent to project
Natural Gas~2 miles from Mojave Pipeline
Power~1 MW grid power connected
WaterTwo existing water wells with millsite claims
PortsTrucking access to Port of Los Angeles
/ Production

What Fort Cady Produces

Phase 1 targets three product streams from in-situ extraction of colemanite, with boric acid as the primary revenue driver.

Boric Acid (H₃BO₃)

130,000 short tons per year

Primary product, approximately 94% of total revenue. High-purity boric acid for glass, agriculture, defense, and EV applications.

Gypsum

129,000 short tons per year

By-product sold into the California construction and agriculture markets. Netback price of $21/short ton.

Calcium Chloride (~38%)

57,000 short tons per year

By-product with industrial applications in de-icing, dust control, and oil & gas. Netback price of $120/short ton.

Where Fort Cady Boron Goes

Boron is a critical input across the industries reshoring America's supply chains. Fort Cady is positioned to be a domestic source for these end markets.

Electric vehicles

Electric Vehicles

Boron is essential to the neodymium-iron-boron (NdFeB) permanent magnets that power EV traction motors, and boron-alloyed high-strength steel lightens vehicle bodies. A domestic boron supply reduces reliance on imported material for the EV transition.

Wind energy

Wind Energy

The same NdFeB permanent magnets drive direct-drive wind turbine generators, and boron-reinforced fiberglass adds strength to turbine blades. Boron is a building block of renewable power generation.

Semiconductors

Semiconductors

Boron is the primary p-type dopant used to control conductivity in silicon chip fabrication, and borosilicate and borophosphosilicate glasses are used throughout device manufacturing. Chip production depends on a secure boron supply.

/ Mining Technology

In-Situ Leach Mining: A Cleaner Approach

Aerial view of industrial energy infrastructure

Fort Cady's colemanite deposit lies at a depth that precludes conventional open-pit or underground mining. Instead, 5E uses in-situ leaching (ISL), a closed-loop process that dissolves borates underground and recovers them at the surface.

No open pit
No waste rock stripping or tailings dams
Minimal surface disturbance
Small operational footprint on desert landscape
Closed-loop process
Acid regenerated and recycled in the gypsum circuit
Proven at scale
95% mining efficiency from horizontal well program
ISL Process Flow
1Injection
2Dissolution
3Recovery
4Processing
Outputs
Boric Acid
Gypsum
CaCl₂
Proprietary closed-loop ISL technology
167-claim omnibus U.S. patent filed December 2025
/ From the CEO
Paul Weibel, CEO

"This technical report validates the economic strength and strategic importance of the Fort Cady Project. We have qualified product with over 14 large global end users, and as we target large-scale commercial production, we look toward providing high-paying jobs in California and being a significant long-term U.S. producer of boron to maintain the security of the boron supply chain."

Paul WeibelChief Executive Officer, 5E Advanced Materials
/ Important Information

Cautionary Note Regarding Forward-Looking Statements

This page contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. All statements regarding projected production, economics, capital costs, mine life, and expansion optionality are forward-looking and subject to risks and uncertainties. Mineral resource and reserve estimates are based on the Company's SK-1300 Pre-Feasibility Technical Report dated August 7, 2025, and the resource upgrade announced November 19, 2025. For complete risk factors, see the Company's SEC filings including Form 10-K and Form 10-Q.

Read Full Forward-Looking Statement Disclaimer →

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/ Contact Our Team

Get in Touch to 
Drive Innovation with Boron

We’re here to answer your questions, provide insights about boron applications, and help you explore how 5E Advanced Materials can support your goals in clean energy, defense, and sustainability.

 

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