Available for Licensing - Electrochemical Rare Earth Recovery from Coal Fly Ash: Turn Waste Stockpiles into Critical Materials Revenue
| Agency: | ENERGY, DEPARTMENT OF |
|---|---|
| State: | Idaho |
| Type of Government: | Federal |
| FSC Category: |
|
| NAICS Category: |
|
| Posted Date: | Mar 4, 2026 |
| Due Date: | May 1, 2026 |
| Solicitation No: | BA-1747 |
| Original Source: | Please Login to View Page |
| Contact information: | Please Login to View Page |
| Bid Documents: | Please Login to View Page |
Description
- Contract Opportunity Type: Special Notice (Original)
- Original Published Date: Mar 04, 2026 02:37 pm MST
- Original Response Date: May 01, 2026 12:00 am MDT
- Inactive Policy: 15 days after response date
- Original Inactive Date: May 16, 2026
- Initiative:
- Original Set Aside:
- Product Service Code: AJ11 - GENERAL SCIENCE AND TECHNOLOGY R&D SERVICES; GENERAL SCIENCE AND TECHNOLOGY; BASIC RESEARCH
-
NAICS Code:
- 21229 - Other Metal Ore Mining
-
Place of Performance:
Idaho Falls , ID 83401USA
Electrochemical Rare Earth Recovery from Coal Fly Ash: Turn Waste Stockpiles into Critical Materials Revenue
Technology Overview
Researchers at Idaho National Laboratory have developed an electrochemical process that selectively extracts rare earth elements (REEs) from coal fly ash leachate using electricity instead of chemical reagents. The technology employs tuned anodic electrosorption with functionalized mesoporous carbon electrodes to achieve superior separation of REEs from competing metal ions.
Opportunity
Coal fly ash represents a massive, untapped resource:
-
158 million tons produced annually in the U.S.
-
1.5 billion tons currently stockpiled
-
Contains 74,000-106,000 metric tons of rare earth elements
Current extraction methods don't work at scale. Traditional solvent extraction relies on large volumes of chemical reagents, generating significant hazardous waste and requiring costly disposal. Poor selectivity (separation factor around 1) means you need 50-200 extraction cycles to achieve high purity. This translates to slow processing times (days to weeks), high operating costs, and growing regulatory pressure.
Bottom line: there's no efficient, cost-effective, and environmentally sustainable technology for REE recovery from coal fly ash at commercial scale.
Competitive Advantages
Conventional solvent extraction approaches:
-
Separation factors typically below 10, requiring 50 to 200 extraction cycles
-
Processing times measured in days to weeks
-
Heavy reliance on chemical reagents
-
Significant hazardous waste generation and disposal costs
-
Large footprint, batch-based systems
-
Increasing regulatory and ESG pressure
INL electrochemical process:
-
Separation Factor ~7
-
Processing completed in hours
-
Electricity-driven, reagent-free operation
-
Minimal waste generation
-
Compact, modular system design
-
Lower disposal burden and ESG-aligned operation
Additional Benefits: 60% recovery efficiency, reusable electrodes, lower operating costs, faster time to revenue.
Market Applications
-
Coal Power Plants (200+ in U.S.) - Convert fly ash from liability to revenue stream
-
REE Recovery Companies - Replace chemical extraction with cleaner, faster processing
-
Environmental Remediation - Process mining tailings, contaminated soils
-
Critical Materials Supply Chain - Domestic REE sourcing for defense and electronics
-
Beyond Coal Fly Ash - Applicable to any complex mixed-ion separation challenge
Development and Licensing
Current Stage: Laboratory-scale validation Underway
Next Step: Pilot-scale demonstration with commercial partner
Idaho National Laboratory is seeking industrial partners to license and commercialize this patent-pending technology. INL does not procure services as part of its collaboration agreements.
- 1955 N Fremont Avenue
- Idaho Falls , ID 83415
- USA
- Javier Martinez
- javier.martinez@inl.gov
- Mar 04, 2026 02:37 pm MSTSpecial Notice (Original)
Related Document
| Jun 11, 2026 | [Special Notice (Updated)] Available for Licensing - Electrochemical Rare Earth Recovery from Coal Fly Ash: Turn Waste Stockpiles into Critical Materials Revenue |
| Aug 24, 2026 | [Special Notice (Updated)] Available for Licensing - Electrochemical Rare Earth Recovery from Coal Fly Ash: Turn Waste Stockpiles into Critical Materials Revenue |
See Also
Bid Title: Centennial-Rainey Levee Setback and Ecosystem Enhancement Category: Public Works--Engineering Status: Open
City of Pocatello
Due by 10/02/2026
Follow Available for Licensing: Dimethyl Ether-Driven Rejuvenation Technology for Lithium-Ion Battery Cell Reuse
ENERGY, DEPARTMENT OF
Due by 11/01/2026
Follow Available for Licensing - Electrochemical Rare Earth Recovery from Coal Fly Ash:
ENERGY, DEPARTMENT OF
Due by 11/01/2026
Follow Technology Licensing Opportunity: Room-Temperature Electrochemical Metallization of Rare Earth Elements Active Contract
ENERGY, DEPARTMENT OF
Due by 11/15/2026