| Location: | Idaho |
|---|---|
| Posted: | Jun 9, 2025 |
| Due: | Jul 9, 2025 |
| Agency: | ENERGY, DEPARTMENT OF |
| Type of Government: | Federal |
| Category: |
|
| Solicitation No: | BA-1410-2 |
| Publication URL: | To access bid details, please log in. |
Technology Summary
This technology introduces an electrochemical method for extracting cobalt from sulfoarsenide minerals, such as cobaltite (CoAsS), while simultaneously immobilizing arsenic as scorodite (FeAsO₄·2H₂O), a stable and low-solubility mineral form. The process enables cobalt production from arsenic-rich domestic sources by addressing both metal recovery and arsenic stabilization in a single system. The method operates at moderate temperatures (up to 70°C) and under ambient pressure conditions, without the need for chemical oxidants or high-pressure equipment.
Challenge
Domestic sources of cobalt remain largely untapped due to the presence of arsenic, which complicates extraction and disposal. Existing approaches to arsenic immobilization are energy-intensive, require high-pressure systems, and often depend on hazardous oxidants such as hydrogen peroxide. These limitations present cost, safety, and environmental challenges to scaling up cobalt production from arsenide-rich ores.
Solution
The system consists of a two-compartment electrochemical cell separated by an anion exchange or bipolar membrane. In the anode compartment, a sulfuric acid electrolyte (pH
This process allows for the selective extraction of cobalt while co-precipitating arsenic in a stable, low-mobility form.
Key Advantages
Market Applications
This technology is relevant to several critical sectors that rely on secure and sustainable supply chains for cobalt and other metals:
Licensing
INL’s Technology Deployment department focuses solely on licensing intellectual property and collaborating with industry partners who can commercialize our innovations.
We do not engage in purchasing, procurement, or hiring external services for technology development. Our objective is to connect with companies interested in licensing and bringing our technologies to market.
| Apr 15, 2026 | [Special Notice (Updated)] Electrochemical Arsenic Immobilization for Sustainable Cobalt Production |

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