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Special NoticeAmendment 2

Available for Licensing: Dimethyl Ether-Driven Rejuvenation Technology for Lithium-Ion Battery Cell Reuse

BATTELLE ENERGY ALLIANCE�DOE CNTR · Idaho Falls, Idaho, 83401

Response status

Due in 65 days

Nov 1, 2026, 6:00 PM UTC

Responses remain open.

Posted
Aug 24, 2026
Archive date
Nov 16, 2026
SAM status
Active

Answer-first brief

What the source record says

  • BATTELLE ENERGY ALLIANCE�DOE CNTR published this special notice.
  • The place of performance is Idaho Falls, Idaho.
  • The notice uses NAICS 562920 (Materials Recovery Facilities).

Procurement identity

Notice ID
a5779e4068274eaba0c3e62b513e6f62
Solicitation
BA-1617
Base type
Special Notice
Version
2 of 2

Solicitation facts

Structured fields from the current SAM notice version. A dash means the source did not publish a value.

Notice type
Special Notice
Solicitation number
BA-1617
Set-aside
Set-aside code
Posted
Aug 24, 2026
Responses due
Nov 1, 2026, 6:00 PM UTC
Archive date
Nov 16, 2026
Archive type
auto15
Base type
Special Notice
Organization type
OFFICE
Benchmark category
Category confidence
Category source
Last seen
Aug 29, 2026

Buyer and place

Office hierarchy and place of performance as published.

Department
ENERGY, DEPARTMENT OF
Department code
Subagency
ENERGY, DEPARTMENT OF
Subagency code
Office
BATTELLE ENERGY ALLIANCE�DOE CNTR
Organization path
Organization path codes
Office address
Idaho Falls, ID, 83415, USA
Place of performance
Idaho Falls, Idaho, 83401
City code
State
Idaho
State code
ID
Postal code
83401
Country

Points of contact

Contact details from the current notice version.

Notice description

Source text reproduced without an AI summary.

Overview This technology introduces a dimethyl ether (DME)-driven method for rejuvenating end-of-life lithium-ion battery (LIB) cells, with the goal of restoring electrochemical performance without dismantling the cell into constituent materials. Conventional LIB recycling requires mechanical disassembly, crushing, and downstream hydrometallurgical or pyrometallurgical separation of anode, cathode, and electrolyte fractions, followed by reconstruction of new components. The DME-driven approach is intended to recondition spent cells so that the existing electrode architecture remains intact and reusable. By acting directly on the assembled cell, the method is designed to recover electrochemical functionality through a substantially simplified process flow. Preliminary electrochemical data generated during development supports the technical feasibility of the approach. If validated at larger scale, the technology may offer a recycling pathway that materially reduces process complexity, capital intensity, and reagent consumption compared with established LIB recycling routes. Industry Need Current LIB recycling infrastructure relies on multi-step processes that consume significant energy and reagents. End-of-life cells are typically shredded, with recovered black mass treated through hydrometallurgical leaching, solvent extraction, or high-temperature pyrometallurgical processing to isolate metals such as lithium, cobalt, nickel, and manganese. These recovered materials must then be reprocessed into battery-grade precursors and reassembled into new cells. The associated unit operations introduce capital cost, operating cost, and environmental burden, and there is presently no commercialized method to recondition or rejuvenate LIB cells or their principal components for direct reuse. As domestic demand for LIB recycling capacity grows, the absence of a lower-intensity reuse pathway constrains the economic and environmental performance of the broader battery circularity sector. Differentiation & Advantages Operates directly on assembled cells, eliminating the need for shredding, separation, and component reconstruction steps required by conventional recycling. Designed to restore electrochemical properties of the existing electrode set, enabling direct electrode reuse rather than raw material recovery. Intended to reduce reagent and energy inputs relative to hydrometallurgical and pyrometallurgical processing. May lower capital and operational requirements for recycling facilities by consolidating multiple unit operations into a single rejuvenation step. Addresses a recycling pathway for which no commercialized equivalent currently exists. Potential Applications Direct rejuvenation of end-of-life LIB cells recovered from consumer electronics, stationary storage, or transportation applications. Integration into existing LIB recycling and reuse facilities as a front-end reconditioning step prior to, or in place of, material recovery. Supporting domestic battery circularity initiatives that prioritize reuse over raw material extraction. Secondary-use battery pathways where partial capacity restoration may extend service life. Reducing the volume of cells entering energy-intensive downstream recycling streams.

Comparable award range

Historical award values for work matched by the fixed rubric—not an estimate of this opportunity.

No past awards scored highly enough to form a comparable range.

Comparable awards

The match score is decomposed so each comparison can be challenged.

No comparable awards are attached to this notice.

Amendment history

A version is preserved whenever the normalized notice contents change.

VersionNotice typeObservedResponses dueContent hash
1Special NoticeAug 26, 2026Nov 1, 2026, 6:00 PM UTC69ce832bdee88384
2Special NoticeAug 28, 2026Nov 1, 2026, 6:00 PM UTC04a4641b2f922d4d

Record provenance

Field-level lineage for the current opportunity version.

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Sources and method

Figures on this page are computed from public federal award records. Numbers are never estimated or generated; where a figure is withheld, the reason is stated rather than filled in.

  1. 1Notice fields come from the SAM.gov contract opportunities record last seen Aug 29, 2026. SAM.gov remains authoritative.

Note 1 covers the solicitation record. No synthetic FAQ or inferred solicitation value is published.

Available for Licensing: Dimethyl Ether-Driven Rejuvenation Technology for Lithium-Ion Battery Cell Reuse — federal contract opportunity · BidBenchmark