Broad Agency Announcement for Innovative Environmental Technologies and Methodologies N39430-25-C-0009
Summary
AI-generated · Sep 07, 2025Evaluate the feasibility of ex-situ stabilization and/or solidification to treat PFAS-contaminated soil and sediment. The work will test multiple commercially available reagents for PFAS stabilization/solidification, quantify PFAS leaching flux and mechanisms from treated material, and develop a conceptual site model to assess how stabilization reduces leaching and how bench-scale results translate to field conditions.
Also gather sufficient performance and cost data to develop site-specific guidance on PFAS stabilization/solidification versus alternative remedies (such as landfilling at a hazardous-waste facility or incineration) to support remedy decision-making.
The project objective is to evaluate the feasibility of ex-situ stabilization and/or solidification for treating PFAS impacted soil and sediment. Specific goals of this project are to Evaluate multiple commercially available reagents for the solidification or stabilization of PFAS, Quantify PFAS kinetic leaching flux and mechanisms for stabilization and/or solidification treated soil/sediment, Develop a conceptual site model (CSM) to assess stabilization and/or solidification for reducing PFAS leaching and evaluate the extent to which recent bench-scale studies reflect stabilization and/or solidification treatment performance under actual field conditions and Collect sufficient performance and cost data to develop guidance on site-specific PFAS stabilization and/or solidification to treat soil/sediment compared to alternative methods (e.g., landfilling at the hazardous waste landfill or incineration) for remedy decision-making.The project objective is to evaluate the feasibility of ex-situ stabilization and/or solidification for treating PFAS impacted soil and sediment. Specific goals of this project are to Evaluate multiple commercially available reagents for the solidification or stabilization of PFAS, Quantify PFAS kinetic leaching flux and mechanisms for stabilization and/or solidification treated soil/sediment, Develop a conceptual site model (CSM) to assess stabilization and/or solidification for reducing PFAS leaching and evaluate the extent to which recent bench-scale studies reflect stabilization and/or solidification treatment performance under actual field conditions and Collect sufficient performance and cost data to develop guidance on site-specific PFAS stabilization and/or solidification to treat soil/sediment compared to alternative methods (e.g., landfilling at the hazardous waste landfill or incineration) for remedy decision-making.
From Award Notice posted on Sep 05, 2025Notice history
1Details
Award Information
Award Notices
Posted: Sep 05, 2025
The project objective is to evaluate the feasibility of ex-situ stabilization and/or solidification for treating PFAS impacted soil and sediment. Specific goals of this project are to Evaluate multiple commercially available reagents for the solidification or stabilization of PFAS, Quantify PFAS kin...
Awardees
| Company Name | UEI | CAGE Code | Location |
|---|---|---|---|
| CDM Federal Programs Corporation | N/A | N/A | Fairfax, VA |
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USA