INL Innovation Spotlight Novel Training Surrogates for Emergency Response Training
| Agency: | ENERGY, DEPARTMENT OF |
|---|---|
| State: | Idaho |
| Type of Government: | Federal |
| FSC Category: |
|
| NAICS Category: |
|
| Posted Date: | Oct 31, 2024 |
| Due Date: | |
| 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 (Updated)
- Updated Published Date: Oct 31, 2024 01:29 pm EDT
- Original Published Date:
- Requirements Strategy:
- Inactive Policy: 15 days after response date
- Updated Inactive Date: Apr 09, 2026
- Original Inactive Date:
- Authority:
- Fair Opportunity / Limited Sources Justification Authority:
-
Initiative:
- None
- Original Set Aside:
- Product Service Code: R429 - SUPPORT- PROFESSIONAL: EMERGENCY RESPONSE/DISASTER PLANNING/PREPAREDNESS SUPPORT
-
NAICS Code:
- 624230 - Emergency and Other Relief Services
-
Place of Performance:
Idaho Falls , ID 83415USA
INL Innovation Spotlight
Novel Training Surrogates for Emergency Response Training
Novel short-lived radioisotopes in a variety of chemical forms used as surrogate materials that have short half-lives and decay to stable, environmentally friendly elements.
Overview:
Training with actual radioactive materials that are of concern to emergency response communities poses challenges due to their radiotoxicity. Radioactive materials used in industrial applications exist in different chemical forms, which affect their behavior when dispersed. Each radioisotope follows a unique radioactive decay path and emits particles accordingly. Most radioisotopes have long half-lives, lasting tens of years or more, and are environmentally and biologically persistent as well as radiotoxic. These properties make it impractical to use them for training purposes, except as sealed sources. Utilizing these isotopes for training in contaminated environments is not feasible due to the difficulties in developing and testing technologies to characterize large, contaminated areas. Simulating the detection of radioactive materials remains a challenge, as there is no suitable substitute available. The successful adoption of a surrogate material relies on its ability to match the radioactive emissions and chemical dispersion properties of actual radioactive materials.
Description:
Researchers at Idaho National Laboratory have developed a technique using short-lived radioisotopes as training surrogates for industrial radioactive materials. Each surrogate material is carefully selected and developed to mimic the particle and photon emission properties, as well as the chemical and physical properties, of the target industrial radioisotope material.
The radioisotopes chosen for training surrogates have several key attributes: 1) they have relatively short half-lives (
These surrogate materials have been extensively evaluated and tested, and have proven to be highly effective in providing realistic training for emergency response methods, procedures, and technologies, including detection and dispersal characterization technologies.
Benefits:
- Enables novel methods to make radioactive simulants for training US military and emergency response personnel tailored to individual training missions.
Applications:
- Emergency response training
Development Status:
TRL 7, full-scale prototype demonstrated in a relevant environment.
IP Status:
Provisional Patent Application No. 16/228,465, ”Surrogate Isotope-Containing Materials for Emergency Response Training and Methods of Formation and Dispersal,” BEA Docket No. BA-1017.
INL Tech Partnerships: Your Gateway to Innovation
INL offers strategic access to proprietary technology, enhancing small business growth and contributing to economic and public advancement. We cater licensing terms to each business we work with, ensuring mutually beneficial agreements. Engage with our diverse technology offerings to propel your company forward.
Learn more about our licensing opportunities and the support we provide at https://inl.gov/technology-deployment/. For specific discussions on how your business can benefit, please contact Andrew Rankin at td@inl.gov.
INL’s Technology Deployment department focuses exclusively on licensing intellectual property and partnering with industry collaborators capable of commercializing our innovations. Our goal is to commercialize the technologies developed by INL researchers. We do not engage in purchasing, manufacturing, procurement decisions, or providing funding. Additionally, this is not a call for external services to assist in the development of this technology.
- 1955 N Fremont Avenue
- Idaho Falls , ID 83415
- USA
- Andrew Rankin
- andrew.rankin@inl.gov
- Oct 31, 2024 01:29 pm EDTSpecial Notice (Updated)
- Mar 25, 2024 02:25 pm EDT Special Notice (Original)
See Also
Follow RELAP5-3D 4.x: Thermal-Hydraulic Nuclear Reactor Analysis, Licensing Opportunity Active Contract Opportunity Notice
ENERGY, DEPARTMENT OF
Due by 11/01/2026
Bid Number: IF-26-011 Bid Title: Parks and Rec Ice Rink Concessions Category: Request
City of Idaho Falls
Due by 9/16/2026
Follow Open Source Software: MOOSE: The Multiphysics Simulation Powerhouse Active Contract Opportunity Notice
Federal Agency
Due by 3/15/2028
Follow Open Source Software: MOOSE: The Multiphysics Simulation Powerhouse Active Contract Opportunity Notice
ENERGY, DEPARTMENT OF
Due by 3/15/2028