Closed Solicitation · DEPARTMENT OF ENERGY

    INL INNOVATION SPOTLIGHT NOVEL TRAINING SURROGATES FOR EMERGENCY RESPONSE TRAINING

    DEPARTMENT OF ENERGY
    Special NoticeIdaho Falls, ID
    Closed
    STATUS
    Closed
    closed Mar 25, 2026
    POSTED
    Oct 31, 2024
    Publication date
    NAICS CODE
    624230
    Primary industry classification
    PSC CODE
    R429
    Product & service classification

    AI Summary

    The Department of Energy is seeking innovative solutions for emergency response training through the use of novel training surrogates, specifically short-lived radioisotopes that decay into stable, environmentally friendly elements. This initiative addresses the challenges associated with training using actual radioactive materials, which are often radiotoxic and have long half-lives, making them impractical for training purposes. The Idaho National Laboratory has developed a method to create surrogate materials that accurately replicate the emission and dispersion characteristics of industrial radioactive materials, facilitating effective training in contaminated environments. This special notice invites potential bidders to explore the development and application of these surrogate materials to enhance emergency response training capabilities

    Contract details

    Notice Type
    Special Notice
    Posted Date
    October 31, 2024
    Response Deadline
    March 25, 2026
    NAICS Code
    624230AI guide
    PSC / Class Code
    R429
    Contract Code
    8900
    Primary Contact
    Andrew Rankin
    State
    ID
    ZIP Code
    83415
    AI Product/Service
    both

    Description

    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 (<2 days), 2) they decay to stable or short-lived daughter isotopes that further decay to stable, non-toxic isotopes, 3) high-purity target matrices can be obtained to prevent the formation of harmful radioactive isotopes, and 4) the physical and chemical properties of the matrices closely resemble those of the radioactive material targets.

    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.

    Key dates

    1. October 31, 2024Posted Date
    2. March 25, 2026Proposals / Responses Due

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    Frequently asked questions

    INL INNOVATION SPOTLIGHT NOVEL TRAINING SURROGATES FOR EMERGENCY RESPONSE TRAINING is a federal acquisition solicitation issued by DEPARTMENT OF ENERGY. Review the full description, attachments, and submission requirements on SamSearch before the response deadline.

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