Closed Solicitation · DEPARTMENT OF ENERGY

    INL INNOVATION SPOTLIGHT ADVANCED RADIATION MONITORING: FIELDABLE LONG-LENGTH SCINTILLATING FIBERS

    DEPARTMENT OF ENERGY
    Sol. BA-1432Special NoticeIdaho Falls, ID
    Closed
    STATUS
    Closed
    closed Mar 25, 2026
    POSTED
    Oct 31, 2024
    Publication date
    NAICS CODE
    334513
    Primary industry classification
    PSC CODE
    6099
    Product & service classification

    AI Summary

    The Department of Energy has issued a special notice regarding the INL Innovation Spotlight on Advanced Radiation Monitoring, specifically focusing on Fieldable Long-Length Scintillating Fibers. This technology is designed to enhance radiation detection and monitoring in challenging environments, such as nuclear repositories and medical irradiation therapy facilities. It employs durable scintillating fibers that exceed 10 meters in length, paired with standard optical fibers longer than 100 meters, to effectively monitor extensive and hard-to-reach areas. The innovative system features ruggedized fibers, mirrors to improve signal return, and a light source for integrity verification, addressing existing gaps in the market.

    Contract details

    Solicitation No.
    BA-1432
    Notice Type
    Special Notice
    Posted Date
    October 31, 2024
    Response Deadline
    March 25, 2026
    NAICS Code
    334513AI guide
    PSC / Class Code
    6099
    Contract Code
    8900
    Primary Contact
    Andrew Rankin
    State
    ID
    ZIP Code
    83415
    AI Product/Service
    product

    Description

    INL Innovation Spotlight

    Advanced Radiation Monitoring: Fieldable Long-Length Scintillating Fibers

    This technology uses durable, long scintillating fibers combined with regular optical fibers for effective and extensive radiation detection and monitoring in tough environments.

    Overview:        

    Radiation monitoring in hard-to-reach areas, such as nuclear repositories, waste facilities, and medical irradiation therapy facilities, presents significant challenges. The International Atomic Energy Agency (IAEA) recognizes the crucial need for advanced tools to protect these sensitive sites. This technology utilizes long-length scintillating fibers, exceeding 10 meters, combined with standard optical fibers longer than 100 meters. It offers an efficient solution for monitoring vast and inaccessible areas. The technology's innovative approach includes the use of ruggedized fibers, mirrors to enhance signal return, and a light source for integrity verification, addressing a gap in the current market.

    Description:   

    The invention introduces scintillating fibers that function as flexible linear radiation detectors. These fibers are connected to longer standard optical fibers, enabling the remote placement of the scintillation-light detection electronics. To ensure protection, the fibers are enclosed in furcation tubing, and a mirror is used at one end to enhance signal return. Furthermore, a pulsed light source is utilized to verify the fiber's integrity, guaranteeing tamper-proof operation. This design offers a versatile and comprehensive radiation monitoring system that can be applied in various environments and applications, ranging from geological repositories to medical facilities.

    Benefits:          

    • Extended Reach: Capable of monitoring remote and inaccessible areas.
    • Ruggedized Design: Protected against physical damage and external light interference.
    • Enhanced Signal Integrity: Mirrors and pulsed light sources ensure accurate and reliable readings.
    • Flexible Deployment: Adaptable to various environments and site-specific requirements.
    • Safety and Security: Essential for monitoring sensitive nuclear and medical sites.

    Applications:    

    • Monitoring of radioactive waste in geological repositories.
    • Surveillance of nuclear material storage and spent fuel dry storage areas.
    • Radiation detection in inaccessible areas within nuclear reactors and reprocessing facilities.
    • Safety monitoring in medical radioisotope production and irradiation therapy facilities.
    • Environmental monitoring of radiation-contaminated sites.

    Development Status: 

    Technology Readiness Level (TRL) 5: Laboratory/bench scale, similar system validation in a relevant environment.

    IP Status:        

    US Patent Application No. 18/501,888, “Radiation Monitoring Systems, Radioactive Material Storage Systems, and Associated Components and Methods,” BEA Docket No. BA-1432.

    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 ADVANCED RADIATION MONITORING: FIELDABLE LONG-LENGTH SCINTILLATING FIBERS 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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