Award Data

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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until June, 2020.

  1. Replacements for PVC and PE Water Pipes

    SBC: MATERIALS ENGINEERING AND TECHNICAL SUPPORT SERVICES CORP.            Topic: 17NCER1C

    METSS proposes to design a novel polymer system based on polypropylene with covalently attached antioxidants to mitigate issues with chemical permeation and water quality with current waterpipe materials. Polypropylene was selected as it has inherently good physical properties and low permeability that will limit chemical migration from the outside, addressing one critical factor impacting water q ...

    SBIR Phase I 2018 Environmental Protection Agency
  2. Decontamination of Category A Viruses on Porous Surfaces and Sensitive Equipment

    SBC: MATERIALS ENGINEERING AND TECHNICAL SUPPORT SERVICES CORP.            Topic: 17NCER4A

    METSS will demonstrate the feasibility of utilizing two separate technologies, chlorine dioxide (ClO2) and Hot Air Decontamination (HAD; high temperature/low humidity) as on-site decontamination processes for treating_x000D_ Category A virus contaminated items including porous materials (e.g., upholstery, bedding, fabric, carpet, unpainted wood); sensitive equipment; and potentially reusable mater ...

    SBIR Phase I 2018 Environmental Protection Agency
  3. Feasibility of rPET Lignin-Content Polylols for Significant Reduction of Halogenated Flame Retardant in Construction Spray Foam

    SBC: Resinate Materials Group, Inc.            Topic: 17NCER6A

    This EPA SBIR Phase I Research and Development proposal will demonstrate feasibility of reduction in halogenated flame retardant use in polyisocyanurate foams prepared from lignincontent rPET polyols. The study will show whether or not the lignin rPET polyol formulations meet ASTM flame retardancy standards and thus reduce or eliminate the need for halogenated fire retardants (HFRs) in spray foams ...

    SBIR Phase I 2018 Environmental Protection Agency
  4. Inexpensive Formaldehyde Sensors for Indoor Air Quality (IAQ) Applications

    SBC: Giner, Inc.            Topic: 16NCER1A

    Recognizing the need to monitor formaldehyde gas in residential and industrial buildings,_x000D_ Giner, Inc. (Giner) will continue the successful work started in Phase I and will develop,_x000D_ fabricate and demonstrate a formaldehyde gas monitor that is capable of continuously_x000D_ measuring formaldehyde in the range of 0-2000 parts per billion (ppb) with a resolution of 10 ppb. The wireless c ...

    SBIR Phase II 2018 Environmental Protection Agency
  5. Enhanced Canine Performance, Protection and Survivability

    SBC: Metro International Biotech, LLC            Topic: SOCOM172002

    Given the benefits of exercise on general health, orally active compounds that can mimic or potentiate the effects of exercise have been of keen interest as therapeutic and dietary ingredients. Our proposed approach for enhancement of USSOCOM Multi-Purpose Canine (MPC) endurance and sensory performance using an exercise mimetic is based on the observation that age-related decline of nicotinamide ...

    SBIR Phase I 2018 Department of DefenseSpecial Operations Command
  6. Enhanced Canine Performance, Protection and Survivability

    SBC: Virtech Bio, Inc.            Topic: SOCOM172002

    The goal of this Proposal is treatment of hemorrhage in SOCOM canines using a novel hemoglobin resuscitation fluid with oxygen carrying and plasma expansion properties (VIR-VET, a product of VirTech Bio). VIR-VET is designed to provide immediate hemodynamic stability and oxygenation to injured canines with blood loss. The product has advantages over traditional military fluid therapies: 1) As cell ...

    SBIR Phase I 2018 Department of DefenseSpecial Operations Command
  7. Enhanced Canine Performance, Protection and Survivability

    SBC: REJUVENATE BIO INC            Topic: SOCOM172002

    Multi-Purpose Canines (MPCs) are an integral aspect of the US military. The continued expansion and use of these indispensable force multipliers in an intense, ever-changing and complex battlefield requires enhancing their innate capabilities in a timely manner. Additionally, canines have a relatively short life span, and considering the substantial training period that MPCs must undergo, their ef ...

    SBIR Phase I 2018 Department of DefenseSpecial Operations Command
  8. Group 2 (<55lbs) Unmanned Aerial System for Special Operations Forces Tactical-Level Intelligence, Surveillance, and Reconnaissance Operations

    SBC: SEALANDAIRE TECHNOLOGIES, INC.            Topic: SOCOM172005

    SeaLandAire Technologies, Inc. (SLA) proposes to meet this Group 2 need with an electric drive concept that will be capable of a 20-30 lbs. modular payload, with comparable range and endurance to current grp 2 ISR UAS, while still maintaining sufficient ISR capabilities. This UAS concept is able to covertly and safely deliver payload to within 1 meter accuracy, then extract a different payload an ...

    SBIR Phase I 2018 Department of DefenseSpecial Operations Command
  9. Widely-Tunable Distributed-feedback Mid-Infrared Laser for Standoff Chemical Detection

    SBC: Pendar Technologies, LLC            Topic: A10075

    The Special Operations Forces require the compact capability to rapidly and safely scan an enclosed space and assess the presence of drugs, explosive, or other chemicals in order to support quickly search a room for potential evidence and reduce hostile risks.Pendar is proposing to develop for the current program a handheld standoff chemical detector with a capability for 2-m standoff chemical ana ...

    SBIR Phase II 2018 Department of DefenseSpecial Operations Command
  10. Daytime Marker

    SBC: JGM ASSOCIATES, INC.            Topic: SOCOM173001

    Phase I work will combine computer modeling and lab experiments to demonstrate feasibility of a hand-held marker / designator that can generate laser emission at 1064 nm, a wavelength in the 3000 to 4200 nm range, and at a wavelength in the 4400 to 5400 nm range.By improving laser beam quality by a factor of 4 to 16, we will reduce laser output pulse energy requirements by a factor of 10 to 100 at ...

    SBIR Phase I 2018 Department of DefenseSpecial Operations Command
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