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The Award database is continually updated throughout the year. As a result, data for FY24 is not expected to be complete until March, 2025.

Download all SBIR.gov award data either with award abstracts (290MB) or without award abstracts (65MB). A data dictionary and additional information is located on the Data Resource Page. Files are refreshed monthly.

The SBIR.gov award data files now contain the required fields to calculate award timeliness for individual awards or for an agency or branch. Additional information on calculating award timeliness is available on the Data Resource Page.

  1. A 10 Kilowatt, Rankin Cycle Agricultural Waste to Energy Conversion Module Utilizing Ultra Micro Turbo-Alternators

    SBC: Fluidic microControls, Inc.            Topic: H

    In 2011, there were 60,000 dairy farms in the US. Of there, 56,600 had herds of fewer than 500 animals. Currently, manure digester installations are only considered economical for herds of at least 500 animals. There require turbine or diesel generator sets of 100 Kilowatt size and larger. The need exists for a smaller waste to energy conversion approach for implementation on small farms were ...

    SBIR Phase II 2013 Environmental Protection Agency
  2. A Low-Cost Rare Earth Elements Recovery Technology

    SBC: PHYSICAL SCIENCES INC.            Topic: B

    Physical Sciences Inc. and the University of Kentucky Center for Applied Energy Research propose to develop a unique enabling technology to significantly reduce U.S. dependency for Rare Earth Elements (REE) on foreign suppliers and our global competitors. Our innovation is a process that utilizes very inexpensive and abundant domestic raw materials for high-yield and low-cost generation of REE in ...

    SBIR Phase I 2013 Environmental Protection Agency
  3. Electro-swing adsorption for high efficiency direct air capture

    SBC: Verdox, Inc.            Topic: G

    There is a clear scientific consensus on the role of anthropogenic greenhouse gas emissions in the unusually wild fluctuations of global climate patterns over the last century. To that end there has been an exponential growth of investments in “clean tech”, and mainly in direct air capture (DAC). Verdox, Inc. aims to introduce a radically novel technology to the field which presents a paradigm ...

    SBIR Phase I 2020 Department of EnergyARPA-E
  4. Electro-swing adsorption for high efficiency direct air capture

    SBC: Verdox, Inc.            Topic: G

    There is a clear scientific consensus on the role of anthropogenic greenhouse gas emissions in the unusually wild fluctuations of global climate patterns over the last century. To that end there has been an exponential growth of investments in “clean tech”, and mainly in direct air capture (DAC). Verdox, Inc. aims to introduce a radically novel technology to the field which presents a paradigm ...

    SBIR Phase II 2020 Department of EnergyARPA-E
  5. Enabling Technology- Reducing Greenhouse Gas Emissions and Energy Demands in the Meat Production Industry via Scaling Advanced 3D Culture Bioreactors

    SBC: Cambridge Crops, Inc.            Topic: G

    Food production, and in particular animal-derived meat products, are a major source of green-house gases, compounded by the remarkable inefficiency in biomass conversion (grain to dense muscle tissue in meat), along with growing challenges with food safety, quality and nutrition. To address this growing problem, we propose to exploit the emerging field of cellular agriculture (tissue engineering o ...

    STTR Phase I 2020 Department of EnergyARPA-E
  6. Enabling Technology- Reducing Greenhouse Gas Emissions and Energy Demands in the Meat Production Industry via Scaling Advanced 3D Culture Bioreactors

    SBC: Cambridge Crops, Inc.            Topic: G

    Food production, and in particular animal-derived meat products, are a major source of green-house gases, compounded by the remarkable inefficiency in biomass conversion (grain to dense muscle tissue in meat), along with growing challenges with food safety, quality and nutrition. To address this growing problem, we propose to exploit the emerging field of cellular agriculture (tissue engineering o ...

    STTR Phase II 2020 Department of EnergyARPA-E
  7. Environmentally-Benign Polytetrafluoroethylene (PTEE) Coating for Mold Release

    SBC: GVD CORP            Topic: C

    GVD proposed to develop high performance, VOC-free and PFOA-free, non-stick mold release coating based on its novel PTFE (Polytetraflouroethylene) fluoropolymer technology. Most commercial mold release agents make use of organic solvents and vaporize during drying, creating a significant air quality impact. Even water-based formulations often require the use of fluorinated surfactant additives to ...

    SBIR Phase II 2013 Environmental Protection Agency
  8. Ethylene-oxide monitor with ultra-low limit of detection

    SBC: AERODYNE RESEARCH INC            Topic: 19NCER2A

    We propose an ethylene-oxide monitor with ultra-low limit of detection based on sensitive and selective optical measurement technology.Due to recently lowered exposure limits for ethylene oxide (EtO) in ambient air to 1 1 parts per trillion (long-term,1 0-4 risk level) monitoring EtO will require advanced technology. Current methods require sample trapping and preconcentration to achieve an accept ...

    SBIR Phase I 2020 Environmental Protection Agency
  9. Flexible Low Temperature CO2 Capture System, E-CACHYS

    SBC: ENVERGEX LLC            Topic: 1

    This project focuses on the design, integration and optimization of a flexible natural gas combined cycle plant with carbon capture, capable of operating in a highly variable renewable energy environment. Renewable energy sources such as wind and solar power offer unique solutions in our quest to reduce global carbon dioxide (CO2) emissions. However, the increasing penetration of these high variab ...

    STTR Phase I 2020 Department of EnergyARPA-E
  10. Flexible Low Temperature CO2 Capture System, E-CACHYS

    SBC: ENVERGEX LLC            Topic: 1

    This project focuses on the design, integration and optimization of a flexible natural gas combined cycle plant with carbon capture, capable of operating in a highly variable renewable energy environment. Renewable energy sources such as wind and solar power offer unique solutions in our quest to reduce global carbon dioxide (CO2) emissions. However, the increasing penetration of these high variab ...

    STTR Phase II 2020 Department of EnergyARPA-E
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