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Award Data

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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. Babington Net-Power, Multi-liquid Fuel Heater/Cooker

    SBC: Babington Technology            Topic: 15NCER02

    For 50 years Babington has pioneered the field of ultra-clean combustion for home and off-grid heating and cooking. Our unique air-atomization and burner technology provides for near perfect combustion of liquid fuels with variable heat outputs. Babington burners have heated homes and millions of meals for U.S. militaries and disaster relief organizations worldwide. Recently, we reengineered ou ...

    SBIR Phase I 2016 Environmental Protection Agency
  2. Encapsulation of Biological Contaminants in Transportation Systems

    SBC: TIAX LLC            Topic: 15NCER07

    TIAX has developed a technology that meets the EPA' s need for decontamination of biological material in railway and subway cars. It provides simultaneous encapsulation and killing of biological contaminants with the added capability for decontamination of chemical and radiological hazards. Current technologies are manpower intensive involving separate steps for site preparation; decontamination; ...

    SBIR Phase I 2016 Environmental Protection Agency
  3. Fiberoptic Diisocyanate Personal Monitoring Device

    SBC: LIGHTLINE TECHNOLOGIES INC            Topic: N/A

    LightLine Technologies proposes to develop a highly sensitive fiberoptic personal monitoirng device similar to a sampling badge, targeted for the simple and conventional measurement of total isocyanate and diisocyanate (I&DCY) airbourne exposure. With verymodest smapling processing (controlled heating) sensing of all types of I&DCYs will be possige and is the ptimary goal of this program. Ths sa ...

    SBIR Phase I 2005 Environmental Protection Agency
  4. Identification and Sorting of Printed Wiring Boards (PWB) Within an E-Waste Recycling Stream

    SBC: National Recovery Technologies LLC            Topic: N/A

    Electoronic waste (e-waste) is one of the most rapidly growing waste problems worldwide. Improper handling of e-waste results in vast amounts of toxic waste being sent to landfill and leaching into the water supply. Due to these concerns e-waste recycling is a rapidly growing industry. Unfortunately, most current e-waste recycling processes rely on either manual hand sorting or differental dens ...

    SBIR Phase I 2005 Environmental Protection Agency
  5. Multiplexed Chemical Sensor for Water Security

    SBC: REAL-TIME ANALYZERS INC            Topic: N/A

    The overall goal of this proposed program (through Phase III) is to provide the EPA with a chemical sensor thatn can be multiplerxed into water distributon systems to provide early warning of poisoned water supples. This will be accomplished by developing surface-enhanced Raman (SER) sensors than can be integrated into water supply systems and coupled to a central Paman analyzer via fiber optics. ...

    SBIR Phase I 2005 Environmental Protection Agency
  6. Fiberoptic Diisocyanate Personal Monitoring Device

    SBC: LIGHTLINE TECHNOLOGIES INC            Topic: 04NCERD2

    LightLine Technologies, Inc., plans to develop a highly sensitive fiber optic personal monitoring device, similar to a sampling badge, targeted for the simple and convenient measurement of total isocyanate and diisocyanate (I&DCY) airborne exposure. With very modest sampling processing (controlled heating), sensing of all types of I&DCYs will be possible and is the primary goal of this research pr ...

    SBIR Phase I 2005 Environmental Protection Agency
  7. Identification and Sorting of Printed Wiring Boards (PWB) Within An E-Waste Recycling Stream

    SBC: National Recovery Technologies LLC            Topic: 04NCERG1

    Electronic waste (e-waste) is one of the most rapidly growing waste problems worldwide. Improper handling of e-waste results in vast amounts of toxic waste being sent to landfills and leaching into the water supply. Because of these concerns, e-waste recycling is a rapidly growing industry. Unfortunately, most current e-waste recycling processes rely on manual hand sorting or differential density ...

    SBIR Phase I 2005 Environmental Protection Agency
  8. Multiplexed Chemical Sensor for Water Security

    SBC: REAL-TIME ANALYZERS INC            Topic: 04NCERI1

    The goal of this research project (through Phase III) is to develop a chemical sensor that can be multiplexed into water distribution systems to provide early warning of poisoned water supplies. This will be accomplished by developing surface-enhanced Raman (SER) sensors that can be integrated into water supply systems and coupled to a central Raman analyzer via fiber optics. In Phase I, Real-Time ...

    SBIR Phase I 2005 Environmental Protection Agency
  9. SiC-Microhotplate ConductometricSensor Array for NOx, CO, and Hydrocarbon Monitoring of Hot Engine Emissions

    SBC: BOSTON MICROSYSTEMS INC            Topic: N/A

    As the number of mobile source emissions in the United States increases, it is necessary to further reduce the emission of CO, NOx, and hydrocarbons from such sources to provide safe air quality, especially in urban environments. Significant reductions in pollution emissions can be achieved using advanced engine controls based on real-time measurements of CO, NOx, and hydrocarbon concentrations i ...

    SBIR Phase I 2003 Environmental Protection Agency
  10. Low-Cost Zeolite Membrane Modules for Solvent Dehydration

    SBC: Ceramem Corporation            Topic: N/A

    A number of very high-volume liquid chemicals form azeotropes with water and can be dehydrated to required purity levels only through the use of entrainers or drying agents. The handling and disposal of these additional chemicals present significant environmental risks. Recently, membrane pervaporation using both polymeric and inorganic membrane modules has been commercialized as a method to deh ...

    SBIR Phase I 2003 Environmental Protection Agency
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