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. Promoting Responsible Drinking: An Internet-based, Interactive Computer Tailored Intervention

    SBC: Pro-Change Behavior Systems Inc            Topic: NIAAA

    DESCRIPTION provided by applicant Excessive alcohol use is associated with a range of serious and costly health social and economic consequences at the individual and societal level This program of research serves as a venue by which to produce and test an innovative science based and cost effective means to intervene in a private convenient and individualized way with employed adults wh ...

    SBIR Phase II 2012 Department of Health and Human ServicesNational Institutes of Health
  2. Improved TTHM Reduction Processing and Operational Efficiencies in Potable Water Distributions Systems Using Solar-Powered Circulation with Diffused, Near-Surface Aeration

    SBC: SolarBee, Inc.            Topic: A

    The U.S. EPA Stage 2 Disinfectants and Disinfection Byproducts Rule (S2DDBR) requires potable water utilities to maintain total trihalomethane (TTHM) concentrations below 80µg/L at all locations within distribution systems beginning in 2012 due to adverse health-effect risks. Air stripping effectively volatilizes TTHMs due to their low Henry’s law constants. However, commercially available ai ...

    SBIR Phase I 2012 Environmental Protection Agency
  3. Solid Polymer Electrolytes with High Lithium Ion Conductivity and Transport Number for Hybrid Electric Power-train Systems

    SBC: HYBRID PLASTICS            Topic: 09b

    Current energy storage devices have energy densities that are barely sufficient for low cost electric-vehicles and rely on lithium ion batteries that use flammable, unsafe, liquid electrolytes. However, in order to replace liquid electrolyes in lithium batteries for hybrid electric power train systems, solid polymer electrolytes, which have the advantages of safety and flexibility, must attain con ...

    SBIR Phase I 2012 Department of Energy
  4. Solid Oxide Fuel Cell Cathode Enhancement Through a Vacuum-Assisted Infiltration Technique

    SBC: Materials and Systems Research, Inc.            Topic: 21c

    SOFC technology promises to provide an efficient method by which electricity can be generated from coal-derived syngas, biofuels, and natural gas, while increasing energy security and reducing greenhouse gas emissions. The large capital costs attributed to the cathode low performance and long-term stability issues are a current limitation of SOFC technologies that must be addressed before commerci ...

    SBIR Phase II 2012 Department of Energy
  5. Advanced sodium batteries with enhanced safety and low cost processing

    SBC: Materials and Systems Research, Inc.            Topic: 1

    Sodium beta-alumina batteries are one of the most promising large-scale electrical energy storage technologies due to their high energy density and excellent cycling capability. Despite many advantages, the sodium batteries have several barriers for successful commercialization, mainly related to safety issues and high capital investment for installation. The current battery cells typically oper ...

    SBIR Phase I 2012 Department of EnergyARPA-E
  6. Advanced sodium batteries with enhanced safety and low cost processing

    SBC: Materials and Systems Research, Inc.            Topic: 1

    Sodium beta-alumina batteries are one of the most promising large-scale electrical energy storage technologies due to their high energy density and excellent cycling capability. Despite many advantages, the sodium batteries have several barriers for successful commercialization, mainly related to safety issues and high capital investment for installation. The current battery cells typically oper ...

    SBIR Phase II 2012 Department of EnergyARPA-E
  7. Ultra-High Temperature Thermal Barrier Coatings

    SBC: HiFunda, LLC            Topic: 19d

    The US Department of Energy has a stated goal to increase the energy efficiency of turbines, and one well recognized method of achieving this is through the use of ceramic thermal barrier coatings (TBCs). However, state of the art zirconia-based TBCs have a temperature limit of about 1200oC, and new TBC materials that can operate at elevated temperatures of 1300oC and above are needed to continue ...

    STTR Phase I 2012 Department of Energy
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