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The Award database is continually updated throughout the year. As a result, data for the given year is not complete until April of the following year. Annual Reports data is a snapshot of agency reported information for that year and hence might look different from the live data in the Awards Information charts.

  1. Low Temperature Ammonia Cracking Membrane Reactor for Hydrogen Generation

    SBC: BETTERGY CORP.            Topic: DEFOA0001563

    There is growing interest in the use of ammonia as a clean alternative to fossil fuels. Ammonia belongs to a group of energy-dense liquid fuels that are much easier to store and transport than hydrogen. As ammonia decomposes to hydrogen through in a single reaction step and neither carbon oxide nor sulfur is involved in the product stream, ammonia is one of the most promising carbon neutral liquid ...

    SBIR Phase I 2017 Department of EnergyARPA-E
  2. Low Temperature Ammonia Cracking Membrane Reactor for Hydrogen Generation

    SBC: BETTERGY CORP.            Topic: DEFOA0001563

    There is growing interest in the use of ammonia as a clean alternative to fossil fuels. Ammonia belongs to a group of energy-dense liquid fuels that are much easier to store and transport than hydrogen. As ammonia decomposes to hydrogen through in a single reaction step and neither carbon oxide nor sulfur is involved in the product stream, ammonia is one of the most promising carbon neutral liquid ...

    SBIR Phase II 2017 Department of EnergyARPA-E
  3. Low Temperature Ammonia Cracking Membrane Reactor for Hydrogen Generation

    SBC: BETTERGY CORP.            Topic: DEFOA0001563

    There is growing interest in the use of ammonia as a clean alternative to fossil fuels. Ammonia belongs to a group of energy-dense liquid fuels that are much easier to store and transport than hydrogen. As ammonia decomposes to hydrogen through in a single reaction step and neither carbon oxide nor sulfur is involved in the product stream, ammonia is one of the most promising carbon neutral liquid ...

    SBIR Phase II 2017 Department of EnergyARPA-E
  4. HYPERLAMINAR FLOW ENGINE FOR COMBINED HEAT AND POWER

    SBC: MOHAWK INNOVATIVE TECHNOLOGY, INC.            Topic: DEFOA0001380

    The team of Mohawk Innovative Technology Inc., (MiTi), University of Texas – Center for Electro-Mechanics and MITIS of Belgium propose a truly transformative, ultra-high-speed and oilfree, Hyperlaminar Flow Engine (HFE) system that combines low cost viscous shear driven compressor and expander, an integrated low pressure drop recuperator, flameless combustor, permanent magnet generator, lubrican ...

    SBIR Phase I 2015 Department of EnergyARPA-E
  5. HYPERLAMINAR FLOW ENGINE FOR COMBINED HEAT AND POWER

    SBC: MOHAWK INNOVATIVE TECHNOLOGY, INC.            Topic: DEFOA0001380

    The team of Mohawk Innovative Technology Inc., (MiTi), University of Texas – Center for Electro-Mechanics and MITIS of Belgium propose a truly transformative, ultra-high-speed and oilfree, Hyperlaminar Flow Engine (HFE) system that combines low cost viscous shear driven compressor and expander, an integrated low pressure drop recuperator, flameless combustor, permanent magnet generator, lubrican ...

    SBIR Phase II 2015 Department of EnergyARPA-E
  6. HYPERLAMINAR FLOW ENGINE FOR COMBINED HEAT AND POWER

    SBC: MOHAWK INNOVATIVE TECHNOLOGY, INC.            Topic: DEFOA0001380

    The team of Mohawk Innovative Technology Inc., (MiTi), University of Texas – Center for Electro-Mechanics and MITIS of Belgium propose a truly transformative, ultra-high-speed and oilfree, Hyperlaminar Flow Engine (HFE) system that combines low cost viscous shear driven compressor and expander, an integrated low pressure drop recuperator, flameless combustor, permanent magnet generator, lubrican ...

    SBIR Phase II 2015 Department of EnergyARPA-E
  7. A High Efficiency SACI 1 kW Generator System with Integrated Waste Energy Recovery

    SBC: Air Squared, Inc.            Topic: DEFOA0001380

    We propose a novel high efficiency (≈40%) generator system capable of providing 1 kWe along with hot water on-demand. The integration of two novel concepts: 1) an internal combustion engine (ICE) operating on Spark-Assisted Compression Ignition (SACI) combustion of natural gas (NG), and 2) a bottoming Organic Rankine Cycle (ORC) with waste energy recovery (WER) from ICE exhaust enables the overa ...

    SBIR Phase I 2015 Department of EnergyARPA-E
  8. A High Efficiency SACI 1 kW Generator System with Integrated Waste Energy Recovery

    SBC: Air Squared, Inc.            Topic: DEFOA0001380

    We propose a novel high efficiency (≈40%) generator system capable of providing 1 kWe along with hot water on-demand. The integration of two novel concepts: 1) an internal combustion engine (ICE) operating on Spark-Assisted Compression Ignition (SACI) combustion of natural gas (NG), and 2) a bottoming Organic Rankine Cycle (ORC) with waste energy recovery (WER) from ICE exhaust enables the overa ...

    SBIR Phase II 2015 Department of EnergyARPA-E
  9. A High Efficiency SACI 1 kW Generator System with Integrated Waste Energy Recovery

    SBC: Air Squared, Inc.            Topic: DEFOA0001380

    We propose a novel high efficiency (≈40%) generator system capable of providing 1 kWe along with hot water on-demand. The integration of two novel concepts: 1) an internal combustion engine (ICE) operating on Spark-Assisted Compression Ignition (SACI) combustion of natural gas (NG), and 2) a bottoming Organic Rankine Cycle (ORC) with waste energy recovery (WER) from ICE exhaust enables the overa ...

    SBIR Phase II 2015 Department of EnergyARPA-E
  10. Advanced Manufacturing and Performance Enhancements for Reduced-cost Silicon Carbide MOSFETs (AMPERES)

    SBC: MONOLITH SEMICONDUCTOR INC            Topic: 1

    The team of Monolith Semiconductor, X-FAB Texas, Rensselaer, United Technologies and Univ. of Arkansas will provide breakthrough advances in switch performance and manufacturing cost reduction to deliver cost-effective 100Amp, 1200V SiC power MOSFETs to enable widespread adoption. Based on the combined expertise in both Silicon and SiC power device design and processing, Monolith Semiconductor is ...

    SBIR Phase I 2013 Department of EnergyARPA-E

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