The Collier Report of U.S. Government Contracting

Old School Reporting Using Modern Technology

Reaction Systems Inc

  • Contact Person: Todd Leeson
  • Contact Phone: 303-881-7992
  • Contact Email: TLEESON@RXNSYS.COM
  • Business Structure:
  • Corporate Entity (Not Tax Exempt)
  • Business Type:
  • For Profit Organization
  • Subchapter S Corporation
  • Industries Served:
  • Product Areas: R&D-MATH & COMPUTER SCI-B RES, R&D- GENERAL SCIENCE/TECHNOLOGY: MATHEMATICAL/COMPUTER SCIENCES (BASIC RESEARCH), R&D- GENERAL SCIENCE/TECHNOLOGY: ENVIRONMENTAL SCIENCES (APPLIED RESEARCH/EXPLORATORY DEVELOPMENT), R&D-ENVIRONMENTAL SCI-A RES/EXPL DE, R&D- GENERAL SCIENCE/TECHNOLOGY: ENGINEERING (APPLIED RESEARCH/EXPLORATORY DEVELOPMENT), ENGINEERING (APPLIED/EXPLORATORY)

Sampling of Federal Government Funding Actions/Set Asides

In order by amount of set aside monies.

  • $750,000 - Wednesday the 16th of September 2015
    National Aeronautics And Space Administration
    NASA SHARED SERVICES CENTER
    IGF::OT::IGF OTHER FUNCTION - THE DEVELOPMENT OF NEW, ROBUST, LIGHTWEIGHT SYSTEMS FOR CO2 REMOVAL DURING EVA IS A CRUCIAL NEED FOR NASA. CURRENT ACTIVITY IS FOCUSED ON EXTENDING MISSION TIMES WITHOUT INCREASING THE SIZE AND WEIGHT OF THE PORTABLE LIFE SUPPORT SYSTEM (PLSS). ALTHOUGH CO2 SORBENTS THAT CAN BE REGENERATED DURING EVA ARE BEING STUDIED, THESE SYSTEM ADD "ON BACK" HARDWARE, INCREASING WEIGHT AND COMPLEXITY, AND REDUCING RELIABILITY. A SIMPLER APPROACH IS TO USE A MEMBRANE SYSTEM TO SEPARATE CO2 AND H2O FROM THE O2 ENVIRONMENT, HOWEVER SEPARATING CO2 FROM O2 IS DIFFICULT WITH STANDARD MEMBRANES. HOWEVER, DEVELOPING A LOW PRESSURE LIQUID SORBENT THAT REVERSIBLY ABSORBS CO2, COULD FACILITATE THE NEEDED SEPARATION. IN THE PHASE I PROJECT, REACTION SYSTEMS SYNTHESIZED NEW CO2 LOW VAPOR PRESSURE SORBENTS THAT HAD GOOD REVERSIBLE CO2 ABSORPTION CAPACITY AND DEMONSTRATED HIGH SELECTIVITY FOR CO2 OVER O2 IN A SUPPORTED LIQUID MEMBRANE TESTS. THEREFORE WE DEMONSTRATED THE FEASIBILITY OF EMPLOYING A SUPPORTED LIQUID MEMBRANE TO CONTROL CO2 IN EVA. IN PHASE II WE WILL IMPROVE THE PERFORMANCE BY INCREASING THE SORBENT LOADING, REDUCING ITS VISCOSITY, AND OPTIMIZING THE MEMBRANE SUPPORT. WE WILL THEN DESIGN AND CONSTRUCT A PROTOTYPE, THAT IS SIZED TO CONTROL THE METABOLIC CO2 GENERATION OF A SINGLE CREW MEMBER.
  • $56,442 - Tuesday the 30th of October 2012
    Department Of Air Force
    FA8650 USAF AFMC AFRL/RQK
    SBIR II EXTENSION
  • $150,000 - Monday the 21st of November 2011
    Department Of Air Force
    FA9300 AFTC PZR
    P.O. SBIR PHASE I - A NOVEL THERMAL METHOD FOR RAPID COKE MEASUREMENT IN LIQUID ROCKET ENGINES

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