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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. Applying Passive Samplers to Assess Perfluoroalkylated Substances in Soils and Sediments

    SBC: Accurate Environmental LLC            Topic: 17NCER3A

    The presence of per- and polyfluoroalkyl substances (PFAS) in the environment represents an emerging issue due to their stability, bioaccumulation potential, and risks to human and ecological well-being. There is a critical need to develop sampling methods for PFAS to assess risks and inform remedial investigations and feasibility studies (RI/FS) at locations where historical releases have elevate ...

    SBIR Phase I 2018 Environmental Protection Agency
  2. Feasibility of rPET Lignin-Content Polylols for Significant Reduction of Halogenated Flame Retardant in Construction Spray Foam

    SBC: Resinate Materials Group, Inc.            Topic: 17NCER6A

    This EPA SBIR Phase I Research and Development proposal will demonstrate feasibility of reduction in halogenated flame retardant use in polyisocyanurate foams prepared from lignincontent rPET polyols. The study will show whether or not the lignin rPET polyol formulations meet ASTM flame retardancy standards and thus reduce or eliminate the need for halogenated fire retardants (HFRs) in spray foams ...

    SBIR Phase I 2018 Environmental Protection Agency
  3. Indoor Formaldehyde Detection by a Low-Cost Chemical Sensor Based on Organic Nanofibers

    SBC: Vaporsens, Inc.            Topic: 16NCER1A

    Need: People are exposed to formaldehyde, a carcinogen found in building materials. Highly sensitive, real-time formaldehyde sensors would improve human safety by alerting users to harmful concentrations. _x000D_ _x000D_ Technical Feasibility: Vaporsens produces chemical sensors based on novel organic nanofiber technology. Phase 1 results demonstrated high selectivity, rapid-response time, and dem ...

    SBIR Phase II 2018 Environmental Protection Agency
  4. Development of “Permit Wizard” Software for AssistedPermit Application Completion

    SBC: Total Quality Systems, Inc.            Topic: 833

    TECHNICAL ABSTRACT: The objective of this project is to research the technical feasibility of designing a software tool “Permit Wizard” that will automate the process for aquamarine permit application submittal, review, approval/disapproval and issue (including collection of fees). Aquaculture producers are currently faced with slow, complex, and often confusing permitting processes that must ...

    SBIR Phase I 2018 Department of CommerceNational Oceanic and Atmospheric Administration
  5. Economic recovery and reuse of nutrients from wastewater

    SBC: XPLOSAFE, LLC            Topic: 15NCER05

    Nutrient pollution caused by excess nitrogen and phosphorus in the water is a costly and challenging environmental problem with widespread negative health and ecological effects. During Phase I XploSafe successfully confirmed the technical feasibility of using its proprietary low-cost biodegradable sorbents to passively adsorb target nutrient ions (ammonium, nitrate, urea, and phosphate) from prim ...

    SBIR Phase II 2017 Environmental Protection Agency
  6. Indoor Formaldehyde Detection by a Low-Cost Chemical Sensor Based on Organic Nanofibers

    SBC: Vaporsens, Inc.            Topic: 16NCER1A

    Need: Formaldehyde comes from a number of indoor sources and is carcinogenic. Vaporsens is offering a sensor capable of detecting formaldehyde at low concentrations (50 ppb) at an affordable price point (~$100)._x000D_ _x000D_ Technical Feasibility: Vaporsens organic nanofiber have been developed for a number of applications, including detecting explosives, narcotics, toxic industrial chemicals ...

    SBIR Phase I 2017 Environmental Protection Agency
  7. Zero-Emission Reconstituted Wood Panels for Building Interiors

    SBC: METNA CO            Topic: 16NCER6A

    Organic resin-bonded reconstituted wood products, including oriented strandboard (OSB) and medium density fiberboard (MDF), are major sources of the volatile organic compounds (VOCs) released to the building interior, that are harmful to human health. The main thrust of this project is to significantly reduce the release of VOCs by replacing organic resins with inorganic polymer binders in reconst ...

    SBIR Phase I 2017 Environmental Protection Agency
  8. Economic recovery and reuse of nutrients from wastewater

    SBC: XPLOSAFE, LLC            Topic: 15NCER05

    Nutrient pollution caused by excess nitrogen and phosphorus in the water is a costly and challenging environmental problem with widespread potential for negative health and ecological effects. The proposed solution to this problem is the capture of ammonium, urea, nitrate and phosphate on low-cost biodegradable sorbent pellets that upon saturation, with the nutrients can be employed directly as sl ...

    SBIR Phase I 2016 Environmental Protection Agency
  9. An Alternative Concrete Chemistry with Significantly Enhanced Durability, Sustainability, Economy, Safety and Strength

    SBC: METNA CO            Topic: 14NCER5A

    Manufacturing of Portland cement, the primary binder in concrete, accounts for ~7% of global CO2 emissions, 4% of energy use, and exhaustion of natural resources. Premature aging of concrete in infrastructure systems is another major concern.  A robust binder chemistry has been developed to overcome these drawbacks.  The original approach to production of this binder, however, is not compatible ...

    SBIR Phase II 2016 Environmental Protection Agency
  10. Low-cost, Regenerable Air Filter for Efficient Gaseous Pollutants Removal

    SBC: Precision Combustion, Inc.            Topic: 13NCERD2

    Precision Combustion, Inc. (PCI) is developing a regenerable high efficiency filter technology for direct removal of gaseous pollutants such as VOCs and CO2 from indoor air. In addition to controllably improving indoor air quality (IAQ), the direct removal of these pollutants will reduce the requirement for building ventilation with outdoor make-up air currently used to dilute the concentration of ...

    SBIR Phase II 2015 Environmental Protection Agency

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