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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 April, 2020.

  1. N/A

    SBC: Lynntech Inc.            Topic: N/A

    N/A

    SBIR Phase II 2000 Environmental Protection Agency
  2. MEMS Biosensor for In Situ Drinking Water Analysis

    SBC: AGAVE BIOSYSTEMS INC.            Topic: N/A

    The occurrence of causative agents such as Cryptosporidium parvum and other pathogens in water supplies presents a critical issue. Transmitted through water and animals, these organisms provide a reservoir of infection, which results in the excretion of the environmentally stable cysts or oocysts that are impervious to inactivation by many drinking water disinfectants. Cryptosporidium infections a ...

    SBIR Phase II 2001 Environmental Protection Agency
  3. A New Microfludic System for the Determination of Cryptosporidium Oocysts in Water

    SBC: Lynntech Inc.            Topic: N/A

    Cryptosporidium, originating from contamination of public drinking water supplies, ponds, rivers, or swimming pools, have cause large-scale and deadly outbreaks, which became a major cause of waterborne infectious diseases. Since 1991, the percent of outbreaks attributable to Cryptosporidium has doubled, and in the 1993-1994 period, 17 percent of all outbreaks were caused by Cryptosporidium. In 19 ...

    SBIR Phase II 2001 Environmental Protection Agency
  4. A Novel Method for Converting a Negative Value Waste Into a Commodity Chemical

    SBC: Lynntech Inc.            Topic: N/A

    It is estimated that there are approximately 300 million tires discarded each year in the United States and this is in addition to the 800 million scrap tires that reside in landfills and tire dumps throughout the country. About 180 million are recycled, and the remaining 120 million scrap tires are discarded (legally or illegally) in landfills or tire dumps. Current tire reuse technologies offer ...

    SBIR Phase II 2001 Environmental Protection Agency
  5. N/A

    SBC: Lynntech Inc.            Topic: N/A

    Not Available The purpose of the proposed research is to show that significant improvements in the performance of electrically tunable microwave devices can be obtained using a novel type of superlattice structures. The approach is based on recent work at Neocera showi

    SBIR Phase I 2000 Environmental Protection Agency
  6. N/A

    SBC: Lynntech Inc.            Topic: N/A

    Not Available NASA SBIR Solicitation 98-1 emphasizes that ¿Advanced extravehicular activity (EVA) systems are necessary for the successful support of future human space missions.¿ Topic 09.05 recognizes that development of advanced EVA systems depends on ¿methods for..

    SBIR Phase I 2000 Environmental Protection Agency
  7. N/A

    SBC: Lynntech Inc.            Topic: N/A

    Not Available Mod Works proposes to construct major airframe components using modern aluminum manufacturing process (MAM). The objective will be to reduce the cost of manufacturing while maintaining better surface quality. Major reduction in cost and labor requirement

    SBIR Phase I 2000 Environmental Protection Agency
  8. N/A

    SBC: Lynntech Inc.            Topic: N/A

    Not Available There is rapid growth in the amount of remotely sensed (RS) image data. All future NASA and commercial remote sensing projects will have to deal with databases of unprecedent size and complexity. Providing an effective information link between these vast

    SBIR Phase I 2000 Environmental Protection Agency
  9. Novel Method for Ferrate Production

    SBC: Lynntech Inc.            Topic: N/A

    This Phase I project is concerned with the development of a simple, cost-effective, environmentally friendly process for the production of potassium ferrate. Lynntech, Inc.'s proposed method can be readily scaled up for the production of industrial quantities of this extremely useful oxidant. Ferrate is an environmentally friendly oxidant that represents an ideal substitute for other oxidants, par ...

    SBIR Phase I 2001 Environmental Protection Agency
  10. N/A

    SBC: MicroFab Technologies Inc            Topic: N/A

    Not Available The proposed work involves a new unstructured macro-cell algorithm for computational aeroacoustics (CAA), which may be two to three orders of magnitude more efficient than most current methods. The unstructured macro-cell algorithm has features of both st

    SBIR Phase I 2000 Environmental Protection Agency

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