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Award Data
The Award database is continually updated throughout the year. As a result, data for FY20 is not expected to be complete until September, 2021.
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Fiberoptic Diisocyanate Personal Monitoring Device
SBC: LIGHTLINE TECHNOLOGIES INC Topic: N/ALightLine Technologies proposes to develop a highly sensitive fiberoptic personal monitoirng device similar to a sampling badge, targeted for the simple and conventional measurement of total isocyanate and diisocyanate (I&DCY) airbourne exposure. With verymodest smapling processing (controlled heating) sensing of all types of I&DCYs will be possige and is the ptimary goal of this program. Ths sa ...
SBIR Phase I 2005 Environmental Protection Agency -
Multiplexed Chemical Sensor for Water Security
SBC: REAL-TIME ANALYZERS, INCORPORATED Topic: N/AThe overall goal of this proposed program (through Phase III) is to provide the EPA with a chemical sensor thatn can be multiplerxed into water distributon systems to provide early warning of poisoned water supples. This will be accomplished by developing surface-enhanced Raman (SER) sensors than can be integrated into water supply systems and coupled to a central Paman analyzer via fiber optics. ...
SBIR Phase I 2005 Environmental Protection Agency -
Fiberoptic Diisocyanate Personal Monitoring Device
SBC: LIGHTLINE TECHNOLOGIES INC Topic: 04NCERD2LightLine Technologies, Inc., plans to develop a highly sensitive fiber optic personal monitoring device, similar to a sampling badge, targeted for the simple and convenient measurement of total isocyanate and diisocyanate (I&DCY) airborne exposure. With very modest sampling processing (controlled heating), sensing of all types of I&DCYs will be possible and is the primary goal of this research pr ...
SBIR Phase I 2005 Environmental Protection Agency -
Multiplexed Chemical Sensor for Water Security
SBC: REAL-TIME ANALYZERS, INCORPORATED Topic: 04NCERI1The goal of this research project (through Phase III) is to develop a chemical sensor that can be multiplexed into water distribution systems to provide early warning of poisoned water supplies. This will be accomplished by developing surface-enhanced Raman (SER) sensors that can be integrated into water supply systems and coupled to a central Raman analyzer via fiber optics. In Phase I, Real-Time ...
SBIR Phase I 2005 Environmental Protection Agency