An electrochemical and microbiological study of the formic acid-formic dehydrogenlyase system.
Enzyme activity and substrate concentration effects on hydrogen production from formic acid/ formic dehydrogenlyase system
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Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
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Enzyme activity and substrate concentration effects on hydrogen production from formic acid/ formic dehydrogenlyase system
Genetic effects on Escherichia coli and human cell cultures due to irradiation, vibration, and weightlessness during space flights
Survey on microbial populations present within environmentally controlled areas
Total microbial burden after decontamination determined for surfaces of Anchored Interplanetary Monitoring Platform /AIMP/ SPACECRAFT
Laminar flow clean room efficiency for viable contamination cleanup
Bibliography on planetary quarantine - microbial growth, detection, identification, and monitoring in spacecraft fabrication
Vertical laminar air flow and acceleration of die-off rate of heterotrophic mesophilic bacteria and vegetative cells with spores
Research project summaries on spacecraft sterilization and planetary quarantine
Techniques and instrumentation for Apollo spacecraft sterilization and microbial bioassays
Improved agar spray technique for sampling surface microorganism
Laminar air flow cabinets for controlling microbial contamination in tissue cultures preparation
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Report deals with an investigation of vertical laminar flow clean rooms for use in spacecraft assembly. A reduction of particulate and microbial contamination occurs in the application.
Experimental studies on behavior and survival of Bacillus subtilis var. niger spores and microbial detection as related to planetary quarantine
Statistical models for spacecraft sterilization and microbial growths
Survival of bacterial spores under various temperature and humidity conditions related to planetary quarantine
Subjects on planetary flight missions, supporting technology, microbial release probabilities, heat sterilization cycles