Technical Consultation of the International Space Station (ISS) Internal Active Thermal Control System (IATCS) Cooling Water Chemistry
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- Published
- 2005-09-01
- Cited by
- 0
- References
- 29
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:92548344
References
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- Selection of an Alternate Biocide for the ISS Internal Thermal Control System Coolant, Phase 2
- Selection of an Alternate Biocide for the International Space Station Internal Active Thermal Control System Coolant Loops
- Iodine susceptibility of pseudomonads grown attached to stainless steel surfaces.
- Efficacy of copper and silver ions with iodine in the inactivation of Pseudomonas cepacia.
- Iodine sensitivity of bacteria isolated from iodinated water systems.
- Preparation and Properties of Triiodide-, Pentaiodide-, and Heptaiodide-Quaternary Ammonium Stron Base Anion-Exchange Resin Disinfectants
- Importance of biofilm formation for corrosion inhibition of SAE 1018 steel by axenic aerobic biofilms
- Role of RpoS and AlgT in Pseudomonas aeruginosa biofilm resistance to hydrogen peroxide and monochloramine
- The influence of the chemical composition of drinking water on cuprosolvency by biofilm bacteria.
- Antimicrobial resistance of Pseudomonas aeruginosa biofilms.
- Population dynamics of pseudomonads after iodination.
- Disinfection of bacteria in water systems by using electrolytically generated copper:silver and reduced levels of free chlorine.
- Nickel uptake and utilization by microorganisms.
- New water disinfectant: an insoluble quaternary ammonium resin-triiodide combination that releases bactericide on demand.
- Mechanisms of biofilm resistance to antimicrobial agents.
- Effect of Catalase on Hydrogen Peroxide Penetration into Pseudomonas aeruginosa Biofilms
- Axenic aerobic biofilms inhibit corrosion of SAE 1018 steel through oxygen depletion
- Long-Term Evaluation of a Hydrophilic, Antimicrobial Coating Developed for Condensing Heat Exchangers
- Preliminary Assessment of Microbial Adhesion on the Surface of Materials from the ISS Internal Thermal Control System: Results of an Accelerated 60-d Study
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