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- W2326870147 abstract "Photocatalytic oxidation (PCO) of volatile organic compounds is a candidate air revitalization technology for use in spacecraft. However, commercial PCO systems employ germicidal lamps (UVC) that contain Hg and have limited lifetimes. The use of Hgcontaining lamps aboard spacecraft is undesirable because they need to be resupplied and spent lamps become a source of toxic expendables. An alternative source of UV is solar radiation, therefore, a solar simulator was constructed to emulate a solar collector assembly deployed outside a spacecraft or an outpost. The delivery of broad wavelength bands (UVC, UVB, or UVA) via fiber optic light guides simulates transmission of radiation from a solar collector located outside a spacecraft to a target (e.g. sorbent, catalyst, or biological specimen) located within the spacecraft. A Fast Flow PCO (FF-PCO) reactor was designed and built for evaluating PCO technologies with the solar simulator. The FF-PCO uses small quartz windows (~2.5 inch dia.) in order to accommodate low cost fiber optic light guides to illuminate TiO2-PCO systems. This sub-scale system was used for proof-of-concept demonstrations of key technologies that depend on the delivery of UV for air revitalization." @default.
- W2326870147 created "2016-06-24" @default.
- W2326870147 creator A5021125666 @default.
- W2326870147 date "2012-07-15" @default.
- W2326870147 modified "2023-09-25" @default.
- W2326870147 title "Solar Simulator Tesbed: Demonstration of a Solar Photocatalytic Oxidation System." @default.
- W2326870147 cites W2042350741 @default.
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- W2326870147 doi "https://doi.org/10.2514/6.2012-3426" @default.
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