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- W50699270 abstract "Recent scientific literature indicates the potential benefits of using photocatalytic oxidation reactions for the destruction of organic contaminants in water. The processes utilize solid or dissolved photon-activated catalysts to break down low concentrations of hazardous organic chemicals into carbon dioxide and simple acids. We are using concentrated sunlight to study a falling-liquid-film reactor that has the characteristics to effectively conduct these photochemical reactions. These include the ability to utilize high solar (photon) flux densities without overheating or evaporating the fluid or contaminants; excellent interactions, in the thin film of fluid, between concentrated sunlight, catalyst and contaminants in the fluid; the fluid is easily doped with reactants and solid or dissolved catalysts; high capacity; and easy process control. We investigated the maximum solar power capabilities of a pilot-scale (1m /times/ 3.5m) falling-water-film reactor. Our thermal performance results indicate its potential as a photochemical reactor. 10 refs.; 3 figs.; 1 tab." @default.
- W50699270 created "2016-06-24" @default.
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- W50699270 date "1988-01-01" @default.
- W50699270 modified "2023-09-27" @default.
- W50699270 title "A solar photochemical process for destroying organics in water" @default.
- W50699270 hasPublicationYear "1988" @default.
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