2 edition of Evaluation of the ultraviolet-ozone and ultraviolet-oxidant treatment of pink water found in the catalog.
Evaluation of the ultraviolet-ozone and ultraviolet-oxidant treatment of pink water
by Environmental Protection Agency, Office of Research and Development, Industrial Environmental Research Laboratory, for sale by the National Technical Information Service in Cincinnati, Ohio, Springfield, Va
Written in English
|Statement||by Milton Roth, Joseph M. Murphy, jr|
|Series||Environmental protection technology series ; EPA-600/2-79-129|
|Contributions||Murphy, Joseph M., joint author, Industrial Environmental Research Laboratory (Cincinnati, Ohio), Large Caliber Weapon Systems Laboratory (U.S.)|
|The Physical Object|
|Pagination||viii, 30 p. :|
|Number of Pages||30|
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Image: EPA/ July EVALUATION OF THE ULTRAVIOLET-OZONE AND ULTRAVIOLET-OXIDANT TREATMENT OF PINK WATER by Milton Roth Joseph M. Murphy, Jr. U.S. Army Armament Research and Development Command Large Caliber Weapon Systems Laboratory Dover, New Jersey Grant No.
IAG-D Project Officer Herbert S. Skovronek Industrial. Get this from a library. Evaluation of the ultraviolet-ozone and ultraviolet-oxidant treatment of pink water. [Milton Roth; Joseph M Murphy; Industrial Environmental Research Laboratory (Cincinnati, Ohio); Pink water.].
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Evaluation of the ultraviolet-ozone and ultraviolet-oxidant treatment of pink water. Final report 6 June December Technical Report Roth, M. ; Murphy, J.M. The book that rips the mask off the man that hides behind sound bites and Hollywood spin.
If you want to get to know the real Obama read this book. Read Online Download Now Compare. When treating natural water, the simultaneous use of ozone and UV rays can lead to high level oxidation of the ozone–refractory organics. The main parameters affecting the efficiency of the O 3 /UV system are: the ozonation rate, the average UV radiation intensity, the pH measurement, alkalinity, and the type of compound to be oxidized.
In optimum Ou/UV system application conditions, the. Direct photolysis versus photolysis in the presence of hydrogen peroxide and the Fenton reagent.
Water Pollut. Res. C27, 11 M. Roth and J. Murphy Jr.: Evaluation of the ultraviolet-ozone and ultraviolet-oxidant treatment of pink water. The degradation of nitrobenzene on irradiated semiconductor oxides (TiO 2 and ZnO) has been investigated.
The results suggest that the degradation pathways of nitrobenzene in aerated aqueous solution in the presence of TiO 2 involve mainly the formation of the three nitrophenol isomers in comparable abundance, followed by further hydroxylation and ring cleavage.
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