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- W2325850810 abstract "Introduction Drinking water resoufrces are inmasingly contmimted with chlorinated pollutants such as hichloroethene (ICE), etc. ozonation is an oxidation process extensively applied to water treatments for eliminating such pollutants. However, single omnation isn't always effective in terms of time required for technical pcess. To enhance the omnation effectiveness, many studies have focused on AOP ( a d v d oxidation pmcesm) such as omnation combined with H&[ Beltran et al., 1998 I, etc, in which OH radicals, a much more reactive specie than omne itself, play a main role. 'Ihe present study performs a new trial aiming at the enhancement of the omne mction, designing a novel oxidation process in which the omne reaction rate is sigruficantly increased through the use of an omne &orbent. We found in our pvious work [ Fujita et al, ux)2] that high silica zeolitespcwxsed a m n g abiity to adsorb omne. In addition to that, it has been reposed that dissolved organics were also highly adsorbed onto these zeolites [ Giaya et al., 2000 1. The above findings will raise the possibility that a considerable increase of reaction rate can be achieved due to the adsorptive enrichment of omne and target Organics inside the zeolites. The objectives of this work are to investigate the effectiveness of the novel omnation process proposed and to elucidate the fundamental phenonena through TCE degradation tests using a tubular flow m t o r . ." @default.
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- W2325850810 date "2003-04-01" @default.
- W2325850810 modified "2023-09-30" @default.
- W2325850810 title "QUICK AND COMPACT OZONATION USING SILICEOUS ZEOLITE" @default.
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- W2325850810 doi "https://doi.org/10.1142/9789812704320_0036" @default.
- W2325850810 hasPublicationYear "2003" @default.
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