2007
DOI: 10.1016/j.cej.2007.03.061
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Mathematical modelling of phenol photooxidation: Kinetics of the process toxicity

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Cited by 28 publications
(19 citation statements)
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References 26 publications
(38 reference statements)
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“…The rate constant of O 3 -UV-TiO 2 process in this study was similar to that of US-H 2 O 2 -CuO process [39]. On the other hand, compared with US-UV-O 3 process [40], sonoFenton [41], and UV-H 2 O 2 [42], the rate constant for O 3 -UV-TiO 2 process in this study was low. However, the E EO value for O 3 -UV-TiO 2 process in this study was lower than that of reported other processes.…”
Section: Resultscontrasting
confidence: 40%
“…The rate constant of O 3 -UV-TiO 2 process in this study was similar to that of US-H 2 O 2 -CuO process [39]. On the other hand, compared with US-UV-O 3 process [40], sonoFenton [41], and UV-H 2 O 2 [42], the rate constant for O 3 -UV-TiO 2 process in this study was low. However, the E EO value for O 3 -UV-TiO 2 process in this study was lower than that of reported other processes.…”
Section: Resultscontrasting
confidence: 40%
“…The photon flux entering the reactor was 8.8 × 10 −5 Einstein/s estimated from hydrogen peroxide actinometry [22]. A magnetic stirrer (Selecta Agimatic-S) was used to provide proper mixing [23].…”
Section: Methodsmentioning
confidence: 99%
“…Advanced Oxidation of Phenol. Kinetic analysis of the photochemical degradation of phenol in terms of TOC, toxicity of the treated water (TU), and oxidant concentration H 2 O 2 was carried out by Primo et al (2007).…”
Section: Advanced Oxidation Processesmentioning
confidence: 99%