Evaluation of enhanced coagulation pretreatment to improve ozone oxidation efficiency in wastewater.

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TítuloEvaluation of enhanced coagulation pretreatment to improve ozone oxidation efficiency in wastewater.
Publication TypeJournal Article
Year of Publication2011
AutoresWert, EC, Gonzales, S, Dong, MMei, Rosario-Ortiz, FL
JournalWater Res
Volume45
Issue16
Pagination5191-9
Date Published2011 Oct 15
ISSN1879-2448
Palabras claveChromatography, Gel, Kinetics, Molecular Weight, Oxidation-Reduction, Ozone, Pharmaceutical Preparations, Water Pollutants, Chemical
Abstract

Enhanced coagulation (EC) using ferric chloride was evaluated as a pretreatment process to improve the efficiency of ozone (O3) for the oxidation of trace organic contaminants in wastewater. At the applied dosages (10-30 mg/L as Fe), EC pretreatment removed between 10 and 47% of the dissolved organic carbon (DOC) from the three wastewaters studied. Size exclusion chromatography (SEC) showed that EC preferentially removed higher apparent molecular weight (AMW) compounds. Subsequent O3 testing was performed using an O3:DOC ratio of 1. Results showed that O3 exposures were similar even though the required doses were reduced by 10-47% by the EC pretreatment process. Hydroxyl radical (HO·) exposure, measured by parachlorobenzoic acid (pCBA), showed 10% reduction when using a FeCl3 dose of 30 mg/L, likely due to the lower O3 dose and decreased production of HO· during the initial phase of O3 decomposition (t<30 s). The oxidation of 13 trace organic contaminants (including atenolol, carbamazepine, DEET, diclofenac, dilantin, gemfibrozil, ibuprofen, meprobamate, naproxen, primidone, sulfamethoxazole, triclosan, and trimethoprim) was evaluated after EC and O3 treatment. EC was ineffective at removing any of the contaminants, while O3 oxidation reduced the concentration of compounds according to their reaction rate constants with O3 and HO·.

DOI10.1016/j.watres.2011.07.021
Alternate JournalWater Res.
PubMed ID21855954