JOURNAL ARTICLE

Degradation of ketoprofen using iron-supported ZSM-5 catalyst via heterogeneous Fenton oxidation

I P I AzusanoAlvin R. CaparangaB H Chen

Year: 2020 Journal:   IOP Conference Series Earth and Environmental Science Vol: 612 (1)Pages: 012048-012048   Publisher: IOP Publishing

Abstract

Abstract Heterogeneous Fenton oxidation provides an alternative method of degrading ketoprofen from wastewater. The purpose of this study is investigate the degradation of ketoprofen using iron-supported ZSM5 zeolite catalyst. Iron was impregnated into ZSM5 via the impregnation method, with loading variation of 1wt% and 3.5wt% Fe/ZSM5. Characterization of the catalyst was performed using XRD, SEM, ICP-OES, TGA, BET and TPD. Batch degradation reaction were performed with a working volume of 100 mL ketoprofen solution, mechanically stirred at 900 rpm. Amount of H 2 O 2 used was equivalent to 11 times (in excess) the required stoichiometric amount for ketoprofen mineralization. Catalyst loading was varied between 1 g/L and 4 g/L. HPLC was utilized in determining ketoprofen concentration in the solution during the degradation reaction. Ketoprofen degradation of 100% was observed after 20 minutes using catalyst with 3.5% weight at 4 g/L loading. Iron leaching was also measured using ICP-OES to compare the amount of iron leached between heterogeneous and homogenous Fenton reaction. Percentage of iron leached showed 8.93% and 57.09% for heterogeneous and homogenous Fenton reaction, respectively. The study showed promising results in degrading ketoprofen using an iron-supported ZSM5 via the heterogeneous Fenton reaction with lower iron leaching percentage compared to homogenous Fenton reaction.

Keywords:
Ketoprofen Catalysis Leaching (pedology) Chemistry Degradation (telecommunications) Zeolite Stoichiometry Mineralization (soil science) Nuclear chemistry Heterogeneous catalysis Chromatography Organic chemistry Nitrogen

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5
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0.97
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21
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0.77
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Citation History

Topics

Advanced oxidation water treatment
Physical Sciences →  Environmental Science →  Water Science and Technology
Advanced Photocatalysis Techniques
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Electrochemical Analysis and Applications
Physical Sciences →  Chemistry →  Electrochemistry
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