Abstract
In this study, the operational conditions for acid orange II (AOII) degradation in a heterogeneous Fenton-like reaction using a clay-supported Fe3-xMnxO4 (Fe3-xMnxO4-MKSF) catalyst were optimized using response surface methodology (RSM). A standard RSM called a central composite design (CCD) experiment was used to determine the effects of four operational variables: pH solution, catalyst dosage, concentration of H2O2 and initial concentration of AOII on the percentage of AOII removal. Based on the analysis of variance (ANOVA), the model exhibited a correlation coefficient (R2) of 0.9672 which demonstrated approximately 96% of target function variation. The optimal operational conditions were obtained at 2.5 pH solution, 0.4 g/L catalyst dosage, 15 mM H2O2 concentration and 35 mg/L AOII initial concentration which resulted in 86.72% of AOII degradation. The experimental results showed good agreement with the values predicted by the model at optimal conditions, exhibiting relative differences of less than 5%. These findings provide valuable insights into the interaction of four key variables affecting AOII degradation during the heterogeneous Fenton-like reaction using Fe3-xMnxO4-MKSF catalyst.
Metadata
Item Type: | Article |
---|---|
Creators: | Creators Email / ID Num. Azmi, Amirah Annasuha UNSPECIFIED Alrozi, Rasyidah rasyidah.alrozi@uitm.edu.my Zubir, Nor Aida UNSPECIFIED Kamaruddin, Mohamad Anuar UNSPECIFIED |
Contributors: | Contribution Name Email / ID Num. Chief Editor Damanhuri, Nor Salwa UNSPECIFIED |
Subjects: | T Technology > TP Chemical technology > Biotechnology > Biochemical engineering. Bioprocess engineering |
Divisions: | Universiti Teknologi MARA, Pulau Pinang > Permatang Pauh Campus > Faculty of Chemical Engineering Universiti Teknologi MARA, Pulau Pinang > Permatang Pauh Campus |
Journal or Publication Title: | ESTEEM Academic Journal |
UiTM Journal Collections: | Listed > ESTEEM Academic Journal (EAJ) |
ISSN: | 2289-4934 |
Volume: | 21 |
Page Range: | pp. 9-12 |
Keywords: | Optimization, Acid orange II dye, Fenton-like reaction, Fe3-xMnxO4-MKSF, Heterogeneous catalyst, Response surface methodology |
Date: | March 2025 |
URI: | https://ir.uitm.edu.my/id/eprint/112120 |