Application of experimental design for photodegradation of rose bengal (acid red 94)

Advance Oxidation Process (AOP) of Acid Red 94 (AR 94) by UV and H2O2 system were carried out in this study. AR 94 was irradiated with UV light in the presence of H2O2. The photodegradation process of the dye was monitored spectrophotometrically. Effects of AR 94 and H2O2 concentrations, pH, and irr...

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Main Author: Muhamad Zulhelmi, Mohamad Fithol
Format: Undergraduates Project Papers
Language:English
Published: 2009
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Online Access:http://umpir.ump.edu.my/id/eprint/737/1/01.Application%20of%20Experimental%20Design%20for%20Photodegradation%20of%20Rose%20Bengal%20%28Acid%20Red%2094%29.pdf
http://umpir.ump.edu.my/id/eprint/737/
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spelling my.ump.umpir.7372023-04-13T23:58:59Z http://umpir.ump.edu.my/id/eprint/737/ Application of experimental design for photodegradation of rose bengal (acid red 94) Muhamad Zulhelmi, Mohamad Fithol TP Chemical technology Advance Oxidation Process (AOP) of Acid Red 94 (AR 94) by UV and H2O2 system were carried out in this study. AR 94 was irradiated with UV light in the presence of H2O2. The photodegradation process of the dye was monitored spectrophotometrically. Effects of AR 94 and H2O2 concentrations, pH, and irradiation time for photodegradation of AR 94 were investigated throughout this research while other experimental conditions were fixed at specific values. Statistical approach was employed to study the effect of selected parameters with the aid of Design-Expert® 7.1.6 software. Two level factorial design was employed for the experimental design. From the result, it is shown that the highest percent of AR 94 degradation can be achieved was 92.31%. From the analysis of variance, it is found that the AR 94 concentration, pH, and time were significant factors along with the interaction factors of AR 94 concentration, H2O2 concentration, and pH which gave significant effect for AR 94 degradation as well. Then, the optimization process was done using response surface methodology (RSM). Based on ANOVA result, the proposed model can be used to navigate the design space. It was found that the response of AR 94 decolorization is very sensitive to the independent factor of pH. The proposed model for central composite design fitted very well with the experimental data with R2 and R2adj correlation coefficients of 0.976 and 0.943, respectively. Analysis of results data shown that the optimum conditions suggested by the design of experiment were; 20μM AR 94, 0.05 M H2O2, 3.75 pH value and irradiation time 30 minutes. 2009-04 Undergraduates Project Papers NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/737/1/01.Application%20of%20Experimental%20Design%20for%20Photodegradation%20of%20Rose%20Bengal%20%28Acid%20Red%2094%29.pdf Muhamad Zulhelmi, Mohamad Fithol (2009) Application of experimental design for photodegradation of rose bengal (acid red 94). Faculty of Chemical & Natural Resources Engineering, Universiti Malaysia Pahang.
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Muhamad Zulhelmi, Mohamad Fithol
Application of experimental design for photodegradation of rose bengal (acid red 94)
description Advance Oxidation Process (AOP) of Acid Red 94 (AR 94) by UV and H2O2 system were carried out in this study. AR 94 was irradiated with UV light in the presence of H2O2. The photodegradation process of the dye was monitored spectrophotometrically. Effects of AR 94 and H2O2 concentrations, pH, and irradiation time for photodegradation of AR 94 were investigated throughout this research while other experimental conditions were fixed at specific values. Statistical approach was employed to study the effect of selected parameters with the aid of Design-Expert® 7.1.6 software. Two level factorial design was employed for the experimental design. From the result, it is shown that the highest percent of AR 94 degradation can be achieved was 92.31%. From the analysis of variance, it is found that the AR 94 concentration, pH, and time were significant factors along with the interaction factors of AR 94 concentration, H2O2 concentration, and pH which gave significant effect for AR 94 degradation as well. Then, the optimization process was done using response surface methodology (RSM). Based on ANOVA result, the proposed model can be used to navigate the design space. It was found that the response of AR 94 decolorization is very sensitive to the independent factor of pH. The proposed model for central composite design fitted very well with the experimental data with R2 and R2adj correlation coefficients of 0.976 and 0.943, respectively. Analysis of results data shown that the optimum conditions suggested by the design of experiment were; 20μM AR 94, 0.05 M H2O2, 3.75 pH value and irradiation time 30 minutes.
format Undergraduates Project Papers
author Muhamad Zulhelmi, Mohamad Fithol
author_facet Muhamad Zulhelmi, Mohamad Fithol
author_sort Muhamad Zulhelmi, Mohamad Fithol
title Application of experimental design for photodegradation of rose bengal (acid red 94)
title_short Application of experimental design for photodegradation of rose bengal (acid red 94)
title_full Application of experimental design for photodegradation of rose bengal (acid red 94)
title_fullStr Application of experimental design for photodegradation of rose bengal (acid red 94)
title_full_unstemmed Application of experimental design for photodegradation of rose bengal (acid red 94)
title_sort application of experimental design for photodegradation of rose bengal (acid red 94)
publishDate 2009
url http://umpir.ump.edu.my/id/eprint/737/1/01.Application%20of%20Experimental%20Design%20for%20Photodegradation%20of%20Rose%20Bengal%20%28Acid%20Red%2094%29.pdf
http://umpir.ump.edu.my/id/eprint/737/
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score 13.160551