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| Yazarlar | Gözmen Belgin Turabik, Meral |
| Kurum Dışı Yazarlar | Hesenov Arif |
| Tek Biçim Adres (URI) | https://hdl.handle.net/20.500.14114/8431 |
| Yayın Türü | Makale |
| Yayın Yılı | 2009 |
| DOI Adresi | 10.1016/j.jhazmat.2008.09.075 |
| Yayıncı | ELSEVIER |
| Dergi Adı | Journal of Hazardous Materials |
| Konu Başlıkları | advance oxidation processes Spectrophotometry |
| İndekslenen Platformlar | Web of Science |
The present study deals with the investigation of photocatalytic degradation and mineralization of C.I. Basic Red 46 (BR46) and C.I. Basic Yellow 28 (BY28) dyes in single and binary solutions as a function of periodate ion concentration (IO4−), irradiation time, initial pH and initial dye concentrations. First order derivative spectrophotometric method was used for to simultaneous analysis of BY28 and BR46 in binary mixtures. Langmuir–Hinshelwood kinetic model was applied to experimental data and apparent reaction rate constant values were calculated. The apparent degradation rate constant values of BR46 were higher than those of BY28 for all experiments in single dye solutions. On the other hand, the significant reductions were observed for the apparent degradation rate constant values of the BR46 in the presence of BY28 in binary solutions whereas TOC removal efficiency slightly enhanced in binary system. The highest TOC removal efficiency was obtained at pH 3.0 by adding 5 mM periodate ion in to the solution in the presence of 1 g/L TiO2 for both dye solutions. After 3 h illumination, 68, 76 and 75% mineralization were found for 100 mg/L BY28, 100 mg/L BR46 and 50 + 50 mg/L mixed solutions, respectively.
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- Fen Fakültesi
- Kimya Bölümü
- Analitik Kimya Anabilim Dalı
|
Eser Adı dc.title |
Photocatalytic degradation of Basic Red 46 and Basic Yellow 28 in single and binary mixture by UV/TiO2/periodate system |
|---|---|
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Yazarlar dc.contributor.author |
Gözmen Belgin |
|
Yazarlar dc.contributor.author |
Turabik, Meral |
|
Kurum Dışı Yazarlar dc.contributor.other |
Hesenov Arif |
|
Yayıncı dc.publisher |
ELSEVIER |
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Yayın Türü dc.type |
Makale |
|
Özet dc.description.abstract |
The present study deals with the investigation of photocatalytic degradation and mineralization of C.I. Basic Red 46 (BR46) and C.I. Basic Yellow 28 (BY28) dyes in single and binary solutions as a function of periodate ion concentration (IO4−), irradiation time, initial pH and initial dye concentrations. First order derivative spectrophotometric method was used for to simultaneous analysis of BY28 and BR46 in binary mixtures. Langmuir–Hinshelwood kinetic model was applied to experimental data and apparent reaction rate constant values were calculated. The apparent degradation rate constant values of BR46 were higher than those of BY28 for all experiments in single dye solutions. On the other hand, the significant reductions were observed for the apparent degradation rate constant values of the BR46 in the presence of BY28 in binary solutions whereas TOC removal efficiency slightly enhanced in binary system. The highest TOC removal efficiency was obtained at pH 3.0 by adding 5 mM periodate ion in to the solution in the presence of 1 g/L TiO2 for both dye solutions. After 3 h illumination, 68, 76 and 75% mineralization were found for 100 mg/L BY28, 100 mg/L BR46 and 50 + 50 mg/L mixed solutions, respectively. |
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Kayıt Giriş Tarihi dc.date.accessioned |
2008-01-24 |
|
Yayın Yılı dc.date.issued |
2009 |
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Açık Erișim Tarihi dc.date.available |
3000-09-26 |
|
Dil dc.language.iso |
eng |
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Konu Başlıkları dc.subject |
advance oxidation processes |
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Konu Başlıkları dc.subject |
Spectrophotometry |
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Atıf İçin Künye dc.identifier.citation |
Journal of Hazardous Materials 164 (2009) 1487–1495 |
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ISSN dc.identifier.issn |
0304-3894 |
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İlk Sayfa dc.identifier.startpage |
1487 |
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Son Sayfa dc.identifier.endpage |
1495 |
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Dergi Adı dc.relation.journal |
Journal of Hazardous Materials |
|
Dergi Sayısı dc.identifier.issue |
2-3 |
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Dergi Cilt dc.identifier.volume |
164 |
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Tek Biçim Adres (URI) dc.identifier.uri |
https://hdl.handle.net/20.500.14114/8431 |
|
DOI Numarası dc.identifier.doi |
10.1016/j.jhazmat.2008.09.075 |
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İndekslenen Platformlar dc.source.database |
Web of Science |