In this study, the decolorization of Acid Yellow 36 (AY36) dyestuff by Fenton and Fenton like
oxidation method was investigated. The effect of pH, iron (Fe0 and Fe+2) hydrogen peroxide (H2O2) and concentration
of dyestuff on oxidation process was determined. The removal of AY36 was determined by means of color, aromatic
and COD. The color was more removed than aromatic in Fenton and Fenton-like oxidation. It was found that
Fenton-like oxidation was more effective than Fenton oxidation process in removal of AY36 dyestuff.
APHA, AWWA and WPCF ,1985. Standart Methods For the Examination of Water and Wastwater. Sixteenth Edition, Washington, DC.
Clarke,C.E., Kielar,F., Johnson, K.L., 2013. The oxidation of acid azo dye AY 36 by a manganese oxide containing mine waste. Journal of Hazardous Materials, 246: 310– 318.
Dokuzoğlu, Z.,Alkan, U., Yentürk, A., 2008. Reaktif Boyar Madde İçeren Tekstil Atıksularının İleri Oksidasyonu.Uludağ Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 13(2):119-128.
Forgacs, E., Cserháti, T., Oros, G., 2004. Removal of synthetic dyes from wastewaters: a review. Environment International, 30: 953– 971.
Gül,Ş., Ozcan Yıldırım, Ö., 2009. Degradation of Reactive Red 194 and Reactive Yellow 145 azo dyes by O3 and H2O2/UV-C processes. Chemical Engineering Journal, 155: 684-690.
Hanay, Ö., Hasar, H., 2007. Fenton oksidasyon prosesi ile tekstil endüstrisi atıksuyunda renk giderimi. Fırat Üniversitesi Fen ve Mühendislik Bilimler Dergisi, 19(4): 505-509.
Liu, X., Qiu, M., Huang, C., 2011. Degradation of the Reactive Black 5 by Fenton and Fenton like system.Procedia Engineering, 15: 4835 – 4840.
Malik, P.K., 2003. Use of activated carbons prepared from sawdust and rice-husk for adsorption of acid dyes: a case study of Acid Yellow 36. 56(3): 239–249.
Reife, A., Freeman, S., 1996. Environmental Chemistry of Dyes and Pigments, John Wiley&Sons, Inc., Kanada.
Sajjad
Khezrianjoo and Hosakere Doddarevanna Revanasiddappa,2013. Photocatalytic Degradation of Acid Yellow 36 Using Zinc Oxide Photocatalyst in Aqueous Media. Journal of Catalysts.
Song, Y., Li, J., 2009. Degradation of C.I. Direct Black 168 from aqueous solution by y ash/H2O2 combining ultrasound. Ultrasonics Sonochemistry, 16: 440–444.
Yıldırım, A.Ö., 2009. Bazı Reaktif Boyar Maddelerin İleri Oksidasyon Yöntemleriyle Parçalanmasının İncelenmesi. Çukurova Üniversitesi, Fen Bilimleri Enstitüsü, Doktora Tezi.
Zhou, T., Lu, X., Wang, J., Wong, F.S., Li, Y., 2009. Rapid decolorization and mineralization of simulated textile wastewater in a heterogeneous Fenton like system with/ without external energy. Journal of Hazardous Materials, 165:193-199.
Fenton ve Fenton-Benzeri İleri Oksidasyon Yöntemleri ı̇ le Acid Yellow 36 Boyar Maddesinin Giderimi
Year 2014,
Volume: 4 Issue: 1, 41 - 48, 31.03.2014
Bu çalışmada, Acid Yellow 36 (AY36) boyar maddesinin Fenton ve Fenton-benzeri oksidasyon yöntemi ile giderimi araştırılmıştır. Oksidasyon prosesine pH, demir (Fe0 ve Fe+2), hidrojen peroksit (H2O2) ve boyar madde konsantrasyonunun etkisi incelenmiştir. AY36 giderimi renk, aromatiklik ve KOI üzerinden izlenmiştir. Fenton ve Fenton-benzeri oksidasyonunda renk aromatiklikten daha fazla giderilmiştir. AY36 boyar maddesinin gideriminde, Fenton-benzeri oksidasyonun Fenton oksidasyon prosesinden daha etkili olduğu bulunmuştur.
APHA, AWWA and WPCF ,1985. Standart Methods For the Examination of Water and Wastwater. Sixteenth Edition, Washington, DC.
Clarke,C.E., Kielar,F., Johnson, K.L., 2013. The oxidation of acid azo dye AY 36 by a manganese oxide containing mine waste. Journal of Hazardous Materials, 246: 310– 318.
Dokuzoğlu, Z.,Alkan, U., Yentürk, A., 2008. Reaktif Boyar Madde İçeren Tekstil Atıksularının İleri Oksidasyonu.Uludağ Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 13(2):119-128.
Forgacs, E., Cserháti, T., Oros, G., 2004. Removal of synthetic dyes from wastewaters: a review. Environment International, 30: 953– 971.
Gül,Ş., Ozcan Yıldırım, Ö., 2009. Degradation of Reactive Red 194 and Reactive Yellow 145 azo dyes by O3 and H2O2/UV-C processes. Chemical Engineering Journal, 155: 684-690.
Hanay, Ö., Hasar, H., 2007. Fenton oksidasyon prosesi ile tekstil endüstrisi atıksuyunda renk giderimi. Fırat Üniversitesi Fen ve Mühendislik Bilimler Dergisi, 19(4): 505-509.
Liu, X., Qiu, M., Huang, C., 2011. Degradation of the Reactive Black 5 by Fenton and Fenton like system.Procedia Engineering, 15: 4835 – 4840.
Malik, P.K., 2003. Use of activated carbons prepared from sawdust and rice-husk for adsorption of acid dyes: a case study of Acid Yellow 36. 56(3): 239–249.
Reife, A., Freeman, S., 1996. Environmental Chemistry of Dyes and Pigments, John Wiley&Sons, Inc., Kanada.
Sajjad
Khezrianjoo and Hosakere Doddarevanna Revanasiddappa,2013. Photocatalytic Degradation of Acid Yellow 36 Using Zinc Oxide Photocatalyst in Aqueous Media. Journal of Catalysts.
Song, Y., Li, J., 2009. Degradation of C.I. Direct Black 168 from aqueous solution by y ash/H2O2 combining ultrasound. Ultrasonics Sonochemistry, 16: 440–444.
Yıldırım, A.Ö., 2009. Bazı Reaktif Boyar Maddelerin İleri Oksidasyon Yöntemleriyle Parçalanmasının İncelenmesi. Çukurova Üniversitesi, Fen Bilimleri Enstitüsü, Doktora Tezi.
Zhou, T., Lu, X., Wang, J., Wong, F.S., Li, Y., 2009. Rapid decolorization and mineralization of simulated textile wastewater in a heterogeneous Fenton like system with/ without external energy. Journal of Hazardous Materials, 165:193-199.
Kocakaplan, N., Ertugay, N., & Malkoç E. (2014). Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods. Journal of the Institute of Science and Technology, 4(1), 41-48.
AMA
Kocakaplan N, Ertugay N, Malkoç E. Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods. J. Inst. Sci. and Tech. March 2014;4(1):41-48.
Chicago
Kocakaplan, Nihal, Ertugay Neşe, and Malkoç Emine. “Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods”. Journal of the Institute of Science and Technology 4, no. 1 (March 2014): 41-48.
EndNote
Kocakaplan N, Ertugay N, Malkoç E (March 1, 2014) Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods. Journal of the Institute of Science and Technology 4 1 41–48.
IEEE
N. Kocakaplan, N. Ertugay, and Malkoç E., “Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods”, J. Inst. Sci. and Tech., vol. 4, no. 1, pp. 41–48, 2014.
ISNAD
Kocakaplan, Nihal et al. “Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods”. Journal of the Institute of Science and Technology 4/1 (March 2014), 41-48.
JAMA
Kocakaplan N, Ertugay N, Malkoç E. Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods. J. Inst. Sci. and Tech. 2014;4:41–48.
MLA
Kocakaplan, Nihal et al. “Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods”. Journal of the Institute of Science and Technology, vol. 4, no. 1, 2014, pp. 41-48.
Vancouver
Kocakaplan N, Ertugay N, Malkoç E. Removal of Acıd Yellow 36 Dyestuff Wıth Fenton and Fenton-Lıke Advanced Oxıdatıon Methods. J. Inst. Sci. and Tech. 2014;4(1):41-8.