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REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ

Year 2011, Volume: 26 Issue: 4, 0 - , 20.02.2013

Abstract

Bu çalışmada tekstil boyası olan Reaktif Mavi 221’in pomza taşı ile kesikli adsorpsiyonu incelenmiştir. pH,karıştırma süresi, adsorbent partikül büyüklüğü ve miktarı sabit tutulurken sıcaklık ve boya derişimi değişkenparametreler olarak seçilmiştir. 7,0 pH değerinde, 0,59 mm partikül büyüklüğünde, 2,00 g adsorbent miktarındave yaklaşık 1,5 saatlik karıştırma süresinde tespit edilen adsorplama kapasiteleri 8x10-4 M boya derişimi için 293K, 318 K ve 333 K sıcaklıklarda sırasıyla 36,60 mg/g ve 47,90 mg/g ve 54,20 mg/g ‘dır. Adsorpsiyon verilerininLangmuir izotermine daha fazla uyum gösterdiği ve termodinamik parametre sonuçlarında adsorpsiyonunendotermik ve kendiliğinden olduğu tespit edilmiştir. Sorpsiyon kinetik verilerinin sahte ikinci derecedenkinetiğe uyum gösterdiği sonucuna varılırken çevre dostu, kolay bulunabilen ve ucuz adsorbent kullanılarakekonomik bir proses elde etmenin yanısıra boyada büyük ölçüde renk giderimi sağlanmıştır.

References

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  • Dostal, K.A., Fate of water soluble azo dyes in
  • the activated sludge process, Chemosphere,
  • :107-119, 1991.
  • Steankenrichter I.and Kermer W.D.,
  • Decolourising textile effluents, J. Soc. of Dyers
  • and Colourists, 108:182-186, 1992.
  • Gürü, M., Venedik D., Murathan Selek A.,
  • Removal of Trivalent Cromium From Water
  • Using Low Costnatural Diatomite, J. of
  • Hazardous Materials, 160, 318-323, 2008 .
  • Namasivayam C., Radhika R. and Suba S.,
  • Uptake of dyes by a promising locally available
  • agricultural solid waste: coir pith, Waste
  • Management, 21(4): 381-387, 2001.
  • Özacar, M. and Şengil, A., Adsorption of
  • reactive dyes on calcined alunite from aqueous
  • solutions, J. of Hazardous Materials, 98(1-
  • :211-224, 2003.
  • Armagan, B., Ozdemir, O., Turan, M. and Çelik
  • M.S. Adsorption of negatively charged azo dyes
  • onto surfactant-modified sepiolite, J.Envir.
  • Eng., 129: 709-715, 2003.
  • Momenzadeh, H., Tehrani-Bagha, A.R.,
  • Khosravi, A., Gharanjig, K., Holmberg, K.,
  • Reactive dye removal from wastewater using a
  • chitosan nanodispersion, Desalination, 271 (1-
  • , 225-230, 2011.
  • Lee,J.W., Seung-Phil, C., Thiruvenkatachari, R.,
  • Wang-Geun, S., Moon, S., Evaluation of the
  • performance of adsorption and coagulation
  • processes for the maximum removal of reactive
  • dyes Dyes and Pigments, 69(3): 196-203, 2006.
  • Moussavi, G., Mahmoudi,M., Removal of azo
  • and anthraquinone reactive dyes from industrial
  • wastewaters using MgO nanoparticles Journal of
  • Hazardous Materials, Volume 168(2-3): 806-
  • , 2009
  • Gündüz L. (ed.), 1998, Pomza Teknolojisi Cilt I,
  • S.35, Isparta.
  • Suteu, D., Bilba, D. Equilibrium and kinetic
  • study of reactive dye Brilliant Red HE-3B
  • adsorption by activated charcoal, Acta Chimica
  • Slovenica, 52 (1): 73-79, 2005.
  • Al-Ghouti M. A., Khraisheh, M.A.M., Allen, S.J.
  • ve Ahmad, M.N., The removal of dyes from
  • textile wastewater: a study of the physical
  • characteristics and ad- sorption mechanisms of
  • diatomaceous earth, J. of Env. Man.,69 (3), 229-
  • , 2006.
  • Alkan, M., Çelikçapa, Demirbaş,O. and Dogan,
  • M., Removal of reactive blue 221 and acid blue
  • anionic dyes from aqueous solutions by
  • sepiolite, Dyes and Pigments 65 (3), 251-259,
  • -
  • Naseem R. ve Tahir S., Removal of Pb(II) from
  • aqueous/acidic solutions by using bentonite as an
  • adsorbent, Water Research, 35: 3982-3986,
  • -
Year 2011, Volume: 26 Issue: 4, 0 - , 20.02.2013

Abstract

References

  • Shaul, G.M., Holdsworth, T.J., Dempsey, C.R.,
  • Dostal, K.A., Fate of water soluble azo dyes in
  • the activated sludge process, Chemosphere,
  • :107-119, 1991.
  • Steankenrichter I.and Kermer W.D.,
  • Decolourising textile effluents, J. Soc. of Dyers
  • and Colourists, 108:182-186, 1992.
  • Gürü, M., Venedik D., Murathan Selek A.,
  • Removal of Trivalent Cromium From Water
  • Using Low Costnatural Diatomite, J. of
  • Hazardous Materials, 160, 318-323, 2008 .
  • Namasivayam C., Radhika R. and Suba S.,
  • Uptake of dyes by a promising locally available
  • agricultural solid waste: coir pith, Waste
  • Management, 21(4): 381-387, 2001.
  • Özacar, M. and Şengil, A., Adsorption of
  • reactive dyes on calcined alunite from aqueous
  • solutions, J. of Hazardous Materials, 98(1-
  • :211-224, 2003.
  • Armagan, B., Ozdemir, O., Turan, M. and Çelik
  • M.S. Adsorption of negatively charged azo dyes
  • onto surfactant-modified sepiolite, J.Envir.
  • Eng., 129: 709-715, 2003.
  • Momenzadeh, H., Tehrani-Bagha, A.R.,
  • Khosravi, A., Gharanjig, K., Holmberg, K.,
  • Reactive dye removal from wastewater using a
  • chitosan nanodispersion, Desalination, 271 (1-
  • , 225-230, 2011.
  • Lee,J.W., Seung-Phil, C., Thiruvenkatachari, R.,
  • Wang-Geun, S., Moon, S., Evaluation of the
  • performance of adsorption and coagulation
  • processes for the maximum removal of reactive
  • dyes Dyes and Pigments, 69(3): 196-203, 2006.
  • Moussavi, G., Mahmoudi,M., Removal of azo
  • and anthraquinone reactive dyes from industrial
  • wastewaters using MgO nanoparticles Journal of
  • Hazardous Materials, Volume 168(2-3): 806-
  • , 2009
  • Gündüz L. (ed.), 1998, Pomza Teknolojisi Cilt I,
  • S.35, Isparta.
  • Suteu, D., Bilba, D. Equilibrium and kinetic
  • study of reactive dye Brilliant Red HE-3B
  • adsorption by activated charcoal, Acta Chimica
  • Slovenica, 52 (1): 73-79, 2005.
  • Al-Ghouti M. A., Khraisheh, M.A.M., Allen, S.J.
  • ve Ahmad, M.N., The removal of dyes from
  • textile wastewater: a study of the physical
  • characteristics and ad- sorption mechanisms of
  • diatomaceous earth, J. of Env. Man.,69 (3), 229-
  • , 2006.
  • Alkan, M., Çelikçapa, Demirbaş,O. and Dogan,
  • M., Removal of reactive blue 221 and acid blue
  • anionic dyes from aqueous solutions by
  • sepiolite, Dyes and Pigments 65 (3), 251-259,
  • -
  • Naseem R. ve Tahir S., Removal of Pb(II) from
  • aqueous/acidic solutions by using bentonite as an
  • adsorbent, Water Research, 35: 3982-3986,
  • -
There are 59 citations in total.

Details

Primary Language Turkish
Journal Section Makaleler
Authors

Aybüke Aksu This is me

Atilla Murathan This is me

Hasan Koçyiğit This is me

Publication Date February 20, 2013
Submission Date February 20, 2013
Published in Issue Year 2011 Volume: 26 Issue: 4

Cite

APA Aksu, A., Murathan, A., & Koçyiğit, H. (2013). REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 26(4).
AMA Aksu A, Murathan A, Koçyiğit H. REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ. GUMMFD. March 2013;26(4).
Chicago Aksu, Aybüke, Atilla Murathan, and Hasan Koçyiğit. “REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 26, no. 4 (March 2013).
EndNote Aksu A, Murathan A, Koçyiğit H (March 1, 2013) REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 26 4
IEEE A. Aksu, A. Murathan, and H. Koçyiğit, “REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ”, GUMMFD, vol. 26, no. 4, 2013.
ISNAD Aksu, Aybüke et al. “REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 26/4 (March 2013).
JAMA Aksu A, Murathan A, Koçyiğit H. REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ. GUMMFD. 2013;26.
MLA Aksu, Aybüke et al. “REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, vol. 26, no. 4, 2013.
Vancouver Aksu A, Murathan A, Koçyiğit H. REAKTİF MAVİ 221’İN POMZA İLE ADSORPSİYONU VE KİNETİĞİ. GUMMFD. 2013;26(4).