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Year 2020, Volume: 15 Issue: 1, 34 - 40, 30.03.2020

Abstract

References

  • Al-Ghouti MA, Khraisheh MAM, Allen SJ, Ahmad MN, (2003) The removal of dyes from textile wastewater: a study of the physical characteristics and adsorption mechanisms of diatomaceous earth. Journal of Environmental Management 69, 229–238.
  • Caliskan N, Kul R, Alkan S, Gokırmak Sogut E, Alacabey I, (2011) Adsorption of Zinc(II) on diatomite and manganese-oxide-modified diatomite: A kinetic and equilibrium study. Journal of Hazardous Materials 193 (15), 27-36
  • Doğan, M, Alkan M, Demirbaş Ö, Özdemir Y, Özmetin C, (2006) Adsorption kinetics of maxilon blue GRL onto sepiolite from aqueous solutions. Chemical Engineering Journal 124, 89–101.
  • Erdem E, Çölgeçen G, Donat R, (2005) The removal of textile dyes by diatomite earth. Journal of Colloid and Interface Science 282, 314–319.
  • Kamaruddin MA, Yusoff MS, Aziz HA, Akinbile CO, (2013) Recent developments of textile waste water treatment by adsorption process: A Review. International Journal of Scientific Research in Knowledge 1 (4), 60-73.
  • Kehinde FO, Aziz HA, (2016) Classical optimization of process variables in the treatment of real textile wastewater using clinoptilolite. Journal of Environmental Chemical Engineering 4, 1242-1247.
  • Lin JX, Zhan SL, Fang MH, Qian XQ, (2007) The adsorption of dyes from aqueous solution using diatomite. J Porous Mater 14, 449–455. Ngulube T, Gumbo JR, Masindi, V, Maity A, (2017) An update on synthetic dyes adsorption onto clay based minerals: A state-of-art review. Journal of Environmental Management 191, 35-57.
  • Özacar M, Sengil IA (2003), Adsorption of reactive dyes on calcined alunite from aqueous solutions. Journal of Hazardous Materials B98, 211–224. Özcan AS, Özcan A, (2004) Adsorption of acid dyes from aqueous solutions onto acid-activated bentonite. Journal of Colloid and Interface Science 276, 39–46.
  • Reza APS, Hasan AM, Ahmad JJ, Zohreh F, Jafar T, (2015) The effect of acid and thermal treatment on a natural diatomite. Chemistry Journal 1 (4), 144-150.
  • Standard methods for the examination of water and wastewater (1998) 20th edn, American Public Health Association/American Water Works Association/Water Environment Federation, Washington DC, USA.

Color and COD Removal from Real Textile Wastewater by Using Diatomite

Year 2020, Volume: 15 Issue: 1, 34 - 40, 30.03.2020

Abstract

The aim of this study was to investigate the adsorption performance of a low-cost adsorbent, diatomite, for the treatment of real textile wastewater. Effect of adsorbent dosage, contact time and particle size on color and COD removal was investigated. The results showed that color removals were achieved within a relatively short time and while COD removals increased with increasing contact time. Diatomite dosage was found to be a critical parameter especially for the COD removal. COD removal increased from 37% to 57% with an increase in diatomite dosage from 10 g/L to 150 g/L. Particle size, on the other hand, presented different removal trends. As color removal was slightly increased (<5%) with decreasing particle size, a higher COD removal (70%) was observed for the smallest particles size (<425 mm). The influence of thermal and acid/alkaline pre-treatments on the performance of the natural diatomite was also evaluated. Thermal treatments significantly decreased the medium EC, while color and COD removals were not significantly changed. Similarly, acid and alkaline pre-treatments seem not to increase the adsorption performance of natural diatomite.

References

  • Al-Ghouti MA, Khraisheh MAM, Allen SJ, Ahmad MN, (2003) The removal of dyes from textile wastewater: a study of the physical characteristics and adsorption mechanisms of diatomaceous earth. Journal of Environmental Management 69, 229–238.
  • Caliskan N, Kul R, Alkan S, Gokırmak Sogut E, Alacabey I, (2011) Adsorption of Zinc(II) on diatomite and manganese-oxide-modified diatomite: A kinetic and equilibrium study. Journal of Hazardous Materials 193 (15), 27-36
  • Doğan, M, Alkan M, Demirbaş Ö, Özdemir Y, Özmetin C, (2006) Adsorption kinetics of maxilon blue GRL onto sepiolite from aqueous solutions. Chemical Engineering Journal 124, 89–101.
  • Erdem E, Çölgeçen G, Donat R, (2005) The removal of textile dyes by diatomite earth. Journal of Colloid and Interface Science 282, 314–319.
  • Kamaruddin MA, Yusoff MS, Aziz HA, Akinbile CO, (2013) Recent developments of textile waste water treatment by adsorption process: A Review. International Journal of Scientific Research in Knowledge 1 (4), 60-73.
  • Kehinde FO, Aziz HA, (2016) Classical optimization of process variables in the treatment of real textile wastewater using clinoptilolite. Journal of Environmental Chemical Engineering 4, 1242-1247.
  • Lin JX, Zhan SL, Fang MH, Qian XQ, (2007) The adsorption of dyes from aqueous solution using diatomite. J Porous Mater 14, 449–455. Ngulube T, Gumbo JR, Masindi, V, Maity A, (2017) An update on synthetic dyes adsorption onto clay based minerals: A state-of-art review. Journal of Environmental Management 191, 35-57.
  • Özacar M, Sengil IA (2003), Adsorption of reactive dyes on calcined alunite from aqueous solutions. Journal of Hazardous Materials B98, 211–224. Özcan AS, Özcan A, (2004) Adsorption of acid dyes from aqueous solutions onto acid-activated bentonite. Journal of Colloid and Interface Science 276, 39–46.
  • Reza APS, Hasan AM, Ahmad JJ, Zohreh F, Jafar T, (2015) The effect of acid and thermal treatment on a natural diatomite. Chemistry Journal 1 (4), 144-150.
  • Standard methods for the examination of water and wastewater (1998) 20th edn, American Public Health Association/American Water Works Association/Water Environment Federation, Washington DC, USA.
There are 10 citations in total.

Details

Primary Language English
Subjects Environmental Engineering
Journal Section Articles
Authors

Ayşe Kuleyin

Emre Burcu Özkaraova Güngör

Feryal Akbal

Publication Date March 30, 2020
Acceptance Date March 5, 2020
Published in Issue Year 2020 Volume: 15 Issue: 1

Cite

APA Kuleyin, A., Özkaraova Güngör, E. B., & Akbal, F. (2020). Color and COD Removal from Real Textile Wastewater by Using Diatomite. Journal of International Environmental Application and Science, 15(1), 34-40.
AMA Kuleyin A, Özkaraova Güngör EB, Akbal F. Color and COD Removal from Real Textile Wastewater by Using Diatomite. J. Int. Environmental Application & Science. March 2020;15(1):34-40.
Chicago Kuleyin, Ayşe, Emre Burcu Özkaraova Güngör, and Feryal Akbal. “Color and COD Removal from Real Textile Wastewater by Using Diatomite”. Journal of International Environmental Application and Science 15, no. 1 (March 2020): 34-40.
EndNote Kuleyin A, Özkaraova Güngör EB, Akbal F (March 1, 2020) Color and COD Removal from Real Textile Wastewater by Using Diatomite. Journal of International Environmental Application and Science 15 1 34–40.
IEEE A. Kuleyin, E. B. Özkaraova Güngör, and F. Akbal, “Color and COD Removal from Real Textile Wastewater by Using Diatomite”, J. Int. Environmental Application & Science, vol. 15, no. 1, pp. 34–40, 2020.
ISNAD Kuleyin, Ayşe et al. “Color and COD Removal from Real Textile Wastewater by Using Diatomite”. Journal of International Environmental Application and Science 15/1 (March 2020), 34-40.
JAMA Kuleyin A, Özkaraova Güngör EB, Akbal F. Color and COD Removal from Real Textile Wastewater by Using Diatomite. J. Int. Environmental Application & Science. 2020;15:34–40.
MLA Kuleyin, Ayşe et al. “Color and COD Removal from Real Textile Wastewater by Using Diatomite”. Journal of International Environmental Application and Science, vol. 15, no. 1, 2020, pp. 34-40.
Vancouver Kuleyin A, Özkaraova Güngör EB, Akbal F. Color and COD Removal from Real Textile Wastewater by Using Diatomite. J. Int. Environmental Application & Science. 2020;15(1):34-40.

“Journal of International Environmental Application and Science”