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The endek industry produces low-biodegradable wastewater, which is very difficult to treat using the biological methods. For this reason, this study was aimed at improving the quality of wastewater for endek textile wastewater using the combination of ozone oxidation process as pretreatment and anoxic-aerobic activated sludge. The ozone reactor volume amounted to 3L and the applied ozone dose equaled 0.05 mg/minute. The BOD/COD of endek wastewater increased to 0.38 after ozone treatment and the application of anoxic-aerobic activated sludge treatment. The anoxic-aerobic experiments were conducted in batch process and consisted of activated sludge. Conventional anoxic-aerobic treatment can reach color and COD removal of 30% and 32%, respectively, without pre-treatment. The ozone pretreatment can increase color and COD removal up to 76.6% and 86.9%, respectively. On the basis of the effluent standards of textile wastewater quality, COD, BOD5, and total ammonia (NH3-N) parameters have met the quality standards.
Czasopismo
Rocznik
Tom
Strony
169--175
Opis fizyczny
Bibliogr. 29 poz., rys., tab.
Twórcy
autor
- Environmental Engineering Department, Universal University, Batam, Indonesia
autor
- Industrial Engineering Department, Universal University, Batam, Indonesia
autor
- Environmental Engineering Department, Universal University, Batam, Indonesia
autor
- Environmental Engineering Department, Universal University, Batam, Indonesia
Bibliografia
- 1. Bilinska L., Gmurek M. Ledakowicz S. 2016. Comparison between industrial and simulated textile wastewater treatment by AOPS – biodegradability, toxicity and cost assessment. Chemical Engineering Journal, 306, 550-559.
- 2. Dehghani M., Nasseri S., Mahdavi P., Mahvi A., Naddafi K., Jahed G. 2015. Evaluation of acid 4092 dye solution toxicity after uv/zno mediated nanophotocatalysis process using daphnia magna bioassay. Journal of Color Science and Technology, 5, 285-292.
- 3. Djenar N.S., Soeswanto B. 2005. Penyerapan polutan logam besi (Fe) dengan memanfaatkan tanaman eceng gondok. Jurnal Fluida, 4, 35-40.
- 4. Franca R.D.G., Ortigueira J., Pinheiro H.M. Lourenço, N.D. 2017. Effect of SBR feeding strategy and feed composition on the stability of aerobic granular sludge in the treatment of a simulated textile wastewater. Water Science and Technology, 76, 1188-1195.
- 5. Gosavi V.D., Sharma S. 2013. A general review on various treatment methods for textile wastewater. Journal of Environmental Science, Computer Science and Engineering & Technology, 3, 029-039.
- 6. Henze M., Aspegren H., Jansen J.C., Nielsen P.H., Lee N. 2002. Effect of solids retention time and wastewater characteristics on biological phosphorus removal. Water Science & Technology, 45, 137-44.
- 7. Khamparia S., Jaspal D. 2017. Adsorption in combination with ozonation for the treatment of textile waste water: a critical review. Frontiers of Environmental Science & Engineering, 11, 1-18.
- 8. Khantae A., Pons M., Zahra O. 2009. Photocatalic degradation of three azo dyes using immobilezed TiO2, nanoparticles on glass plates activated by UV light irradiation: influence of dye molocular structure. Journal Of Hazadous Material, 168, 451-457.
- 9. Khehraa M.S., Sainia H.S., Sharmaa D.K., Chadhaa B.S., Chimni S.S. 2006. Biodegradation of azo dye C.I. Acid Red 88 by an anoxic–aerobic sequential bioreactor. Dyes and Pigments, 70, 1-7.
- 10. Khuntia S., Majumder S., Ghosh P. 2012. Removal of ammonia from warter by ozone microbubbles. Industrial and Engineering Chemistry Reseach 318-326.
- 11. Madigan M.T., Martinko J.M., arker J. 2003. Brock Biology of Microorganisms. New Jersey,: Prentice-Hall, Inc. ISBN: 0130662712 9780130662712 0130491470 9780130491473.
- 12. Malik S.N., Ghosh P.C., Vaidya A.N., Mudliar S.N. 2018. Ozone pretreatment of biomethanated distillery wastewater in a semi batch reactor: mapping pretreatment efficiency in terms of COD, color, toxicity and biohydrogen generation. Biofuels, 1-9.
- 13. Metcalf and Eddy. 2003. Wastewater Engineering Treatment and Reuse 4th Edition. McGraw Hill: New York.
- 14. Mondal S., Bhagchandani C. 2016. Textile waste water treatment by advanced oxidation processes. Journal on Advances in Engineering Technology and Science 2. 2455-3131.
- 15. Morali E., Uzal N., Yetis U. 2016. Ozonation pre and post-treatment of denim textile mill effluent: effect of cleaner production measures. Journal of Cleaner Production, 137, 1-9.
- 16. Paździor K., Bilińska L., Ledakowicz S. 2018. A review of the existing and emerging technologies in the combination of AOPs and biological processes in industrial textile wastewater treatment. Chemical Engineering Journal.
- 17. Pratiwi, R., Notodarmojo S., Helmy Q. 2018. Decolourization of remazol black-5 textile dyes using moving bed bio-film reactor. IOP Conference Series: Earth and Environmental Science, 106, 012089.
- 18. Saravanan N., Kannadasan T, Basha C.A., Manivasagan V. 2013. Biosorption of Textile Dye Using Immobilized Bacterial (Pseudomonas aeruginosa) and Fungal (Phanerochate chrysosporium) Cells. American Journal of Environmental Sciences, 9, 377-387.
- 19. Sarayu, K., Sandhya S. 2012. Current technologies for biological treatment of textile wastewater–a review. Appl Biochem Biotechnol, 167, 646-661.
- 20. Sastrawidana, I.D.K. 2011. Studi perombakan zat warna tekstil remazol red rb secara aerob menggunakan bakteri enterobacter aerogenes yang diisolasi dari lumpur limbah tekstil. Jurnal Kimia, 5, 117-124.
- 21. Shu L., Qunhui W., Xuedong Z., Qifei H., Peikun H. 2010. Improved Pretreatment (Coagulation‐Floatation and Ozonation) of Younger Landfill Leachate by Microbubbles. Water Environment Research, 82, 657-665.
- 22. Smith B., O’Neal G., Boyter H., Pisczek J. 2006. Decolorizing textile dye wastewater by anoxic/aerobic treatment. Journal of Chemical Technology & Biotechnology 82. 16–24.
- 23. Suryawan I.W.K., Afifah A.S., G. Prajati. 2018. Adsorbsi warna metylen blue menggunakan powder dan granular activated carbon biji binjai (Mangifera caesia). JTERA (Jurnal Teknologi Rekayasa), 3, 211-218.
- 24. Suryawan I.W.K., Afifah A.S., Prajati G. 2019. Degradasi bahan organik dan pertumbuhan biomassa konsorsium pada air limbah olahan babi dengan lumpur aktif anoksik. Jurnal Teknik Kimia dan Lingkungan, 3. 20-26.
- 25. Suryawan, I.W.K., Helmy Q., Notodarmojo S. 2018. Textile wastewater treatment: colour and COD removal of reactive black-5 by ozonation. IOP Conf. Series: Earth and Environmental Science, 106, 1-6.
- 26. Wang W.-L., Cai Y.-Z, Hu H.-Y., Chen J., Wang J., Xue G., and Wu Q.-Y. 2018. Advanced treatment of bio-treated dyeing and finishing wastewater using ozone-biological activated carbon: a study on the synergistic effects. Chemical Engineering Journal, 359, 168-175.
- 27. Wu H., Wang S., Kong H., Liu T., and Xia M. 2007. Performance of combined process of anoxic baffled reactor-biological contact oxidation treating printing and dyeing wastewater. Bioresource Technology, 98, 1501–1504.
- 28. Wu Q., Li W.-T., Yu W.-H., Li Y., Li A.-M. 2016. Removal of fluorescent dissolved organic matter in biologically treated textile wastewater by ozonation-biological aerated filter. Journal of the Taiwan Institute of Chemical Engineers, 59, 359–364.
- 29. ZDHC. 2016. Textile Industry Wastewater Discharge Quality Standards. https://www.roadmaptozero.com/fileadmin/pdf/WastewaterQualityGuidelineLitReview.pdf.
Typ dokumentu
Bibliografia
Identyfikator YADDA
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