References

  1. M. Neamlu, A. Yediler, L. Siminiceanu, M. Macoveanu, A. Kettrup, Decolorization of disperse red 354 azo dye in water by several oxidation processes-a comparative study, Dyes. Pigments, 60 (2004) 61–68.
  2. M. Punzi, A. Anbalagan, R.A. Borner, B.M. Svensson, M. Jonstrup, B. Mattiasson, Degradation of a textile azo dye using biological treatment followed by photo-Fenton oxidation: Evaluation of toxicity and microbial community structure, Chem. Eng. J., 270 (2015) 290–299.
  3. O.J. Hao, H. Kim, PC. Chiang, Decolorization of wastewater, Crit. Rev. Environ. Sci. Technol., 30 (2000) 449–505.
  4. N.P. Raval, P.U. Shah, N.K. Shah, Adsorptive amputation of hazardous azo dye congo red from wastewater: a critical review, Environ. Sci. Pollut. R., 23 (2016) 14810–14853.
  5. N. Azbar, T. Yonar, K. Kestioglu, Comparison of various advanced oxidation processes and chemical treatment methods for COD and color removal from a polyester and acetate fiber dyeing effluent, Chemosphere, 55 (2004) 35–43.
  6. D.L. Huang, C.J. Hu, G.M. Zeng, M. Cheng, P. Xu, X.M. Gong, R.Z. Wang, W.J. Xue, Combination of Fenton processes and biotreatment for wastewater treatment and soil remediation, Sci. Total. Environ., 574 ( 2017) 1599–1610.
  7. M. Imran, D.E. Crowley, A. Khalid, S. Hussain, M.W. Mumtaz, M. Arshad, Microbial biotechnology for decolorization of textile waste waters, Rev. Environ. Sci. Bio., 14 (2015) 73–92.
  8. L.L. Yan, Y. Liu, Y. Wen, Y. Ren, G.X. Hao, Y. Zhang, Role and significance of extracellular polymeric substances from granular sludge for simultaneous removal of organic matter and ammonia nitrogen, Bioresour. Technol., 179 (2015) 460–466.
  9. T.L. Poxon, J.L. Darby, Extracellular polyanions in digested sludge: Measurement and relationship to sludge dewaterability, Water Res., 31 (1997) 749–758.
  10. Y. Liu, S. Chang, F.M. Defersha, Characterization of the proton binding sites of extracellular polymeric substances in an anaerobic membrane bioreactor, Water Res., 78 (2015) 133–143.
  11. C.Q. Yin, F.G. Meng, G.H. Chen, Spectroscopic characterization of extracellular polymeric substances from a mixed culture by ammonia-oxidizing bacteria, Water Res., 68 (2015) 740–749.
  12. G.P. Sheng, M.L. Zhang, H.Q. Yu, Characterization of adsorption properties of extracellular polymeric substances (EPS) extracted from sludge, Colloids Surf. B: Biointerfaces, 62 (2008) 83–90.
  13. N. Li, D. Wei, S.T. Wang, L.H. Hu, W.Y. Xu, B. Du, Q. Wei, Comparative study of the role of extracellular polymeric substances in biosorption of Ni (II) onto aerobic/anaerobic granular sludge, J. Colloid Interf. Sci., 490 (2017) 754–761.
  14. J. Lin, X.W. Zhang, Z.J. Li, L.C. Lei, Biodegradation of Reactive blue 13 in a two-stage anaerobic/aerobic fluidized beds system with a Pseudomonas sp. Isolate, Bioresour. Technol., 101 ( 2010) 34–40.
  15. X.Y. Li, S.F. Yang, Influence of loosely bound extracellular polymeric substantces (EPS) on the flocculation, sedimentation and dewaterability of activated sludge, Water Res., 41 (2007) 1022–1030.
  16. H.C. Xu, H.L. Jiang, G.H. Yu, L.Y. Yang, Towards understanding the role of extracellular polymeric substances in cyanobacterial Microcystis aggregation and mucilaginous bloom formation, Chemosphere, 117 (2014) 815–822.
  17. W.T. Stringfellow, L. Alvarez-Cohen, Evaluating the relationship between the sorption of PAHs to bacterial biomass and biodegradation, Water Res., 33 (1999) 2535–2544.
  18. I. Langmuir, The constitution and fundamental properties of solids and liquids, J. Am. Chem. Soc., 38 (1916) 2221–2295.
  19. H.M.F. Freundlich, Over the adsorption in solution. J. Phys. Chem., 57 (1906) 385–470.
  20. X. Wei, L.C. Fang, P. Cai, Q.Y. Huang, H. Chen, W. Liang, X.M. Rong, Influence of extracellular polymeric substances (EPS) on Cd adsorption by bacteria, Environ. Pollut., 159 (2011) 1369–1374.
  21. S. Tsuneda, J. Jung, H. Hayashi, H. Aikawa, A. Hirata, H. Sasaki, Influence of extracellular polymers on electro kinetic properties of heterotrophic bacterial cells examined by soft particle electrophoresis theory, Colloids. Surf. B., 29 (2003) 181–188.
  22. W.O. Khunjar, N.G. Love, Sorption of carbamazepine, 17 a-ethinylestradiol, iopromide and trimethoprim to biomass involves interactions with exocellular polymeric substances, Chemosphere, 82 (2011) 917–922.
  23. L.B.L. Lim, N. Priyantha, C.H. Ing, M.K. Dahri, D.T.B. Tennakoon, T. Zehra, M Suklueng, Artocarpus odoratissimus skin as a potential low-cost biosorbent for the removal of methylene blue and methyl violet 2B, Desal. Water. Treat., 53 (2015) 964–975.
  24. L.B.L. Lim, N. Priyanatha, NA.H.M. Zaidi, A superb modified new adsorbent, Artocarpus odoratissimus leaves, for removal of cationic methyl violet 2B dye, Environ. Earth. Sci., 75 (2016) 1179–1191.
  25. N. Priyantha, L.B.L. Lim, D.T.B., Tennakoon, E.T.Z. Liaw, C.H. Ing, A.B. Liyandeniya, Biosorption of cationic dyes on breadfruit (Artocarpus altilis) peel and core, Appl. Water. Sci., 8 (2018) 37–47.
  26. P. Li, Y.J. Su, Y. Wang, B. Liu, L.M. Sun, Bioadsorption of methyl violet from aqueous solution onto Pu-erh tea powder, J. Hazard. Mater., 179 (2010) 43–48.
  27. L. Zhou, J.C. Huang, B.Z. He, F.A. Zhang, H.B. Li, Peach gum for efficient removal of methylene blue and methyl violet dyes from aqueous solution, Carbohyd. Polym., 101 (2014) 574–581.
  28. Z.H. Cheng, J.L., B.Z. He, F. Zhang, F.A. Zhang, X.H. Huang, L. Zhou, One-step fabrication of graphene oxide enhanced magnetic composite gel for highly efficient dye adsorption and catalysis, ACS. Sustain. Chem. Eng., 3 (2015) 1677–1685.
  29. L. Zhou, B.Z. He, J.C. Huang, One-step synthesis of robust a mine- and vinyl-capped magnetic iron oxide nanoparticles for polymer grafting, dye adsorption, and catalysis, ACS. Appl. Mater. Interfaces, 5 (2013) 8678–8685.
  30. Z.Q. Zhang, S.Q. Xia, X.J. Wang, A.M. Yang, B. Xu, L. Chen, Z.L. Zhu, J.F. Zhao, N.J. Renault, D Leonard, A novel biosorbent for dye removal: Extracellular polymeric substance (EPS) of Proteus mirabilis TJ-1, J. Hazard. Mater., 163 (2009) 279–284.
  31. J.K. Polman, C.R. Breckenridge, Biomass-mediated binding and recovery of textile dyes from waste effluents, Text. Chem. Color., 28 (1996) 31–35.
  32. M. Basibuyuk, C.F. Forster, An examination of the adsorption characteristics of a basic dye (Maxilon Red BL-N) on to live activated sludge system, Process. Biochem., 38 (2003) 1311–1316.
  33. A.C. Rodrigues, S. Wuertz, A.G. Brito, L.F. Melo, Fluorene and phenanthrene uptake by Pseudomonas putida ATCC 17514: Kinetics and physiological aspects, Biotechnol. Bioeng., 90 (2010) 281–289.
  34. M. Yao, X.W. Zhang, L.C. Lei, Removal of reactive blue 13 from dyeing wastewater by self-assembled organobentonite in a one-step process, J. Chem. and Eng. Data, 57 (2012) 1915–1922.
  35. J.B. Fein, J.F. Boily, N. Yee, D. Gorman-Lewis, B.F. Turner, Potentiometric titrations of Bacillus subtilis cells to low pH and a comparison of modeling approaches, Geochim. Cosmochim. Ac., 69 (2005) 1123–1132.
  36. J.B. Fein, C.J. Daughney, N. Yee, T.A. Davis, A chemical equilibrium model for metal adsorption onto bacterial surfaces, Geochim. Cosmochim. Ac., 61 (1997) 3319–3328.
  37. G.P. Sheng, H.Q. Yu, Characterization of extracellular polymeric substances of aerobic and anaerobic sludge using three-dimensional excitation and emission matrix fluorescence spectroscopy, Water Res., 40 (2006) 1233–1239.
  38. S.J. Yuan, M. Sun, G.P. Sheng, Y. Li, W.W. Li, R.S. Yao, H.Q. Yu, Identification of key constituents and structure of the extracellular polymeric substances excreted by Bacillus megaterium TF 10 for their flocculation capacity, Environ. Sci. Technol., 45 (2011) 1152–1157.
  39. D. Zhang, L.Z. Zhu, Effects of tween 80 on the removal, sorption and biodegradation of pyrene by Klebsiella oxytoca PYR- 1, Environ. Pollut., 164 (2012) 169–174.
  40. G.F. Liu, J.T. Zhou, Y.Y. Qu, X. Ma, Decolorization of sulfonated azo dyes with two photosynthetic bacterial strains and a genetically engineered Escherichia coli strain, World J. Microb. Biot., 23 (2007) 931–937.
  41. S.D. Choi, H.B. Hong, Y.S. Chang, Adsorption of halogenated aromatic pollutants by a protein released from Bacillus pumilus, Water Res., 37 (2003) 4004–4010.