References

  1. C.G. Gomez, M Rinaudo, M.A. Villar, Oxidation of sodium alginate and characterization of the oxidized derivatives, Carbohydr. Polym., 67 (2007) 296–304.
  2. J.C. Duan, Q. Lu, R.W. Chen, Y.Q. Duan, L.F. Wang, G. Li, S. Pan, Synthesis of a novel flocculant on the basis of crosslinked konjac glucomannan-graft-polyacrylamide-co-sodium xanthate and its application in removal of Cu2+ ion, Carbohydr. Polym., 80 (2010) 436–441.
  3. M.S. Bakshi, P. Thakur, S. Sachar, T.S. Banipal, Synthesis of nanocomposite gold-semiconductor materials by seed-growth method, Mater. Lett., 61 (2007) 3762–3767.
  4. Z.-H. Huang, X. Zheng, W. Lv, M. Wang, Q.-H. Yang, F. Kang, Adsorption of lead(II) ions from aqueous solution on low-temperature exfoliated graphene nanosheets, Langmuir, 27 (2011) 7558–7562.
  5. H. Kaur, T.S. Banipal, S. Thakur, M.S. Bakshi, G. Kaur, N. Singh, Novel biodegradable films with extraordinary tensile strength and flexibility provided by nanoparticles, ACS Sustainable Chem. Eng., 1 (2013) 127–136.
  6. P. Khullar, V. Singh, A. Mahal, P.N. Dave, S. Thakur, G. Kaur, J. Singh, S.S. Kamboj, M.S. Bakshi, Bovine serum albumin bioconjugated gold nanoparticles: synthesis, hemolysis, and cytotoxicity toward cancer cell lines,
    J. Phys. Chem. C, 116 (2012) 8834–8843.
  7. S. Yang, J. Hu, C. Chen, D. Shao, X. Wang, Mutual effects of Pb(II) and humic acid adsorption on multiwalled carbon nanotubes/polyacrylamide composites from aqueous solutions, Environ. Sci. Technol., 45 (2011) 3621–3627.
  8. E. Rinde, W.J. Troll, Metabolic reduction of benzidine azo dyes to benzidine in the rhesus monkey, J. Natl. Cancer Inst., 55 (1975) 181–182.
  9. T. Robinson, G. McMullan, R. Marchant, P. Nigam, Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative, Bioresour. Technol., 77 (2001) 247–255.
  10. G. Crini, Non-conventional low-cost adsorbents for dye removal: a review, Bioresour. Technol., 97 (2006) 1061–1085.
  11. L. Ayed, A. Mahdhi, A. Cheref, A. Bakhrouf, Decolorization and degradation of azo dye Methyl Red by an isolated Sphingomonas paucimobilis: biotoxicity and metabolites characterization, Desalination, 274 (2011) 272–277.
  12. S. Dawood, T.K. Sen, Removal of anionic dye Congo red from aqueous solution by raw pine and acid-treated pine cone powder as adsorbent: equilibrium, thermodynamic, kinetics, mechanism and process design, Water Res., 46 (2012) 1933–1946.
  13. N.A. Ibrahim, A. Hashem, M.H. Abou-Shosha, Animation of wood sawdust for removing anionic dyes from aqueous solutions, Polym. Plast. Technol. Eng., 36 (1997) 963–971.
  14. G. McMullan, C. Meehan, A. Conneely, N. Kirby, T. Robinson, P. Nigam, I. Banat, R. Marchant, W. Smyth, Microbial decolourisation and degradation of textile dyes, Appl. Microbiol. Biotechnol., 56 (2001) 81–87.
  15. A. Pielesz, The process of the reduction of azo dyes used in dyeing textiles on the basis of infrared spectroscopy analysis, J. Mol. Struct., 511–512 (1999) 337–344.
  16. R.M. Christie, Pigments, dyes and fluorescent brightening agents for plastics: an overview, Polym. Int., 34 (1994) 351–361.
  17. M. Rekaby, A.A. Salem, S.H. Nassar, Eco-friendly printing of natural fabrics using natural dyes from alkanet and rhubarb, J. Text. Inst., 100 (2009) 486–495.
  18. 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. Res., 23 (2016) 14810–14853.
  19. P. Frid, S.V. Anisimov, N. Popovic, Congo red and protein aggregation in neurodegenerative diseases, Brain Res. Rev., 53 (2007) 135–160.
  20. T.M. Reid, K.C. Morton, C.Y. Wang, C.M. King, Conversion of Congo red and 2-azoxyfluorene to mutagens following in vitro reduction by whole-cell rat cecal bacteria, Mutat. Res. Genet. Toxicol., 117 (1983) 105–112.
  21. A. Afkhami, R. Moosavi, Adsorptive removal of Congo red, a carcinogenic textile dye, from aqueous solutions by maghemite nanoparticles, J. Hazard. Mater., 174 (2010) 398–403.
  22. R. Manogari, D. Daniel, A. Krastanov, Biodegradation of rice mill effluent by immobilised Pseudomonas sp. cells, Ecol. Eng. Environ. Prot., 1 (2008) 30–35.
  23. B. Manaswini, S.J. Partha, T.M. Tanaji, M.M. Ghangrekar, Rice mill wastewater treatment in microbial fuel cells fabricated using proton exchange membrane and earthen pot at different pH, Bioelectrochemistry, 79 (2010) 228–233.
  24. R.J. Stephenson, S.J.B. Duff, Coagulation and precipitation of a mechanical pulping effluent—I. Removal of carbon, colour and turbidity, Water Res., 30 (1996) 781–792.
  25. A.G. Vlyssides, C.J. Israilides, M. Loizidou, G. Karvouni, V. Mourafeti, Electrochemical treatment of vinasse from beet molasses, Water Sci. Technol., 36 (1997) 271–278.
  26. P. Miretzky, A. Saralegui, A.F. Cirelli, Aquatic macrophytes potential for the simultaneous removal of heavy metals (Buenos Aires, Argentina), Chemosphere, 57 (2004) 997–1005.
  27. F. Al-Sagheer, K. Khalil, H. Mahmoud, A.-Z.A. Elassar, E. Ibrahim,
    Chitosan-g-poly(4-acrylamidobenzenesulfonamide) copolymers: synthesis, characterization,
    and bioactivity, J. Polym. Res., 12 (2017) 230–242.
  28. I.D. Mall, V.C. Srivastava, G.V.A. Kumar, I.M. Mishra, Characterization and utilization of mesoporous fertilizer plant waste carbon for adsorptive removal of dyes from aqueous solution, Colloids Surf., A, 278 (2006) 175–187.
  29. E. Yavuz, G. Barim, B.F. Senkal, Thiol containing sulfonamide based polymeric sorbent for mercury extraction, J. Appl. Polym. Sci., 114 (2009) 1879–1883.
  30. G. Crini, F. Gimbert, C. Robert, B. Martel, O. Adam, N. Morin- Crini, F. De Giorgi, P.M. Badot, The removal of Basic Blue 3 from aqueous solutions by chitosan-based adsorbent: batch studies, J. Hazard. Mater., 153 (2008) 96–106.
  31. M.P. Cava, A.A. Deana, K. Muth, M.J. Mitchell, Organic Syntheses Collective Vol. 5, 1973, p. 944;
    N-Phenylmaleimide, Vol. 41, 1961, p. 93.