References

  1. X.-C. Jin, G.-Q. Liu, Z.-H. Xu, W.-Y. Tao, Decolorization of a dye industry effluent by Aspergillus fumigatus XC6, Appl. Microbiol. Biotechnol., 74 (2007) 239–243.
  2. O. Aksakal, H. Ucun, Equilibrium, kinetic and thermodynamic studies of the biosorption of textile dye (Reactive Red 195) onto Pinus sylvestris L., J. Hazard. Mater., 181 (2010) 666–672.
  3. M. Asgher, Biosorption of reactive dyes: a review, Water Air Soil Pollut., 223 (2012) 2417–2435.
  4. E.C. Lima, B. Royer, J.C.P. Vaghetti, N.M. Simon, B.M. da Cunha, F.A. Pavan, E.V. Benvenutti, R. Cataluña-Veses, C. Airoldi, Application of Brazilian pine-fruit shell as a biosorbent to removal of reactive red 194 textile dye from aqueous solution: kinetics and equilibrium study, J. Hazard. Mater., 155 (2008) 536–550.
  5. S. Ziane, F. Bessaha, K. Marouf-Khelifa, A. Khelifa, Single and binary adsorption of reactive black 5 and Congo red on modified dolomite: performance and mechanism, J. Mol. Liq., 249 (2018) 1245–1253.
  6. A.Y. Dursun, O. Tepe, Removal of Chemazol Reactive Red 195 from aqueous solution by dehydrated beet pulp carbon, J. Hazard. Mater., 194 (2011) 303–311.
  7. D.L. Zhao, W.M. Zhang, C.L. Chen, X.K. Wang, Adsorption of Methyl Orange dye onto multiwalled carbon nanotubes, Procedia Environ. Sci., 18 (2013) 890–895.
  8. J. Goscianska, M. Marciniak, R. Pietrzak, Mesoporous carbons modified with lanthanum(III) chloride for methyl orange adsorption, Chem. Eng. J., 247 (2014) 258–264.
  9. M. Iqbal, Vicia faba bioassay for environmental toxicity monitoring: a review, Chemosphere, 144 (2016) 785–802.
  10. M.E. Mahmoud, G.M. Nabil, N.M. El-Mallah, H.I. Bassiouny, S. Kumar, T.M. Abdel-Fattah, Kinetics, isotherm, and thermodynamic studies of the adsorption of reactive red 195 A dye from water by modified Switchgrass Biochar adsorbent, J. Ind. Eng. Chem., 37 (2016) 156–167.
  11. V. Belessi, G. Romanos, N. Boukos, D. Lambropoulou, C. Trapalis, Removal of Reactive Red 195 from aqueous solutions by adsorption on the surface of TiO2 nanoparticles, J. Hazard. Mater., 170 (2009) 836–844.
  12. M. Kamranifar, M. Khodadadi, V. Samiei, B. Dehdashti, M. Noori Sepehr, L. Rafati, N. Nasseh, Comparison the removal of reactive red 195 dye using powder and ash of barberry stem as a low cost adsorbent from aqueous solutions: Isotherm and kinetic study, J. Mol. Liq., 255 (2018) 572–577.
  13. C.R. Holkar, A.J. Jadhav, D.V. Pinjari, N.M. Mahamuni, A.B. Pandit, A critical review on textile wastewater treatments: possible approaches, J. Environ. Manage., 182 (2016) 351–366.
  14. A. El Nemr, O. Abdelwahab, A. Khaled, A. El Sikaily, Biosorption of Direct Yellow 12 from aqueous solution using green alga Ulva lactuca, Chem. Ecol., 22 (2006) 253–266.
  15. O. Adedayo, S. Javadpour, C. Taylor, W.A. Anderson, M. Moo-Young, Decolourization and detoxification of methyl red by aerobic bacteria from a wastewater treatment plant, World J. Microbiol. Biotechnol., 20 (2004) 545–550.
  16. R.G. Saratale, G.D. Saratale, J.S. Chang, S.P. Govindwar, Bacterial decolorization and degradation of azo dyes: a review, J. Taiwan Inst. Chem. Eng., 42 (2011) 138–157.
  17. V. Khandegar, A.K. Saroha, Electrocoagulation for the treatment of textile industry effluent – a review, J. Environ. Manage., 128 (2013) 949–963.
  18. A. Bedolla-Guzman, I. Sirés, A. Thiam, J.M. Peralta-Hernández, S. Gutiérrez-Granados, E. Brillas, Application of anodic oxidation, electro-Fenton and UVA photoelectro-Fenton to decolorize and mineralize acidic solutions of Reactive Yellow 160 azo dye, Electrochim. Acta, 206 (2016) 307–316.
  19. L. Bilińska, M. Gmurek, S. Ledakowicz, Comparison between industrial and simulated textile wastewater treatment by AOPs – biodegradability, toxicity and cost assessment, Chem. Eng. J., 306 (2016) 550–559.
  20. A.K. Verma, R.R. Dash, P. Bhunia, A review on chemical coagulation/flocculation technologies for removal of colour from textile wastewaters, J. Environ. Manage., 93 (2012) 154–168.
  21. S. Gupta, B.V. Babu, Removal of toxic metal Cr(VI) from aqueous solutions using sawdust as adsorbent: equilibrium, kinetics and regeneration studies, Chem. Eng. J., 150 (2009) 352–365.
  22. M.T. Yagub, T.K. Sen, S. Afroze, H.M. Ang, Dye and its removal from aqueous solution by adsorption: a review, Adv. Colloid Interface Sci., 209 (2014) 172–184.
  23. H. Cherifi, B. Fatiha, H. Salah, Kinetic studies on the adsorption of methylene blue onto vegetal fiber activated carbons, Appl. Surf. Sci., 282 (2013) 52–59.
  24. Z. Noorimotlagh, R.D. Cheshmeh, A.R. Khataee, S. Shahriyar, H. Nourmoradi, Adsorption of a textile dye in aqueous phase using mesoporous activated carbon prepared from Iranian milk vetch, J. Taiwan Inst. Chem. Eng., 45 (2014) 1783–1791.
  25. Z. Qi, Q. Liu, Z. Zhu, Q. Kong, Q. Chen, S. Zhao, Y. Liu, M. Miao, C. Wang, Rhodamine B removal from aqueous solutions using loofah sponge and activated carbon prepared from loofah sponge, Desal. Wat. Treat., 57 (2016) 29421–29433.
  26. M. Riera-Torres, C. Gutiérrez-Bouzán, M. Crespi, Combination of coagulation-flocculation and nanofiltration techniques for dye removal and water reuse in textile effluents, Desalination, 252 (2010) 53–59.
  27. M. Rafatullah, O. Sulaiman, R. Hashim, A. Ahmad, Adsorption of methylene blue on low-cost adsorbents: a review, J. Hazard. Mater., 177 (2010) 70–80.
  28. N.S.A. Mubarak, A.H. Jawad, W.I. Nawawi, Equilibrium, kinetic and thermodynamic studies of Reactive Red 120 dye adsorption by chitosan beads from aqueous solution, Energy Ecol. Environ., 2 (2017) 85–93.
  29. N.E. Ibisi, C.A. Asoluka, Use of agro-waste (Musa paradisiaca peels) as a sustainable biosorbent for toxic metal ions removal from contaminated water, Chem. Int., 4 (2018) 52–59.
  30. V.K. Gupta, Suhas, Application of low-cost adsorbents for dye removal – a review, J. Environ. Manage., 90 (2009) 2313–2342.
  31. P. Sharma, H. Kaur, M. Sharma, V. Sahore, A review on applicability of naturally available adsorbents for the removal of hazardous dyes from aqueous waste, Environ. Monit. Assess., 183 (2011) 151–195.
  32. E.S.Z. El Ashtoukhy, Loofa egyptiaca as a novel adsorbent for removal of direct blue dye from aqueous solution, J. Environ. Manage., 90 (2009) 2755–2761.
  33. A. Kausar, M. Iqbal, A. Javed, K. Aftab, Zill-i-Huma Nazli, H.N. Bhatti, S. Nouren, Dyes adsorption using clay and modified clay: a review, J. Mol. Liq., 256 (2018) 395–407.
  34. U. Tezcan Un, F. Ates, Low-cost adsorbent prepared from poplar sawdust for removal of disperse orange 30 dye from aqueous solutions, Int. J. Environ. Sci. Technol., 16 (2019) 899–908.
  35. M.E. Mahmoud, G.M. Nabil, N.M. El-Mallah, S.B. Karar, Improved removal and decolorization of C.I. anionic reactive yellow 145 A dye from water in a wide pH range via active carbon adsorbent-loaded-cationic surfactant, Desal. Wat. Treat., 55 (2015) 227–240.
  36. F. Nekouei, S. Nekouei, I.J. Tayagi, V.K. Gupta, Kinetic, thermodynamic and isotherm studies for acid blue 129 removal from liquids using copper oxide nanoparticle-modified activated carbon as a novel adsorbent, J. Mol. Liq., 201 (2014) 124–133.
  37. M.A.M. Salleh, D.K. Mahmoud, W.A.W.A. Karim, A. Idris, Cationic and anionic dye adsorption by agricultural solid wastes: a comprehensive review, Desalination, 280 (2011) 1–13.
  38. X.S. Wang, Y. Zhou, Y. Jiang, C. Sun, The removal of basic dyes from aqueous solutions using agricultural by-products, J. Hazard. Mater., 157 (2008) 374–385.
  39. O. Abdelwahab, Evaluation of the use of loofa activated carbons as potential adsorbents for aqueous solutions containing dye, Desalination, 222 (2008) 357–367.
  40. N.K. Amin, Removal of direct blue-106 dye from aqueous solution using new activated carbons developed from pomegranate peel: adsorption equilibrium and kinetics, J. Hazard. Mater., 165 (2009) 52–62.
  41. D. Chebli, A. Bouguettoucha, T. Mekhalef, S. Nacef, A. Amrane, Valorization of an agricultural waste, Stipa tenassicima fibers, by biosorption of an anionic azo dye, Congo red, Desal. Wat. Treat., 54 (2015) 245–254.
  42. Q. Kong, Y.N. Wang, L. Shu, M.S. Miao, Isotherm, kinetic, and thermodynamic equations for cefalexin removal from liquids using activated carbon synthesized from loofah sponge, Desal. Wat. Treat., 57 (2016) 7933–7942.
  43. Y.N. Wang, Q. Liu, L. Shu, M.S. Miao, Y.Z. Liu, Q. Kong, Removal of Cr(VI) from aqueous solution using Fe-modified activated carbon prepared from luffa sponge: kinetic, thermodynamic, and isotherm studies, Desal. Wat. Treat., 57 (2016) 29467–29478.