References

  1. M. Kamranifar, M. Khodadadi, V. Samiei, B. Dehdashti, M.S. Noori, 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.
  2. A. Somayajula, P. Asaithambi, M. Susree, M. Matheswaran, Sonoelectrochemical oxidation for decolorization of Reactive Red 195, Ultrason. Sonochem., 19 (2012) 803–811.
  3. 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.
  4. B. Chladkova, E. Evgenidou, L. Kvitek, A. Panacek, R. Zboril, P. Kovar, D. Lambropoulou, Adsorption and photocatalysis of nanocrystalline TiO2 particles for Reactive Red 195 removal: effect of humic acids, anions and scavengers, Environ. Sci. Pollut. Res. Int., 22 (2015) 16514–16524.
  5. M.E. Mahmoud, G.M. Nabil, N.M. El-Mallah, H.I. Bassiouny, S. Kumar, T.M. Abdel-Fattah, A dye from water by modified Switchgrass Biochar adsorbent, J. Ind. Eng. Chem., 37 (2016) 156–167.
  6. M.S. Mate, G. Pathade, Biodegradation of C.I. Reactive Red 195 by Enterococcus faecalis strain YZ66, World J. Microbiol. Biotechnol., 28 (2012) 815–826.
  7. M. Malakootian, M.R. Nabavian, The study of the performance of electrocoagulation in comparison to electro-Fenton processes at decoloration of methylene blue dye from aqueous solutions using iron electrode, J. Rafsanjan Univ. Med. Sci. Health Serv., 14 (2015) 755–768.
  8. Z. Tahir, S.R. Malik, M. Mehmood, Adsorption studies of Reactive Red 195 dye using modified rice husk, Sci. Int., 28 (2016) 951–954.
  9. R. Birmole, A. Parkar, K. Aruna, Biodegradation of Reactive Red 195 by a novel strain Enterococcus casseliflavus RDB_4 isolated from textile effluent, Nat. Environ. Pollut. Technol., 18 (2019) 97–109.
  10. I. Arslan-Alaton, G. Tureli, T. Olmez-Hanci, Treatment of azo dye production wastewaters using photo-Fenton-like advanced oxidation processes: optimization by response surface methodology, J. Photochem. Photobiol., A, 202 (2009) 142–153.
  11. P. Bahmani, A. Maleki, A. Ghahremani, S. Kohzadi, Efficiency of Fenton oxidation process in removal of Remazol Black-B from aqueous medium, J. Health Hyg., 4 (2013) 57–67.
  12. 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.
  13. F. Wali, Color removal and COD reduction of dyeing bath wastewater by Fenton reaction, Int. J. Waste Resour., 5 (2015) 1–6, doi: 10.4172/2252-5211.1000171.
  14. N. Daneshvar, V. Vatanpour, A. R. Khataee, M. H. Rasoulifard, S. Rastegar, Decolorization of mixture of dyes containing malachite green and orange II by Fenton-like reagent, J. Color Sci. Technol.,1 (2008) 83–89.
  15. N.F. Zubair, S. Jamil, H.N. Bhatti, M.A. Shahid, A comprehensive thermodynamic and kinetic study of synthesized rGO-ZrO2 composite as a photocatalyst and its use as fuel additive, J. Mol. Struct., 1198 (2019) 126869, doi: 10.1016/j.molstruc.2019.07.116.
  16. N. Nasseh, L. Taghavi, B. Barikbin, M.A. Nasseri, Synthesis and characterizations of a novel FeNi3/SiO2/CuS magnetic nanocomposite for photocatalytic degradation of tetracycline in simulated wastewater, J. Cleaner Prod., 179 (2018) 42–54.
  17. K.A. Tan, N. Morad, T.T. Teng, I. Norli, P. Panneerselvam, Removal of cationic dye by magnetic nanoparticle (Fe3O4) impregnated onto activated maize cob powder and kinetic study of dye waste adsorption, APCBEE Procedia, 1 (2012) 83–89.
  18. S. Singh, V.C. Srivastava, T.K. Mandal, I.D. Mall, S.L. Lo, Synthesis and application of green mixed-metal oxide nanocomposite materials from solid waste for dye degradation, J. Environ. Manage., 181 (2016) 146–156.
  19. C. Yaman, G. Gündüz, A parametric study on the decolorization and mineralization of CI Reactive Red 141 in water by heterogeneous Fenton-like oxidation over FeZSM-5 zeolite, J. Environ. Health Sci. Eng., 13 (2015) 1–12, doi: 10.1186/ s40201-015-0162-6.
  20. H.N. Bhatti, M. Iqbal, A. Nazir, H. Ain, Kinetic study of degradation of basic turquise blue X-GB and Basic blue X-GRRL using advanced oxidation process, Z. Phys. Chem., 234 (2019) 1803–1817, doi: 10.1515/zpch-2018-1313.
  21. M. Khodadadi, M.H. Ehrampoush, M.T. Ghaneian, A. Allahresani, A.H. Mahvi, Synthesis and characterizations of FeNi3@SiO2@TiO2 nanocomposite and its application in photocatalytic degradation of tetracycline in simulated wastewater, J. Mol. Liq., 255 (2018) 224–232.
  22. N. Nasseh, T.J. Al-Musawi, M.R. Miri, S. Rodriguez-Couto, A.H. Panahi, A comprehensive study on the application of FeNi3@SiO2@ZnO magnetic nanocomposites as a novel photo-catalyst for degradation of tamoxifen in the presence of simulated sunlight, Environ. Pollut., 261 (2020) 114127, doi: 10.1016/j.envpol.2020.114127.
  23. P. Nazari, S.R. Setayesh, Effective degradation of Reactive Red 195 via heterogeneous electro-Fenton treatment: theoretical study and optimization, Int. J. Environ. Sci. Technol., 16 (2019) 6329–6346.
  24. M. Revathi, B. Kavitha, C. Vedhi, N. Senthil Kumar, Electrochemical detection and quantification of Reactive Red 195 dyes on graphene modified glassy carbon electrode, J. Environ. Sci. Health, Part C Environ. Carcinog. Ecotoxicol. Rev., 37 (2019) 42–54.
  25. E.W. Rice, R.B. Baird, A.D. Eaton, Standard Methods for the Examination of Water and Wastewater, 23rd ed., American Public Health Association, American Water Works Association, Water Environment Federation, 2017, pp. 5–14.
  26. M. Nasseri, S. Sadeghzadeh, A highly active FeNi3–SiO2 magnetic nanoparticles catalyst for the preparation of 4H-benzo [b]pyrans and spirooxindoles under mild conditions, J. Iran. Chem. Soc., 10 (2013) 1047–1056.
  27. X. Lu, G. Liang, Q. Sun, C. Yang, High-frequency magnetic properties of FeNi3–SiO2 nanocomposite synthesized by a facile chemical method, J. Alloys Compd., 509 (2011) 5079–5083.
  28. X. Ding, Y. Huang, J. Wang, H. Wu, P. Liu, Excellent electromagnetic wave absorption property of quaternary composites consisting of reduced graphene oxide, polyaniline and FeNi3@SiO2 nanoparticles, Appl. Surf. Sci., 357 (2015) 908–914.
  29. R. Wang, X. Wang, X. Xi, R. Hu, G. Jiang, Preparation and photocatalytic activity of magnetic Fe3O4/SiO2/TiO2 composites, Adv. Mater. Sci. Eng., 2012 (2012), doi: 10.1155/2012/409379.
  30. 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.
  31. M. Khodadadi, M.H. Saghi, N.A. Azadi, S. Sadeghi, Adsorption of chromium VI from aqueous solution onto nanoparticle sorbent: Chitozan-Fe-Zr, J. Mazandaran Univ. Med. Sci., 26 (2016) 70–82.
  32. N. Djafarzadeh, Mineralization of an azo dye Reactive Red 195 by advanced electrochemical electro-Fenton process, Int. J. Chem., 7 (2016) 217–220.
  33. P. Bautista, A.F. Mohedano, J.A. Casas, J.A. Zazo, J.J. Rodriguez, An overview of the application of Fenton oxidation to industrial wastewaters treatment, J. Chem. Technol. Biotechnol., 83 (2008) 1323–1338.
  34. S. Bayar, M. Erdogan, Removal of COD and color from Reactive Red 195 azo dye wastewater using Fenton and Fenton-like oxidation processes: kinetic studies. Appl. Ecol. Environ. Res., 17 (2019) 1517–1529.
  35. G. Harichandran, S. Prasad, SonoFenton degradation of an azo dye, Direct Red, Ultrason. Sonochem., 29 (2016) 178–185.
  36. J. Anwar, U. Shafique, M. Salman, W. Zaman, A. Dar, S. Anwar, Removal of Pb(II) and Cd(II) from water by adsorption on peels of banana, Bioresour. Technol., 101 (2010) 1725–1755.
  37. A. Farooghi, M.H. Sayadi, M.R. Rezaei, A. Allahresani, An efficient removal of lead from aqueous solutions using FeNi3@SiO2 magnetic nanocomposite, Surf. Interfaces, 10 (2018) 58–64.
  38. M. Hoseini, G. Safari, H. Kamani, J. Jaafari, A. Mahvi, Survey on removal of tetracycline antibiotic from aqueous solutions by nano-sonochemical process and evaluation of the influencing parameters, Iran. J. Health Environ., 8 (2015) 141–152.
  39. D. Dimitrakopoulou, I. Rethemiotaki, Z. Frontistis, N.P. Xekoukoulotakis, D. Venieri, D. Mantzavinos, Degradation, mineralization and antibiotic inactivation of amoxicillin by UV-A/TiO2 photocatalysis, J. Environ. Manage, 98 (2012) 168–174.
  40. M.H. Habibi, Z. Rezvani, Photocatalytic degradation of an azo textile dye (C.I. Reactive Red 195 (3BF)) in aqueous solution over copper cobaltite nanocomposite coated on glass by Doctor Blade method, Spectrochim. Acta, Part A, 147 (2015) 173–177.
  41. N. Aghajari, Z. Ghasemi, H. Younesi, N. Bahramifar, Synthesis, characterization and photocatalytic application of Ag-doped Fe-ZSM-5@ TiO2 nanocomposite for degradation of Reactive Red 195 (RR 195) in aqueous environment under sunlight irradiation, J. Environ. Health Sci. Eng., 17 (2019) 219–232.
  42. Z.M. Khoshhesab, Z. Ayazi, M. Dargahi, Synthesis of magnetic graphene oxide nanocomposite for adsorption removal of Reactive Red 195: modelling and optimizing via central composite design, Int. J. Nanosci. Nanotechnol., 16 (2020) 35–48.
  43. M.H. Karaoğlu, M. Uğurlu, Studies on UV/NaOCl/TiO2/Sep photocatalysed degradation of Reactive Red 195, J. Hazard. Mater., 174 (2010) 864–871.
  44. R. Jayalakshmi, J. Jeyanthi, Simultaneous removal of binary dye from textile effluent using cobalt ferrite-alginate nanocomposite: performance and mechanism, Microchem. J., 145 (2019) 791–800.