References

  1. S.I. Siddiqui, S.A. Chaudhry, Nigella sativa plant based nanocomposite-MnFe2O4/BC: A non-toxic, antibacterial material for water purification application, J. Clean. Prod., 200 (2018) 996–1008.
  2. Y. Yao, L. Wang, L. Sun, S. Zhu, Z. Huang, Y. Mao, W. Lu, W. Chen, Efficient removal of dyes using heterogeneous fenton catalysts based on activated carbon fibres with enhanced activity, Chem. Eng. Sci., 101 (2013)424–431.
  3. S.I. Siddiqui, R. Ravi, G. Rathi et al., Decolorization of textile wastewater using composite materials, In Nanomaterials in the wet processing of textiles, Ed., S.U. Islam, B.S. Butola, John Wiley & Sons, Inc., 2018, pp. 187–218.
  4. S.I. Siddiqui, B. Fatima, N. Tara, G. Rathi, S.A. Chaudhry, 15: Recent advances in remediation of synthetic dyes from wastewaters using sustainable and low-cost adsorbents, In The textile institute book series, The impact and prospects of green chemistry for textile technology, Ed., S.U. Islam, B.S. Butola, Woodhead Publishing, Elsevier, 2019, pp. 471–507.
  5. D. Rawat, V. Mishra, R.S. Sharma, Detoxification of azo dyes in the context of environmental processes, Chemosphere, 155 (2016) 591–605.
  6. M. Tokumura, H.T. Znad, Y. Kawase, Modelling of an external light irradiation slurry photoreactor: UV light or sunlight-photo assisted Fenton discoloration of azo-dye Orange II with natural mineral tourmaline powder, Chem. Eng. Sci., 61 (2006) 6361–6371.
  7. N. Divya, A. Bansal, A.K. Jana, Photocatalytic activity of transition metal ion doped Titania for Amaranth dye degradation, Mater. Sci. Forum., 712 (2012) 85–104.
  8. E.M. Elgendy, N.A. Al-Zahrani, Comparative study of natural and synthetic food additive dye amaranth through photochemical reactions, Indian J. Sci. Res., 4 (2015) 827–832.
  9. H. Sudrajat, S. Babel, H. Sakai, S. Takizawa, Rapid photocatalytic degradation of the recalcitrant dye amaranth by highly active N-WO3, Environ. Chem. Lett., 165 (2015) 224–234.
  10. S.I. Siddiqui, M. Naushad, S.A. Chaudhry, Promising prospects of nanomaterials for arsenic water remediation: A comprehensive review, Process Saf. Environ. Protect., 126 (2019) 60–97.
  11. S.I. Siddiqui, S.A. Chaudhry, Nanohybrid composite Fe2O3-ZrO2/BC for inhibiting the growth of bacteria and adsorptive removal of arsenic and dyes from water, J. Clean. Prod., 223 (2019) 849–868.
  12. L. Fu, G. Zhang, S. Wang, L. Zhang, J. Peng, Modification of activated carbon via grafting polyethyleneimine to remove amaranth from water, Appl. Water Sci., 7 (2017) 4247–4254.
  13. S.I. Siddiqui, S.A. Chaudhry, A review on graphene oxide and its composite preparation and its use for the removal of As3+ and As5+ from water under various parameters: Application of isotherm, kinetic and thermodynamics, Process Saf. Environ. Protect., 119 (2018) 138–163.
  14. S.I. Siddiqui, G. Rathi. S.A. Chaudhry, Qualitative analysis of acid washed black cumin seeds for decolourization of water through removal of highly intense dye methylene blue, Data in Brief, 20 (2018) 1044–1047.
  15. N. Tara, S.I. Siddiqui, G. Rathi, S.A. Chaudhry, Inamuddin, A.M. Asiri, Nano-engineered adsorbent for the removal of dyes from water: A review, Curr. Anal. Chem., 15(1) (2019).
  16. S.I. Siddiqui, S.A. Chaudhry, Arsenic removal from water using nanocomposites: a review, Curr. Environ. Eng., 4 (2017) 81–102.
  17. S.I. Siddiqui, S.A. Chaudhry, Arsenic: toxic effects and remediation. In Advanced materials for wastewater treatment, Ed., S.U. Islam, John Wiley & Sons, Inc., 2017, pp. 1–27.
  18. S.I. Siddiqui, S.A. Chaudhry, Iron oxide and its modified forms as an adsorbent for arsenic removal: a comprehensive recent advancement, Process Saf. Environ. Protect., 111 (2017) 592–626.
  19. S.I. Siddiqui, S.A. Chaudhry, Removal of arsenic from water through adsorption onto metal oxide-coated material, Mater. Res. Found., 15 (2017) 227–276.
  20. K.J. McDonald, B. Reynolds, K.J. Reddy, Intrinsic properties of cupric oxide nanoparticles enable effective filtration of arsenic from water, Sci. Rep., 5 (2015) 11110.
  21. S.A. Chaudhry, T.A. Khan, I. Ali, Adsorptive removal of Pb(II) and Zn(II) from water onto manganese oxide-coated sand: Isotherm, thermodynamic and kinetic studies, Egypt. J. Basic Appl. Sci., 3 (2016) 287–300.
  22. H.R. Naika, K. Lingaraju, K. Manjunath, D. Kumar, G. Nagaraju, D. Suresh, H. Nagabhushana, Green synthesis of CuO nanoparticles using Gloriosa superba leaf extract and their antibacterial activity, J. Taibah Univ. Sci., 9 (2015) 7–12.
  23. P.P.N.V. Kumar, U. Shameem, P. Kollu, R.L. Kalyani, S.V.N. Pammi, Green synthesis of copper oxide nanoparticles using aloe vera leaf extract and its antibacterial activity against fish bacterial pathogens, J. Bionanosci., 5 (2015) 135–139.
  24. S.M. Yedurkar, C.B. Maurya, P.A. Mahanwar, A biological approach for the synthesis of copper oxide nanoparticles by the ixora coccinea leaf extract, J. Mater. Environ. Sci., 8 (2017) 1173–1178.
  25. G.M. Sulaiman, A.T. Tawfeeq, M.D. Jaaffer, Biogenic synthesis of copper oxide nanoparticles using oleaeuropea leaf extract and evaluation of their toxicity: An in vivo and in vitro study, Biotechnol. Prog., 34 (2018) 218–230.
  26. P. Sutradhar, M. Saha, D. Maiti, Microwave synthesis of copper oxide nanoparticles using tea leaf and coffee powder extracts and its antibacterial activity, J. Nanostruct Chem., 4 (2014) 86.
  27. A. Thit, K. Huggins, H. Selck, A. Baun, Acute toxicity of copper oxide nanoparticles to Daphnia magna under different test conditions, Toxicol. Envirom. Chem., 99 (2016) 1–15.
  28. M.E. Cartea, M. Francisco, P. Soengas, P. Velasco, Phenolic compounds in Brassica vegetables, Molecules, 16 (2011) 251–280.
  29. M.I. Din, F. Arshad, A. Rani, et al., Single step green synthesis of stable F-CuO NPs as efficient photo catalyst material, J. Opt. Electron. Biomed. Mater., 9 (2017) 41–48.
  30. H. Hosseinzadeh, S. Mohammadi, Quince seed mucilage magnetic nanocomposites as novel bioadsorbents for efficient removal of cationic dyes from aqueous solutions, Carbohydr. Polym., 134 (2015) 213–221.
  31. T.A. Khan, S.A. Chaudhry, I. Ali, Equilibrium uptake, isotherm and kinetic studies of Cd (II) adsorption onto iron oxide activated red mud from aqueous solution, J. Mol. Liq., 202 (2015) 165–175.
  32. V.V.T. Padil, M. Cernik, Green synthesis of F-CuO NPs using gum karaya as a biotemplate and their antibacterial application, Intern. J. Nanomed., 8 (2013) 889–898.
  33. K. Abdellaoui, I. Pavlovic, M. Bouhent, Mustapha, A. Benhamou, C. Barriga, A comparative study of the amaranth azo dye adsorption/desorption from aqueous solutions by layered double hydroxides. Appl. Clay Sci., 143 (2017) 142–150.
  34. A. Momin, R. Pervin, J. Uddin, G.M. Khan, M. Islam, One step synthesis and optical evaluation of CuO NPs, J. Bangladesh Electron. Soc., 10 (2010) 57–63.
  35. J. Ramyadevi, K. Jeyasubramanian, A. Marikani, G. Rajakumar, Copper nanoparticles synthesized by polyol process used to control hematophagous parasites, Parasitology Res., 109 (2011) 1403–1415.
  36. T.A. Khan, S.A. Chaudhry, I. Ali, Thermodynamic and kinetic studies of As (V) removal from water by zirconium oxide–coated marine sand, Environ. Sci. Pollut. Res., 20 (2003) 5425–5440.
  37. F. Marabelli, G.B. Parravicini, F. Salghetti-Drioli, Optical gap of Cu, Phys. Rev. B., 52 (1995) 1433.
  38. S.A. Chaudhry, T.A. Khan, I. Ali, Equilibrium, kinetic and thermodynamic studies of Cr (VI) adsorption from aqueous solution onto manganese oxide coated sand grain (MOCSG), J. Mol. Liq., 236 (2017a) 320–330.
  39. S.A. Chaudhry, T.A. Khan, I. Ali, Zirconium oxide-coated sand-based batch and column adsorptive removal of arsenic from water: Isotherm, kinetic and thermodynamic studies, Egypt. J. Petrol., 26 (2017b) 553–563.
  40. S.A. Chaudhry, Z. Zaidi, S.I. Siddiqui, Isotherm, kinetic and thermodynamics of arsenic adsorption onto iron-zirconium binary oxide-coated sand (IZOBCS): modelling and process optimization, J. Mol. Liq., 229 (2017c) 230–240.
  41. S.A. Chaudhry, M. Ahmed, S.I. Siddiqui, S. Ahmed, Fe (III)–Sn (IV) mixed binary oxide-coated sand preparation and its use for the removal of As(III) and As(V) from water: application of isotherm, kinetic and thermodynamics, J. Mol. Liq., 224 (2016) 431–441.
  42. S.A. Chaudhry, T.A. Khan, I. Ali, Adsorptive removal of Pb (II) and Zn (II) from water onto manganese oxide-coated sand: Isotherm, thermodynamic and kinetic studies, Egypt. J. Basic Appl. Sci., 3 (2016) 287–300.
  43. Z. Aghili, S. Taheri, H.A. Zeinabad, L. Pishkar, A.A. Saboury, A. Rahimi, M. Falahati, Investigating the interaction of Fe nanoparticles with lysozyme by biophysical and molecular docking studies, Plos One., 11 (2016) 0164878.
  44. S.I. Siddiqui, O. Manzoor, M. Mohsin, S.A. Chaudhry, Nigella sativa seed based nanocomposite-MnO2/BC: An antibacterial material for photocatalytic degradation, and adsorptive removal of dye from water, Environ. Res., 171 (2019) 328–340.
  45. X. Wang, C. Jiang, B. Hou, Y. Wang, C. Hao, J. Wu, Carbon composite lignin-based adsorbents for the adsorption of dyes, Chemosphere, 206 (2018) 587–596.
  46. S.I. Siddiqui, G. Rathi, S.A. Chaudhry, Acid washed black cumin seed powder preparation for adsorption of methylene blue dye from aqueous solution: Thermodynamic, kinetic and isotherm studies, J. Mol. Liq., 264 (2018) 275–284.
  47. Y. Wang, L. Zhu, X. Wang et al., Synthesis of aminated calcium lignosulfonate and its adsorption properties for azo dyes, J. Indus. Eng. Chem., 61 (2018) 321–330.
  48. A. Naby, M. Salem, M.A. Ahmed, M.F. El-Shahat, Selective adsorption of amaranth dye on Fe3O4/MgO nanoparticles, J. Mol. Liq., 219 (2016) 780–788.
  49. B. Zargar, H. Parham, A. Hatamie, Fast removal and recovery of amaranth by modified iron oxide magnetic nanoparticles, Chemosphere, 76 (2009) 554–557.
  50. R. Ahmad, R. Kumar, Adsorption of amaranth dye onto alumina reinforced polystyrene, Clean Soil Air Water, 39 (2011) 74–82.
  51. A. Mittal, L.K. Krishnan, V.K. Gupta, Use of waste materials – bottom ash and de-oiled soya, as potential adsorbents for the removal of amaranth from aqueous solutions, J. Hazard. Mater., 117 (2005) 171–178.
  52. I.G. Coronilla, L.M. Barrera, T.L.V. Garrido, E.C. Urbina, Biosorption of amaranth dye from aqueous solution by roots, leaves, stems and the whole plant of E. Crassipes, Environ. Eng. Manage. J., 13 (2014) 1917–1926.
  53. R. Rehman, T. Mahmud, M. Irum, Comparative sorption studies for amaranth dye removal from water in cost-effective way using guava leaves and potato peels, Asian J. Chem., 27 (2015) 2008–2014.