References

  1. S. Soni, P.K. Bajpai, J. Mittal, Utilisation of cobalt doped iron based MOF for enhanced removal and recovery of methylene blue dye from waste water, J. Mol. Liq., (2018), 314 (2020) 113642–113654.
  2. Aruna, N. Bagotia, A.K. Sharma, S. Kumar, A review on modified sugarcane bagasse biosorbent for removal of dyes, Chemosphere, 268 (2021) 129309–129319.
  3. C. Arora, S. Soni, S. Sahu, J. Mittal, P. Kumar, P.K. Bajpai, Iron based metal organic framework for efficient removal of methylene blue dye from industrial waste, J. Mol. Liq., 284 (2019) 373–352.
  4. I. Anastopoulos, I. Pashalidis, A.G. Orfanos, I.D. Manariotis, T. Tatarchuk, L. Sellaoui, A. Bonilla-Petriciolet, A. Mittal, A. Nunez-Delgado, Removal of caffeine, nicotine and amoxicillin from (waste) waters by various adsorbents. A review, J. Environ. Manage., 261 (2020) 110236–110244.]
  5. V. Kumar, P. Saharan, A.K. Sharma, A. Umar, I. Kaushal, Y. Al-Hadeethi, B. Rashad, A. Mittal, Silver doped manganese oxide-carbon nanotube nanocomposite for enhanced dyesequestration: isotherm studies and RSM modelling approach, J. Ceram. Int., 46 (2020) 10309–10319.
  6. M. Alizadeh, H. Nadi, M. Ahmadabadi, A.R. Yari, S. Hashemi, Removal of reactive dyes (green, orange, and yellow) from aqueous solutions by peanut shell powder as a natural adsorbent, J. Arch. Hyg. Sci., 1 (2012) 41–47.
  7. M. Ghaedi, B. Sadeghian, A.A. Pebdani, R. Sahraei, A. Daneshfar, C. Duran, Kinetics, thermodynamics and equilibrium evaluation of direct yellow 12 removal by adsorption onto silver nanoparticles loaded activated carbon, Chem. Eng. J., 187 (2012) 133–141.
  8. A. Mittal, V. Thakur, V. Gajbe, Evaluation of adsorption characteristics of an anionic azo dye Brilliant Yellow onto hen feathers in aqueous solutions, J. Environ. Sci. Pollut. Res., 19 (2012) 2438–2447.
  9. M. Turabik, Adsorption of basic dyes from single and binary component systems onto bentonite: simultaneous analysis of Basic Red 46 and Basic Yellow 28 by first order derivative spectrophotometric analysis method, J. Hazard. Mater., 158 (2008) 52–64.
  10. I. Anastopoulos, A. Mittal, M. Usman, J. Mittal, G. Yu, A. Nunez-Delgado, M. Kornaros, A review on halloysite-based adsorbents to remove pollutants in water and wastewater, J. Mol. Liq., 269 (2018) 855–868.
  11. J. Mittal, V. Thakur, A. Mittal, Batch removal of hazardous azo dye using waste material hen feather, Ecol. Eng., 60 (2013) 249–253.
  12. A. Asfaram, M. Ghaedi, A. Goudarzi, M. Rajabi, Response surface methodology approach for optimization of simultaneous dye and metal ion ultrasound-assisted adsorption onto Mn doped Fe3O4-NPs loaded on AC: kinetic and isothermal studies, Dalton Trans., 44 (2015) 14707–14723.
  13. H. Daraei, A. Mittal, Investigation of adsorption performance of activated carbon prepared from waste tire for the removal of methylene blue dye from wastewater, Des. Water Treat., 90 (2017) 294–298.
  14. A. Mittal, R. Ahmad, I. Hasan, Poly(methyl methacrylate)-grafted alginate/Fe3O4 nanocomposite: synthesis and its application for the removal of heavy metal ions, Desal. Water Treat., 57 (2016) 19820–19833.
  15. A. Mittal, R. Ahmad, I. Hasan, Iron oxide-impregnated dextrin nanocomposite: synthesis and its application for the biosorption of Cr(VI) ions from aqueous solution, Des. Water Treat., 57 (2016) 15133–15145.
  16. Y. Kuang, X. Zhang, S. Zhou, Adsorption of methylene blue in water onto activated carbon by surfactant modification, Water Res., 12 (2020) 587–598.
  17. R. Gaur, P. Jeevanandam, PbS micro-nanostructures with controlled morphologies by a novel thermal decomposition approach, Nanopart. Res., 18 (2016) 80–100.
  18. K. Suresh Babu, C. Vijayan, R. Devanathan, Strong quantum confinement effects in polymer-based PbS nanostructures prepared by ion-exchange method, Mater. Lett., 58 (2004) 1223–1226.
  19. J. Liu, H. Yu, Z. Wu, W. Wang, J. Peng, Y. Cao, Size-tunable nearinfrared PbS nanoparticles synthesized from lead carboxylate and sulfur with oleylamine as stabilizer, Nanotechnology, 19 (2008) 19 (2008) 345602–345614.
  20. E. Yücel, Y. Yücel, Fabrication and characterization of Sr-doped PbS thinfilms grown by CBD, Ceram. Int. J., 43 (2017) 407–413.
  21. G. Long, B. Barman, S. Delikanli, Y. Tsung Tsai, P. Zhang, A. Petrou, H. Zeng, Carrier-dopant exchange interactions in Mn-doped PbS colloidal quantum dots, Appl. Phys. Lett., 101 (2012) 62410–62422.
  22. J.B. Pendry, A.J. Holden, D.J. Robbins, W.J. Stewart, Magnetism from conductors and enhanced non-linear phenomena, IEEE Trans. Microwave Theory Tech., 47 (1999) 2075–2084.
  23. D.R. Smith, W.J. Padilla, D.C. Vier, S.C. Nemat-Nasser, S. Schultz, Composite medium with simultaneously negative permeability and permittivity, Phys. Rev. Lett., 84 (2000) 4184–4187.
  24. J.B. Pendry, Negative refraction makes a perfect lens, Phys. Rev. Lett., 85 (2000) 3966–3969.
  25. W.P. Utomo, E. Santoso, G. Yuhaneka, A.I. Triantini, M.R. Fatqi, M.F. Hudadan, N. Nurfitria, Studi adsorpsi zat warna naphthol yellow s pada limbah cair menggunakan karbon aktif dari ampas tebu, J. Chem., 13 (2019) 104–116.
  26. A.N. Chattarki, S.S. Kamble, L.P. Deshmukh, Role of pH in aqueous alkaline chemical bath deposition of lead sulfide thin films, Mater. Lett., 67 (2012) 39–41.
  27. H. Mahmoudi Chenari, B. Ramezanpour, H. Kangarlou, Metamaterial Mn-doped PbS nanoparticles: synthesis, sizestrain linebroadening analysis and Kramers–Kronig study, Ceram. Int., 6 (2017) 109–122.
  28. H.S. Ghazi Mokri, N. Modirshahla, M.A. Behnajady, B. Vahid, Adsorption of C.I. Acid Red 97 dye from aqueous solution onto walnut shell: kinetics, thermodynamics parameters, isotherms, Int. J. Environ. Sci. Technol., 12 (2015) 1401–1408.
  29. Y. Zhao, J. Zou, W. Shi, In situ synthesis and characterization of PbS nano crystallites in the modified hyperbranched polyester by gamma-ray irradiation, J. Mater. Sci. Eng., 121 (2005) 20–24.
  30. T.S. Shyju, S. Anandhi, R. Sivakumar, R. Gopalakrishnan, Studies on lead sulfide (PbS) semiconducting thin films deposited from nanoparticles and its NLO application, Int. J. Nanosci., 13 (2014) 1450001–1450012.
  31. F. Gode, O. Baglayan, E. Guneri, P-Type nano structure PbS thin films prepared by the silar method, Chalcogenide. Lett., 12 (2015) 519–528.
  32. W. Wei, L. Yang, W.H. Zhong, S.Y. Li, J. Cui, Z.G. Wei, Fast removal of methylene blue from aqueous solution by adsorption onto poorly crystalline hydroxyapatite nanoparticles, Nanomater. Biostruct., 10 (2015) 1343–1363.
  33. B. da Silva, A. Zanutto, Biosorption of reactive yellow dye by malt bagasse, Adsorpt. Sci. Technol., 37 (2019) 236–259.
  34. M. Kiani, S. Bagheri, N. Karachi, E. Alipanahpour Dil, Adsorption of purpurin dye from industrial wastewater using Mn-doped Fe2O4 nanoparticles loaded on activated carbon, Des. Water Treat., 60 (2019) 1–8.
  35. A. Naghizadeh, M. Kamranifar, Montmorillonite nanoparticles in removal of textile dyes from aqueous solutions: study of kinetics and thermodynamics, Iran. J. Chem. Eng., 36 (2017) 127–137.
  36. S. Hajati, M. Ghaedi, H. Mazaheri, Removal of methylene blue from aqueous solution by walnut carbon: optimization using response surface methodology, Des. Water Treat., 57 (2016) 3179–3193.
  37. R. Mahini, H. Esmaeili, R. Foroutan, Adsorption of methyl violet from aqueous solution using brown algae Padina sanctae-crucis, Turk. J. Biochem., 24 (2018) 1–9.
  38. I. Langmuir, The adsorption of gases on plane surfaces of glass, mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
  39. H.M.F. Freundlich, Over the adsorption in solution, J. Phys. Chem., 57 (1906) 385–470.
  40. N.D. Hutson, R.T. Yang, Theoretical basis for the Dubinin–Radushkevitch (D–R) adsorption isotherm equation, Adsorption, 3 (1997) 189–195.
  41. M.M. Dubinin, Modern state of the theory of volume filling of micropore adsorbents during adsorption of gases and steams on carbon adsorbent, Z. Fiz. Khim., 39 (1965) 1305–1317.
  42. M. Toor, B. Jin, Adsorption characteristics, isotherm, kinetics, and diffusion of modified natural bentonite for removing diazo dye, Chem. Eng. J., 187 (2012) 79–88.
  43. Y.S. Ho, Review of second-order models for adsorption systems, J. Hazard. Mater., 136 (2006) 681–689.
  44. F. Bouaziz, M. Koubaa, F. Kallel, R.E. Ghorbel, S.E. Chaabouni, Adsorptive removal of malachite green from aqueous solutions by almond gum: kinetic study and equilibrium isotherms, Int. J. Biol. Macromol., 105 (2017) 56–65.
  45. S. Banerjee, G.C. Sharma, R.K. Gautam, M.C. Chatto Padhyaya, S.N. Upadhyay, Y.C. Sharma, Removal of malachite green, a hazardous dye from aqueous solutions using Avena sativa (oat) hull as a potential adsorbent, J. Mol. Liq., 213 (2016) 162–172.
  46. S. Hajati, M. Ghaedi, B. Barazesh, F. Karimi, R. Sahraei, A. Daneshfar, A. Asghari, Application of high order derivative spectrophotometry to resolve the spectra overlap between BG and MB for the simultaneous determination of them: ruthenium nanoparticle loaded activated carbon as adsorbent, Ind. Eng. Chem., 20 (2014) 2421–2427.
  47. A. Achmad, J. Kassim, T. Kim Suan, Equilibrium, kinetic and thermodynamic studies on the adsorption of direct dye onto a novel green adsorbent developed from Uncaria gambir extract, Phys. Sci., 23 (2012) 1–13.
  48. R. Manohar, V.S. Shrivastava, Adsorption removal of carcinogenic acid violet19 dye from aqueous solution by polyaniline-Fe2O3 magnetic nano-composite, Mater. Environ. Sci., 6 (2015) 11–21.