References

  1. D. Malakoff, Taming a Mercurial Element, American Association for the Advancement of Science, 2013.
  2. Q. Wang, D. Kim, D.D. Dionysiou, G.A. Sorial, D. Timberlake, Sources and remediation for mercury contamination in aquatic systems—a literature review, Environ. Pollut., 131 (2004) 323–336.
  3. T.A. Saleh, M. Tuzen, A. Sarı, Polyamide magnetic palygorskite for the simultaneous removal of Hg(II) and methyl mercury; with factorial design analysis, J. Environ. Manage., 211 (2018) 323–333.
  4. 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.
  5. O.A. Sofola, P. Jin, Y. Qin, R. Duan, H. Liu, M. de Haro, D.L. Nelson, J. Botas, RNA-binding proteins hnRNP A2/B1 and Cugbp1 Suppress Fragile X CGG premutation repeat-induced neurodegeneration in a Drosophila model of FXTAS, Neuron, 55 (2007) 565–571.
  6. R. Kumar, R. Ahmad, Biosorption of hazardous crystal violet dye from aqueous solution onto treated ginger waste (TGW), Desalination, 265 (2011) 112–118.
  7. Z. Beiramzadeh, M. Baqersad, M. Aghababaei, Application of the response surface methodology (RSM) in heavy metal removal from real power plant wastewater using electrocoagulation, Eur. J. Environ. Civ. Eng., (2019) 1–19, doi: 10.1080/19648189.2019.1640139.
  8. F. Ke, L.G. Qiu, Y.P. Yuan, F.M. Peng, X. Jiang, A.J. Xie, Y.H. Shen, J.F. Zhu, Thiol-functionalization of metal-organic framework by a facile coordination-based postsynthetic strategy and enhanced removal of Hg2+ from water, J. Hazard. Mater., 196 (2011) 36–43.
  9. F.D. Natale, A. Erto, A. Lancia, D. Musmarra, Mercury adsorption on granular activated carbon in aqueous solutions containing nitrates and chlorides, J. Hazard. Mater., 192 (2011) 1842–1850.
  10. T. Phothitontimongkol, N. Siebers, N. Sukpirom, F. Unob, Preparation and characterization of novel organo-clay minerals for Hg(II) ions adsorption from aqueous solution, Appl. Clay Sci., 43 (2009) 343–349.
  11. R.J. Qu, C.M. Sun, Y. Zhang, J. Chen, C.H. Wang, C.N. Ji, X.G. Liu, Syntheses, Characterization, and Hg(II) adsorption properties of porous cross-linked polystyrene modified with 2-aminopyridine via a sulfoxide/sulfone-containing spacer arm, J. Chem. Eng. Data, 55 (2010) 4343–4351.
  12. Y.M. Zhou, X.Y. Hu, M. Zhang, X.F. Zhuo, J.Y. Niu, Preparation and characterization of modified cellulose for adsorption of Cd(II), Hg(II), and acid fuchsin from aqueous solutions, Ind. Eng. Chem. Res., 52 (2013) 876–884.
  13. X.Y. Zhang, Q.C. Wang, S.Q. Zhang, X.J. Sun, Z.S. Zhang, Stabilization/solidification (S/S) of mercury-contaminated hazardous wastes using thiol-functionalized zeolite and Portland cement, J. Hazard. Mater., 168 (2009) 1575–1580.
  14. K.S. Xia, R.Z. Ferguson, M. Losier, N. Tchoukanova, R. Brüning, Y. Djaoued, Synthesis of hybrid silica materials with tunable pore structures and morphology and their application for heavy metal removal from drinking water, J. Hazard. Mater., 183 (2010) 554–564.
  15. S.C.N. Tang, I.M.C. Lo, Magnetic nanoparticles: essential factors for sustainable environmental applications, Water Res., 47 (2013) 2613–2632.
  16. Z. Xiu, J. Ma, X. Wang, Z. Gao, X. Meng, Hierarchical porous Fe3O4@N-doped carbon nanoellipsoids with excellent electrochemical performance as anode for lithium-ion batteries, J. Solid State Chem., 282 (2020) 121118, doi: 10.1016/j. jssc.2019.121118.
  17. X. Teng, H. Yang, Effects of surfactants and synthetic conditions on the sizes and self-assembly of monodisperse iron oxide nanoparticles, J. Mater. Chem., 14 (2004) 774–779.
  18. A.C.C. Yu, M. Mizuno, Y. Sasaki, H. Kondo, K. Hiraga, Structural characteristics and magnetic properties of chemically synthesized copt nanoparticles, Appl. Phys. Lett., 81 (2002) 3768–3770.
  19. M. Moshari, M. Rabbani, R. Rahimi, Synthesis of TCPP–Fe3O4@S/RGO and its application for purification of water, Res. Chem. Intermed., 42 (2016) 5441–5455.
  20. A.Y. Louie, M.M. Hüber, E.T. Ahrens, U. Rothbächer, R. Moats, R.E. Jacobs, S.E. Fraser, T.J. Meade, In vivo visualization of gene expression using magnetic resonance imaging, Nat. Biotechnol., 18 (2000) 321–325.
  21. Y. Wang, B. Zou, T. Gao, X. Wu, S. Lou, S. Zhou, Synthesis of orange-like Fe3O4/Ppy composite microspheres and their excellent Cr(VI) ion removal properties, J. Mater. Chem., 22 (2012) 9034–9040.
  22. A. Kara, E. Demirbel, N. Tekin, B. Osman, N. Beşirli, Magnetic vinylphenyl boronic acid microparticles for Cr(VI) adsorption: kinetic, isotherm and thermodynamic studies, J. Hazard. Mater., 286 (2015) 612–623.
  23. Q. Zhang, Y.Q. He, X.G. Chen, D.H. Hu, L.J. Li, T. Yin, L.L. Ji, Structure and photocatalytic properties of TiO2-graphene oxide intercalated composite, Chin. Sci. Bull., 56 (2011) 331–339.
  24. S. Chen, J. Zhu, X. Wu, Q. Han, X. Wang, Graphene oxide–MnO2 nanocomposites for supercapacitors, ACS Nano, 4 (2010) 2822–2830.
  25. A.Z. Moghaddam, E. Esmaeilkhanian, M.S. Fard, Immobilizing magnetic glutaraldehyde cross-linked chitosan on graphene oxide and nitrogendoped graphene oxide as well-dispersible adsorbents for chromate removal from aqueous solutions, Int. J. Biol. Macromol., 128 (2019) 61–73.
  26. A.Z. Moghaddam, E. Ghiamati, A. Pourashuri, A. Allahresani, Modified nickel ferrite nanocomposite/functionalized chitosan as a novel adsorbent for the removal of acidic dyes, Int. J. Biol. Macromol., 120 (2018) 1714–1725.
  27. A.Z. Moghaddam, M.E. Jazi, A. Allahrasani, M.R. Ganjali, A. Badiei, Removal of acid dyes from aqueous solutions using a new eco-friendly nanocomposite of CoFe2O4 modified with tragacanth gum, J. Appl. Polym. Sci., 137 (2020) 48605, doi: 10.1002/app.48605.
  28. X. Yang, T. Dai, Y. Lu, Synthesis of novel sunflower-like silica/polypyrrole nanocomposites via self-assembly polymerization, Polymer, 47 (2006) 441–447.
  29. S. Pordel, M. Rabbani, R. Rahimi, M.H. Golafzani, A. Azad, Synthesis of mesoporous NiO/Bi2WO6 nanocomposite for selective oxidation of alcohols, Solid State Sci., 107, (2020) 106306, doi: /10.1016/j.solidstatesciences.2020.106306.
  30. J. Jang, J.H. Oh, Facile fabrication of photochromic dye–conducting polymer core–shell nanomaterials and their photoluminescence, Adv. Mater., 15 (2003) 977–980.
  31. S. Afshar, S. Pordel, B. Tahmouresilerd, A. Azad, Improving the photocatalytic activity of modified anatase TiO2 with different concentrations of aluminum under visible light: mechanistic survey, Photochem. Photobiol., 92 (2016) 783–789.
  32. H. Zhang, D. Chen, X. Lv, Y. Wang, H. Chang, J. Li, Energyefficient photodegradation of azo dyes with TiO2 nanoparticles based on photoisomerization and alternate UV-visible light, Environ. Sci., 44 (2010) 1107–1111.
  33. Y. Ma, X. Wu, G. Zhang, Core-Shell Ag@Pt nanoparticles supported on sepiolite nanofibers for the catalytic reduction of nitrophenols in water: enhanced catalytic performance and DFT study, Appl. Catal., B, 205 (2017) 262–270.
  34. F.I. Hai, K. Yamamoto, K. Fukushi, Hybrid treatment systems for dye wastewater, Crit. Rev. Environ. Sci. Technol., 37 (2007) 315–377.
  35. C.A.M. Huitle, E. Brillas, Decontamination of wastewaters containing synthetic organic dyes by electrochemical methods: a general review, Appl. Catal., B, 87 (2009) 105–145.
  36. A.K. Gupta, A. Pal, C. Sahoo, Photocatalytic degradation of a mixture of crystal violet (Basic Violet 3) and methyl red dye in aqueous suspensions using Ag+ doped TO2, Dyes Pigm., 69 (2006) 224–232.
  37. X. Lu, H. Mao, W. Zhang, Fabrication of core‐shell Fe3O4/polypyrrole and hollow polypyrrole microspheres, Polym. Compos., 30 (2009) 847–854.
  38. G. Huang, T. Su, K. Zeng, Y. Guo, S. Zhao, S. Wei, Mesoporous chitosan‐immobilized iron tetrakis (4‐carboxyphenyl) porphyrin as a model of cytochrome P‐450 enzyme for oxidation of ethylbenzene, Appl. Organomet. Chem., 32 (2018) e4140, doi: 10.1002/aoc.4140.
  39. F. Han, D. Li, W.C. Li, C. Lei, Q. Sun, A.H. Lu, Nanoengineered polypyrrolecoated Fe2O3@C multifunctional composites with an improved cycle stability as lithium-ion anodes, Adv. Funct. Mater., 23 (2013) 1692, doi: 10.1002/adfm.201202254.
  40. T.F. Yi, L.Y. Qiu, J. Mei, S.Y. Qi, P. Cui, S. Luo, Y.R. Zhu, Y. Xie, Y.B. He, Porous spherical NiO@ NiMoO4@PPY nanoarchitectures as advanced electrochemical pseudocapacitor materials, Sci. Bull., 65 (2020) 546–556.
  41. L.F. Cui, J.A. Shen, F.Y. Cheng, Z.L. Tao, J. Chen, SnO2 nanoparticles@polypyrrole nanowires composite as anode materials for rechargeable lithium-ion batteries, J. Power Sources, 196 (2011) 2195, doi: 10.1016/j.jpowsour.2010.09.075.
  42. V. Bisla, G. Rattan, S. Singhal, A. Kaushik, Green and novel adsorbent from rice straw extracted cellulose for efficient adsorption of Hg(II) ions in an aqueous medium, Int. J. Biol. Macromol., 161 (2020) 194–203.
  43. S. Nasimi, M. Baghdadi, M. Dorosti, Surface functionalization of recycled polyacrylonitrile fibers with ethylenediamine for highly effective adsorption of Hg(II) from contaminated waters, J. Environ. Manage., 270 (2020) 110883, doi: 10.1016/j. jenvman.2020.110883.
  44. R.B. Gapusan, M.D.L. Balela, Adsorption of anionic methyl orange dye and lead(II) heavy metal ion by polyaniline-kapok fiber nanocomposite, Mater. Chem. Phys., 243 (2020) 122682, doi: 10.1016/j.matchemphys.2020.122682.
  45. A. Mekky, M.E. Masry, R. Khalifa, A. Omer, T. Tamer, Z. Khan, M. Gouda, M.M. Eldin, Removal of methylene blue dye from synthetic aqueous solutions using dimethylglyoxime modified amberlite ira-420: kinetic, equilibrium and thermodynamic studies, Desal. Water Treat., 181 (2020) 399–411.