References

  1. J.C. Akan, M.T. Abbagambo, Z.M. Chellube, F.I. Abdulrahman, Assessment of pollutants in water and sediment samples in Lake Chad, Baga, North Eastern Nigeria, J. Environ. Prot., 3 (2012) 1428–1441.
  2. J.A. Akankali, E.I. Elenwo, Sources of marine pollution on nigerian coastal resources: an overview, Open J. Mar. Sci., 5 (2015) 226–236.
  3. C.K. Takahashi, A. Turner, G.E. Millward, G.A. Glegg, Persistence and metallic composition of paint particles in sediments from a tidal inlet, Mar. Pollut. Bull., 64 (2012) 133–137.
  4. M.N. Sahmoune, K. Louhab, A. Boukhiar, Biosorption of Cr (III) from aqueous solutions using bacterium biomass Streptomyces rimosus, Int. J. Environ. Res., 3 (2009) 229–238.
  5. G.F. de Mattos, C. Costa, F. Savio, M. Alonso, G.L. Nicolson, Lead poisoning: acute exposure of the heart to lead ions promotes changes in cardiac function and Cav1.2 ion channels, Biophys. Rev., 9 (2017) 807–825.
  6. P. Harasim, T. Filipek, Nickel in the environment, J. Elem., 20 (2015) 525–534.
  7. S. Mbarek, T. Saidi, H.B. Mansour, M.P. Stéphane, W. Rostene, R.B. Chaouacha-Chekir, Effect of cadmium on water metabolism regulation by Meriones shawi (Rodentia, Muridae), Environ. Eng. Sci., 28 (2011) 237–248.
  8. J. Wilkinson, P.S. Hooda, J. Barker, S. Barton, J. Swinden, Occurrence, fate and transformation of emerging contaminants in water: an overarching review of the field, Environ. Pollut., 231 (2017) 954–970.
  9. N.H. Tran, M. Reinhard, K.Y.-H. Gin, Occurrence and fate of emerging contaminants in municipal wastewater treatment plants from different geographical regions-a review, Water Res., 133 (2018) 182–207.
  10. D. Mohan, A. Sarswat, Y.S. Ok, C.U. Pittman Jr., Organic and inorganic contaminants removal from water with biochar, a renewable, low cost and sustainable adsorbent – a critical review, Bioresour. Technol., 160 (2014) 191–202.
  11. M. Asgher, Q. Yasmeen, H.M.N. Iqbal, Enhanced decolorization of solar brilliant red 80 textile dye by an indigenous white rot fungus Schizophyllum commune IBL-06, Saudi J. Biol. Sci., 20 (2013) 347–352.
  12. V. Sharma, A. Sharma, Nanotechnology: an emerging future trend in wastewater treatment with its innovative products and processes, Int. J. Enhance Res. Sci. Technol. Eng., 1 (2012) 1–8.
  13. J. Shen, G. Huang, C. An, X. Xin, C. Huang, S. Rosendahl, Removal of Tetrabromobisphenol A by adsorption on pineconederived activated charcoals: synchrotron FTIR, kinetics and surface functionality analyses, Bioresour. Technol., 247 (2018) 812–820.
  14. G. Ersan, O.G. Apul, F. Perreault, T. Karanfil, Adsorption of organic contaminants by graphene nanosheets: a review, Water Res., 126 (2017) 385–398.
  15. D.U. Handojo, S.M. Razman, Adsorption of heavy metals from water and waste water using low cost adsorbents from agricultural by-products, Asian J. Water Environ. Pollut., 6 (2009) 73–80.
  16. P. Ziarati, F.M. Mohammad-Makki, M. Moslehishad, Novel adsorption method for contaminated water by wild endemic almond: Amygdalus Scopar, Biosci. Biotechnol. Res. Asia, 13 (2016) 147–153.
  17. A. Pourzare, P. Ziarati, Z. Mousavi, A.R. Faraji, Removing cadmium and nickel contents in basil cultivated in pharmaceutical effluent by chamomile (Matricaria chamomilla L.) tea residue, J. Sci. Discovery, 1 (2017).
  18. A.S. Ayangbenro, O.O. Babalola, New strategy for heavy metal polluted environments, a review of microbial biosorbents, Int. J. Environ. Res. Public Health, 14 (2017) 94.
  19. T. Dokulilová, T. Vítěz, J. Chovanec, R. Rous, M. Vítězová, I. Kushkevych, Primary and activated sludge biogas production: effect of temperature, 66 (2018) 23–28.
  20. R. Taman, M.E. Ossman, M.S. Mansour, H.A. Farag, Metal oxide nanoparticles as an adsorbent for removal of heavy metals, J. Adv. Chem. Eng., 5 (2015) 1–11.
  21. W. Wu, Z. Wu, T. Yu, C. Jiang, W.S. Kim, Recent progress on magnetic iron oxide nanoparticles: synthesis, surface functional strategies and biomedical applications, Sci. Technol. Adv. Mater., 16 (2015) 1–44.
  22. M. Sandeep, V. Kumar, Magnetic nanoparticles-based biomedical and bioanalytical applications, Nanotechnology, 4 (2013) 1–2.
  23. Federation W.E., American Public Health Association, Standard Methods for the Examination of Water and Wastewater, American Public Health Association (APHA), Washington, D.C., USA, 2005.
  24. A.P. Mathews, I. Zayas, Particle size and shape effects on adsorption rate parameters, Environ. Eng., 115 (1989) 41–55.
  25. N.D. Kandpal, N. Sah, R. Loshali, R. Joshi, J. Prasad, Co-precipitation method of synthesis and characterization of iron oxide nanoparticles, J. Sci. Ind. Res., 73 (2014) 87–90.
  26. Y.F. Lam, L.Y. Lee, S.J. Chua, S.S. Lim, S. Gan, Insights into the equilibrium, kinetic and thermodynamics of nickel removal by environmentally friendly Lansium domesticum peel adsorbent, Ecotoxicol. Environ. Saf., 127 (2016) 61–70.
  27. L. Anah, N. Astrini, Influence of pH on Cr (VI) ions removal from aqueous solutions using carboxymethyl cellulose-based hydrogel as adsorbent, IOP Conf. Ser.: Earth Environ. Sci, 60 (2017) 012010.
  28. A.M. Mahmoud, F.A. Ibrahim, S.A. Shaban, N.A. Youssef, Adsorption of heavy metal ion from aqueous solution by nickel oxide nano catalyst prepared by different methods, Egypt J. Petrol., 24 (2015) 27–35.
  29. K. Vijayaraghavan, Y.S. Yun, Bacterial biosorbents and biosorption, Biotechnol. Adv., 26 (2008) 266–291.
  30. S.K. Lagergren, About the theory of so-called adsorption of soluble substances, Vet. Hand., 24 (1898) 1–39.
  31. A.M. Farhan, N.M. Salem, A.L. Ahmad, A.M. Awwad, Kinetic equilibrium and thermodynamic studies of the biosorption of heavy metals by Ceratonia siliqua bark, Am J. Chem., 2 (2012) 335–342.
  32. H. Ys, L. Egghe, A.F.J. van Raan, W. Glanzel, H. Moed, W. Glanzel, K. Borner, Citation review of Lagergren kinetic rate equation on adsorption reactions, Sci. Metrics, 59 (2004) 171–177.
  33. O. Abdi, M. Kazemia, A review study of biosorption of heavy metals and comparison between different biosorbents, J. Mater. Environ. Sci., 6 (2015) 1386–1399.
  34. N. Singh, S.K. Gupta, Adsorption of heavy metals: a review, Int. J. Environ. Res. Dev., 5 (2016) 2267–2281.
  35. R. Ghasemi-Fasaei, A. Ronaghi, E. Farrokhnejad, Comparative study of metal micronutrients releases from two calcareous soils, Arch. Agron. Soil Sci., 58 (2012) 1171–1178.
  36. Y. Yadav, R. Gothalwal, R.K. Tenguriya, Management of heavy metal pollution by using bacterial biomass, Int. J. Biotechnol. Trends Technol., 8 (2018) 1–12.
  37. C. Quintelas, B. Fernandes, J. Castro, H. Figueiredo, T. Tavares, Biosorption of Cr(VI) by three different bacterial species supported on granular activated carbon — a comparative study, J. Hazard. Mater., 153 (2008) 799–809.
  38. Y. Chen, W. Zhao, H. Wang, X. Meng, L. Zhang, A novel polyamine-type starch/glycidyl methacrylate copolymer for adsorption of Pb(II), Cu(II), Cd(II) and Cr(III) ions from aqueous solutions, R. Soc. Open Sci., 5 (2018) 180281.
  39. M. Ji, X. Su, Y. Zhao, W. Qi, Y. Wang, G. Chen, Z. Zhang, Effective adsorption of Cr(VI) on mesoporous Fe-functionalized Akadama clay: optimization, selectivity, and mechanism, Appl. Surf. Sci., 344 (2015) 128–136.
  40. S.E. Ebrahim, A.H. Sulaymon, H. Saad Alhares, Competitive removal of Cu2+, Cd2+, Zn2+, and Ni2+ ions onto iron oxide nanoparticles from wastewater, Desal. Wat. Treat., 57 (2015) 20915–20929.
  41. A. Kakaei, M. Kazemeini, Removal of Cd (II) in water samples using modified magnetic iron oxide nanoparticle, Iran. J. Toxicol., 10 (2016) 9–14.
  42. G. Blázquez, M.A. Martín-Lara, G. Tenorio, M. Calero, Batch biosorption of lead (II) from aqueous solutions by olive tree pruning waste: equilibrium, kinetics and thermodynamic study. Chem. Eng. J., 168 (2011) 170–177.
  43. R. Mahmudov, C.P. Huang, Selective adsorption of oxyanions on activated carbon exemplified by Filtrasorb 400 (F400), Sep. Purif. Technol., 77 (2011) 294–300.
  44. K. Al-Essa, F. Khalili, Heavy metals adsorption from aqueous solutions onto unmodified and modified jordanian kaolinite clay: batch and column techniques, Am. J. Appl. Chem., 6 (2018) 25–34.
  45. K.W. Ahmed, Experimental and Modeling for the Removal of Multi-pollutants by Adsorption, Ph.D. Thesis, College of Engineering, University of Baghdad, Baghdad, 2006.
  46. S. Srivastava, P. Singh, R. Bhagat, Application of bacterial biomass as a potential metal indicator, Curr. Sci., 89 (2005) 1248–1251.
  47. A. Ahmad, B. Hameed, Fixed-bed adsorption of reactive azo dye onto granular activated carbon prepared from waste, J. Hazard. Mater., 175 (2010) 298–303.
  48. C.M. Futalan, C.C. Kan, M.L. Dalida, C. Pascua, M.W. Wan, Fixed-bed column studies on the removal of copper using chitosan immobilized on bentonite, Carbohydr. Polym., 83 (2011) 697–704.
  49. S. Singha, U. Sarkar, Analysis of the dynamic column using semi-empirical models: case studies with removal of hexavalent chromium from effluent wastewater, Korean J. Chem. Eng., 32 (2015) 20–29.