References

  1. F. Fu, Q. Wang, Removal of heavy metal ions from wastewaters: a review, J. Environ. Manage., 92 (2011) 407–418.
  2. I.U. Salihi, S.R.M. Kutty, M.H. Isa, N.N. Aminu, Zinc removal from aqueous solution using novel adsorbent MISCBA, J. Water Sanit. Hyg. Dev., 6 (2016) 377–388.
  3. M. Greenstone, R. Hanna, Environmental regulations, air and water pollution, and infant mortality in India, Am. Econ. Rev., 104 (2014) 3038–3072.
  4. S. Demim, N. Drouiche, A. Aouabed, S. Semsari, CCD study on the ecophysiological effects of heavy metals on Lemna gibba, Ecol. Eng., 57 (2013) 302–313.
  5. M. Jaishankar, T. Tseten, N. Anbalagan, B.B. Mathew, K.N. Beeregowda, Toxicity, mechanism and health effects of some heavy metals, Interdiscip. Toxicol., 7 (2014) 60–72.
  6. R.L. Canfield, C.R. Henderson, D.A. Cory-Slechta, C. Cox, T.A. Jusko, B.P. Lanphear, Intellectual impairment in children with blood lead concentrations below 10 microg per decilitre, N. Engl. J. Med., 348 (2003) 1517–1526.
  7. A. Chen, K.N. Dietrich, J.H. Ware, J. Radcliffe, W.J. Rogan, IQ and blood lead from 2 to 7 years of age: are the effects in older children the residual of high blood lead concentrations in 2-year-olds, Environ. Health Perspect., 113 (2005) 597–601.
  8. J.D. Weidenhamer, P.A. Kobunski, G. Kuepouo, R.W. Corbin, P. Gottesfeld, Lead exposure from aluminum cookware in Cameroon, Sci. Total Environ., 496 (2014) 339–347.
  9. P. Gottesfeld, Time to ban lead in industrial paints and coatings, Front. Public Health, 3 (2015) 1–4.
  10. L. Charlet, Y. Chapron, P. Faller, R. Kirsch, A.T. Stone, P.C. Baveye, Neurodegenerative diseases and exposure to the environmental metals Mn, Pb, and Hg, Coord. Chem. Rev., 256 (2012) 2147–2163.
  11. N. Arancibia-Miranda, S.E. Baltazar, A. Garcia, D. Munoz-Lira, P. Sepulvedaa, M.A. Rubioa, D. Altbir, Nanoscale zero valent supported by Zeolite and Montmorillonite: template effect of the removal of lead ion from an aqueous solution, J. Hazard. Mater., 301 (2016) 371–380.
  12. G.F.D. 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.
  13. H. Eccles, Treatment of metal-contaminated wastes: why select a biological process?, Trends Biotechnol., 17 (199) 462–465.
  14. P. Chowdhary, A. Yadav, G. Kaithwas, R.N. Bharagava, Distillery Wastewater: A Major Source of Environmental Pollution and Its Biological Treatment for Environmental Safety, R. Singh, S. Kumar, Eds., Green Technologies and Environmental Sustainability, Cham, Springer, 2017a, 409–435.
  15. Y.S. Mohammad, S.B. Igboro, A. Giwa, C.A. Okuofu, Modeling and optimization for production of rice husk activated carbon and adsorption of phenol, J. Eng., 201 (2014) 1–10.
  16. T.A. Kurniawan, G.Y.S. Chan, W.-h. Lo, S. Babel, Comparisons of low-cost adsorbents for treating wastewaters laden with heavy metals, Sci. Total Environ., 366 (2006) 409–426.
  17. J. Cruz-Olivares, G. Martínez-Barrera, C. Perez-Alonso, C.E. Barrera-Díaz, M.D.C. Chaparro-Mercado, F. Ureña-Núñez, Adsorption of lead ions from aqueous solutions using gamma irradiated minerals, J. Chem., 2016 (2016) 1–7, doi: 10.1155/2016/8782469.
  18. A. Mittal, D. Jhare, J. Mittal, Adsorption of hazardous dye Eosin Yellow from aqueous solution onto waste material de-oiled soya: isotherm, kinetics and bulk removal, J. Mol. Liq., 179 (2013) 133–140.
  19. S. Sujatha, G. Venkatesan, R. Sivarethinamohan, Principal determinants of toxicity reduction by de-oiled soya using multivariate statistics: principal component analysis and multiple linear regression analysis, Appl. Ecol. Environ. Res., 15 (2017) 1717–1737.
  20. B. Sadhukhan, N.K. Mondal, S. Chattoraj, Optimization using central composite design (CCD) and the desirability function for sorption of methylene blue from aqueous solution onto Lemna major, Karbala Int. J. Mod. Sci., 2 (2016) 145–155.
  21. A.R. Khatee, M. Fathinia, S. Aber, M. Zarei, Optimization of photocatalytic treatment of dye solution on supported TiO2 nanoparticles by central composite design: intermediates identification, J. Hazard. Mater., 181 (2010) 886–897.
  22. A.S. Yusuff, Optimization of adsorption of Cr(VI) from aqueous solution by Leucaena leucocephala seed shell activated carbon using design of experiment, Appl. Water Sci., 8 (2018) 1–11.
  23. D. Jia, C. Li, Adsorption of Pb(II) from aqueous solutions using corn straw, Desal. Water Treat., 56 (2015) 223–231.
  24. S.F.S. Draman, N. Mohd, N.H.J. Wahab, N.S. Zulkfli, N.F.A.A. Bakar, Adsorption of lead(II) ions in aqueous solution using selected agro-waste, ARPN J. Eng. Appl. Sci., 10 (2015) 297–300.
  25. M.A. Njoki, G. Mercy, G. Nyagah, A. Gachanja, Fourier transform infrared spectrophotometric analysis of functional groups found in Ricinus communis L. and Cucurbita maxima Lam. roots, stems and leaves as heavy metal adsorbents, Int. J. Sci. Environ. Technol., 5 (2016) 861–871.
  26. M.N. Younis, M.S. Saeed, S. Khan, M.U. Surqan, R.U. Khan, M. Saleem, Production and characterization of biodiesel from waste and vegetable oil, J. Qual. Technol., 5 (2009) 111–121.
  27. C. Suresh, Y. Harinath, B.R. Naik, K. Seshaiah, Removal of Pb(II) from aqueous solution by critic acid modified Manilkara zapota leaves powder: equilibrium and kinetic studies, J. Chem. Pharm., 7 (2015) 1161–1174.
  28. P.A. Pednekar, B. Raman, The FT-IR spectrometric studies of vibrational bands of Semecarpus anacardium Linn. F. leaf, stem powder and extracts, Asian J. Pharm. Clin. Res., 6 (2013) 159–168.
  29. Z. Al-Qodah, R. Shawabkah, Production and characterization of granular activated carbon from activated sludge, Braz. J., 26 (2009) 127–136.
  30. G. Agrawal, P. Wakte, S. Shelke, Formulation optimization of human insulin loaded microspheres for controlled oral delivery using response surface methodology, Endocr. Metab. Immune Disord. Drug Targets, 17 (2017) 149–165.
  31. C. Garcia-Gomez, J.A. Vidales-Contreras, J. Npoles-Armenta, P. Gortares-Moroyoqui, Optimization of phenol removal using Ti/PbO2 anode with response surface methodology, J. Environ. Eng., 142 (2016) 04016004 (1–7), doi: 10.1061/(ASCE) EE.1943-7870.0001057.
  32. A.O. Dada, A.P. Olalekan, A.M. Olatunya, O. Dada, Langmuir, Freundlich, Tempkin and Dubinin-Radushkevich isotherms studies of equilibrium sorption of Zn2+ unto phosphoric acid modified rice husk, IOSR J. Appl. Chem., 3 (2012) 38–45.