1. Arpor, O B., Ohibor, G. O., Olaolu, T. D. 2014. Heavy metal pollutants in wastewater effluents: Sources, effects and remediation. Advances in Bioscience and Bioengineering 2 (4): 37-43.
2. Lone, M. I., He, Z., Stofella, P. And Yang, X. 2008. Phytoremediation of heavy metal polluted soils and water: progresses and perspective. J Zhejiang Univ. Sci. B 9 (3): 210-220.
3. Gardea-Torresdey,JI,Peralta-Videa,JR,Rosa,GD and Parsons, jg(2005).Phytoremediation of heavy metals and study of the metal coordination by X-ray absorption spectroscopy,249(17-18):1797-1810.
4. Dixit, A., Dixit, S., and Goswami, C.S. 2011. Process and Plants for waste water remediation; A review. Sci Revs. Chem. Commun 1 (1): 71-77.
5. Turkar et al, S.S., Bharti, D.B., and Gaikwad, G.S., 2011. Various methods involved in waste water treatment to control water pollution. J. Chem. Pharm. Res 3(2): 58-65.
6. Cunningham, S.D., and D.W. Ow. 1996. Promises and prospects of phytoremediation. Plant Physiol. 110:715-719.
7. Manav N, Bhagi AK, Kaur J and Bhandari N. 2015. A study of removal of toxic metal ions (Cu2+, Cd2+, Pb2+ ) from laboratory effluents by adsorption on Agricultural Waste. In proceedings of International conference on climate change and the developing world CCDW, Kottayam, Pg 258-266.
8. Chaney, R.L. 1983. Plant uptake of inorganic waste constitutes. P. 50-76. In J.F. Parr, P.B. Marsh, and J.M. Kla (ed). Land treatment of hazardous wastes. Noyes Data Corp., Park Ridge, NJ.
9. Cunningham, S.D., J.R. Shann, D.E. Crowley, and T.A. Anderson.1997. Phytoremediation of contaminated water and soil. P. 2-19. In E.L. Kruger, T.A. Anderson, and J.R. Coats (ed.) Phytoremediation of soil and water contaminants. ACS symposium series 664. American Chemical Society, Washington, DC.
10. Wolverton, B C. A.1975. Water Hyacinth for Removal of Phenols from Polluted Waters, NASA Tech. Memo., (TM-X-72722), 18p, Issued also in Sci. Tech. Aerospace Rep, 13(7),
11. Buddhavarapu, L R and Hancock, S J. 1991. Advanced Treatment for Lagoons using Duckweed, Water Environ. Technol., 3, 41-44.
12. Manav N, Jain C, Kumar A, Bhagi A.K.2016.Adsorption of toxic metal ions from laboratory effluents by agricultural waste.Journal of Integrated Science and Technology.4(2),70-75.
13. Surchi Shareef K.M.(2011). Agricultural Wastes as Low Cost Adsorbents for Pb Removal: Kinetics, Equilibrium And Thermodynamics. InternationalJournal Of Chemistry Vol. 3(3).
14. Verma VK, Gupta RK and Rai JPN. 2005. Biosorption of Pb and Zn from pulp and paper industry effluent by water hyacinth (Eichhornia Crassipes). Journal of Scientific and Industrial Research Vol. 64, pp. 778-781.
15. Ho YS, Mckay G(2000). The Kinetics Of Sorption Of Divalent Metal Ions Onto Sphagnum Moss Peat. Water Res 34(3):735-742.
16. Mashhadi somaye, Ghasemi Maryam, Mirali Sara, Ghasemi Nahid(2012).Adsorption Isotherms And Kinetics for Removal of Pb(II) from Aqueous SolutionsUsing Low Cost Adsorbent. International Conference On Environmental Science And Engineering Vol. 32.
17. Ossman M.E. And Mansour M.S.(2013). Removal Of Cd(II) Ion from Wastewater By Adsorption Onto Treated old Newspaper: Kinetic Modelling And Isotherm Studies. International Journal Of Industrial Science , 4-7 .