NaOH. (Longmuir) Cu. mg/g ph
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1 - HNO 3 NaOH (Longmuir) (Freundlich) Cu mgg Pb mgg
2 ) Bandypadhyay 48 Montanher 49 Ashtoukhy 42 Kietlinska 44 Volesky 45 Wan Ngah and Hanafiah 46 Kumar 3 Eckenfelder
3 - Atomic Absorption Spectrophotometer) Konic Wonam 300 B HNO 3 ) ) NaOH APHA ) q q II II c o c o c s 100 CuSO 4 Pb(NO 3 ) 2 Merck Efficiency(%) q=(c o ± ) C s )m c s c o (mgl) (mgl) q (g) m (mgg) 1 q e 1 ab 1 c e 1 b 51 Sheng 50 Karnitz
4 logq e 1 logc n e logk (Lmg) a ( mgg) b c e ( mgl) ( mgg q e k n R 2 52 Ajmal
5 - (mgg Pb Cu Pb Cu Cu Pb - 53 Taty 54 Low
6 = ( (. 100 % 55 Gurgel
7 - - H 56 Raji
8 Cu 2+ Pb 2+ q (mgg) %A q (mgg) %A (mgg) 1 57 Gupta Mukherjee 58 M
9 R 2 K n b R 2 y = x R² = Cq C(mgL) y = x R² = Log q Log C
10 - - y = x R² = Cq C (mgl) y = x R² = Log q Log C - n K R 2 b a R 2
11 United Book Press, Baltimore, Maryland. 5. Ashtoukhy, E.S.Z. El., Amin, N.K. and Abdelwahab, O. (2008). "Removal of lead(ii) and copper(ii) from aqueous solution using pomegranate peel as a new adsorbent". D Eckenfelder, W.W. (2000). "Industrial McGraw-Hill Inc., Boston, MA., Gurgel, L.V.A., Junior, O.K., Gil, R.P.F. of Cu(II), Cd(II), and Pb(II) from aqueous single metal solution by cellulose and mercerized cellulose chemically modified with succinic anhydride". Bioresource Technology., 99, Gupta, V.K., Jain, C.K., Ali, I., Shahram, M. and Saini, V.K. (2003). "Removal of cadmium and nickel from wastewater using bagasse fly ash-a sugar industry waste". Water Research., 37(16), Karnitz, J.O., Gurgel, L.V.A., J?lio C., Perin de Melo, J.C., Botaro, V.R., 1. Abdel-Ghani, N.T., Hefny, M. and El- Chaghaby, G.A.F. (2007). "Removal of lead from aqueous solution using low cost abundantly available adsorbent". Int. J. Environ. Sci. Tech., 4(1), Ajmal, M., Rao RAK, A.S., Ahmad, J. studies on rice husk removal and recovery of Cd(II) from wastewater". Biores. Technol., 86(2), the equilibrium, kinetic and thermodynamic parameters of the batch biosorption of nickel(ii) ions onto Chlorella vulgaris". Process. Biochem., 38, APAH, A.W.W.A. and W.E.F1998). " Standard Methods for the Examination of Water and Waste water". 20th ed.
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13 Cd(II) and Pb(II) ions, from aqueous solutions, by adsorption onto sawdust of Pinus sylvestris". Journal of Hazardous Material., 105, Improved Rice Husk". Water and Waste Water journal., Sheng, P.X., Ting, Y.P., Chen, J.P., copper, cadmium, zinc and nickel by of metal-bearing effluents biosorption for the next century". Hydrometallurgy., 59 (2-3), Wan Ngah, W.S. and Hana ah, M.A.K.M. (2008). "Removal of heavy metal ions from wastewater by chemically modified plant wastes as adsorbents" A review. 99 (10), marinealgal biomass characterization of biosorptive capacity and investigation of mechanisms". J. Coll. Interf. Sci., 275, Sternberg, S.P.K. and Dorn, R.W. (2002). "Cadmium removal using Cladophora in batch, semi-batch and flow reactors". Biores. Technol., 81, Taty, V.C., Costodes, F.H., Porte, C. and Delacroix, A. (2003). "Removal of
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