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Original Articles

Fly‐Ash for the treatment of water enriched in lead (II)

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Pages 783-808 | Received 22 Mar 1989, Accepted 28 Apr 1989, Published online: 15 Dec 2008

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Read on this site (4)

Arif Ali Baig Moghal & Puvvadi V. Sivapullaiah. (2012) Retention characteristics of Cu2+, Pb2+, and Zn2+ from aqueous solutions by two types of low lime fly ashes. Toxicological & Environmental Chemistry 94:10, pages 1941-1953.
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YA-FENG ZHOU & RICHARDJ. HAYNES. (2010) Sorption of Heavy Metals by Inorganic and Organic Components of Solid Wastes: Significance to Use of Wastes as Low-Cost Adsorbents and Immobilizing Agents. Critical Reviews in Environmental Science and Technology 40:11, pages 909-977.
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S. S. Banerjee, R. V. Jayaram & M. V. Joshi. (2003) Removal of Nickel(II) and Zinc(II) from Wastewater Using Fly Ash and Impregnated Fly Ash. Separation Science and Technology 38:5, pages 1015-1032.
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Radi Salim, M.M. Al‐Subu & Sameeh Qashoa. (1994) Removal of lead from polluted water using decaying leaves. Journal of Environmental Science and Health . Part A: Environmental Science and Engineering and Toxicology 29:10, pages 2087-2114.
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Articles from other publishers (14)

R Saravanakumar, K Muthukumaran & N Selvaraju. (2019) Enhanced Pb (II) ions removal by using magnetic NiO/Biochar composite. Materials Research Express 6:10, pages 105504.
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Arif Ali Baig Moghal. (2017) State-of-the-Art Review on the Role of Fly Ashes in Geotechnical and Geoenvironmental Applications. Journal of Materials in Civil Engineering 29:8.
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Siti Nor Atika Baharin, Norazilawati Muhamad Sarih, Sharifah MohamadSyed Shahabuddin, Khaulah Sulaiman & Azman Ma'amor. (2016) Removal of endocrine disruptor di-(2-ethylhexyl)phthalate by modified polythiophene-coated magnetic nanoparticles: characterization, adsorption isotherm, kinetic study, thermodynamics. RSC Advances 6:50, pages 44655-44667.
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Monal Dutta & Jayanta Kumar Basu. (2012) Application of artificial neural network for prediction of Pb(II) adsorption characteristics. Environmental Science and Pollution Research 20:5, pages 3322-3330.
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D. B. Adie, N. O. Olarinoye, I. A. Oke, A. Ismail, S. Lukman & J. A. Otun. (2010) Removal of lead ions from aqueous solutions using powdered corn cobs. The Canadian Journal of Chemical Engineering, pages n/a-n/a.
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Chih-Huang Weng & C.P. Huang. (2004) Adsorption characteristics of Zn(II) from dilute aqueous solution by fly ash. Colloids and Surfaces A: Physicochemical and Engineering Aspects 247:1-3, pages 137-143.
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J.C.Y. Ng, W.H. Cheung & G. McKay. (2003) Equilibrium studies for the sorption of lead from effluents using chitosan. Chemosphere 52:6, pages 1021-1030.
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Chih-Huang Weng. (2002) Removal of Nickel(II) from Dilute Aqueous Solution by Sludge-Ash. Journal of Environmental Engineering 128:8, pages 716-722.
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Chien-Jung Lin & Juu-En Chang. (2002) EXAFS study of adsorbed Cu(II) on fly ashes with different residual carbon contents. Chemosphere 46:1, pages 115-121.
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Y.S. Ho & G. McKay. (1999) Batch Lead(II) Removal From Aqueous Solution by Peat. Process Safety and Environmental Protection 77:3, pages 165-173.
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Oktay Bayat. (1998) Characterisation of Turkish fly ashes. Fuel 77:9-10, pages 1059-1066.
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Kashi Banerjee, Paul N. Cheremisinoff & Su Ling Cheng. (1997) Adsorption kinetics of o-xylene by flyash. Water Research 31:2, pages 249-261.
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C. H. Weng & C. P. Huang. (1994) Treatment of Metal Industrial Wastewater by Fly Ash and Cement Fixation. Journal of Environmental Engineering 120:6, pages 1470-1487.
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K. P. Yadava, B. S. Tyagi & V. N. Singh. (2007) Effect of temperature on the removal of lead(II) by adsorption on China clay and wollastonite. Journal of Chemical Technology & Biotechnology 51:1, pages 47-60.
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