Page 393 - Industrial Wastewater Treatment, Recycling and Reuse
P. 393
Phenolic Wastewater Treatment: Development and Applications of New Adsorbent Materials 365
Ahmaruzzaman, M., Laxmi Gayatri, S., 2010c. Batch adsorption of 4-nitrophenol by acid
activated jute stick char: Equilibrium, kinetic and thermodynamic studies. Chem.
Eng. J. 158, 173–180.
Ahmaruzzaman, M., Laxmi Gayatri, S., 2011. Activated neem leaf: a novel adsorbent for the
removal of phenol, 4-nitrophenol, and 4-chlorophenol from aqueous solutions.
J. Chem. Eng. Data 56, 3004–3016.
Ahmaruzzaman, M., Sharma, D.K., 2005. Adsorption of phenols from wastewater. J. Colloid
Interface Sci. 287, 14–24.
Aksu, Z., Akpinar, D., 2000. Modelling of simultaneous biosorption of phenol and nickel(II)
onto dried aerobic activated sludge. Sep. Purif. Technol. 21, 87–99.
Aksu, Z., Yener, J., 1999. The usage of dried activated sludge and fly ash wastes in phenol
biosorption/adsorption: comparison with granular activated carbon. J. Environ. Sci.
Health A Tox. Hazard. Subst. Environ. Eng. 34, 1777–1796.
Aksu, Z., Yener, J., 2001. A comparative adsorption/biosorption study of mono-chlorinated
phenols onto various sorbents. Waste Manage. 21, 695–702.
Andreozzi, R., Caprio, V., Insola, A., Marotta, R., 1999. Advanced oxidation processes
(AOP) for water purification and recovery. Catal. Today 53, 51–59.
Banat, F., Al-Asheh, S., 2000. Biosorption of phenol by chicken feathers. Environ. Eng.
Policy 2, 85–90.
Barrett, E.P., Joyner, L.G., Halenda, P.P., 1951. The determination of pore volume and area
distributions in porous substances. I. Computations from nitrogen isotherms. J. Am.
Chem. Soc. 73, 373–380.
Boer, J.H., Linsen, B.G., 1970. Physical and Chemical Aspects of Adsorbents and Catalyst.
Academic Press, London.
Brennan, J.K., Bandosz, T.J., Thomson, K.T., Gubbins, K.E., 2001. Water in porous
carbons. Colloids Surf. A Physicochem. Eng. Asp. 187–188, 539–568.
Brunauer, S., Emmett, P.H., Teller, E., 1938. Adsorption of gases in multimolecular layers.
J. Am. Chem. Soc. 60, 309–319.
Can ˜izares, P., Sa ´ez, C., Lobato, J., Rodrigo, M.A., 2004. Electrochemical treatment of
2,4-dinitrophenol aqueous wastes using boron-doped diamond anodes. Electrochim.
Acta 49, 4641–4650.
Carrasco-Marı ´n, F., Alvarez-Merino, M.A., Moreno-Castilla, C., 1996. Microporous
activated carbons from a bituminous coal. Fuel 75, 966–970.
¸
Cay, S., Uyanik, A., O ¨ zasik, A., 2004. Single and binary component adsorption of copper (II)
and cadmium (II) from aqueous solutions using tea-industry waste. Sep. Purif. Technol.
38, 273–280.
Chen, W., Duan, L., Zhu, D., 2007. Adsorption of polar and nonpolar organic chemicals to
carbon nanotubes. Environ. Sci. Technol. 41, 8295–8300.
Cooney, D.O., 1999. Adsorption Design for Wastewater Treatment. CRC Press, Lewis
Publishers, Boca Raton, Florida.
Coughlin, R.W., Ezra, F.S., 1968. Role of surface acidity in the adsorption of organic
pollutants on the surface of carbon. Environ. Sci. Technol. 2, 291–297.
Das, A., Sharma, D.K., 1998. Adsorption of phenol from aqueous solutions by oxidized and
solvent-extracted residual coal. Energ. Sources 20 (9), 821–830.
Davi, M.L., Gnudi, F., 1999. Phenolic compounds in surface water. Water Res.
14, 3213–3219.
Dursun, G., C¸icek, H., Dursun, A.Y., 2005. Adsorption of phenol from aqueous solution by
¸
using carbonised beet pulp. J. Hazard. Mater. 125, 175–182.
Dutta, S., Basu, J.K., Ghar, R.N., 2001. Studies on adsorption of p-nitrophenol on charred
saw-dust. Sep. Purif. Technol. 21, 227–235.
Esplugas, S., Gime ´nez, J., Contreras, S., Pascual, E., Rodrı ´guez, M., 2002. Comparison of
different advanced oxidation processes for phenol degradation. Water Res.
36, 1034–1042.

