. Astm-d2866, Standard Test Method for Total Ash Content of Activated Carbon, Annual Book of ASTM standards, pp.478-479, 1995.

E. P. Barrett, L. G. Joyner, and P. P. Halenda, The determination of pore volume and area distributions in porous substances, J. Am. Chem. Soc, vol.73, pp.373-380, 1951.

S. Brunauer, P. H. Emmett, and E. Teller, Adsorption of gases in multimolecular layers, J. Am. Chem. Soc, vol.60, pp.309-319, 1938.

T. Cordero, J. Rodriguez-mirasol, J. Bedia, S. Gomis, P. Yustos et al., Activated carbon as catalyst in wet oxidation of phenol: effect of the oxidation reaction on the catalyst properties and stability, Appl. Catal. B, vol.81, pp.122-131, 2008.

, Phenol concentrationetime profiles measured in the recycle tank during the successive oxidations with (a) C_DMAD, (b) F22: T ¼ 150 C, p O2 ¼ 9:5 bar

C. Creanga-manole, C. Ayral, C. Julcour-lebigue, A. M. Wilhelm, and H. Delmas, Catalytic wet air oxidation of aqueous organic mixtures, Int. J. Chem. React. Eng, vol.5, 2007.

H. Delmas, A. M. Wilhelm, I. Polaert, A. Fabregat, F. Stüber et al., Sequential process of adsorption and catalytic oxidation on activated carbon for (pre)treatment of water polluted by non-biodegradable organic products. Fr. patent FRXXBL FR, vol.1, 2002.

H. Delmas, C. Creanga, C. Julcour-lebigue, and A. M. Wilhelm, ADeOX: a sequential oxidative process for water treatment-adsorption and batch CWAO regeneration of activated carbon, Chem. Eng. J, vol.152, 2009.

X. Fan and X. Zhang, Adsorption properties of activated carbon from sewage sludge to alkaline-black, Mater. Lett, vol.62, issue.10e11, pp.1704-1706, 2008.

A. Fortuny, J. Font, and A. Fabregat, Wet air oxidation of phenol using active carbon as catalyst, 165e173. Hach Company, 2003. DR/2500 Spectrophotometer procedure Manual, vol.19, pp.3-4, 1998.

G. Horvath and K. J. Kawazoe, Method for the calculation of effective pore size distribution in molecular sieve carbon, Chem. Eng. Jpn, vol.16, pp.470-475, 1983.

F. Karacan, U. Ozden, and S. Karacan, Optimization of manufacturing conditions for activated carbon from Turkish lignite by chemical activation using response surface methodology, Appl. Thermal Eng, vol.27, issue.7, pp.1212-1218, 2007.

M. J. Martin, A. Artola, M. D. Balaguer, and M. Rigola, Towards waste minimisation in WWTP: activated carbon from biological sludge and its application in liquid phase adsorption, J. Chem. Tech. Biotech, vol.77, issue.7, pp.825-833, 2002.

Y. I. Matatov-meytal and M. Sheintuch, Abatement of pollutants by adsorption and oxidative catalytic regeneration, Ind. Eng. Chem. Res, vol.36, issue.10, pp.4374-4380, 1997.

C. Moreno-castilla, Adsorption of organic molecules from aqueous solutions on carbon materials, Carbon, vol.42, issue.1, pp.83-94, 2004.

M. Otero, F. Rozada, L. F. Calvo, A. I. García, and A. Morán, Elimination of organic water pollutants using adsorbents obtained from sewage sludge, Dyes Pigm, vol.57, issue.1, pp.55-65, 2003.

S. Pullket, K. M. Smith, G. D. Fowler, and N. J. Graham, Influence of source and treatment method on the properties of activated carbons produced from sewage sludge, J. Residuals Sci. Tech, vol.6, issue.1, pp.43-49, 2009.

A. Quintanilla, J. A. Casas, J. A. Zazo, A. F. Mohedano, and J. J. Rodriguez, Wet air oxidation of phenol at mild conditions with a Fe/activated carbon catalyst, Appl. Catal. B, vol.62, pp.115-120, 2006.

S. Rio, C. Faur-brasquet, L. Le-coq, and P. Le-cloirec, Structure characterization and adsorption properties of pyrolyzed sewage sludge, Environ. Sci. Technol, vol.39, issue.11, pp.4249-4257, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00945338

F. Rozada, M. Otero, A. I. Garcia, and A. Moran, Application in fixed-bed systems of adsorbents obtained from sewage sludge and discarded tyres, Dyes Pigm, vol.72, issue.1, pp.47-56, 2007.

A. Santos, P. Yustos, T. Cordero, S. Gomis, S. Rodriguez et al., Catalytic wet air oxidation of phenol on active carbon: stability, phenol conversion and mineralization, Catal. Today, vol.102, issue.103, pp.213-218, 2005.

M. Seredych and T. J. Bandosz, Removal of copper on composite sewage sludge/ industrial sludge-based adsorbents: the role of surface chemistry, J. Colloid Interface Sci, vol.302, issue.2, pp.379-388, 2006.

K. M. Smith, G. D. Fowler, S. Pullket, and N. J. Graham, Sewage sludge-based adsorbents: a review of their production, properties and use in water treatment applications, Water Res, vol.43, issue.10, pp.2569-2594, 2009.

M. E. Suarez-ojeda, F. Stüber, A. Fortuny, A. Fabregat, J. Carrera et al., Catalytic wet air oxidation of substituted phenols using active carbon catalyst, Appl. Catal. B, vol.58, pp.105-114, 2005.