Références bibliographiques
69
• MING SUN. L, MEUNIER. F, (2003). Adsorption : aspects théoriques ; technique de
l’ingénieur, -Opérations Unitaires- Génie de la réaction chimique, traité Génie des
procédés, J2730, 1-8 p.
• NASUHA. N, HAMEED. B. H. (2011). Adsorption of methylene blue from aqueus
solution onto NaOH-modified rejected tea. Chem. Eng. J. 166, 783-786 p.
• OFOMAJA A.E. (2007). Kinetics and mechanism of methylene blue sorption onto palm
kernel fibre. Proc. Biochem., 42, 16-24 p.
• PAGGA, U. BROWN, D. (1986). “The degradation of dyestuffs. Part II. Behavior of
dyestuffs in aerobic biodegradation tests”. Chemosphere. 15. 479-491 p.
• PANDHARIPADE. L, YOGESH MOHARKAR, AND RAJ THAKUR, (2012).
“Synthesis of Adsorbents from Waste Materials Such as Ziziphus Jujube Seed & Mango
Kernel,” India, pp. 1337–1341 p.
• PATIL, AK. SHRIVASTAVA, VS. (2010). "Alternanthera bettzichiana plant powder as
low-cost adsorbent for removel of congo red from aqueous solution". Int. J. Chemtech Res.
2, 842-850 p.
• PREAU. A, (2007). “Etude de la pyrolyse des composés lignocellulosiques et
modélisation de ce processus,” Institut National Polytechnique de Lorraine. 97p.
• QIUHONG. H, ZHIPING. X, SHIZHANG. Q, HAGHSEREHT. F, MICHAELWILSON. G, QING. L. (2007). A novel color removal adsorbent from
heterocoagulation of cationic and anionic clays, J. Colloid. Inter. Sci., 308 : 191-199 p.
• REFFAS. A, (2010) Étude de l’adsorption de colorants organiques (Rouge Nylosan et
bleu de méthylène) sur des charbons actifs préparés à partir d marc du café, Thèse de
Doctorat, Université Mentouri-constantine, 12 p.
• RIVARD. G., (2011). Cinetique d’adsorption des contaminants de l’eau blanche sur les
fines, mémoire présenté à l’université du Québec à trois. 51,52 p.
• RODRIGUEZ-REINOSO, F. (1998). “The role of carbon materials in heterogeneous
catalysis”. Carbon 36, 159-175 p.
• SARKAR, M., SARKAR, A & GOSWAMI, 1., (2007). Mathematical modeling for the
evaluation of zinc removal efficiency on clay sorbent. Journal of hazardous materials,
149(3), 666-674 p.
• SENESI. N, CHEN. Y, GERSTL. Z, CHEN. Y, MINGELGRIN. U, YARON. B,
(1989). Editors, springer-Verlag, Berlin, 37-90 p.
• SHEINDORF, C., REBHUN, M. & SHEINTUCH, M., (1981). A Freundlich-type
multicomponent isotherm. Journal of Colloid and Interface Science, 79(1), 136-142 p.
• SHILA JAFARI., BEATA TRYBA., EWELINA KUSIAK-NEJMAN., JOANNA
KAPICA-KOZAR, (2016). “The role of adsorption in the photocatalytic decomposition
of Orange II on carbon-modified TiO2” Journal of Molecular Liquids 220, 504–512 p.
• SHORE, J. (1990). “colorant and auxiliaries, organic chemistry and application
properties”. Volume 1- colorants. BTTG-shirley, society of dyers and colourists,
Manchester, Angleterre.
• SOBRINO I., SILVA C., SBRANA M., KAPIRIS K., (2005). A review of the biology
and fisheries of the deep water rose shrimp Parapenaeus longirostris in European
Atlantic and Méditerranean waters (Decapoda, Dendrobranchiata, Penaeidae).
Crustaceana 78 (10) : 1153-1184 p.
69
• MING SUN. L, MEUNIER. F, (2003). Adsorption : aspects théoriques ; technique de
l’ingénieur, -Opérations Unitaires- Génie de la réaction chimique, traité Génie des
procédés, J2730, 1-8 p.
• NASUHA. N, HAMEED. B. H. (2011). Adsorption of methylene blue from aqueus
solution onto NaOH-modified rejected tea. Chem. Eng. J. 166, 783-786 p.
• OFOMAJA A.E. (2007). Kinetics and mechanism of methylene blue sorption onto palm
kernel fibre. Proc. Biochem., 42, 16-24 p.
• PAGGA, U. BROWN, D. (1986). “The degradation of dyestuffs. Part II. Behavior of
dyestuffs in aerobic biodegradation tests”. Chemosphere. 15. 479-491 p.
• PANDHARIPADE. L, YOGESH MOHARKAR, AND RAJ THAKUR, (2012).
“Synthesis of Adsorbents from Waste Materials Such as Ziziphus Jujube Seed & Mango
Kernel,” India, pp. 1337–1341 p.
• PATIL, AK. SHRIVASTAVA, VS. (2010). "Alternanthera bettzichiana plant powder as
low-cost adsorbent for removel of congo red from aqueous solution". Int. J. Chemtech Res.
2, 842-850 p.
• PREAU. A, (2007). “Etude de la pyrolyse des composés lignocellulosiques et
modélisation de ce processus,” Institut National Polytechnique de Lorraine. 97p.
• QIUHONG. H, ZHIPING. X, SHIZHANG. Q, HAGHSEREHT. F, MICHAELWILSON. G, QING. L. (2007). A novel color removal adsorbent from
heterocoagulation of cationic and anionic clays, J. Colloid. Inter. Sci., 308 : 191-199 p.
• REFFAS. A, (2010) Étude de l’adsorption de colorants organiques (Rouge Nylosan et
bleu de méthylène) sur des charbons actifs préparés à partir d marc du café, Thèse de
Doctorat, Université Mentouri-constantine, 12 p.
• RIVARD. G., (2011). Cinetique d’adsorption des contaminants de l’eau blanche sur les
fines, mémoire présenté à l’université du Québec à trois. 51,52 p.
• RODRIGUEZ-REINOSO, F. (1998). “The role of carbon materials in heterogeneous
catalysis”. Carbon 36, 159-175 p.
• SARKAR, M., SARKAR, A & GOSWAMI, 1., (2007). Mathematical modeling for the
evaluation of zinc removal efficiency on clay sorbent. Journal of hazardous materials,
149(3), 666-674 p.
• SENESI. N, CHEN. Y, GERSTL. Z, CHEN. Y, MINGELGRIN. U, YARON. B,
(1989). Editors, springer-Verlag, Berlin, 37-90 p.
• SHEINDORF, C., REBHUN, M. & SHEINTUCH, M., (1981). A Freundlich-type
multicomponent isotherm. Journal of Colloid and Interface Science, 79(1), 136-142 p.
• SHILA JAFARI., BEATA TRYBA., EWELINA KUSIAK-NEJMAN., JOANNA
KAPICA-KOZAR, (2016). “The role of adsorption in the photocatalytic decomposition
of Orange II on carbon-modified TiO2” Journal of Molecular Liquids 220, 504–512 p.
• SHORE, J. (1990). “colorant and auxiliaries, organic chemistry and application
properties”. Volume 1- colorants. BTTG-shirley, society of dyers and colourists,
Manchester, Angleterre.
• SOBRINO I., SILVA C., SBRANA M., KAPIRIS K., (2005). A review of the biology
and fisheries of the deep water rose shrimp Parapenaeus longirostris in European
Atlantic and Méditerranean waters (Decapoda, Dendrobranchiata, Penaeidae).
Crustaceana 78 (10) : 1153-1184 p.
