Environmental Engineering Reference
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127. N. B. Douissa, S. Dridi-Dhaouadi, M. F. Mhenni, 2014. Study of antago-
nistic effect in the simultaneous removal of two textile dyes onto cellulose
extracted from Posidonia oceanica using derivative spectrophotometric
method. Journal of Water Process Engineering 2, 1-9.
128. N. Gopal, M. Asaithambi, P. Sivakumar, V. Sivakumar, 2014. Adsorption
studies of a direct dye using polyaniline coated activated carbon prepared
from Prosopis juliflora. Journal of Water Process Engineering 2, 87-95.
129. L. D. T. Prola, F. M. Machado, C. P. Bergmann, F. E. de Souza, C. R. Gally,
E.  C. Lima, M. A. Adebayo, S. L. P. Dias, T. Calvete, 2013. Adsorption of
Direct Blue 53 dye from aqueous solutions by multi-walled carbon nanotubes
and activated carbon. Journal of Environmental Management 130, 166-175.
130. Y. S. Al-Degs, M. I. El-Barghouthi, A. H. El-Sheikh, G. M. Walker, 2008.
Effect of solution pH, ionic strength, and temperature on adsorption behav-
ior of reactive dyes on activated carbon. Dyes and Pigments 77, 16-23.
131. B. Heibati, S. Rodriguez-Couto, A. Amrane, M. Rafatullah, A. Hawari, M. A.
Al-Ghouti, 2014. Uptake of Reactive Black 5 by pumice and walnut activated
carbon: Chemistry and adsorption mechanisms. Journal of Industrial and
Engineering Chemistry 20(5), 2939-2947.
132. M. A. Ahmad, N. A. A. Puad, O. S. Bello, 2014. Kinetic, equilibrium and
thermodynamic studies of synthetic dye removal using pomegranate peel
activated carbon prepared by microwave-induced KOH activation. Water
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133. G. Z. Kyzas, E. A. Deliyanni, N. K. Lazaridis, 2014. Magnetic modification
of microporous carbon for dye adsorption. Journal of Colloid and Interface
Science 430, 166-173.
134. Z. Aksu, I. A. Isoglu, 2007. Use of dried sugar beet pulp for binary biosorption
of Gemazol Turquoise Blue-G reactive dye and copper (II) ions: Equilibrium
modeling. Chemical Engineering Journal 127(1-3), 177-188.
135. M. A. Baghapour, S. Pourfadakari, A. H. Mahvi, 2014. Investigation of
Reactive Red Dye 198 removal using multiwall carbon nanotubes in
aqueous solution. Journal of Industrial and Engineering Chemistry 20(5),
2921-2926.
136. M. Shirzad-Siboni, S. J. Jafari, O. Giahi, I. Kim, S.-M. Lee, J.-K. Yang, 2014.
Removal of acid blue 113 and reactive black 5 dye from aqueous solutions
by activated red mud. Journal of Industrial and Engineering Chemistry 20(4),
1432-1437.
137. S. Noreen, H. N. Bhatti, 2014. Fitting of equilibrium and kinetic data for
the removal of Novacron Orange P-2R by sugarcane bagasse. Journal of
Industrial and Engineering Chemistry 20(4), 1684-1692.
138. M. Khosravi, and S. Azizian, 2014. Adsorption of anionic dyes from aque-
ous solution by iron oxide nanospheres. Journal of Industrial and Engineering
Chemistry 20(4), 2561-2567.
139. J.-S. Cao, J.-X. Lin, F. Fang, M.-T. Zhang, Z.-R. Hu, 2014. A new absorbent by
modifying walnut shell for the removal of anionic dye: Kinetic and thermo-
dynamic studies. Bioresource Technology 163, 199-205.
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