Environmental Engineering Reference
In-Depth Information
71. P. Liao, Z. Malik Ismael, W. Zhang, S. Yuan, M. Tong, K. Wang, et al.,
Adsorption of dyes from aqueous solutions by microwave modified bamboo
charcoal, Chem. Eng. J. 195-196, 339-346, 2012.
72. E. L. K. Mui, W. H. Cheung, M. Valix, G. McKay, Dye adsorption onto char
from bamboo, J. Hazard. Mater . 177, 1001-5, 2010.
73. L. S. Chan, W. H. Cheung, S. J. Allen, G. McKay, Separation of acid-dyes mix-
ture by bamboo derived active carbon, Sep. Purif. Technol . 67, 166-172, 2009.
74. L. S. Chan, W. H. Cheung, S. J. Allen, G. McKay, Error analysis of adsorp-
tion isotherm models for acid dyes onto bamboo derived activated carbon,
Chinese J. Chem. Eng . 20, 535-542, 2012.
75. L. S. Chan, W. H. Cheung, G. McKay, Adsorption of acid dyes by bamboo
derived activated carbon, Desalination 218, 304-312, 2008.
76. A. W. M. Ip, J. P. Barford, G. McKay, A comparative study on the kinetics
and mechanisms of removal of Reactive Black 5 by adsorption onto activated
carbons and bone char, Chem. Eng. J . 157, 434-442, 2010.
77. A. A. Ahmad, B. H. Hameed, Reduction of COD and color of dyeing efflu-
ent from a cotton textile mill by adsorption onto bamboo-based activated
carbon, J. Hazard. Mater . 172, 1538-43, 2009.
78. L. Wang, Application of activated carbon derived from “waste” bamboo
culms for the adsorption of azo disperse dye: Kinetic, equilibrium and ther-
modynamic studies, J. Environ. Manage . 102, 79-87, 2012.
79. K. K. H. Choy, G. Mckay, Synergistic multilayer adsorption for low concen-
tration dyestuffs by biomass, Chinese J. Chem. Eng . 20, 560-566, 2012.
80. S. Suresh, N. Guizani, M. Al-Ruzeiki, A. Al-Hadhrami, H. Al-Dohani,
I. Al-Kindi, et al., Thermal characteristics, chemical composition and poly-
phenol contents of date-pits powder, J . Food Eng . 119, 668-679, 2013.
81. Z. Belala, M. Jeguirim, M. Belhachemi, F. Addoun, G. Trouvé, Biosorption of
basic dye from aqueous solutions by Date Stones and Palm-Trees Waste: Kinetic,
equilibrium and thermodynamic studies, Desalination 271, 80-87, 2011.
82. M. A. Al-Ghouti, J. Li, Y. Salamh, N. Al-Laqtah, G. Walker, M. N. M. Ahmad,
Adsorption mechanisms of removing heavy metals and dyes from aqueous
solution using date pits solid adsorbent, J. Hazard. Mater . 176, 510-20, 2010.
83. F. Banat, S. Al-Asheh, L. Al-Makhadmeh, Evaluation of the use of raw and
activated date pits as potential adsorbents for dye containing waters, Process
Biochem . 39, 193-202, 2003.
84. M. J. Ahmed, S. K. Dhedan, Equilibrium isotherms and kinetics modeling of
methylene blue adsorption on agricultural wastes-based activated carbons,
Fluid Phase Equilib . 317, 9-14, 2012.
85. S. K. Theydan, M. J. Ahmed, Adsorption of methylene blue onto biomass-
based activated carbon by FeCl3 activation: Equilibrium, kinetics, and ther-
modynamic studies, J. Anal. Appl. Pyrolysis . 97, 116-122, 2012.
86. K. Y. Foo, B. H. Hameed, Preparation of activated carbon from date stones
by microwave induced chemical activation: Application for methylene blue
adsorption, Chem. Eng. J . 170, 338-341, 2011.
Search WWH ::




Custom Search