Environmental Engineering Reference
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57. Z. Zhang, I. M. O'Hara, G. A. Kent, W. O. S. Doherty, Comparative study on
adsorption of two cationic dyes by milled sugarcane bagasse, Ind. Crops Prod .
42, 41-49, 2013.
58. W. T. Tsai, C. Y. Chang, M. C. Lin, S. F. Chien, H. F. Sun, M. F. Hsieh,
Adsorption of acid dye onto activated carbons prepared from agricultural
waste bagasse by ZnCl2 activation, Chemosphere . 45, 51-58, 2001.
59. M. Valix, W. H. Cheung, G. McKay, Preparation of activated carbon using
low temperature carbonisation and physical activation of high ash raw
bagasse for acid dye adsorption, Chemosphere 56, 493-501, 2004.
60. A. A. Kadam, H. S. Lade, S. M. Patil, S. P. Govindwar, Low cost CaCl2 pre-
treatment of sugarcane bagasse for enhancement of textile dyes adsorption
and subsequent biodegradation of adsorbed dyes under solid state fermenta-
tion, Bioresour. Te c h n o l . 132, 276-84, 2013.
61. K. A. G. Gusmão, L. V. A. Gurgel, T. M. S. Melo, L. F. Gil, Adsorption studies
of methylene blue and gentian violet on sugarcane bagasse modified with
EDTA dianhydride (EDTAD) in aqueous solutions: Kinetic and equilibrium
aspects, J. Environ. Manage . 118, 135-43, 2013.
62. K. A. G. Gusmão, L. V. A. Gurgel, T. M. S. Melo, L. F. Gil, Application of suc-
cinylated sugarcane bagasse as adsorbent to remove methylene blue and gen-
tian violet from aqueous solutions - Kinetic and equilibrium studies, Dye.
Pigment . 92, 967-974, 2012.
63. G.-B. Jiang, Z.-T. Lin, X.-Y. Huang, Y.-Q. Zheng, C.-C. Ren, C.-K. Huang,
et al., Potential biosorbent based on sugarcane bagasse modified with tetra-
ethylenepentamine for removal of eosin Y, Int. J. Biol. Macromol . 50, 707-12,
2012.
64. V. K. C. Lee, J. F. Porter, G. Mckay, Modified design model for the adsorption
of dye onto peat, Food Bioprod. Process . 79, 21-26, 2001.
65. Y. Ho, G. Mckay, Sorption of dye from aqueous solution by peat, Chem.
Eng. J . 70, 115-124, 1998.
66. A. W. M. Ip, J. P. Barford, G. McKay, Reactive Black dye adsorption/desorp-
tion onto different adsorbents: Effect of salt, surface chemistry, pore size and
surface area, J . Colloid Interface Sci . 337, 32-8, 2009.
67. A. N. Fernandes, C. A. P. Almeida, C. T. B. Menezes, N. A. Debacher, M.
M. D. Sierra, Removal of methylene blue from aqueous solution by peat,
J.   Hazard. Mater . 144, 412-419, 2007.
68. S. J. Allen, G. McKay, J. F. Porter, Adsorption isotherm models for basic
dye adsorption by peat in single and binary component systems, J. Colloid
Interface Sci . 280, 322-333, 2004.
69. R. Wang, Y. Amano, M. Machida, Surface properties and water vapor
adsorption-desorption characteristics of bamboo-based activated carbon,
J. Anal. Appl. Pyrolysis . 104, 667-674, 2013.
70. S.-F. Lo, S.-Y. Wang, M.-J. Tsai, L.-D. Lin, Adsorption capacity and removal
efficiency of heavy metal ions by Moso and Ma bamboo activated carbons,
Chem. Eng. Res. Des . 90, 1397-1406, 2012.
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