Environmental Engineering Reference
In-Depth Information
65. Wasay S.A., M.J. Haron and S. Tokunaga. Adsorption of luoride, phosphate, and arsnate ions
on lanthanum—Impregnated alumina. Water Environ. Res. , 68:295-300, 1996.
66. Fang L., K.N. Ghimire, M. Kuriyama, K. Inoue and K. Makino. Removal of luoride using
lanthanum(III)-loaded adsorbents with different functional groups and polymer matrices.
J. Chem. Technol. Biotechnol. , 78(10):1038-1047, 2003.
67. Ayoob S., A.K. Gupta and V.T.A. Bhat. A conceptual overview on sustainable technologies for
deluoridation of drinking water and removal mechanisms. Crit. Rev. Environ. Sci. Technol. ,
38:401-470, 2008.
68. Mohapatra M., S. Anand, B.K. Mishra, D.E. Giles and P. Singh. Review of luoride removal from
drinking water. J. Environ. Manag ., 91:67-77, 2009.
69. Curl R.F., R.E. Smalley, H.W. Kroto, S. O'Brien and J.R. Heath. How the news that we were not
the irst to conceive of soccer ball C-60 got to us. J. Mol. Graphics Model , 19(2):185-186, 2001.
70. Wang X., L. Yang, Z.G. Chen and D.M. Shin. Application of nanotechnology in cancer therapy
and imaging. CA Cancer J Clin. , 58:97-110, 2008.
71. West J.L. and N.J. Halas. Applications of nanotechnology to biotechnology: Commentary. Curr.
Opin. Biotechnol ., 11(2):215-217, 2000.
72. Roco M.C. The emergence and policy implications of converging new technologies integrated
from the nanoscale. J. Nanopart. Res ., 7(2):129-143, 2005.
73. Savage N. and M.S. Diallo. Nanomaterials and water puriication: Opportunities and chal-
lenges. J. Nanopart. Res ., 7:331-342, 2005.
74. Hristovski K., A. Baumgardner and P. Westerhoff. Selecting metal oxide nanomaterials for
arsenic removal in ixed bed columns: From nanopowders to aggregated nanoparticle media.
J. Hazard. Mater. , 147(1-2):265-274, 2007.
75. Pradeep T. and Anshup. Noble metal nanoparticles for water puriication: A critical review.
Thin Solid Films , 517(24):6441-6478, 2009.
76. Diallo M.S. and N. Savage. Nanoparticles and water quality. J. Nanopart. Res. , 7(4-5):325-330, 2005.
77. Bhatnagar A., E. Kumar and M. Sillanpa. Fluoride removal from water by adsorption—A
review. Chem. Eng. J ., 171:811-840, 2011.
78. Zettlemoyer A.C., E.A. Zettlemoyer and W.C. Walker. Active magnesia. II. Adsorption of luo-
ride from aqueous solution. J. Am. Chem. Soc ., 69:1312-1315, 1947.
79. Fair G.M. and J.C. Geyer. Water Supply and Wastewater Disposal . John Wiley & Sons, New York,
p. 632, 1954.
80. Nagappa B. and G.T. Chandrappa. Mesoporous nanocrystalline magnesium oxide for environ-
mental, remediation. Microporous Mesoporous Mater. , 106(1-3):212-218, 2007.
81. Maliyekkal S.M., Anshup, K.R. Antony and T. Pradeep. High yield combustion synthesis of
nanomagnesia and its application for luoride removal. Sci. Total Environ ., 408:2273-2282, 2010.
82. Patel G., U. Pal and S. Menon. Removal of luoride from aqueous solution by CaO nanopar-
ticles. Sep. Sci. Technol ., 44:2806-2826, 2009.
83. Tanada S., M. Kabayama, N. Kawasaki, T. Sakiyama, T. Nakamura, M. Araki and T. Tamura.
Removal of phosphate by aluminum oxide hydroxide. J. Colloid Interface Sci ., 257:135-140, 2003.
84. Zhang H.Y., G.B. Shan, H.Z. Liu and J.M. Xing. Preparation of (Ni/W)-γ-Al 2 O 3 microspheres
and their application in adsorption desulfurization for model gasoline. Chem. Eng. Commun. ,
194:938-945, 2007.
85. Ghorai S. and K.K. Pant. Equilibrium, kinetics and breakthrough studies for adsorption of luo-
ride on activated alumina. Sep. Purif. Technol ., 42:265-271, 2005.
86. Das N., P. Pattanaik and R. Das. Deluoridation of drinking water using activated titanium rich
bauxite. J. Colloid Interface Sci. , 292(1):1-10, 2005.
87. USEPA. Water treatment technology feasibility support document for chemical contaminants.
In: Support of EPA Six-year Review of National Primary Drinking Water Regulations, EPA 815-
R-03-004, 2003.
88. Hao O.J. and C.P. Huang. Adsorption characteristics of luoride onto hydrous alumina.
J. Environ. Eng. , 112:1054-1069, 1986.
Search WWH ::




Custom Search