Environmental Engineering Reference
In-Depth Information
111. Swain S.K., T. Patnaik, P.C. Patnaik, U. Jha and R.K. Dey. Development of new alginate
entrapped Fe(III)-Zr(IV) binary mixed oxide for removal of luoride from water bodies. Chem.
Eng. J ., 215-216:763-771, 2013.
112. Wu H.-X., T.-J. Wang, L. Chen, Y. Jin, Y. Zhang and X.-M. Dou. Granulation of Fe-Al-Ce
hydroxide nano-adsorbent by immobilization in porous polyvinyl alcohol for luoride removal
in drinking water. Powder Technol. , 209:92-97, 2011.
113. Zhao B., Y. Zhang, X. Doub, X. Wu and M. Yanga. Granulation of Fe-Al-Ce trimetal hydroxide
as a luoride adsorbent using the extrusion method. Chem. Eng. J. , 185-186:211-218, 2012.
114. Chen L., H.-X. Wu, T.-J. Wang, Y. Jin, Y. Zhang and X.-M. Dou. Granulation of Fe-Al-Ce nano-
adsorbent for luoride removal from drinking water by spray coating on sand in a luidized
bed. Powder Technol ., 193:59-64, 2009.
115. Chen L., T.-J. Wang, H.-X. Wu, Y. Jin, Y. Zhang and X.-M. Dou. Optimization of a Fe-Al-Ce
nano-adsorbent granulation process that used spraycoating in a luidized bed for luoride
removal from drinking water. Powder Technol ., 206:291-296, 2011.
116. Ruparelia J.P., S.P. Duttagupta, A.K. Chatterjee and S. Mukherji. Potential of carbon nanomate-
rials for removal of heavy metals from water. Desalination , 232:145-156, 2008.
117. Sreeprasad T.S., S.M. Maliyekkal, K.P. Lisha and T. Pradeep. Reduced graphene oxide-metal/
metal oxide composites: Facile synthesis and application in water puriication. J. Hazard. Mater. ,
186:921-931, 2011.
118. Li Y.H., S. Wang, A. Cao, D. Zhao, X. Zhang, C. Xu, Z. Luan, D. Ruan, J. Liang, D. Wu and B.
Wei. Adsorption of luoride from water by amorphous alumina supported on carbon nano-
tubes. Chem. Phys. Lett ., 350:412-416, 2001.
119. Li Y.H., S. Wang, X. Zhang, J. Wei, C. Xu, Z. Luan, D. Wu and B. Wei. Removal of luoride from
water by carbon nanotube supported alumina. Environ. Technol ., 24:391-398, 2003.
120. Li Y.H., S. Wang, X. Zhang, J. Wei, C. Xu, Z. Luan and Z.D. Wu. Adsorption of luoride from
water by aligned carbon nanotubes. Mater. Res. Bull ., 38:469-476, 2003.
121. Ma Y., S.-G. Wang, M. Fan, W.-X. Gong and B.-Y. Gao. Characteristics and deluoridation
performance of granular activated carbons coated with manganese oxides. J. Hazard. Mater .,
168:1140-1146, 2009.
122. Karthikeyan M. and K.P. Elango. Removal of luoride from aqueous solution using graphite: A
kinetic and thermodynamic study. Indian J. Chem. Technol ., 15:525-532, 2008.
123. Ansari M., M. Kazemipour, M. Dehghani and M. Kazemipour. The deluoridation of drinking
water using multi-walled carbon nanotubes. J. Fluorine Chem ., 132(8):516-520, 2011.
124. Geim A.K. and K.S. Novoselov. The rise of graphene. Nat. Mater. , 6:183-191, 2007.
125. Sreeprasad T.S. and T. Pradeep. Graphene for environmental and biological applications. Int. J.
Mod. Phys. B ., 26(21):1242001-1242026, 2012.
126. Wang S., H. Sun, H.M. Ang and M.O. Tadé. Adsorptive remediation of environmental pollut-
ants using novel graphene-based nanomaterials. Chem. Eng. J. , 226:336-347, 2013.
127. Li Y., P. Zhang, Q. Du, X. Peng, T. Liu, Z. Wang, Y. Xia, W. Zhang, K. Wang, H. Zhu and D. Wud.
Adsorption of luoride from aqueous solution by graphene. J. Colloid Interface Sci. , 363:348-354,
2011.
128. Li Y., Q. Du, J. Wang, T. Liu, J. Sun, Y. Wang, Z. Wang, Y. Xia and L. Xia. Deluoridation from
aqueous solution by manganese oxide coated graphene oxide. J. Fluoride Chem. , 148:67-73,
2013.
Search WWH ::




Custom Search