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22. M. Uegami, J. Kawano, T. Okita, Y. Fujii, K. Okinaka, K. Kakuya, S. Yatagai,
Toda Kogyo Corp. US Patent Application, 2003.
23. K. Elihn, F. Otten, M. Boman, F.E. Kruis, H. Fissan, J.O. Carlsson, J.
Nanostruct. Mater. , Vol. 12, p. 79, 1999.
24. F. He, D. Zhao, J. Liu, and C.B. Robert, Ind. Eng. Chem. Res. , Vol. 46, p. 29,
2007.
25. F. He, and D. Zhao, Environ. Sci. Technol. , Vol. 39, p. 3314, 2005.
26. C.B. Wang, and W.X. Zhang, Environ. Sci. Technol. , Vol. 31, p. 2154, 1997.
27. M.M. Scherer, B.A. Balko, and P.G. Tratnyek, “h e role of oxides in reduc-
tion reactions at the metal-water interface,” in: Mineral-Water Interfacial
Reactions , Vol. 715, Ch 15, p. 301, 1999.
28. T.L. Johnson, M.M. Scherer, and P.G. Tratnyek, Environ. Sci. Technol. , Vol.
30, p. 2634, 1996.
29. J.E. Martin, A.A. Herzing, W. Yan, X.Q. Li, B.E. Koel, C.J. Kieley, and W.X.
Zhang, Langmuir , Vol. 24, p. 4329, 2008.
30. W.X. Zhang, J. Nanopart. Res. , Vol. 5, p. 323, 2003.
31. H.L. Lien, and W.X. Zhang , J. Environ. Eng. , Vol. 125, p. 1042, 1999.
32. P. Varanasi, A. Fullana, and S. Sidhu, Chemosphere , Vol. 66, p. 1031, 2007.
33. G.V. Lowry, and K.M. Johnson, Environ. Sci. Technol. , Vol. 38, p. 5208, 2004.
34. H. Song, and E.R. Carraway, Environ. Sci. Technol. , Vol. 39, p. 6237, 2005.
35. R. Singh, V. Misra, M.K.R. Mudiam, L.K.S. Chauhan, and R.P. Singh, J.
Hazard. Mater. , Vol. 237-238, p. 355, 2012.
36. R. Singh, V. Misra, and R.P. Singh, J. Bionanosci. , Vol. 5, p. 82, 2011.
37. R. Singh, A. Singh, V. Misra, and R.P. Singh, J. Biomed. Nanotechnol. , Vol. 7,
p. 175, 2011.
38. Z. Wang, P. Peng, and W. Huang, J. Hazard. Mater. , Vol. 166, p. 992, 2009.
39. D.W. Elliott, H.L. Lien, and W.X. Zhang, J. Environ. Qual. , Vol. 37, p. 2192,
2008.
40. T. Satapanajaru, P. Ankurakpongsator, P. Pengthamkeerati, and H. Boparai,
Water Air Soil Pollut. , Vol. 192, pp. 349-359, 2008.
41. R.D. Ambashta, E. Repo, and M. Sillanpää, Ind. Eng. Chem. Res. , Vol. 50, p.
11771, 2011.
42. A.V.B. Reddy, V. Madhavi, K.G. Reddy, and G. Madhavi, J. Chem., doi.
org/10.1155/2013/521045, 2013.
43. G. Naja, A. Halasz, S. h iboutot, G. Ampleman, and J. Hawari, Environ. Sci.
Te c h n o l . , Vol. 42, p. 4364, 2008.
44. X. Zhang, Y.M. Lin, X.Q. Shan, and Z.L. Chen, Chem. Eng. J. , Vol. 158, p.
566, 2010.
45. Y. Lin, C. Weng, and F. Chen, Sep. Purif. Technol. , Vol. 64, p. 26, 2008.
46. J. Fan, Y. Guo, J. Wang, and M. Fan, J. Hazard. Mater. , Vol. 166, p. 904, 2009.
47. Y.H. Shih, and Y.T Tai, Chemosphere , Vol. 78, p. 1200, 2010.
48. M.C. Chang, and H.Y. Kang, J. Environ. Sci. Health, A: Tox. Hazard. Subst.
Environ. Eng. , Vol. 44, p. 576, 2009.
49. Z. Xiong, D. Zhao, and G. Pan, Water Res. , Vol. 41, p. 3497, 2007.
50. Y. Xu, and D. Zhao D, Water Res. , Vol. 41, p. 2101, 2007.
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