Adsorption of Pollutants from Water with Carbon Nanotubes

Article Preview

Abstract:

The unique morphology and structure of carbon nanotubes (CNTs) keep attracting a great number of researchers to explore the novel properties of these materials. The special structure of CNTs determines its physical and chemical properties, mainly reflected in its novel electrical, mechanical properties and excellent adsorption performance. This review summarizes the adsorption properties of CNTs and their properties related to the adsorption of various heavy metal ions, organic and inorganic pollutants from large volumes of aqueous solutions. CNTs is a kind of potential environmental material. This article also put forward future opportunities for CNTs application in environmental systems.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 634-638)

Pages:

192-197

Citation:

Online since:

January 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] S. Iijima: Nature Vol. 354(1991), pp.56-58.

Google Scholar

[2] D.A. Britz, A.N. Khlobystov: Chem. Soc. Rev. Vol. 35 (2006), pp.637-659.

Google Scholar

[3] P. Avouris: Acc. Chem. Res. Vol. 35 (2002), pp.1026-1034.

Google Scholar

[4] E.T. Thostenson, Z.F. Ren and T.W. Chou: Compos. Sci. Technol. Vol. 61 (2001), p.1899-(1912).

Google Scholar

[5] C.L. Chen, J. Hu, D.D. Shao and X.K. Wang: J. Hazard. Mater. Vol. 164 (2009), pp.923-928.

Google Scholar

[6] R.Q. Long, R.T. Yang: Ind. Eng. Chem. Res. Vol. 40 (2001), pp.4288-4291.

Google Scholar

[7] S. Agnihotri, M.J. Rood and M. Rostam-Abadi: Carbon Vol. 43 (2005), pp.2379-2388.

DOI: 10.1016/j.carbon.2005.04.020

Google Scholar

[8] X.L. Tan, M. Fang, C.L. Chen and X.K. Wang: Carbon Vol. 46 (2008), pp.1741-1750.

Google Scholar

[9] S.G. Wang, W.X. Gong, X.W. Liu, Y.W. Yao, B.Y. Gao and Q.Y. Yue: Sep. Purif. Technol. Vol. 58 (2007), pp.17-23.

Google Scholar

[10] C.H. Chen, C.C. Huang: Sep. Purif. Technol. Vol. 65 (2009), pp.305-310.

Google Scholar

[11] Y.H. Li, S.G. Wang, J.Q. Wei, X.F. Zhang, C.L. Xu, Z.K. Luan, D.H. Wu and B.Q. Wei: Chem. Phys. Lett. Vol. 357 (2002), pp.263-266.

Google Scholar

[12] Y.H. Li, J. Ding, Z.K. Luan, Z.C. Di, Y.F. Zhu, C.L. Xu, D.H. Wu and B.Q. Wei: Carbon Vol. 41 (2003), pp.2787-2792.

Google Scholar

[13] C.L. Chen, X.K. Wang: Ind. Eng. Chem. Res. Vol. 45 (2006), pp.9144-9149.

Google Scholar

[14] C.L. Chen, X.K. Wang, M. Nagatsu: Environ. Sci. Technol. Vol. 43 (2009), pp.2362-2367.

Google Scholar

[15] C.L. Chen, J. Hu, D. Xu, X.L. Tan, Y.D. Meng and X.K. Wang: J. Colloid Interface Sci. Vol. 323 (2008), pp.33-41.

Google Scholar

[16] J. Goering, E. Kadossov and U. Burghaus: J. Phys. Chem. C. Vol. 112 (2008), pp.10114-10124.

Google Scholar

[17] H. Hyung, J.H. Kim: Environ. Sci. Technol. Vol. 42 (2008), pp.4416-4421.

Google Scholar

[18] S. Agnihotri, J.P.B. Mota, M. Rostam-Abadi and M.J. Rood: J. Phys. Chem. B. Vol. 110 (2006), pp.7640-7647.

Google Scholar

[19] P. Kondratyuk, J.T. Yates Jr.: Acc. Chem. Res. Vol. 40 (2007), pp.995-1004.

Google Scholar

[20] K. Yang, B.S. Xing: Chem. Rev. Vol. 110 (2010), pp.5989-6008.

Google Scholar

[21] M.L. Toebes, E.M.P. van Heeswijk, J.H. Bitter, A.J. van Dillen and K.P. de Jong: Carbon Vol. 42 (2004), pp.307-315.

DOI: 10.1016/j.carbon.2003.10.036

Google Scholar

[22] O. Byl, J. Liu, J.T. Yates Jr.: Langmuir Vol. 21 (2005), pp.4200-4204.

Google Scholar

[23] M.L. Sham, J.K. Kim: Carbon Vol. 44 (2006), pp.768-777.

Google Scholar

[24] C.L. Chen, B. Liang, A. Ogino, X.K. Wang and M. Nagatsu: J. Phys. Chem.C. Vol. 113 (2009), pp.7659-7665.

Google Scholar

[25] H. Takagi, Y. Soneda, H. Hatori and G.Q. Lu: Aust. J. Chem. Vol. 60 (2007), pp.519-523.

Google Scholar

[26] S.H. Hsieh, J.J. Horng and C.K. Tsai: J. Mater. Res. Vol. 21 (2006), pp.1269-1273.

Google Scholar

[27] Y.H. Li, Z.C. Di, Z.K. Luan, J. Ding, H. Zuo, X.Q. Wu, C.L. Xu and D.H. Wu: J. Environ. Sci. China Vol. 16 (2004), pp.208-211.

Google Scholar

[28] C.Y. Lu, C. Liu and G.P. Rao: J. Hazard. Mater Vol. 151 (2008), pp.239-246.

Google Scholar

[29] Y.H. Li, Z.C. Di, J. Ding, D.H. Wu and Y.Q. Zhu: Water Res. Vol. 39 (2005), pp.605-609.

Google Scholar

[30] C. S Lu, H. Chiu and C.T. Liu: Ind. Eng. Chem. Res. Vol. 45(2006), pp.2850-2855.

Google Scholar

[31] H.B. Li, L.K. Pan, Y.P. Zhang and Z. Sun: Water Sci. Technol. Vol. 59 (2009), pp.1657-1663.

Google Scholar

[32] H.J. Wang, F. Peng and L.F. Chen: Mater. Sci. Eng. A. Vol. 466 (2007), pp.201-206.

Google Scholar

[33] C.H. Wu: J. Colloid Interface Sci. Vol. 311 (2007), pp.338-346.

Google Scholar

[34] S.T. Yang, J.X. Li, D.D. Shao and X.K. Wang: J. Hazard. Mater Vol. 166 (2009), pp.109-116.

Google Scholar

[35] C.Y. Lu, C.T. Liu and F.S. Su: Desalination Vol. 249 (2009), pp.18-23.

Google Scholar

[36] Y.J. Xu, A. Rosa, X. Liu and D.S. Su: New Carbon Materials. Vol. 26(2011), pp.57-62.

Google Scholar

[37] J. Wang, X.X. Ma, G.Z. Fang, M.F. Pan, X.K. Ye and S. Wang: Journal of Hazardous Materials Vol. 186 (2011), p.1985-(1992).

Google Scholar

[38] D. Tasis, N. Tagmatarchis and M. Prato: Chem. Rev. Vol. 106(2006), pp.1105-1136.

Google Scholar

[39] G.P. Rao, C. Lu and F. Su: Sep Purif Technol. Vol. 58(2007), pp.224-231.

Google Scholar

[40] X. Peng, Z. Luan, J. Ding, Z. Di and B. Tian: Materials Letters Vol. 59(2005), pp.399-403.

Google Scholar

[41] R. M. Allen-King, P. Grathwohl: Adv. Water Resour Vol. 25(2002), pp.985-1016.

Google Scholar

[42] S. Gotovac, Y. Hattori, D. Noguchi, J. Miyamoto, M. Kanamaru, S. Utsumi, H. Kanoh and K. Kaneko: J. Phys. Chem. B. Vol. 110(2006), pp.16219-16224.

DOI: 10.1021/jp0611830

Google Scholar

[43] K. Yang, B.S. Xing: Environ. Pollut. Vol. 145(2007), pp.529-537.

Google Scholar

[44] B. PAN, B.S. XING: J. Agric. Food Chem. Vol. 58(2010), pp.8338-8343.

Google Scholar

[45] C.Y. Lu, F.S. Su and S.K. Hu: Applied Surface Science Vol. 254 (2008), pp.7035-7041.

Google Scholar

[46] M.L. Sun, X.X. Kong and H.R. Yu: Chemical World Vol. 10(2005), pp.580-582.

Google Scholar

[47] S.G. Wang, X.W. Liu, W.X. Gong, W. Nie and B.Y. Gao, Q.Y. Yue: J Chem Technol Biotechnol. Vol. 82(2007), pp.698-704.

Google Scholar

[48] C. Y. Lu, F.S. Su: Sep Purif Technol. Vol. 58(2007), pp.113-121.

Google Scholar

[49] Q. Liao, J. Sun and L. Gao: Carbon Vol. 46(2008, pp.553-555.

Google Scholar

[50] K. Yang, W.H. Wu and L.Z. Zhu: Environ. Sci. Technol. Vol. 42 (2008), pp.7931-7936.

Google Scholar

[51] N. Savage, M.S. Diallo: J. Nanopart. Res. Vol. 7(2005), pp.331-342.

Google Scholar

[52] Y.H. Li, S. Wang , X. Zhang , J. Wei and C. Xu, Z. Luan: Materials Research Bulletin Vol. 38(2003), pp.469-476.

Google Scholar

[53] Y.H. Li, S. Wang , A. Cao, D. Zhao, X. Zhang, C. Xu, Z. Luan and D. Wu, B. Wei: Chemical Physics Letters Vol. 350(2001), pp.412-416.

Google Scholar