Scanning Electron Microscopic Studies of Carbonized Rice Husk and Apricot Stone

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The microstructures of carbonized rice husk (CRH) and apricot stone (CAS) were studied to understand its adsorption of crude petroleum from water. Carbonize temperature affects the pore development of CRH, resulting in elongated large pores, as evident from the SEM data. The sorption capacities of CRH and CAS were compared in relation to different petroleum products. It was evaluated their possible practical use for water clean up from petroleum spills.

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478-481

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] D. Wanga, E. McLaughlin, R. Pfeffer and Y.S. Lin: Sep. Purif. Tech. 99 (2012), p.28–35.

Google Scholar

[2] S.A. Sayed, A.M. Zayed: Desalination 194 (2006), pp.90-100.

Google Scholar

[3] A. Gammoun, S. Tahiri, A. Albizane, M. Azzi, J. Moros, S. Garrigues, M. de la Guardia: J. Hazard. Mater. 145 (2007), pp.148-153.

DOI: 10.1016/j.jhazmat.2006.11.005

Google Scholar

[4] M. Husseien, A.A. Amer, A. El-Maghraby and N.A. Taha: Int. J. Environ. Sci. Tech. 6 (1) (2009), pp.123-130.

Google Scholar

[5] X. Sun, R. Sun and J. Sun: J. Agric. Food Chem. 50 (2002), pp.6428-6433.

Google Scholar

[6] N.E. Thompson, G.C. Emmanuel, K.J. Adagadzu and N.B. Yusuf: Arch. Appl. Sci. Res. 2 (5) (2010), pp.142-151.

Google Scholar

[7] M. Akhtar, M.I. Bhanger, Sh. Iqbal and S.M. Hasany: J. Hazard. Mater. B 128 (2006), pp.44-52.

Google Scholar

[8] S. Kumagai, K. Sasaki, Y. Shimizu and K. Takeda: Sep. Purif. Tech. 61 (2008), pp.398-403.

Google Scholar

[9] S.H. Yoon, M. Kim and B. Gil: LWT - Food Sci. Tech. 44 (2011), pp.1572-1576.

Google Scholar

[10] M. Kim, S.H. Yoon, E. Choi and B. Gil: LWT - Food Sci. Tech. 41 (2008), pp.701-706.

Google Scholar

[11] A.H. Mahvi, A. Maleki and A. Eslami: Am. J. Appl. Sci. 1 (4) (2004), pp.321-326.

Google Scholar

[12] D.H. Lataye, I.M. Mishra and I.D. Mall: J. Hazard. Mater. 154 (2008), pp.858-870.

Google Scholar

[13] S.A. Abo-El-Eneina, M.A. Eissab, A.A. Diafullahc, M.A. Rizkc and F.M. Mohamed: J. Hazard. Mater. 172 (2009), pp.574-579.

Google Scholar

[14] Z.A. Mansurov, M.M. Burkitbaev, M.A. Biisenbaev, A.A. Kurmanbekov, Z.R. Ismagilov, N.V. Shikina, I.P. Andrievskaya and N.A. Rudina: Catal. Today 147S (2009), p. S58-S65.

DOI: 10.1016/j.cattod.2009.07.043

Google Scholar

[15] http: /rudar. ruc. dk/bitstream/1800/2281/1/Rice%20husks%20and%20oil%20pollution. pdf.

Google Scholar

[16] К.К. Kudaybergenov, Е.К. Ongarbayev and Z.А. Mansurov: Eurasian Chem. Tech. J. 12 (2010), pp.151-156.

Google Scholar

[17] К.К. Kudaybergenov, Е.К. Ongarbayev, Z.А. Mansurov and Y.O. Doszhanov: J. Non-Crystalline Solids 358 (2012), p.2964–2969.

Google Scholar

[18] M. Ananijan, N. Bagrovskaija, R. Bederdinov, A. Pijatachkov: Patent RU 2 333 792, (2008).

Google Scholar