Copyright (c) 2015 AJC
This work is licensed under a Creative Commons Attribution 4.0 International License.
Chicken Feather Powder as Corrosion Inhibitor for Aluminium in NaOH Solution
Corresponding Author(s) : R. Subramanian
Asian Journal of Chemistry,
Vol. 27 No. 4 (2015): Vol 27 Issue 4
Abstract
The effect of chicken feather powder (CFP) on the corrosion of aluminium (Al) in 0.5 M NaOH solution was examined using weight loss method. The inhibition efficiency of chicken feather powder on the corrosion of Al in 0.5 M NaOH solution increased with increasing concentration and immersion time whereas decreases with increasing temperature which shows that the adsorption occurred is physisorption. Inhibition action of chicken feather powder at different concentration and temperature were investigated. The adsorption of chicken feather powder on metal surface obeyed Langmuir adsorption isotherm. Weight loss method showed that the chicken feather powder acted as mixed inhibitor for Al in 0.5 M NaOH solution and follows physical adsorption on the surface of aluminium.
Keywords
Download Citation
Endnote/Zotero/Mendeley (RIS)BibTeX
- C.M. Williams, C.G. Lee, J.D. Garlich and J.C.H. Shih, Poult. Sci., 70, 85 (1991); doi:10.3382/ps.0700085.
- A.A. Onifade, N.A. Al-Sane, A.A. Al-Musallam and S. Al-Zarban, Bioresour. Technol., 66, 1 (1998); doi:10.1016/S0960-8524(98)00033-9.
- P.M.M. Schrooyen, P.J. Dijkstra, R.C. Oberthur, A. Bantjes and J. Feijen, J. Colloid Interf. Sci., 240, 30 (2001); doi:10.1006/jcis.2001.7673.
- H. Fazilat, S. Akhlaghi, M.E. Shiri and A. Sharif, Polymer, 53, 2255 (2012); doi:10.1016/j.polymer.2012.03.053.
- J.D. Latshaw, N. Musharaf and R. Retrum, Anim. Feed Sci. Technol., 47, 179 (1994); doi:10.1016/0377-8401(94)90122-8.
- Z. Pedram Rad, H. Tavanai and A.R. Moradi, J. Aerosol Sci., 51, 49 (2012); doi:10.1016/j.jaerosci.2012.04.007.
- H. Liu, J. Zhang, W. Liu, N. Bao, C. Cheng and C. Zhang, Mater. Lett., 87, 17 (2012); doi:10.1016/j.matlet.2012.07.089.
- S. Al-Asheh, F. Banat and D. Al-Rousan, J. Clean. Prod., 11, 321 (2003); doi:10.1016/S0959-6526(02)00045-8.
- G. Coward-Kelly, V.S. Chang, F.K. Agbogbo and M.T. Holtzapple, Bioresour. Technol., 97, 1337 (2006); doi:10.1016/j.biortech.2005.05.021.
- N. Reddy, C. Hu, K. Yan and Y. Yang, Mater. Sci. Eng. C, 31, 1706 (2011); doi:10.1016/j.msec.2011.07.022.
- A.M. Abdel-Gaber, B.A. Abd-El-Nabey, E. Khamis and D.E. Abd-El-Khalek, Desalination, 278, 337 (2011); doi:10.1016/j.desal.2011.05.048.
- N. Soltani, N. Tavakkoli, M. Khayatkashani, M.R. Jalali and A. Mosavizade, Corros. Sci., 62, 122 (2012); doi:10.1016/j.corsci.2012.05.003.
- S. Deng and X. Li, Corros. Sci., 55, 407 (2012); doi:10.1016/j.corsci.2011.11.005.
- K.P.V. Kumar, M.S.N. Pillai and G.R. Thusnavis, J. Mater. Sci. Technol., 27, 1143 (2011); doi:10.1016/S1005-0302(12)60010-3.
- M.A. Quraishi, A. Singh, V.K. Singh, D.K. Yadav and A.K. Singh, Mater. Chem. Phys., 122, 114 (2010); doi:10.1016/j.matchemphys.2010.02.066.
- A. Lecante, F. Robert, P.A. Blandinières and C. Roos, Curr. Appl. Phys., 11, 714 (2011); doi:10.1016/j.cap.2010.11.038.
- A.S. Yaro, A.A. Khadom and R.K. Wael, Alexandria Eng. J., 52, 129 (2013); doi:10.1016/j.aej.2012.11.001.
- S. Deng and X. Li, Corros. Sci., 64, 253 (2012); doi:10.1016/j.corsci.2012.07.017.
- O.K. Abiola, J.O.E. Otaigbe and O.J. Kio, Corros. Sci., 51, 1879 (2009); doi:10.1016/j.corsci.2009.04.016.
- A.Y. El-Etre, Corros. Sci., 45, 2485 (2003); doi:10.1016/S0010-938X(03)00066-0.
References
C.M. Williams, C.G. Lee, J.D. Garlich and J.C.H. Shih, Poult. Sci., 70, 85 (1991); doi:10.3382/ps.0700085.
A.A. Onifade, N.A. Al-Sane, A.A. Al-Musallam and S. Al-Zarban, Bioresour. Technol., 66, 1 (1998); doi:10.1016/S0960-8524(98)00033-9.
P.M.M. Schrooyen, P.J. Dijkstra, R.C. Oberthur, A. Bantjes and J. Feijen, J. Colloid Interf. Sci., 240, 30 (2001); doi:10.1006/jcis.2001.7673.
H. Fazilat, S. Akhlaghi, M.E. Shiri and A. Sharif, Polymer, 53, 2255 (2012); doi:10.1016/j.polymer.2012.03.053.
J.D. Latshaw, N. Musharaf and R. Retrum, Anim. Feed Sci. Technol., 47, 179 (1994); doi:10.1016/0377-8401(94)90122-8.
Z. Pedram Rad, H. Tavanai and A.R. Moradi, J. Aerosol Sci., 51, 49 (2012); doi:10.1016/j.jaerosci.2012.04.007.
H. Liu, J. Zhang, W. Liu, N. Bao, C. Cheng and C. Zhang, Mater. Lett., 87, 17 (2012); doi:10.1016/j.matlet.2012.07.089.
S. Al-Asheh, F. Banat and D. Al-Rousan, J. Clean. Prod., 11, 321 (2003); doi:10.1016/S0959-6526(02)00045-8.
G. Coward-Kelly, V.S. Chang, F.K. Agbogbo and M.T. Holtzapple, Bioresour. Technol., 97, 1337 (2006); doi:10.1016/j.biortech.2005.05.021.
N. Reddy, C. Hu, K. Yan and Y. Yang, Mater. Sci. Eng. C, 31, 1706 (2011); doi:10.1016/j.msec.2011.07.022.
A.M. Abdel-Gaber, B.A. Abd-El-Nabey, E. Khamis and D.E. Abd-El-Khalek, Desalination, 278, 337 (2011); doi:10.1016/j.desal.2011.05.048.
N. Soltani, N. Tavakkoli, M. Khayatkashani, M.R. Jalali and A. Mosavizade, Corros. Sci., 62, 122 (2012); doi:10.1016/j.corsci.2012.05.003.
S. Deng and X. Li, Corros. Sci., 55, 407 (2012); doi:10.1016/j.corsci.2011.11.005.
K.P.V. Kumar, M.S.N. Pillai and G.R. Thusnavis, J. Mater. Sci. Technol., 27, 1143 (2011); doi:10.1016/S1005-0302(12)60010-3.
M.A. Quraishi, A. Singh, V.K. Singh, D.K. Yadav and A.K. Singh, Mater. Chem. Phys., 122, 114 (2010); doi:10.1016/j.matchemphys.2010.02.066.
A. Lecante, F. Robert, P.A. Blandinières and C. Roos, Curr. Appl. Phys., 11, 714 (2011); doi:10.1016/j.cap.2010.11.038.
A.S. Yaro, A.A. Khadom and R.K. Wael, Alexandria Eng. J., 52, 129 (2013); doi:10.1016/j.aej.2012.11.001.
S. Deng and X. Li, Corros. Sci., 64, 253 (2012); doi:10.1016/j.corsci.2012.07.017.
O.K. Abiola, J.O.E. Otaigbe and O.J. Kio, Corros. Sci., 51, 1879 (2009); doi:10.1016/j.corsci.2009.04.016.
A.Y. El-Etre, Corros. Sci., 45, 2485 (2003); doi:10.1016/S0010-938X(03)00066-0.