Experimental design study of RB 255 photocatalytic degradation under visible light using synthetic Ag/TiO2 nanoparticles: Optimization of experimental conditions
Subject Areas : Iranian Journal of CatalysisNarges Elmi Fard 1 , Reza Fazaeli 2
1 - Young Researchers and Elite Club, South Tehran Branch, Islamic Azad University, Tehran, Iran.
2 - Department of Chemical Engineering, Faculty of Engineering, South Tehran Branch, Islamic Azad University, Tehran, Iran.
Keywords:
Abstract :
[1] S. Cheng, D.L. Oatley, P.M. Williams, C.J. Wright, Water Res. 46 (2012) 33-42.
[2] K.V. Radha, V. Sridevi, K. Kalaivani, Bioresour. Technol. 100 (2009) 987-990.
[3] A. Buthiyappan, A.R. Abdul Aziz. W.M. Ashri. W. Daud, Rev. Chem. Eng. 32 (2016) 1-47.
[4] S. Wijannarong, S. Aroonsrimorakot, P. Thavipoke, A. Kumsopa, S. Sangjan, APCBEE Proc. 5 (2013) 279-282.
[5] Q. Wang, J. Li, Y. Bai, X. Lu, Y. Ding, Sh. Yin, H. Huang, H. Ma, F. Wang, B. Su, J. Photochem. Photobiol. B 126 (2013) 47-54.
[6] A. Ehsania, R. Asgari, A. Rostami-Vartoonia, H.M. Shiri, A. Yeganeh-Faal, Iran. J. Catal. 6 (2016) 269-274.
[7] L. Vafayi, S. Gharibe, Iran. J. Catal. 5 (2015) 365-371.
[8] S. Aghdasi, M. Shokri, Iran. J. Catal. 6 (2016) 481-487.
[9] M. Karimi-Shamsabadi. M. Behpour. A. Kazemi Babaheidari. Z. Saberi, J. Photochem. Photobiol. A 346 (2017) 133-143.
[10] J. Yan, K. Wang, H. Xu, J. Qian, W. Liu, X. Yang, H. Li, Chin. J. Catal. 34 (2013) 1876-1882.
[11] L. Zhu, Z. Meng, K. Cho, W. Oh, New Carbon Mater. 27 (2012) 166-174.
[12] A.R. Khataee, M.N. Pons, O. Zahraa, J. Hazard. Mater. 168 (2009) 451-457.
[13] B. Piriti, S. Dhiraj, Sep. Purif. Technol. 85 (2012) 112-119.
[14] A. Rezaee, M.T. Ghaneian, N. Taghavinia, M.K. Aminian, S.J. Hashemian, Environ. Technol. 30 (2008) 233-239.
[15] E. Pelizzetti, Sol. Energy Mater. Sol. Cells 38 (1995) 453-457.
[16] A. Fuerte, M.D. Hernández-Alonso, A.J. Maira, A. Martínez-Arias, M. Fernández-García, J.C. Conesa, J. Soria, Chem. Commun. 24 (2001) 2718-2719.
[17] A.A. Ismail, D.W. Bahnemann, L. Robben, V. Yarovyi, M. Wark, Chem. Mater. 22 (2010) 108-116.
[18] R.S. Juang, S.H. Lin, P.Y. Hsueh, J. Hazard. Mater. 182 (2010) 820–826.
[19] W.W.P. Lai, H.H.H. Lin, A.Y.C. Lin, J. Hazard. Mater. 287 (2015) 133-141.
[20] C.S. Kuo, C.F. Lin, P.K.A. Hong, J. Hazard. Mater. 301 (2016) 137-144.
[21] X. Li, L. Wang, X. Lu, J. Hazard. Mater. 177 (2010) 639-647.
[22] G.G. Lenzi, C.V.B. Fávero, L.M.S. Colpini, H. Bernabe, M.L. Baesso, S. Specchia, O.A.A. Santos, Desalination 270 (2011) 241-247.
[23] S. Angkaew, P. Limsuwan, Procedia Eng. 32 (2012) 649-655.
[24] J. García-Serrano, E. Gómez-Hernández, M. Ocampo-Fernández, U. Pal, Curr. Appl. Phys. 9 (2009)1097-1105.
[25] M.J. Nalbandian, M. Zhang, J. Sanchez, S. Kim, Y.H. Choa, D.M. Cwiertny, N.V. Myung, J. Hazard. Mater. 299 (2015) 141-148.
[26] M. Nasir, S. Bagwasi, Y. Jiao, F. Chen, B. Tian, J. Zhang, Chem. Eng. J. 236 (2014) 388-397.
[27] G. Taguchi, Tables of orthogonal arrays and linear graphs, Maruzen, Tokyo, Japan, 1962.
[28] G. Taguchi, Introduction to Quality Engineering, Asian Productivity Organization, Tokyo, 1990.
[29] P.J. Ross, G. Taguchi, Taguchi Techniques for Quality Engineering, McGraw- Hill, New York, 1988.
[30] N. Elmi Fard, R. Fazaeli, R. Ghiasi. Chem. Eng. Technol. 39 (2016) 149-157.
[31] B.E. Warren, X-rays diffraction, Dover Publications, New York, 1990.
[32] F. Zhang, J. Zhao, T. Shen, H. Hidaka, E. Pelizzetti, N. Serpone, Appl. Catal. B 15 (1998) 147-156.
[33] M. Kilic, Z. Cinar, J. Mol. Struct. Theochem 851 (2008) 263-270.
[34] M. Guedes, J.A. Ferreira, A. Ferro, J. Colloid Interface Sci. 337 (2009) 439-448.
[35] A. Nezamzadeh-Ejhieh, A. Shirzadi, Chemosphere 107 (2014) 136-144.
[36] R. Saadi, Z. Saadi, R. Fazaeli, N. Elmi Fard. Korean J. Chem. Eng. 32. (2015) 787-799.
[37] J. Porter, G. McKay, K. Choy, Chem. Eng. Sci. 54 (1999) 5863-5885.
[38] D.W. Marquardt. J. Soc. Ind. Appl. Math. 11 (1963) 431-441.
[39] A. Kapoor, R.T. Yang, Gas Sep. Purif. 3 (1989) 187-192.