Journal of Industrial and Engineering Chemistry, Vol.19, No.5, 1624-1630, September, 2013
Application of PSO-artificial neural network and response surface methodology for removal of methylene blue using silver nanoparticles from water samples
E-mail:
In this study, a simple and fast method for preconcentration and determination of trace amount of
methylene blue (MB) from water samples was developed by silver nanoparticles based solid-phase extraction method and UV.Vis spectrophotometry. Response surface methodology and hybrid of artificial neural network- particle swarm optimization (ANN-PSO) have been used to develop predictive models for simulation and optimization of solid phase extraction method. Under the optimum conditions, the detection limit and relative standard deviation were 15.0 mg L^(-1) and <2.7%, respectively. The preconcentration factor was 83. The method was applied to preconcentration and determination of methylene blue from water samples.
Keywords:Methylene blue;Silver nanoparticles;Artificial neural network;Particle swarm optimization;Response surface methodology
- Feng Y, Zhou H, Liu G, Qiao J, Wang J, Lu H, Yang L, Wu Y, Bioresource Technology., 125, 138 (2012)
- Liu Y, Wang J, Zheng Y, Wang A, Chemical Engineering Journal., 184, 248 (2012)
- Vargas AMM, Cazetta AL, Martins AC, Moraes JGG, Garcia EE, Gauze GF, Costa WF, Almeida VC, Chemical Engineering Journal., 181-182, 243 (2012)
- Uddin MT, Islam MA, Mahmud S, Rukanuzzaman M, J. Hazard. Mater., 164(1), 53 (2009)
- Zhang SJ, Li XY, Chen JP, Carbon., 48, 60 (2010)
- Ma Y, Meng YM, Chen JP, J. Colloid Interface Sci., 354(2), 785 (2011)
- Khajeh M, Musavi Zadeh F, Bulletin of Environment Contamination and Toxicology., 89, 38 (2012)
- Desai KM, Survase SA, Saudagar PS, Lele SS, Singhal RS, Biochemical Engineering Journal., 41, 266 (2008)
- Shah F, Kazi TG, Naeemullah G, Afridi HI, Soylak M, Microchemical Journal., 101, 5 (2012)
- Baig A, Kazi TG, Shah AQ, Arain MB, Khan S, Afridi HI, Kandhro GA, Kolachi NF, Analytica Chimica Acta., 651, 57 (2009)
- Desai KM, Vaidya BK, Singhal RS, Bhagwat SS, Process Biochemistry., 39, 2193 (2004)
- Lazzus JA, J. Supercrit. Fluids, 51(3), 312 (2010)
- Kousha M, Daneshvar E, Dopeikar H, Taghavi D, Bhatnagar A, Chemical Engineering Journal., 179, 158 (2012)
- Khayet M, Cojocaru C, Separation and Purification Technology., 86, 171 (2012)
- Zafar M, Kumar S, Kumar S, Dhiman A, Biocatalysis and Agricultural Biotechnology., 1, 70 (2012)
- Kennedy J, Eberhart RC, Shi Y, Swarm Intelligence, Morgan Kaufmann Publishers, New York, 141 (2001)
- Che ZH, Computer & Industrial Engineering., 58, 625 (2010)
- Kennedy J, Spears MW, Proceedings of the IEEE Conference on Evolutionary Computation., 19, 78 (1998)
- Khajeh M, Ghaffari Moghaddam M, Shakeri M, The Journal of Supercritical Fluids., 69, 91 (2012)
- Khajeh M, Food Chemistry., 129, 1832 (2011)