Magnetic solid phase adsorption, preconcentration and determination of methyl orange in water samples using silica coated magnetic nanoparticles and central composite design

Masoud Shariati‐Rad1, Mohsen Irandoust1, Somayyeh Amri1, Mostafa Feyzi2, Faranak Jafari2
1Department of Analytical Chemistry, Faculty of Chemistry, Razi University, 6714967346, Kermanshah, Iran
2Department of Physical Chemistry, Faculty of Chemistry, Razi University, 6714967346, Kermanshah, Iran

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Malik, R., Ramteke, D.S., Wate, S.R.: Adsorption of malachite green on ground nutshell waste based powdered activated carbon. Waste Manag. 27, 1129–1138 (2007)

Mittal, A., Malviya, A., Kaur, D., Mittal, J., Kurup, L.: Studies on the adsorption kinetics and isotherms for the removal and recovery of methyl orange from wastewaters using waste materials. J. Hazard. Mater. 14, 229–240 (2007)

Juang, R.S., Wu, F.C., Tseng, R.L.: Characterization and use of activated carbons prepared from bagasse for liquid-phase adsorption. Colloids Surf. A 201, 191–199 (2002)

Teng, M.-Y., Lin, S.-H.: Removal of methyl orange dye from water onto raw and acid-activated montmorillonite in fixed beds. Desalination 201, 71–81 (2006)

Chena, D., Chen, J., Luan, X., Ji, H., Xia, Z.: Characterization of anionic-cationic surfactants modified montmorillonite and its application for removal of methyl orange. Chem. Eng. J. 171, 1150–1158 (2011)

Liu, B., Wang, X., Yang, B., Sun, R.: Rapid modification of montmorillonite with novel cationic Gemini surfactants and its adsorption for methyl orange. Mater. Chem. Phys. 130, 1220–1226 (2011)

Kan, T., Jiang, X., Zhou, L., Yang, M., Duan, M., Liu, P., Jiang, X.: Removal of methyl orange from aqueous solutions using a bentonite modified with a new gemini surfactant. Appl. Clay Sci. 54, 184–187 (2011)

Leodopoulos, C., Doulia, D., Gimouhopoulos, K., Triantis, T.M.: Single and simultaneous adsorption of methyl orange and humic acid onto bentonite. Appl. Clay Sci. 70, 84–90 (2012)

Tang, J., Yang, Z.F., Yi, Y.J.: Enhanced adsorption of methyl orange by vermiculite modified by cetyltrimethylammonium bromide (CTMAB). Procedia Environ. Sci. 13, 2179–2187 (2012)

Zhu, H.Y., Jiang, R., Xiao, L., Zeng, G.M.: Preparation, characterization, adsorption kinetics and thermodynamics of novel magnetic chitosan enwrapping nanosized γ-Fe2O3 and multi-walled carbon nanotubes with enhanced adsorption properties for methyl orange. Bioresour. Technol. 101, 5063–5069 (2010)

Rakhshaee, R., Giahi, M., Pourahmad, A.: Removal of methyl orange from aqueous solution by Azolla filicoloides: synthesis of Fe3O4 nano-particles and its surface modification by the extracted pectin of Azolla. Chin. Chem. Lett. 22, 501–504 (2011)

Deligeer, W., Gao, Y.W., Asuha, S.: Adsorption of methyl orange on mesoporous-Fe2O3/SiO2 nanocomposites. Appl. Surf. Sci. 257, 3524–3528 (2011)

Chen, H., Zhao, J., Wu, J., Dai, G.: Isotherm, thermodynamic, kinetics and adsorption mechanism studies of methyl orange by surfactant modified silkworm exuviae. J. Hazard. Mater. 192, 246–254 (2011)

Elizalde-Gonzalez, M.P., Mattusch, J., Wennrich, R.: Chemically modified maize cobs waste with enhanced adsorption properties upon methyl orange and arsenic. Bioresour. Technol. 99, 5134–5139 (2008)

Li, Y., Sui, K., Liu, R., Zhao, X., Zhang, Y., Liang, H., Xia, Y.: Removal of methyl orange from aqueous solution by calcium alginate/multi-walled carbon nanotubes composite fibers. Energy Procedia 16, 863–868 (2012)

Mittal, A., Malviya, A., Kaur, D., Mittal, J., Kurup, L.: Studies on the adsorption kinetics and isotherms for the removal and recovery of methyl orange from wastewaters using waste materials. J. Hazard. Mater. 148, 229–240 (2007)

Jalil, A.A., Triwahyono, S., Adam, S.H., Rahim, N.D., Aziz, M.A.A., Hanis, N., Hairom, H., Aini, N., Razali, M., Abidin, M.A.Z., Mohamadiah, M.K.A.: Adsorption of methyl orange from aqueous solution onto calcined Lapindo volcanic mud. J. Hazard. Mater. 181, 755–762 (2010)

Haque, E., Lee, J.E., Jang, I.T., Hwang, Y.K., Chang, J.-S., Jegal, J., Jhung, S.H.: Adsorptive removal of methyl orange from aqueous solution with metal-organic frameworks, porous chromium-benzenedicarboxylates. J. Hazard. Mater. 181, 535–542 (2010)

Haque, E., Jun, J.W., Jhung, S.H.: Adsorptive removal of methyl orange and methylene blue from aqueous solution with a metal-organic framework material, iron terephthalate (MOF-235). J. Hazard. Mater. 185, 507–511 (2011)

Afkhami, A., Saber-Tehrani, M., Bagheri, H.: Modified maghemite nanoparticles as an efficient adsorbent for removing some cationic dyes from aqueous solution. Desalination 263, 240–248 (2010)

Ngomsik, A.F., Bee, A., Draye, M., Cote, G., Cabuil, V.: Magnetic nano- and microparticles for metal removal and environmental applications: a review. C. R. Chim. 8, 963–970 (2005)

Afkhami, A., Norooz-Asl, R.: Removal, preconcentration and determination of Mo (VI) from water and wastewater samples using maghemite nanoparticles. Colloids Surf. A 346, 52–57 (2009)

Qadri, S., Ganoe, A., Haik, Y.: Removal and recovery of acridine orange from solutions by use of magnetic nanoparticle. J. Hazard. Mater. 169, 318–323 (2009)

Santhi, T., Manonmani, S., Smith, T.: Removal of methyl red from aqueous solution by activated carbon prepared from the Annona squmosa seed by adsorption. Chem. Eng. Res. Bull. 14, 11–18 (2010)

Chin, A.B., Yaacob, I.I.: Synthesis and characterization of magnetic iron oxide nanoparticles via w/o microemulsion and Massart’s procedure. J. Mater. Process. Technol. 191, 235–237 (2007)

Albornoz, C., Jacobo, S.E.: Preparation of a biocompatible magnetic film from an aqueous ferrofluid. J. Magn. Magn. Mater. 305, 12–15 (2006)

Kim, E.H., Lee, H.S., Kwak, B.K., Kim, B.K.: Synthesis of ferrofluid with magnetic nanoparticles by sonochemical method for MRI contrast agent. J. Magn. Magn. Mater. 289, 328–330 (2005)

Kimata, M., Nakagawa, D., Hasegawa, M.: Preparation of monodisperse magnetic particles by hydrolysis of iron alkoxide. Powder Technol. 132, 112–118 (2003)

Alvarez, G.S., Muhammed, M., Zagorodni, A.A.: Novel flow injection synthesis of iron oxide nanoparticles with narrow size distribution. Chem. Eng. Sci. 61, 4625–4633 (2006)

Basak, S., Chen, D.-R., Biswas, P.: Electrospray of ionic precursor solutions to synthesize iron oxide nanoparticles: Modified scaling law. Chem. Eng. Sci. 62, 1263–1268 (2007)

Feyzi, M., Nadri, S., Joshaghani, M.: Catalytic performance of Fe–Mn/SiO2 nanocatalyst for CO hydrogenation. J. Chem. 2013, 1–10 (2013)

Alizadeh, A., Khodaei, M.M., Beygzadeh, M., Kordestani, D., Feyzi, M.: Biguanide-functionalized Fe3O4/SiO2 magnetic nanoparticles: an efficient heterogeneous organosuperbase catalyst for various organic transformations in aqueous media. Bull. Korean Chem. Soc. 33, 2546–2552 (2012)

Simkiene, I., Treideris, M., Niaura, G., Szymczak, R., Aleshkevych, P., Reza, A., Salynas, I.K., Bukauskas, V., Babonas, G.J.: Multifunctional iron and iron oxide nanoparticles in silica. Mater. Chem. Phys. 130, 1026–1032 (2011)

Klug, H.P., Alexander, L.E.: X-ray Diffraction Procedures for Polycrystalline and Amorphous Materials, 2nd edn. Wiley, New York (1974)

Predoi, D., Crisan, O., Jitianu, A., Valsangiacom, M.C., Raileanu, M., Crisan, M., Zaharescu, M.: Iron oxide in a silica matrix prepared by the sol–gel method. Thin Solid Films 515, 6319–6323 (2007)

Bruni, S., Cariati, F., Casu, M., Lai, A., Musinu, A., Piccaluga, G., Solinas, S.: IR and NMR study of nanoparticle-support interactions in a Fe2O3–SiO2 nanocomposite prepared by a sol–gel method. Nanostructured Mater. 11, 573–586 (1999)

Bordiga, S., Buzzoni, R., Geobaldo, F., Lamberti, C., Giamello, E., Zecchina, A., Leofanti, G., Petrini, G., Tozzola, G., Vlaic, G.: Structure and reactivity of framework and extraframework iron in Fe–silicalite as investigated by spectroscopic and physicochemical methods. J. Catal. 158, 486–501 (1996)

Fabrizioli, P., Bürgi, T., Burgener, M., van Doorslaerb, S., Baiker, A.: Synthesis, structural and chemical properties of iron oxide–silica aerogels. J. Mater. Chem. 12, 619–630 (2002)

Qing, M., Yang, Y., Wu, B.S., Xu, J., Zhang, C.H., Gao, P., Li, Y.W.: Modification of Fe–SiO2 interaction with zirconia for iron-based Fischer–Tropsch catalysts. J. Catal. 279, 111–122 (2011)

Gunaraj, V., Murugan, N.: Application of response surface methodology for predicting weld bead quality in submerged arc welding of pipes. J. Mater. Process. Technol. 88, 266–275 (1999)

Box, G.E.P., Hunter, J.S.: Multi-factor experimental designs for exploring response surfaces. Ann. Math. Stat. 28, 195–241 (1957)

Brereton, R.G.: Chemometrics: Data Analysis for the Laboratory and Chemical Plant. Wiley, New York, pp. 76–84 (2003)

Afkhami, A., Moosavi, R.: Adsorptive removal of Cango red, a carcinogenic textile dye, from aqueous solutions by maghemite nanoparticles. J. Hazard. Mater. 174, 398–403 (2010)

Chien, S.H., Clayton, W.R.: Application of Elovich equation to the kinetics of phosphate release and sorption on soils. Soil Sci. Soc. Am. J. 44, 265–268 (1980)

Shariati, S., Faraji, M., Yamini, Y., Rajabi, A.A.: Fe3O4 magnetic nanoparticles modified with sodium dodecyl sulfate for removal of safranin O dye from aqueous solutions. Desalination 270, 160–165 (2011)

Langmuir, I.: The adsorption of gases on plane surfaces of glass, mica and platinum. J. Am. Chem. Soc. 40, 1361–1403 (1918)

Chatterjee, S., Lee, D.S., Lee, M.W., Woo, S.H.: Enhanced adsorption of Congo red from aqueous solutions by chitosan hydrogel beads impregnated with cetyl trimethyl ammonium bromide. Bioresour. Technol. 100, 2803–2809 (2009)

Belessi, V., Romanos, G., Boukos, N., Lambropoulou, D., Trapalis, C.: Removal of reactive red 195 from aqueous solutions by adsorption on the surface of TiO2 nanoparticles. J. Hazard. Mater. 170, 836–844 (2009)

Miller, JN, Miller, JC (Eds.): Statistics and Chemometrics for Analytical Chemistry. Fifth ed., Pearson Education Limited, London, p. 114 (2005)