[1] J. Cao, L. Wei, Q. Huang, L. Wang, S. Han, Reducing degradation of azo dye by zerovalent iron in aqueous solution, Chemosphere 38(3) (1999) 565-571. [2] A. Geethakarthi, B.R. Phanikumar, Adsorption of reactive dyes from aqueous solutions by tannery sludge developed activated carbon:Kinetic and equilibrium studies, Int. J. Environ. Sci. Technol. 8(3) (2011) 561-570. [3] Y. Fu, T. Viraraghavan, Fungal decolorization of dye wastewaters:A review, Bioresour. Technol. 79(2001) 251-262. [4] M.T. Ghaneian, G. Ghanizadeh, M. Gholami, F. Ghaderinasab, Application of eggshell as a natural sorbent for the removal of reactive red 123 dye from synthetic textile wastewater, J. Res. Med. Sci. 11(4) (2010) 25-35(In Persian). [5] N. Supaka, K. Juntongjin, S. Damronglerd, M.L. Delia, P. Strehaiano, Microbial decolorization of reactive azo dyes in a sequential anaerobic-aerobic system, J. Chem. Eng. 99(2004) 169-176. [6] N. Pramanpol, N. Nitayapat, Adsorption of reactive dye by eggshell and its membrane, Kasetsart J. (Nat. Sci.) 40(2006) 192-197. [7] S. Chatterjee, S.R. Lim, S.H. Woo, Removal of reactive black 5 by zero-valent iron modified with various surfactants, J. Chem. Eng. 160(2010) 27-32. [8] M. Solís, A. Solís, H.I. Pérez, N. Manjarrez, M. Flores, Microbial decolouration of azo dyes:A review, Process Biochem. 47(2012) 1723-1748. [9] F. Gholami-Borujeni, A.H. Mahvi, S. Naseri, M.A. Faramarzi, R. Nabizadeh, M. Alimohammadi, Application of immobilized horseradish peroxidase for removal and detoxification of azo dye from aqueous solution, J. Res. Chem. Environ. 15(2011) 217-222. [10] F. Gholami-Borujeni, A.H. Mahvi, S. Nasseri, M.A. Faramarzi, R. Nabizadeh, M. Alimohammadi, Enzymatic treatment and detoxification of acid orange 7 from textile wastewater, Appl. Biochem. Biotechnol. 165(2011) 1274-1284. [11] M.C. Ncibi, B. Mahjoub, M. Seffen, Adsorptive removal of textile reactive dye using Posidonia oceanica (L.) fibrous biomass, Int. J. Environ. Sci. Technol. 4(4) (2007) 433-440. [12] B.C. Oei, S. Ibrahim, S.Wang, H.M. Ang, Surfactantmodified barley straw for removal of acid and reactive dyes from aqueous solution, Bioresour. Technol. 100(2009) 4292-4295. [13] H.D. Choi, M.C. Shin, D.H. Kim, C.S. Jeon, K. Baek, Removal characteristics of reactive black 5 using surfactant-modified activated carbon, Desalination 223(1-3) (2008) 290-298. [14] M. Shirmardi, A. Mesdaghinia, A.H. Mahvi, S. Nasseri, R. Nabizadeh, Kinetics and equilibrium studies on adsorption of acid red 18(azo-dye) using multiwall carbon nanotubes (MWCNTs) from aqueous solution, J. Chem. 9(4) (2012) 2371-2383. [15] T. Madrakian, A. Afkhami, M. Ahmadi, H. Bagheri, Removal of some cationic dyes from aqueous solutions using magnetic-modified multi-walled carbon nanotubes, J. Hazard. Mater. 196(30) (2011) 109-114. [16] R.Q. Long, R.T. Yang, Carbon nanotubes as superior sorbent for dioxin removal, J. Am. Chem. Soc. 123(9) (2001) 2058-2059. [17] S. Pourfadakari, A.H. Mahvi, Kinetics and equilibrium studies for removal of reactive red 198 from aqueous solutions using zero valent iron powder, J. Health Scope 3(2) (2014) 1-8. [18] N. Deng, F. Luo, F. Wu, M. Xiao, X. Wu, Discoloration of aqueous reactive dye solutions in the UV/Fe 0 system, Water Res. 34(2000) 2408-2411. [19] S. Nam, P.G. Tratnyek, Reduction of azo dyeswith zero-valent iron, Water Res. 34(6) (2000) 1837-1845. [20] M. Zarrabi, M. Samarghndi, A. Rahmani, Kinetic study of acid red 18 and acid red 14 removal from aqueous solution using metallic iron, J. Health Hyg. Ardebil Iran. 3(2011) 31-40. [21] L. Clesceri, A. Greenberg, A. Eaton, Standard methods for the examination of water and wastewater, APHA, AWWA, WEF, USA, 201020. [22] C.H. Wu, Adsorption of reactive dye onto carbon nanotubes:equilibrium, kinetics and thermodynamics, J. Hazard. Mater. 144(1-2) (2007) 93-100. [23] H. Zhu, R. Jiang, L. Xiao, G. Zeng, Preparation, characterization, adsorption kinetics and thermodynamics of novel magnetic chitosan enwrapping nanosized γ-Fe2O3 andmulti-walled carbon nanotubes with enhanced adsorption properties for methyl orange, Bioresour. Technol. 101(14) (2010) 5063-5069. [24] K. Barbusiński, J. Majewski, Discoloration of azo dye acid red 18 by Fenton reagent in the presence of iron powder, J. Environ. Stud. Pol. 12(2) (2003) 151-155. [25] F.M. Machado, C.P. Bergmann, T.H. Fernandes, E.C. Lima, B. Royer, T. Calvete, et al., Adsorption of reactive red M-2BE dye from water solutions by multi-walled carbon nanotubes and activated carbon, J. Hazard. Mater. 192(3) (2011) 1122-1131. [26] Y. Yao, H. Bing, X. Feifei, C. Xiaofeng, Equilibrium and kinetic studies of methyl orange adsorption on multiwalled carbon nanotubes, J. Chem. Eng. 170(2011) 82-89. [27] Z. Shahryari, A.S. Goharrizi, M. Azadi, Experimental study ofmethylene blue adsorption from aqueous solutions onto carbon nanotubes, J.Water Res. Environ. Eng. Int. 2(2010) 16-28. [28] J.A. Mielczarski, G.M. Atenas, E. Mielczarski, Role of iron surface oxidation layers in decomposition of azo-dye water pollutants in weak acidic solutions, Appl. Catal. B Environ. 56(4) (2005) 289-303. [29] J.L. Gong, B.Wang, G.M. Zeng, C.P. Yang, C.G. Niu, Q.Y. Niu, et al., Removal of cationic dyes from aqueous solution using magnetic multi-wall carbon nanotube nanocomposite as adsorbent, J. Hazard. Mater. 164(2-3) (2009) 1517-1522. [30] S. Khorramfar, N.Mahmoodi, M. Arami, K. Gharanjig, Dye removal fromcolored textile wastewater using Tamarindus indica Hull:Adsorption isotherm and kinetics study, J. Color. Sci. Technol. 3(2009) 81-88. [31] T.S. Natarajan, K. Natarajan, H.C. Bajaj, R.J. Tayade, Enhanced photocatalytic activity of bismuth-doped TiO2 nanotubes under direct sunlight irradiation for degradation of Rhodamine B dye, J. Nanopart. Res. 15(2013) 1-18. [32] S.T.Wong, Y.P. Tan, A.H. Abdullah, S.T. Ong, Removal of basic blue 3 and reactive orange 16 by adsorption onto quartenized sugar cane bagasse, J. Anal. Sci. Malays. 13(2009) 185-193. [33] N. Dizge, C. Aydiner, E. Demirbas,M. Kobya, S. Kara, Adsorption of reactive dyes from aqueous solutions by fly ash:Kinetic and equilibrium studies, J. Hazard. Mater. 150(3) (2008) 737-746. [34] J. Fan, Y. Guo, J. Wang, M. Fan, Rapid decolorization of azo dye methyl orange in aqueous solution by nanoscale zerovalent iron particles, J. Hazard. Mater. 166(2-3) (2009) 904-910. [35] P. Palanisamy, A. Agalya, P. Sivakumar, Polymer composite-A potential biomaterial for the removal of reactive dye, J. Chem. 9(4) (2012) 1823-1834. [36] N. Thinakaran, P. Baskaralingam, M. Pulikesi, P. Panneerselvam, S. Sivanesan, Removal of acid violet 17 from aqueous solutions by adsorption onto activated carbon prepared from sunflower seed hull, J. Hazard. Mater. 151(2-3) (2008) 316-322. [37] M. Temkin, V. Pyzhev, Kinetics of ammonia synthesis on promoted iron catalysts, Acta Physicochim. URSS 12(1940) 217-229. [38] J.R. Baseri, P. Palanisamy, P. Sivakumar, Adsorption of reactive dye by a novel activated carbon prepared from Thevetia peruviana, J. Chem. Res. 3(2012) 36-41. [39] D. Suteu, C. Zaharia, T. Malutan, Removal of orange 16 reactive dye from aqueous solutions by waste sunflower seed shells, J. Serb. Chem. Soc. 76(4) (2011) 607-624. [40] W. Konicki, I. Pełech, E.Mijowska, I. Jasińska, Adsorption of anionic dye direct red 23 onto magnetic multi-walled carbon nanotubes-Fe3C nanocomposite:kinetics, equilibrium and thermodynamics, Chem. Eng. 210(1) (2012) 87-95. [41] K.S. Lin, H.W. Cheng, W.R. Chen, C.F.Wu, Synthesis, characterization, and adsorption kinetics of titania nanotubes for basic dye wastewater treatment, J. Adsorpt. 16(1) (2010) 47-56. [42] M.A.M. Khraisheh, Y.S. Al-Degs, S.I. Allen, M.N. Ahmad, Elucidation of controlling steps of reactive dye adsorption on activated carbon, J. Ind. Eng. Chem. Res. 41(6) (2002) 1651-1657. [43] M. Kara, H. Yuzer, E. Sabah, M.S. Celik, Adsorption of cobalt from aqueous solutions onto sepiolite, J. Water Res. 37(1) (2003) 224-232. [44] Y.T. Lin, C.H. Weng, F.Y. Chen, Effective removal of AB24 dye by nano/micro-size zero-valent iron, Sep. Purif. Technol. 64(1) (2008) 26-30. |