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Articles

Experimental design and response surface modeling for optimization of fluoroquinolone removal from aqueous solution by NaOH-modified rice husk

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Pages 16456-16465 | Received 14 Nov 2014, Accepted 01 Aug 2015, Published online: 24 Aug 2015

References

  • L. Fink, I. Dror, B. Berkowitz, Enrofloxacin oxidative degradation facilitated by metal oxide nanoparticles, Chemosphere 86 (2012) 144–149.10.1016/j.chemosphere.2011.10.002
  • H.-T. Lai, J.-J. Lin, Degradation of oxolinic acid and flumequine in aquaculture pond waters and sediments, Chemosphere 75 (2009) 462–468.10.1016/j.chemosphere.2008.12.060
  • K. Mitani, H. Kataoka, Determination of fluoroquinolones in environmental waters by in-tube solid-phase microextraction coupled with liquid chromatography–tandem mass spectrometry, Anal. Chim. Acta 562 (2006) 16–22.10.1016/j.aca.2006.01.053
  • A. Jia, Y. Wan, Y. Xiao, J. Hu, Occurrence and fate of quinolone and fluoroquinolone antibiotics in a municipal sewage treatment plant, Water Res. 46 (2012) 387–394.10.1016/j.watres.2011.10.055
  • E. Guinea, J.A. Garrido, R.M. Rodríguez, P.-L. Cabot, C. Arias, F. Centellas, E. Brillas, Degradation of the fluoroquinolone enrofloxacin by electrochemical advanced oxidation processes based on hydrogen peroxide electrogeneration, Electrochim. Acta 55 (2010) 2101–2115.10.1016/j.electacta.2009.11.040
  • F. Ma, G. Yuan, L. Meng, Y. Oda, J. Hu, Contributions of flumequine and nitroarenes to the genotoxicity of river and ground waters, Chemosphere 88 (2012) 476–483.10.1016/j.chemosphere.2012.02.080
  • C. Rodrigues-Silva, M.G. Maniero, S. Rath, J.R. Guimarães, Degradation of flumequine by photocatalysis and evaluation of antimicrobial activity, Chem. Eng. J. 224 (2013) 46–52.10.1016/j.cej.2012.11.002
  • M. Andrieu, A. Rico, T.M. Phu, D.T.T. Huong, N.T. Phuong, P.J. Van den Brink, Ecological risk assessment of the antibiotic enrofloxacin applied to Pangasius catfish farms in the Mekong Delta, Vietnam, Chemosphere 119 (2015) 407–414.10.1016/j.chemosphere.2014.06.062
  • H.M. Ötker, I. Akmehmet-Balcıoğlu, Adsorption and degradation of enrofloxacin, a veterinary antibiotic on natural zeolite, J. Hazard. Mater. 122 (2005) 251–258.
  • W. Yan, J. Zhang, C. Jing, Adsorption of Enrofloxacin on montmorillonite: Two-dimensional correlation ATR/FTIR spectroscopy study, J. Colloid Interface Sci. 390 (2013) 196–203.10.1016/j.jcis.2012.09.039
  • E. Guinea, E. Brillas, F. Centellas, P. Cañizares, M.A. Rodrigo, C. Sáez, Oxidation of enrofloxacin with conductive-diamond electrochemical oxidation, ozonation and Fenton oxidation. A comparison, Water Res. 43 (2009) 2131–2138.10.1016/j.watres.2009.02.025
  • Y. Li, F. Zhang, X. Liang, A. Yediler, Chemical and toxicological evaluation of an emerging pollutant (enrofloxacin) by catalytic wet air oxidation and ozonation in aqueous solution, Chemosphere 90 (2013) 284–291.10.1016/j.chemosphere.2012.06.068
  • D. Dolar, K. Košutić, M. Periša, S. Babić, Photolysis of enrofloxacin and removal of its photodegradation products from water by reverse osmosis and nanofiltration membranes, Sep. Purif. Technol. 115 (2013) 1–8.10.1016/j.seppur.2013.04.042
  • D. Dolar, M. Periša, K. Košutić, S. Babić, NF/RO removal of enrofloxacin and its photodegradation products from water, Desalin. Water Treat. 51 (2013) 469–475.10.1080/19443994.2012.694237
  • P. Wang, Y.-L. He, C.-H. Huang, Oxidation of fluoroquinolone antibiotics and structurally related amines by chlorine dioxide: Reaction kinetics, product and pathway evaluation, Water Res. 44 (2010) 5989–5998.10.1016/j.watres.2010.07.053
  • A. Maleki, A.H. Mahvi, R. Ebrahimi, Y. Zandsalimi, Study of photochemical and sonochemical processes efficiency for degradation of dyes in aqueous solution, Korean J. Chem. Eng. 27 (2010) 1805–1810.10.1007/s11814-010-0261-0
  • F. Gholami-Borujeni, A.H. Mahvi, S. Nasseri, M.A. Faramarzi, R. Nabizadeh, M. Alimohammadi, Application of immobilized horseradish peroxidase for removal and detoxification of azo dye from aqueous solution, Res. J. Chem. Environ. 15 (2011) 217–222.
  • 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) 1274–1284.10.1007/s12010-011-9345-5
  • S.D. Ashrafi, S. Rezaei, H. Forootanfar, A.H. Mahvi, M.A. Faramarzi, The enzymatic decolorization and detoxification of synthetic dyes by the laccase from a soil-isolated ascomycete, Paraconiothyrium variabile, Int. Biodeterior. Biodegrad. 85 (2013) 173–181.10.1016/j.ibiod.2013.07.006
  • S.D. Ashrafi, S. Nasseri, M. Alimohammadi, A.H. Mahvi, M.A. Faramarzi, Optimization of the enzymatic elimination of flumequine by laccase-mediated system using response surface methodology, Desalin. Water Treat. (2015) 1–10, doi: 10.1080/19443994.2015.1063462.
  • H. Daraei, A. Mittal, J. Mittal, H. Kamali, Optimization of Cr(VI) removal onto biosorbent eggshell membrane: Experimental & theoretical approaches, Desalin. Water Treat. 52 (2013) 1307–1315.
  • A.H. Mahvi, R. Nabizadeh, F. Gholami, A. Khairi, Adsorption of chromium from wastewater by Platanus orientalis leaves, J. Environ. Health Sci. Eng. 4 (2007) 191–196.
  • A. Maleki, A.H. Mahvi, M.A. Zazouli, H. Izanloo, A.H. Barati, Aqueous cadmium removal by adsorption on barley hull and barley hull ash, Asian J. Chem. 23 (2011) 1373–1376.
  • A.H. Mahvi, F. Gholami, S. Nazmara, Cadmium biosorption from wastewater by Ulmus leaves and their ash, Eur. J. Sci. Res. 23 (2008) 197–203.
  • A. Mittal, L. Kurup, Column operations for the removal and recovery of a hazardous dye ‘Acid Red—27’ from aqueous solutions, using waste materials—Bottom Ash and De-Oiled Soya, Ecol. Environ. Conserv. Pap. 12 (2006) 181–186.
  • A. Mittal, V. Thakur, J. Mittal, H. Vardhan, Process development for the removal of hazardous anionic azo dye Congo red from wastewater by using hen feather as potential adsorbent, Desalin. Water Treat. 52 (2013) 227–237.
  • J. Mittal, V. Thakur, A. Mittal, Batch removal of hazardous azo dye Bismark Brown R using waste material hen feather, Ecol. Eng. 60 (2013) 249–253.10.1016/j.ecoleng.2013.07.025
  • A. Jafari, A.H. Mahvi, G. Hatam, R. Rezaei, S.D. Ashrafi, M. Hoseini, Experimental design and response-surface modeling for optimization of fluoride removal from water by Moringa Olieifera seed extract, Fluoride 45 (2012) 169–170.
  • M. Hoseini, A.H. Mahvi, Y. Kamyar, J. Jaafari, G.H. Safari, H. Kamani, A. Jafari, S.D. Ashrafi, Removal of fluoride from aqueous solution by biosorption onto sargassum biomass, Fluoride 45 (2012) 168–169.
  • H. Daraei, A. Mittal, M. Noorisepehr, J. Mittal, Separation of chromium from water samples using eggshell powder as a low-cost sorbent: Kinetic and thermodynamic studies, Desalin. Water Treat. 53(1) (2015) 214–220, doi: 10.1080/19443994.2013.837011.
  • J. Mittal, D. Jhare, H. Vardhan, A. Mittal, Utilization of bottom ash as a low-cost sorbent for the removal and recovery of a toxic halogen containing dye eosin yellow, Desalin. Water Treat. 52 (2014) 4508–4519.10.1080/19443994.2013.803265
  • A.H. Mahvi, Application of agricultural fibers in pollution removal from aqueous solution, Int. J. Environ. Sci. Technol. 5 (2008) 275–285.10.1007/BF03326022
  • P. Sharma, R. Kaur, C. Baskar, W.-J. Chung, Removal of methylene blue from aqueous waste using rice husk and rice husk ash, Desalination 259 (2010) 249–257.10.1016/j.desal.2010.03.044
  • U. Kumar, M. Bandyopadhyay, Sorption of cadmium from aqueous solution using pretreated rice husk, Bioresour. Technol. 97 (2006) 104–109.10.1016/j.biortech.2005.02.027
  • S. Chakraborty, S. Chowdhury, P. Das Saha, Adsorption of Crystal Violet from aqueous solution onto NaOH-modified rice husk, Carbohydr. Polym. 86 (2011) 1533–1541.10.1016/j.carbpol.2011.06.058
  • S.D. Ashrafi, H. Kamani, A.H. Mahvi, The optimization study of direct red 81 and Methylene blue adsorption on NaOH-modified rice husk, Desalin. Water Treat. (2014) 1–9, doi: 10.1080/19443994.2014.979329.10.1080/19443994.2014.979329
  • S.D. Ashrafi, H. Kamani, H. Soheil Arezomand, N. Yousefi, A.H. Mahvi, Optimization and modeling of process variables for adsorption of Basic Blue 41 on NaOH-modified rice husk using response surface methodology, Desalin. Water Treat. (2015) 1–9, doi: 10.1080/19443994.2015.1060903.
  • A. Imyim, E. Prapalimrungsi, Humic acids removal from water by aminopropyl functionalized rice husk ash, J. Hazard. Mater. 184 (2010) 775–781.10.1016/j.jhazmat.2010.08.108
  • S. Kumagai, Y. Shimizu, Y. Toida, Y. Enda, Removal of dibenzothiophenes in kerosene by adsorption on rice husk activated carbon, Fuel 88 (2009) 1975–1982.10.1016/j.fuel.2009.03.016
  • K.-S. Chou, J.-C. Tsai, C.-T. Lo, The adsorption of Congo red and vacuum pump oil by rice hull ash, Bioresour. Technol. 78 (2001) 217–219.10.1016/S0960-8524(00)00116-4
  • Q. Feng, Q. Lin, F. Gong, S. Sugita, M. Shoya, Adsorption of lead and mercury by rice husk ash, J. Colloid Interf. Sci. 278 (2004) 1–8.10.1016/j.jcis.2004.05.030
  • V.C. Srivastava, I.D. Mall, I.M. Mishra, Characterization of mesoporous rice husk ash (RHA) and adsorption kinetics of metal ions from aqueous solution onto RHA, J. Hazard. Mater. 134 (2006) 257–267.10.1016/j.jhazmat.2005.11.052
  • S. Chowdhury, R. Mishra, P. Saha, P. Kushwaha, Adsorption thermodynamics, kinetics and isosteric heat of adsorption of malachite green onto chemically modified rice husk, Desalination 265 (2011) 159–168.10.1016/j.desal.2010.07.047
  • J.X. Zhang, Q.X. Zhou, W. Li, Adsorption of enrofloxacin from aqueous solution by bentonite, Clay Miner. 48 (2013) 627–637.10.1180/claymin.2013.048.4.16
  • D.H. Lataye, I.M. Mishra, I.D. Mall, Adsorption of α-picoline onto rice husk ash and granular activated carbon from aqueous solution: Equilibrium and thermodynamic study, Chem. Eng. J. 147 (2009) 139–149.10.1016/j.cej.2008.06.027
  • D. Kalderis, D. Koutoulakis, P. Paraskeva, E. Diamadopoulos, E. Otal, J.n.O.d. Valle, C. Fernández-Pereira, Adsorption of polluting substances on activated carbons prepared from rice husk and sugarcane bagasse, Chem. Eng. J. 144 (2008) 42–50.10.1016/j.cej.2008.01.007
  • Q. Feng, Q. Lin, F. Gong, S. Sugita, M. Shoya, Adsorption of lead and mercury by rice husk ash, J. Colloid Interface Sci. 278 (2004) 1–8.10.1016/j.jcis.2004.05.030
  • K.-S. Chou, J.-C. Tsai, C.-T. Lo, The adsorption of Congo red and vacuum pump oil by rice hull ash, Bioresour. Technol. 78 (2001) 217–219.10.1016/S0960-8524(00)00116-4
  • K.K. Wong, C.K. Lee, K.S. Low, M.J. Haron, Removal of Cu and Pb from electroplating wastewater using tartaric acid modified rice husk, Process Biochem. 39 (2003) 437–445.10.1016/S0032-9592(03)00094-3
  • E.I. El-Shafey, Removal of Zn(II) and Hg(II) from aqueous solution on a carbonaceous sorbent chemically prepared from rice husk, J. Hazard. Mater. 175 (2010) 319–327.10.1016/j.jhazmat.2009.10.006
  • E.I. El-Shafey, Sorption of Cd(II) and Se(IV) from aqueous solution using modified rice husk, J. Hazard. Mater. 147 (2007) 546–555.10.1016/j.jhazmat.2007.01.051
  • M.I. Choudhary, M.Y. Mohammad, S.G. Musharraf, M. Parvez, A. Al-Aboudi, R. Atta ur, New oxandrolone derivatives by biotransformation using Rhizopus stolonifer, Steroids 74 (2009) 1040–1044.10.1016/j.steroids.2009.08.003

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