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Articles

Simultaneous removal of As(III) and As(V) from wastewater by co-precipitation using an experimental design approach

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Pages 16571-16582 | Received 05 Dec 2014, Accepted 29 Jul 2015, Published online: 17 Aug 2015

References

  • S. Winski, D. Carter, Arsenate toxicity in human erythrocytes: Characterization of morphologic changes and determination of the mechanism of damage, J. Toxicol. Environ. Health A 53 (1998) 345–355.
  • P.L. Smedley, D.G. Kinniburgh, A review of the source, behaviour and distribution of arsenic in natural waters, Appl. Geochem. 17 (2002) 517–568.10.1016/S0883-2927(02)00018-5
  • A. Basu, D. Saha, R. Saha, T. Ghosh, B. Saha, A review on sources, toxicity and remediation technologies for removing arsenic from drinking water, Res. Chem. Intermed. 40 (2014) 447–485.10.1007/s11164-012-1000-4
  • S.R. Wickramasinghe, B. Han, J. Zimbron, Z. Shen, M.N. Karim, Arsenic removal by coagulation and filtration: Comparison of groundwaters from the United States and Bangladesh, Desalination 169 (2004) 231–244.10.1016/S0011-9164(04)00530-2
  • R. Nickson, J. McArthur, W. Burgess, K. Matin Ahmed, P. Ravenscroft, M. Rahman, Arsenic poisoning of Bangladesh groundwater, Nature 395 (1998) 338.10.1038/26387
  • X. Meng, G.P. Korfiatis, C. Christodoulatos, S. Bang, Treatment of arsenic in Bangladesh well water using a household co-precipitation and filtration system, Water Res. 35 (2001) 2805–2810.10.1016/S0043-1354(01)00007-0
  • Y. Deng, Y. Wang, T. Ma, Y. Gan, Speciation and enrichment of arsenic in strongly reducing shallow aquifers at western Hetao Plain, northern China, Environ. Geol. 56 (2009) 1467–1477.10.1007/s00254-008-1243-y
  • S.J. Appleyard, J. Angeloni, R. Watkins, Arsenic-rich groundwater in an urban area experiencing drought and increasing population density, Perth, Australia, Appl. Geochem. 21 (2006) 83–97.10.1016/j.apgeochem.2005.09.008
  • D.L. Alonso, S. Latorre, E. Castillo, P.F.B. Brandão, Environmental occurrence of arsenic in Colombia: A review, Environ. Pollut. 186 (2014) 272–281.10.1016/j.envpol.2013.12.009
  • B.K. Mandal, K.T. Suzuki, Arsenic round the world: A review, Talanta 58 (2002) 201–235.10.1016/S0039-9140(02)00268-0
  • J. Qiao, Z. Jiang, B. Sun, Y. Sun, Q. Wang, X. Guan, Arsenate and arsenite removal by FeCl3: Effects of pH, As/Fe ratio, initial As concentration and co-existing solutes, Sep. Purif. Technol. 92 (2012) 106–114.10.1016/j.seppur.2012.03.023
  • M. Bilici Baskan, A. Pala, Determination of arsenic removal efficiency by ferric ion using response surface methodology, J. Hazard. Mater. 166 (2009) 796–801.
  • M. Bilici Baskan, A. Pala, A statistical experiment design approach for arsenic removal by coagulation process using aluminum sulfate, Desalination 254 (2010) 42–48.
  • J.G. Hering, P.Y. Chen, J.A. Wilkie, M. Elimelech, Arsenic removal from drinking water during coagulation, J. Environ. Eng. 123 (1997) 800–807.10.1061/(ASCE)0733-9372(1997)123:8(800)
  • M. Gallegos-Garcia, K. Ramírez-Muñiz, S. Song, Arsenic removal from water by adsorption using iron oxide minerals as adsorbents: A Review, Miner. Process. Extr. Metall. Rev. 33 (2012) 301–315.10.1080/08827508.2011.584219
  • V.K. Gupta, V.K. Saini, N. Jain, Adsorption of As(III) from aqueous solutions by iron oxide-coated sand, J. Colloid Interface Sci. 288 (2005) 55–60.10.1016/j.jcis.2005.02.054
  • A.V. Vitela-Rodriguez, J.R. Rangel-Mendez, Arsenic removal by modified activated carbons with iron hydro(oxide) nanoparticles, J. Environ. Manage. 114 (2013) 225–231.10.1016/j.jenvman.2012.10.004
  • J.C. Hsu, C.J. Lin, C.H. Liao, S.T. Chen, Removal of As(V) and As(III) by reclaimed iron-oxide coated sands, J. Hazard. Mater. 153 (2008) 817–826.10.1016/j.jhazmat.2007.09.031
  • B. Han, T. Runnells, J. Zimbron, R. Wickramasinghe, Arsenic removal from drinking water by flocculation and microfiltration, Desalination 145 (2002) 293–298.10.1016/S0011-9164(02)00425-3
  • A. Oehmen, R. Valerio, J. Llanos, J. Fradinho, S. Serra, M.A.M. Reis, J.G. Crespo, S. Velizarov, Arsenic removal from drinking water through a hybrid ion exchange membrane—Coagulation process, Sep. Purif. Technol. 83 (2011) 137–143.10.1016/j.seppur.2011.09.027
  • B. Pakzadeh, J.R. Batista, Surface complexation modeling of the removal of arsenic from ion-exchange waste brines with ferric chloride, J. Hazard. Mater. 188 (2011) 399–407.10.1016/j.jhazmat.2011.01.117
  • B. An, Q. Liang, D. Zhao, Removal of arsenic(V) from spent ion exchange brine using a new class of starch-bridged magnetite nanoparticles, Water Res. 45 (2011) 1961–1972.10.1016/j.watres.2011.01.004
  • C.K. Jain, R.D. Singh, Technological options for the removal of arsenic with special reference to South East Asia, J. Environ. Manage. 107 (2012) 1–18.10.1016/j.jenvman.2012.04.016
  • X. Guan, J. Ma, H. Dong, L. Jiang, Removal of arsenic from water: Effect of calcium ions on As(III) removal in the KMnO4–Fe(II) process, Water Res. 43 (2009) 5119–5128.10.1016/j.watres.2008.12.054
  • T. Nishimura, Y. Umetsu, Oxidative precipitation of arsenic(III) with manganese(II) and iron(II) in dilute acidic solution by ozone, Hydrometallurgy 62 (2001) 83–92.10.1016/S0304-386X(01)00188-8
  • S. Sorlini, F. Gialdini, Conventional oxidation treatments for the removal of arsenic with chlorine dioxide, hypochlorite, potassium permanganate and monochloramine, Water Res. 44 (2010) 5653–5659.10.1016/j.watres.2010.06.032
  • R.G. Brereton, Chemometrics, Wiley, Chichester, UK, 2003.10.1002/0470863242
  • S. Demim, N. Drouiche, A. Aouabed, T. Benayad, O. Dendene-Badache, S. Semsari, Cadmium and nickel: Assessment of the physiological effects and heavy metal removal using a response surface approach by L. gibba, Ecol. Eng. 61 (2013) 426–435.10.1016/j.ecoleng.2013.10.016
  • S. Demim, N. Drouiche, A. Aouabed, T. Benayad, M. Couderchet, S. Semsari, Study of heavy metal removal from heavy metal mixture using the CCD method, J. Ind. Eng. Chem. 20 (2014) 512–520.10.1016/j.jiec.2013.05.010
  • N. Jaafarzadeh, H. Amiri, M. Ahmadi, Factorial experimental design application in modification of volcanic ash as a natural adsorbent with Fenton process for arsenic removal, Environ. Technol. 33 (2012) 159–165.10.1080/09593330.2011.554887
  • M.H. Khan, M. Tariq, F. Bashir, T. Shafiq, R.A. Khan, J. Jung, Arsenic removal from drinking water with conventional and modified adsorbents: The factorial design of experiments, Desalin. Water Treat. 51 (2013) 7304–7310.10.1080/19443994.2013.797458
  • P.J. Gemperline, practical Guide to Chemometrics, seventh ed., Taylor & Francis Group, Boca Raton, 2006.10.1201/9781420018301
  • R.G. Brereton, Applied Chemometrics for Scientists, Wiley, Chichester, UK, 2007.10.1002/9780470057780
  • J.N. Miller, J.C. Miller, Statistics and Chemometrics for Analytical Chemistry, fourth ed., Prentice Hall, Harlow, England, 2000.
  • S. Bajpai, S.K. Gupta, A. Dey, M.K. Jha, V. Bajpai, S. Joshi, A. Gupta, Application of central composite design approach for removal of chromium(VI) from aqueous solution using weakly anionic resin: Modeling, optimization, and study of interactive variables, J. Hazard. Mater. 227–228 (2012) 436–444.10.1016/j.jhazmat.2012.05.016
  • International Standards Organization, Water quality—Determination of selected elements by inductively coupled plasma optical emission spectrometry (ICP-OES), ISO 11885, 2007.
  • B.A. Manning, S.E. Fendorf, S. Goldberg, Surface structures and stability of arsenic(III) on goethite: Spectroscopic evidence for inner-sphere complexes, Environ. Sci. Technol. 32 (1998) 2383–2388.10.1021/es9802201
  • W. Driehaus, M. Jekel, U. Hildebrand, Granular ferric hydroxide—A new adsorbent for the removal of arsenic from natural water, J. Water Supply Res. T 47 (1998) 30–35.
  • X. Meng, S. Bang, G.P. Korfiatis, Effects of silicate, sulfate, and carbonate on arsenic removal by ferric chloride, Water Res. 34 (2000) 1255–1261.10.1016/S0043-1354(99)00272-9
  • R.G. Brereton, Chemometrics for Pattern Recognition, Wiley, Chichester, UK, 2009.10.1002/9780470746462
  • S.H. Hasan, D. Ranjan, M. Talat, “Rice Polish” for the removal of arsenic from aqueous solution: Optimization of process variables, Ind. Gen. Chem. Res. 48 (2009) 4194–4201.10.1021/ie801822d
  • P. Song, Z. Yang, H. Xu, J. Huang, X. Yang, F. Yue, L. Wang, Arsenic removal from contaminated drinking water by electrocoagulation using hybrid Fe–Al electrodes: Response surface methodology and mechanism study, Desalin. Water Treat., doi: 10.1080/19443994.2014.992973.

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