298
Views
11
CrossRef citations to date
0
Altmetric
Sorption

Influence of pH on arsenic(III) removal by fly ash

, , , , &
Pages 2612-2619 | Received 22 Jan 2016, Accepted 04 Mar 2016, Published online: 18 May 2016

References

  • Mohan, D.; Pittman 2007) Arsenic removal from water/wastewater using adsorbents – a critical review. Journal of Hazardous Materials, 142: 1
  • Kundu, S.; Kavalakatt, S.S.; Pal, A.; Ghosh, S.K.; Mandal, M.; Pal, T. (2004) Removal of arsenic using hardened paste of Portland cement: Batch adsorption and column study. Water Research, 38: 3780.
  • Tseng, C.H.; Tseng, C.P.; Chiou, H.Y.; Hsueh, Y.M.; Chong, C.K.; Chen, C.J. (2002) Epidemiologic evidence of diabetogenic effect of arsenic. Toxicology Letters, 133: 69.
  • Gupta, V.K.; Ali, I.; Saleh, T.A.; Nayak, A.; Agarwal, S. (2012) Chemical treatment technologies for waste-water recycling-an overview. RSC Advances, 2: 6380.
  • Mittal, A.; Gupta, V.K.; Malviya, A.; Mittal, J. (2008) Process development for the batch and bulk removal and recovery hazardous, water-soluble azo day (Metanil Yellow) by adsorption over waste materials (Bottom Ash and De-Oiled Soya). Journal of Hazardous Materials, 151: 821.
  • Gupta, V.K.; Nayak, A. (2012) Cadmium removal and recovery from aqueous solutions by novel adsorbents prepared from orange peel and Fe2O3 nanoparticles. Chemical Engineering Journal, 180: 81.
  • Gupta, V.K.; Agarwal, S.; Saleh, T.A. (2011) Synthesis and characterization of alumina-coated carbon nanotubes and their application for lead removal. Journal of Hazardous Materials, 185: 17.
  • Mittal, A.; Mittal, J.; Malvija, V.; Gupta, V.K. (2009) Adsorptive removal of hazardous anionic dye “Congo red” from wastewater using waste materials and recovery by desorption. Journal of Colloid and Interface Science, 340: 16.
  • Saleh, T.A.; Gupta, V.K. (2012) Column with CNT/magnesium oxide composite for lead(II) removal from water. Environmental Science and Pollution Research, 19: 1224.
  • Ansari, R.; Sadegh, M. (2007) Application of activated carbon for removal of arsenic ions from aqueous solution. European Journal of Chemistry, 4 (1): 103.
  • Gupta, V.K.; Srivastava, S.K.; Mohan, D.; Sharma, S. (1997) Design parameters for fixed bed reactors of activated carbon developed from fertilizer waste for the removal of some heavy metals. Waste Management, 17 (8): 517.
  • Bailey, S.E.; Olin, T.J.; Bricka, R.M.; Adrian, D.D. (1999) A review of potentially low-cost sorbents for heavy metals. Water Research, 33 (11): 2469.
  • Jain, A.K.; Gupta V.K.; Bhatnagar; Suhas, A. (2003) A comparative study of adsorbents prepared from industrial wastes for removal of dyes. Separation Science and Technology, 38 (2): 463.
  • Mittal, A.; Mittal, J.; Malvija, A.; Gupta, V.K. (2010) Removal and recovery of Chrysoidine Y from aqueous solutions by waste materials. Journal of Colloid and Interface Science, 344: 497.
  • Mittal, A.; Kaur, D.; Malvija, J.; Gupta, V.K. (2009) Adsorption studies on the removal of coloring agent phenol red from wastewater using waste materials as adsorbents. Journal of Colloid and Interface Science, 337: 345.
  • Mittal, A.; Mittal, J.; Malvija, A.; Kaur, D.; Gupta, V.K. (2010) Decoloration treatment of a hazardous triarylmethane dye, Light Green SF (Yellowish) by waste material adsorbents. Journal of Colloid and Interface Science, 342: 518.
  • Altundoğan, H.S.; Altundoğan, S.; Tümen, F.; Bildik M. (2000) Arsenic removal from aqueous solutions by adsorption on red mud. Waste Management, 20: 761.
  • Bertocchi, A.F.; Ghiani, M.; Peretti, R.; Zucca A. (2006) Red mud and fly ash for remediation of mine sites contaminated with As, Cd, Cu, Pb and Zn. Journal of Hazardous Materials, B134: 112.
  • Jovanović, B.M.; Vukašinović-Pešić, V.L.; Veljović, D.N.; Rajaković, L.V. (2011) Arsenic removal from water using low-cost adsorbents – A comparative study. Journal of the Serbian Chemical Society, 76 (10): 1437.
  • Amin, M.N.; Kaneco, S.; Kitagawa, T.; Begum, A.; Katsumata, H.; Suzuki, T.; Ohta, K. (2006) Removal of arsenic in aqueous solutions by adsorption onto waste rice husk. Industrial & Engineering Chemistry Research, 45: 8105.
  • López Leal, M.A.; Cortés Martínez, R.; Cuevas Villanueva, R.A. (2012) Arsenate biosorption by iron-modified pine sawdust in batch systems: Kinetics and equilibrium studies. BioResources, 7: 1389.
  • Polowczyk, I.; Bastrzyk, A.; Koźlecki, T.; Sawiński, W.; Rudnicki, P.; Sokołowski, A.; Sadowski, Z. (2010) Use of fly ash agglomerates for removal of arsenic. Environmental Geochemistry and Health, 32: 361.
  • Kamsonlian, S.; Balomajumeder, C.; Chand, S. (2012) A potential of biosorbent derived from banana peel for remove of As(III) from contaminated water. International Journal of Chemical Sciences and Applications, 3: 269.
  • Ulatowska, J.; Polowczyk, I.; Sawiński, W.; Bastrzyk, A.; Koźlecki, T.; Sadowski, Z. (2014) Use of fl y ash and fl y ash agglomerates for As(III) adsorption from aqueous solution. Polish Journal of Chemical Technology, 16 (1): 21.
  • Cho, H.; Oh, D.; Kim, K. (2005) A study on removal characteristics of heavy metals from aqueous solution by fly ash. Journal of Hazardous Materials, 127 (1–3): 187.
  • Balsamo, M.; Natale, F.; Erto, A.; Lancia, A.; Montagnaro, F.; Santoro, L. (2010) Arsenate removal from synthetic wastewater by adsorption onto fly ash. Desalination, 263: 58.
  • Diamadopoulos, E.; Ioannidis, S.; Sakellaropoulos, G.P. (1993) As(V) removal from aqueous solutions by fly ash. Water Research, 27 (12): 1773.
  • Medina, A.; Gamero, P.; Almanza, J.M.; Vargas, A.; Montoya, A.; Vargas, G.; Izqierdo, M. (2010) Fly ash from a Mexican mineral coal. II. Source of zeolite and its effectiveness in arsenic (V) adsorption. Journal of Hazardous Materials, 181: 91.
  • Polowczyk, I.; Bastrzyk, A.; Sawiński, W.; Koźlecki, T.; Rudnicki, P.; Sadowski, Z. (2010) Sorption properties of fly ash from brown coal burning towards arsenic removal. Technical Transactions: Chemistry, 8: 135.
  • Aguilar-Carrillo, J.; Garrido, F.; Barrios, L.; Garcia-Gonzalez, M.T. (2006) Sorption of As, Cd and Tl as influenced by industrial by-products applied to an acidic soil: Equilibrium and kinetics experiments. Chemosphere, 65: 2377.
  • Gupta, S.K.; Chen, K.Y. (1978) Arsenic removal by adsorption. Journal of the Water Pollution Control Federation, 50: 493.
  • Lecuyer, I.; Bicocchi, S.; Ausset, P.; Leferve, R. (1996) Physico-chemical characterization and leaching of the desulphurization coal fly ash. Waste Management & Research, 14: 15.
  • Ma, W.; Liu, C.; Brown, P.W.; Komarneni, S. (1995) Pore structures of fly ashes activated by Ca(OH)2 and CaSO4·2H2O. Cement and Concrete Research, 25: 417.
  • Davini, P. (1995) Investigation of flue gas desulphurization by fly ash and calcium hydroxide mixtures. Resources, Conservation and Recycling, 15: 193.
  • Lin, R.-B.; Shih, S.-M. (2003) Characterization of Ca(OH)2/fly ash sorbents for flue gas desulfurization. Powder Technology, 131: 212.
  • Sari, A.; Tuzen, M. (2009) Biosorption of As(III) and arsenic(III) removal from aqueous solution by fly ash As(V) from aqueous solution by macrofungus (Inonotus hispdus) biomass: Equilibrium and kinetic studies. Journal of Hazardous Materials, 164: 1372.
  • Kundu, S.; Gupta, A.K. (2007) Adsorption characteristics of As(III) from aqueous solution on iron oxide-coated cement (IOCC). Journal of Hazardous Materials, 142: 97.
  • Öztürk, N.; Kavak, D. (2005) Adsorption of boron from aqueous solutions using fly ash: Batch and column studies. Journal of Hazardous Materials B, 127: 81.
  • Guo, H.; Li, Y.; Zhao, K.; Ren, Y.; Wei, Ch. (2011) Removal of arsenite from water by synthetic siderite: Behaviors and mechanisms. Journal of Hazardous Materials, 186: 1847.
  • Deliyanni, E.A.; Nalbandian, L.; Matis, K.A. (2006) Adsorptive removal of arsenites by a nanocrystalline hybrid surfactant-akaganeite sorbent. Journal of Colloid and Interface Science, 302: 458.
  • Gupta, V.K.; Ali, I. (2004) Removal of lead and chromium from wastewater using bagasse fly ash – A sugar industry waste. Journal of Colloid and Interface Science, 271: 321.
  • Gupta, V.K.; Jain, C.K.; Ali, I.; Sharma, M.; Saini, V.K. (2003) Removal of cadmium and nickel from wastewater using bagasse fly ash-a sugar industry waste. Water Research, 37: 4038.
  • Hall, K.R.; Eagleton, L.C.; Acrivos, A.; Vermeulen, T. (1966) Pore- and solid-diffusion kinetics in fixed-bed adsorption under constant-pattern conditions. Industrial & Engineering Chemistry Fundamentals, 5: 212.
  • Lorenzen, L.; van Deventer, J.S.J.; Landi, W.M. (1995) Factors affecting the mechanism of the adsorption of arsenic species on activated carbon. Minerals Engineering, 8: 557.
  • Lim, J.-W.; Chang, Y.-Y.; Yang, J.-K.; Lee, S.-M. (2009) Adsorption of arsenic on the reused sanding wastes calcinated at different temperatures. Journal of Colloid and Interface Science A, 345: 65.
  • Zhang, S.; Liu, C.; Luan, Z.; Peng, X.; Ren, H.; Wang, J. (2008) Arsenate removal from aqueous solutions using modified red mud. Journal of Hazardous Materials, 152: 486.
  • Kamsonlian, S.; Suresh, S.; Ramanaiah, V.; Majumde, C.B.; Chand, S.; Kumar, A. (2012) Biosorptive behaviour of mano leaf powder and rice husk for arsenic (III) from aqueous solutions. International Journal of Environmental Science and Technology, 9: 565.
  • Ho, Y.S.; Ng, J.C.Y.; McKay, G. (2000) Kinetics of pollutant sorption by biosorbents: Review. Separation and Purification Methods, 29: 189.
  • Phenrat, T; Marhaba, T.F.; Rachakornkij, M. (2005) A SEM and X-ray study for investigation of solidified/stabilized arsenic-iron hydroxide sludge. Journal of Hazardous Materials, B118: 185.
  • Stronach, S.A.; Walker, N.L.; Macphee, D.E.; Glasser, F.P. (1997) Reactions between cement and As(III) oxide: The system CaO-SiO2-As2O3-H2O at 25°C. Waste Management, 17: 9.
  • Coussy, S.; Paktune, D.; Rose, J.; Benzaazoua, M. (2012) Arsenic speciation in cemented paste backfills and synthetic calcium-silicate-hydrates. Minerals Engineering, 39: 51.
  • Sterling, R.O.; Helble, J.J. (2003) Reaction of arsenic vapor species with fly ash compounds kinetics and speciation of the reaction with calcium silicates. Chemosphere, 51: 1111.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.