66
Views
7
CrossRef citations to date
0
Altmetric
Articles

Removal of oil from simulated oilfield wastewater using modified coal fly ashes

, &
Pages 9644-9650 | Received 17 Aug 2014, Accepted 15 Mar 2015, Published online: 07 Apr 2015

References

  • D. Feng, L. Liu, P. Wang, H. Zhang, X. Xie, The experimental study of natural sedimentation in heavy oil, Adv. Mater. Res. 413 (2011) 60–64.10.4028/www.scientific.net/AMR.413
  • R. Moosai, R.A. Dawe, Gas attachment of oil droplets for gas flotation for oily wastewater cleanup, Sep. Purif. Technol. 33 (2003) 303–314.10.1016/S1383-5866(03)00091-1
  • A.L. Ahmad, S. Sumathi, B.H. Hameed, Coagulation of residue oil and suspended solid in palm oil mill effluent by chitosan, alum and PAC, Chem. Eng. J. 118 (2006) 99–105.10.1016/j.cej.2006.02.001
  • F.P.M. Farias, C.J.O. Buriti, W.C.P.B. Lima, S.R. Farias Neto, A.G.B. Lima, The effect of droplet diameter on the separation of heavy-oil from water using a hydrocyclone, Defect Diffus. Forum 303–304 (2010) 131–137.10.4028/www.scientific.net/DDF.303-304
  • P.J. Borm, Toxicity and occupational health hazards of coal fly ash (cfa). A review of data and comparison to coal mine dust, Ann. Occup. Hyg. 41 (1997) 659–676.10.1093/annhyg/41.6.659
  • S. Aziz, S.A. Soomro, A.H. Tunio, I. Nazir, K.M. Qureshi, R. Begum, Environmental & health hazards of fly ash & SOx from FBC power plant at Khanote, Pak. J. Anal. Environ. Chem. 11 (2010) 56–62.
  • A. Akgerman, M. Zardkoohi, Adsorption of phenolic compounds on fly ash, J. Chem. Eng. Data 41 (1996) 185–187.10.1021/je9502253
  • B. Dutta, J.K. Basu, S. DasGupta, Removal of cresol from aqueous solution using fly ash as adsorbent: Experiments and modeling, Sep. Sci. Technol. 38 (2003) 1345–1360.10.1081/SS-120018813
  • D. Batabyal, A. Sahu, S.K. Chaudhuri, Kinetics and mechanism of removal of 2,4-dimethyl phenol from aqueous solutions with coal fly ash, Sep. Technol. 5 (1995) 179–186.10.1016/0956-9618(95)00124-7
  • H. Nollet, M. Roels, P. Lutgen, P. Van der Meeren, W. Verstraete, Removal of PCBs from wastewater using fly ash, Chemosphere 53 (2003) 655–665.10.1016/S0045-6535(03)00517-4
  • A.K. Sen, A.K. De, Adsorption of mercury(II) by coal fly ash, Water Res. 21 (1987) 885–888.10.1016/S0043-1354(87)80003-9
  • R. Apak, E. Tütem, M. Hügül, J. Hizal, Heavy metal cation retention by unconventional sorbents (red muds and fly ashes), Water Res. 32 (1998) 430–440.10.1016/S0043-1354(97)00204-2
  • J. Ayala, F. Blanco, P. García, P. Rodriguez, J. Sancho, Asturian fly ash as a heavy metals removal material, Fuel 77 (1998) 1147–1154.10.1016/S0016-2361(98)00027-1
  • B.P. Kelleher, M.N. O’Callaghan, M.J. Leahy, T.F. O’Dwyer, J.J. Leahy, The use of fly ash from the combustion of poultry litter for the adsorption of chromium(III) from aqueous solution, J. Chem. Technol. Biotechnol. 77 (2002) 1212–1218.10.1002/jctb.v77:11
  • A.K. Bhattacharya, T.K. Naiya, S.N. Mandal, S.K. Das, Adsorption, kinetics and equilibrium studies on removal of Cr (VI) from aqueous solutions using different low-cost adsorbents, Chem. Eng. J. 137 (2008) 529–541.
  • N. Koukouzas, C. Vasilatos, G. Itskos, I. Mitsis, A. Moutsatsou, Removal of heavy metals from wastewater using CFB-coal fly ash zeolitic materials, J. Hazard. Mater. 173 (2010) 581–588.10.1016/j.jhazmat.2009.08.126
  • G. Itskos, N. Koukouzas, C. Vasilatos, I. Megremi, A. Moutsatsou, Comparative uptake study of toxic elements from aqueous media by the different particle-size-fractions of fly ash, J. Hazard. Mater. 183 (2010) 787–792.10.1016/j.jhazmat.2010.07.095
  • C.A. Gray, A.P. Schwab, Phosphorus-fixing ability of high pH, high calcium, coal-combustion, waste materials, Water Air Soil Pollut. 69 (1993) 309–320.10.1007/BF00478167
  • A. Al-Shawabkeh, H. Maisuda, M. Hasatani, Comparative reactivity of treated FBC- and PCC-fly ash for SO2 removal, Can. J. Chem. Eng. 73 (1995) 678–685.10.1002/cjce.v73:5
  • P. Davini, Flue gas treatment by activated carbon obtained from oil-fired fly ash, Carbon 40 (2002) 1973–1979.10.1016/S0008-6223(02)00049-0
  • G.Q. Lu, D.D. Do, Adsorption properties of fly ash particles for NOx removal from flue gases, Fuel Process. Technol. 27 (1991) 95–107.10.1016/0378-3820(91)90011-Z
  • X. Querol, A. Alastuey, J.L. Fernández-Turiel, A. López-Soler, Synthesis of zeolites by alkaline activation of ferro-aluminous fly ash, Fuel 74 (1995) 1226–1231.10.1016/0016-2361(95)00044-6
  • X. Querol, A. Alastuey, A. López-Soler, F. Plana, A fast method for recycling fly ash: Microwave-assisted zeolite synthesis, Environ. Sci. Technol. 31 (1997) 2527–2533.10.1021/es960937t
  • X. Querol, J.C. Umaña, F. Plana, A. Alastuey, A. Lopez-Soler, A. Medinaceli, A. Valero, M.J. Domingo, E. Garcia-Rojo, Synthesis of zeolites from fly ash at pilot plant scale. Examples of potential applications, Fuel 80 (2001) 857–865.10.1016/S0016-2361(00)00156-3
  • N. Koukouzas, C. Ketikidis, G. Itskos, X. Spiliotis, V. Karayannis, G. Papapolymerou, Synthesis of CFB-coal fly ash clay bricks and their characterisation, Waste Biomass Valorization 2 (2011) 87–94.10.1007/s12649-010-9055-1
  • A.K. Mathur, Ash utilisation in NTPC, in: Proceedings of the Workshop on Fly Ash Utilisation: Issues and Strategies, New Delhi, 2000, pp. 41–45.
  • Y.K. Lin, Compressibility, strength, and frost susceptibility of compacted fly ash, PhD thesis, University of Michigan, MI, 1971.
  • P. Pengthamkeerati, T. Satapanajaru, P. Chularuengoaksorn, Chemical modification of coal fly ash for the removal of phosphate from aqueous solution, Fuel 87 (2008) 2469–2476.10.1016/j.fuel.2008.03.013
  • S. Katara, S. Kabra, A. Sharma, R. Hada, A. Rani, Surface modification of fly ash by thermal activation: A DR/FTIR study, Int. Res. J. Pure Appl. Chem. 3 (2013) 299–307.10.9734/IRJPAC
  • S.C. Openshaw, Utilization of Coal Fly Ash, M.Sc thesis, University of Florida, FL, 1992.
  • T. Tripathy, B.R. De, Flocculation: A new way to treat the waste water, J. Phys. Sci. 10 (2006) 93–127.
  • O.P. Sahu, P.K. Chaudhari, Review on chemical treatment of industrial waste water, J. Appl. Sci. Environ. Man. 17 (2013) 241–257.
  • J. Gregory, J. Duan, Hydrolyzing metal salts as coagulants, Pure Appl. Chem. 73 (2001) 2017–2026.
  • T. Lopez, I. Garcia-Cruz, R. Gomez, Synthesis of magnesium oxide by the sol–gel method: Effect of the pH on the surface hydroxylation, J. Catal. 127 (1991) 75–85.10.1016/0021-9517(91)90210-U

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.