493
Views
26
CrossRef citations to date
0
Altmetric
Coagulation

Enhanced Coagulation/Flocculation by Combining Diatomite with Synthetic Polymers for Oily Wastewater Treatment

, , &
Pages 999-1007 | Received 28 May 2013, Accepted 16 Dec 2013, Published online: 01 May 2014

REFERENCES

  • Zeng, Y.; Yang, C.; Zhang, J.; Pu, W. (2007) Feasibility investigation of oily wastewater treatment by combination of zinc and PAM in coagulation/flocculation. J. Hazard. Mater. 147(3): 991–996.
  • Ahmad, A.L.; Sumathi, S.; Hameed, B.H. (2006) Coagulation of residue oil and suspended solid in palm oil mill effluent by chitosan, alum and PAC. Chem. Eng. J., 118(1–2): 99–105.
  • Yuan, S.; Tong, M.; Wu, G. (2011) Destabilization of emulsions by natural minerals. J. Hazard. Mater., 192(3): 1882–1885.
  • Ahmad, A.L.; Sumathi, S.; Hameed, B.H. (2004) Chitosan: A natural biopolymer for the adsorption of residue oil from oily wastewater. Adsorpt. Sci. Technol., 22(1): 75–88.
  • Gryta, M.; Karakulski, K.; Morawski, A.W. (2001) Purification of oily wastewater by hybrid UF/MD. Water Res., 35(15): 3665–3669.
  • Nadarajah, N.; Singh, A.; Ward, O.P. (2002) De-emulsification of petroleum oil emulsion by a mixed bacterial culture. Process Biochem., 37(10): 1135–1141.
  • Xu, X.; Zhu, X. (2004) Treatment of refectory oily wastewater by electro-coagulation process. Chemosphere, 56(10): 889–894.
  • Gao, B.Y.; Hahn, H.H.; Hoffmann, E. (2002) Evaluation of aluminum-silicate polymer composite as a coagulant for water treatment. Water Res., 36(14): 3573–3581.
  • Wu, C.D.; Xu, X.J.; Liang, J.L.; Wang, Q.; Dong, Q.; Liang, W.L. (2011) Enhanced coagulation for treating slightly polluted algae-containing surface water combining polyaluminum chloride (PAC) with diatomite. Desalination, 279(1-3): 140–145.
  • Jiang, J.Q.; Zeng, Z.; Pearce, P. (2004) Evaluation of modified clay coagulant for sewage treatment. Chemosphere, 56(2): 181–185.
  • Seki, H.; Maruyama, H.; Shoji, Y. (2010) Flocculation of diatomite by a soy protein-based bioflocculant. Biochem. Eng. J., 51(1-2): 14–18.
  • Menezes, F.M.; Amal, R.; Luketina, D. (1996) Removal of particles using coagulation and flocculation in a dynamic separator. Powder Technol., 88(1): 27–31.
  • Shi, Y.; Fan, M.; Brown, R.C.; Sung, S.; Van Leeuwen, J. (2004) Comparison of corrosivity of polymeric sulfate ferric and ferric chloride as coagulants in water treatment. Chem. Eng. Process., 43(8): 955–964.
  • Yan, L.; Wang, Y.; Ma, H.; Han, Z.; Zhang, Q.; Chen, Y. (2012) Feasibility of fly ash-based composite coagulant for coal washing wastewater treatment. J. Hazard. Mater., 203–204: 221–228.
  • Wu, J.; Yang, Y.S.; Lin, J. (2005) Advanced tertiary treatment of municipal wastewater using raw and modified diatomite. J. Hazard. Mater., 127(1–3): 196–203.
  • Khraisheh, M.A.M.; Al-degs, Y.S.; McMinn, W.A.M. (2004) Remediation of wastewater containing heavy metals using raw and modified diatomite. Chem. Eng. J., 99(2): 177–184.
  • Erdem, E.; Çölgeçen, G.; Donat, R. (2005) The removal of textile dyes by diatomite earth. J. Colloid Interface Sci., 282(2): 314–319.
  • Wang, S.; Boyjoo, Y.; Choueib, A.; Zhu, Z.H. (2005) Removal of dyes from aqueous solution using fly ash and red mud. Water Res., 39(1): 129–138.
  • Danil de Namor, A.F.; El Gamouz, A.; Frangie, S.; Martinez, V.; Valiente, L.; Webb, O.A. (2012) Turning the volume down on heavy metals using tuned diatomite. A review of diatomite and modified diatomite for the extraction of heavy metals from water. J. Hazard. Mater., 241–242:14–31.
  • Al-Degs, Y.S.; Tutunju, M.F.; Shawabkeh, R.A. (2000) The feasibility of using diatomite and Mn–diatomite for remediation of Pb2+, Cu2+, and Cd2+ from Water. Sep. Sci. Technol., 35(14): 2299–2310.
  • Xiong, W.; Peng, J. (2008) Development and characterization of ferrihydrite-modified diatomite as a phosphorus adsorbent. Water Res., 42(19): 4869–4877.
  • Gao, B.; Jiang, P.; An, F.; Zhao, S.; Ge, Z. (2005) Studies on the surface modification of diatomite with polyethyleneimine and trapping effect of the modified diatomite for phenol. Appl. Surf. Sci., 250(1-4): 273–279.
  • Al-Ghouti, M.A.; Khraisheh, M.A.M.; Allen, S.J.; Ahmad, M.N. (2003) The removal of dyes from textile wastewater: A study of the physical characteristics and adsorption mechanisms of diatomaceous earth. J. Environ. Manage., 69(3): 229–238.
  • Chu, H.Q.; Cao, D.W.; Jin, W.; Dong, B.Z. (2008) Characteristics of bio-diatomite dynamic membrane process for municipal wastewater treatment. J. Membr. Sci., 325(1): 271–276.
  • Yang, X.L.; Song, H.L.; Lu, J.L.; Fu, D.F.; Cheng, B. (2010) Influence of diatomite addition on membrane fouling and performance in a submerged membrane bioreactor. Bioresour. Technol., 101(23):9178–9184.
  • Chu, H.; Zhang, Y.; Dong, B.; Zhou, X.; Cao, D.; Qiang, Z.; Yu, Z.; Wang, H. (2012) Pretreatment of micro-polluted surface water with a biologically enhanced PAC–diatomite dynamic membrane reactor to produce drinking water. Desalination Water Treat., 40(1-3): 84–91.
  • Ozkan, A.; Yekeler, M. (2004) Coagulation and flocculation characteristics of celestite with different inorganic salts and polymers. Chem. Eng. Process., 43(7): 873–879.
  • Cui, Y.b.; Liu, L.Z.; Guo, Z.Q.; Peng, X.Y. (2009) Modified Diatomaceous Earth for Sludge Settlement Amelioration, in: Energy and Environment Technology, 2009. ICEET ‘09. International Conference on, Dalian, pp. 400–403.
  • Nemerow, N.L. (1978) Industrial Water Pollution: Origins, Characteristics, and Treatment, Addison-Wesley Pub. Co., U.S.
  • Chen, X.; Chen, G.; Yue, P.L. (2000) Separation of pollutants from restaurant wastewater by electrocoagulation. Sep. Purif. Technol., 19(1-2): 65–76.
  • Jiang, J.Q.; Kim, C.G. (2008) Comparison of algal removal by coagulation with clays and Al‐based coagulants. Sep. Sci. Technol., 43(7): 1677–1686.
  • Wu, J.; Chen, F.; Huang, X.; Geng, W.; Wen, X. (2006) Using inorganic coagulants to control membrane fouling in a submerged membrane bioreactor. Desalination, 197(1-3): 124–136.
  • Zeng, Y.; Park, J. (2009) Characterization and coagulation performance of a novel inorganic polymer coagulant-poly-zinc-silicate-sulfate. Colloid surf. A-Physicochem. Eng. Asp., 334(1–3): 147–154.
  • Pinotti, A.; Zaritzky, N. (2001) Effect of aluminum sulfate and cationic polyelectrolytes on the destabilization of emulsified wastes. Waste Manage., 21(6): 535–542.
  • Jiang, J.Q.; Zeng, Z.; Pearce, P. (2004) Preparation and use of modified clay coagulants for wastewater treatment. Water, Air, Soil Pollut., 158(1): 53–65.
  • Khraisheh, M.A.M.; Al-Ghouti, M.A.; Allen, S.J.; Ahmad, M.N. (2005) Effect of OH and silanol groups in the removal of dyes from aqueous solution using diatomite. Water Res., 39(5): 922–932.
  • Wu, J.; Huang, X. (2008) Effect of dosing polymeric ferric sulfate on fouling characteristics, mixed liquor properties and performance in a long-term running membrane bioreactor. Sep. Purif. Technol., 63(1): 45–52.
  • Zheng, H.L.; Fang, H.L.; Jiang, S.J.; Yang, C.; Ma, J.Y.; Zhang, Z.Q. (2011) Preparation and structural analysis of diatomite-supported SPFS flocculant. Spectrosc. Spect. Anal., 31(7): 1917–1921.
  • Solberg, D.; Wågberg, L. (2003) Adsorption and flocculation behavior of cationic polyacrylamide and colloidal silica. Colloids Surf., A, 219(1-3): 161–172.

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.