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Articles

Comparative effects of biostimulation and phytoremediation on crude oil degradation and absorption by water hyacinth (Eichhornia crassipes [Mart.] Solms)

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Pages 241-258 | Published online: 21 Feb 2013

References

  • Spies, R.B., Rice, S.D., Wolfe, D.A. and Wright, B.A., 1996, The effects of the Exxon Valdez oil spill on Alaskan coastal environment. Presented at the Exxon Valdez oil spill symposium, Anchorage, AK, USA, 2–5 February, 1993.
  • Ndimele , P.E. 2012 . The effects of water hyacinth (E. crassipes [Mart.] Solms) infestation on the physico-chemistry, nutrient and heavy metal content of Badagry Creek and Ologe Lagoon, Lagos, Nigeria . Journal of Environmental Science and Technology , 5 ( 2 ) : 128 – 136 .
  • Ndimele , P.E. , Jenyo-Oni , A. , Ayodele , A.I. and Jimoh , A.A. 2010 . The phytoremediation of crude oil-polluted aquatic environment by water hyacinth (E. crassipes [Mart.] Solms) . African Journal of Livestock Extension , 8 : 62 – 65 .
  • Zhu , X. , Venosa , A.D. , Suidan , M.T. and Lee , K. 2001 . Guidelines for the bioremediation of marine shorelines and freshwater wetlands , Cincinnati , OH : United States Environmental Protection Agency .
  • United States Environmental Protection Agency (USEPA) . 1999 . Understanding oil spills and oil spill response , Washington , DC : United States Environmental Protection Agency .
  • Lin , Q. and Mendelssohn , I.A. 1998 . The combined effects of phytoremediation and biostimulation in enhancing habitat restoration and oil degradation of petroleum contaminated wetlands . Ecological Engineering , 10 : 263 – 274 .
  • Raskin, I., 1996, Plant genetic engineering may help with environmental clean-up. Presented at the 93rd National Academy of Sciences conference, Washington, DC, 16 April.
  • Cunningham , S.D. , Anderson , T.A. , Schwab , A.P. and Hsu , F.C. 1996 . Phytoremediation of soil contaminated with organic pollutants . Advances in Agronomy , 56 : 55 – 114 .
  • Ndimele, P.E. and Jimoh, A.A., 2011, Water hyacinth (Eichhornia crassipes [Marts.] Solms) in phytoremediation of heavy metal polluted water of Ologe Lagoon, Lagos, Nigeria. Research Journal of Environmental Science, 5(5), 424–433.
  • Terry , N. and Zayed , A.M. 1994 . “ Selenium volatilization by plants ” . In Selenium in the Environment , Edited by: Frankenberger , J.R. and Benson , S. 343 – 367 . New York , NY : Marcel Dekker .
  • Brooks , R.R. and Robinson , B.H. 1998 . “ Aquatic phytoremediation by accumulator plants ” . In Plants that hyperaccumulate heavy metals: their roles in phytoremediation, microbiology, archaeology, mineral exploration and phytomining , Edited by: Brooks , R.R. and Robinson , B.H. 203 – 226 . Oxon : CAB International .
  • Gunther , T. , Dornberger , U. and Fritsche , W. 1996 . Effects of ryegrass on biodegradation of hydrocarbons in soil . Chemosphere , 33 ( 2 ) : 203 – 215 .
  • Reilley , K.A. , Banks , M.K. and Schwab , A.P. 1996 . Organic chemicals in the environment: dissipation of polycyclic aromatic hydrocarbons in the rhizosphere . Journal of Environmental Quality , 25 : 212 – 219 .
  • Reynolds, C.M. and Wolf, D.C., 1999, Microbial based strategies for assessing rhizosphere-enhanced phytoremediation. Presented at the Phytoremediation Technical Seminar, Calgary, Ottawa, 31 May–1 June.
  • Gopal, B. and Sharma, K.P., 1981, Water Hyacinth (Eichhornia crassipes). The most troublesome weed of the world (Delhi: Hindasia Publication), pp. 121–145.
  • Ndimele, P.E., Kumolu-Johnson, C.A. and Anetekhai, M.A., 2011, The invasive aquatic macrophyte, water hyacinth {Eichhornia crassipes (Mart.) solm-Laubach: Pontedericeae}: problems and prospects. Research Journal of Environmental Science 5(6), 509–520.
  • Palprasert , C. , Kongsricharoern , N. and Kanjanaprapin , W. 1994 . Production of feed and fertilizer from water hyacinth plants in the tropics . Waste Management and Research , 12 ( 1 ) : 3 – 11 .
  • Singhai , V. and Rai , J.P.N. 2003 . Biogas production from water hyacinth and channel grass used for phytoremediation of industrial effluents . Bioresource Technology , 86 ( 3 ) : 221 – 225 .
  • Nolan , W.J. and Kirmse , D.W. 1974 . The paper making properties of water hyacinth . Hyacinth Control Journal , 12 : 90 – 96 .
  • Kusemiju, K. and Akingboju, O.S., 1988, Comparative growth of Saratherodon melanotheron (Rupell, 1852) on formulated fish feed and water hyacinth diets. Presented at the seminar on water hyacinth in Nigerian waters, Lagos, Nigeria, 7–12 August.
  • Dar , S.H. , Kumawat , D.M. , Singh , N. and Wani , K.A. 2011 . Sewage treatment potentials of water hyacinth (Eichhornia crassipes) . Research Journal of Environmental Science , 5 ( 4 ) : 377 – 385 .
  • Venosa , A.D. , Suidan , M.T. , Wrenn , B.A. , Strohmeier , K.L. , Haines , J.R. , Eberhart , B.L. , King , D. and Holder , E. 1996 . Bioremediation of an experimental oil spill on the shoreline of Delaware Bay . Environmental Science and Technology , 30 : 1764 – 1775 .
  • American Public Health Association (APHA) . 1998 . Standards Methods for the Analysis of Water and Wastewater (20th ed.) , Washington , DC : American Public Health Association .
  • Lee , S.H. , Lee , S. , Kim , D.Y. and Kim , J.G. 2007 . Degradation characteristics of waste lubricants under different nutrient conditions . Journal of Hazardous Materials , 143 ( 1–2 ) : 65 – 72 .
  • Rosa , A.P. and Triquis , J.A. 2007 . Bioremediation process on Brazil shoreline . Environmental Science and Pollution Research International , 14 ( 7 ) : 470 – 476 .
  • Bento , F.M. , Camargo , F.A.O. , Okeke , B.C. and Frankenberger , W.T. 2005 . Comparative bioremediation of soils contaminated with diesel oil by natural attenuation, biostimulation and bioaugmentation . Bioresource Technology , 96 ( 9 ) : 1049 – 1055 .
  • Seklemova , E. , Pavlova , A. and Kovacheva , K. 2001 . Biostimulation-based bioremediation of diesel fuel: field demonstration . Biodegradation , 12 ( 5 ) : 311 – 316 .
  • Adieze , I.E. , Orji , J.C. , Nwabueze , R.N. and Onyeze , G.O.C. 2012 . Hydrocarbon stress response of four tropical plants in weathered crude oil contaminated soil in microcosms . International Journal of Environmental Studies , 69 ( 3 ) : 490 – 500 .
  • Tanee , F.B.G. and Kinako , P.D.S. 2008 . Comparative studies of biostimulation and phytoremediation in the mitigation of crude oil toxicity in tropical soil . Journal of Applied Sciences and Environmental Management , 12 ( 2 ) : 143 – 147 .
  • Cerniglia , C.E. 1992 . Biodegradation of polycyclic aromatic hydrocarbons . Biodegradation , 3 : 351 – 368 .
  • Jordan, R.E. and Payne, J.R., 1980, Fate and weathering of petroleum spills in the marine environment (Michigan: Ann Arbor Science), pp. 180–245.
  • Etukudoh , N.E. 2011 . Evaluation of pH of the biostimulated and bioaugmented crude oil contaminated utisol of Southern Nigeria . Journal of Agriculture and Veterinary Sciences , 3 : 89 – 94 .
  • Mendelssohn , I.A. and Lin , Q. 2003 . Sediment subsidy: effects on soil-plant responses in a rapidly submerging coastal salt marsh . Ecological Engineering , 21 : 115 – 128 .
  • Rai , S. , Narayanswami , M.S. , Hasan , S.H. , Rupainwr , D.C. and Sharma , Y.C. 1994 . Removal of cadmium from wastewater by water hyacinth . International Journal of Environmental Studies , 46 ( 4 ) : 251 – 262 .
  • Vaidyanathan , S. , Kavadia , K.M. , Rao , M.G. , Basu , S. and Mahajan , S.P. 1983 . Removal of phenol using water hyacinth in a continuous unit . International Journal of Environmental Studies , 21 ( 2 ) : 183 – 191 .
  • Swannell , R.P.J. , Mitchell , D. , Lethbridge , G. , Jones , D. , Heath , D. , Hagley , M. , Jones , M. , Petch , S. , Milne , R. , Corxford , R. and Lee , K. 1999 . A field demonstration of the efficacy of bioremediation to treat oiled shorelines following the Sea Empress incident . Environmental Technology , 20 : 863 – 873 .
  • Wright , A.L. , Weaver , R.W. and Webb , J.W. 1997 . Oil bioremediation in salt marsh mesocosms as influenced by nitrogen and phosphorus fertilization, flooding, and season . Water, Air and Soil Pollution , 95 : 179 – 191 .
  • Sutherland , T.D. , Horne , I. , Lacey , M.J. , Harcourt , R.L. , Russell , R.J. and Oakeshott , J.G. 2000 . Enrichment of an endosulfan-degrading mixed bacterial culture . Applied and Environmental Microbiology , 66 : 2822 – 2828 .
  • Chaillan , F. , Chaıneau , C.H. , Point , V. , Saliot , A. and Oudot , J. 2006 . Factors inhibiting bioremediation of soil contaminated with weathered oils and drill cuttings . Environmental Pollution , 144 : 228 – 237 .
  • Sims , R. 1986 . Water: soil treatability studies for four complex wastes: methodologies and results , Oklahoma , OK : United States Environmental Protection Agency .
  • Mahaffey , W.R. , Nelson , M. , Kinsella , J. and Compeau , G. 1991 . Developing strategies for PAH and TCE bioremediation . Water, Environment and Technology , 10 : 83 – 88 .
  • Abbasi , T. and Abbasi , S.A. 2010 . Factors which facilitate waste water treatment by aquatic weeds – the mechanism of the weeds’ purifying action . International Journal of Environmental Studies , 67 ( 3 ) : 349 – 371 .
  • Lindstrom , J.E. , Prince , R.C. , Clark , J.C. , Grossman , M.J. , Yeager , T.R. , Braddock , J.F. and Brown , E.J. 1991 . Microbial populations and hydrocarbon biodegradation potentials in fertilized shoreline sediments affected by the Exxon Valdez oil spill . Applied and Environmental Microbiology , 57 : 2514 – 2522 .
  • Singh , C. and Lin , J. 2009 . Evaluation of nutrient addition to diesel biodegradation in contaminated soils . African Journal of Biotechnology , 8 ( 14 ) : 3286 – 3293 .
  • Tisdale, L.S. and Nelson, W.L., 1975, Soil Fertility and Fertilizers (3rd ed.) (New York: Macmillan), pp. 23–45.
  • Ferguson , S.H. , Franzmann , P.D. , Revill , A.T. , Snape , I. and Rayner , J.L. 2003 . The effects of nitrogen and water on mineralization of hydrocarbons in diesel-contaminated terrestrial Antarctic soils . Cold Regions Science and Technology , 37 : 197 – 212 .

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