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Original Articles

Screening of herbaceous plants for peat-enhanced rehabilitation of contaminated soil with oily sludge

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References

  • Adam G, Duncan H. 2002. Influence of diesel fuel on seed germination. Environ Pollut 120:363–370.
  • Atlas RM. 1981. Microbial degradation of petroleum hydrocarbons: an environmental perspective. Microbiol Rev 45:180–209.
  • Banks MK, Lee E, Schwab AP. 1999. Evaluation of dissipation mechanism for benzo[a]pyrene in the rhizosphere of tall fescue. J Environ Qual 28:294–298.
  • Cai Z, Zhou Q, Peng S, Li K. 2010. Promoted biodegradation and microbiological effects of petroleum hydrocarbons by Impatiens balsamina L. with strong endurance. J Hazard Mater 183:731–737.
  • Chaîneau CH, Morel JL, Oudot J. 1997. Phytotoxicity and plant uptake of fuel oil hydrocarbons. J Environ Qual 26:1478–1483.
  • Couto MN, Basto MC, Vasconcelos MT. 2011. Suitability of different salt marsh plants for petroleum hydrocarbons remediation. Chemosphere 84:1052–1057.
  • Culbertson JB, Valiela I, Olsen YS, Reddy CM. 2008. Effect of field exposure to 38-year-old residual petroleum hydrocarbons on growth, condition index, and filtration rate of the ribbed mussel, Geukensia demissa. Environ Pollut 154:312–319.
  • Cunningham SD, Ow DW. 1996. Promises and prospects of phytoremediation. Plant Physiol 110:715–719.
  • Dashti N, Khanafer M, El-Nemr I, Sorkhoh N, Ali N, Radwan S. 2009. The potential of oil utilizing bacterial consortia associated with legume root nodules for cleaning oily soils. Chemosphere 74:1354–1359.
  • Debosz K, Petersen SO, Kure LK, Ambus P. 2002. Evaluating effects of sewage sludge and household compost on soil physical, chemical and microbiological properties. Appl Soil Ecol 9:237–248.
  • Dickinson SJ, Rutherford PM. 2006. Utilization of biosolids during the phytoremediation of hydrocarbon contaminated soil. J Environ Qual 35:982–991.
  • Dominguez-Rosado E, Pichtel J, Coughlin M. 2004. Phytoremediation of soil contaminated with used motor oil: I. Enhanced microbial activities from laboratory and growth chamber studies. Environ Eng Sci 21:157–168.
  • Dominguez-Rosado E, Pichtel J. 2004. Phytoremediation of soil contaminated with used motor oil: II. Green house Studies. Environ Eng Sci 21:169–180.
  • Euliss K, Ho CH, Schwab AP, Rock S, Banks MK. 2008. Greenhouse and field assessment of phytoremediation for petroleum contaminants in a riparian zone. Bioresour Technol 99:1961–1971.
  • Gao JF. 2006. Laboratory manual of plant physiology. 1st ed. Beijing (China): Higher Education Press.
  • Gaskin SE, Bentham RH. 2010. Rhizoremediation of hydrocarbon contaminated soil using Australian native grass. Sci Total Environ 408:3683–3688.
  • Günther T, Dornberger U, Fritsche W. 1996. Effects of ryegrass on biodegradation of hydrocarbons in soil. Chemosphere 33:203–215.
  • Head IM, Jones DM, Larter SR. 2003. Biological activity in the deep subsurface and the origin of heavy oil. Nature 42:6344–6352.
  • Hou FS, Milke MW, Leung DW, MacPherson DJ. 2001. Variations in phytoremediation performance with diesel contaminated soil. Environ Technol 22:215–222.
  • Huang XD, EI-Alawi Y, Penrose DM, Glick BR, Greenberg BM. 2004. Responses of three grass species to creosote during phytoremediation. Environ Pollut 130:453–463.
  • Huesemann MH, Hausmann TS, Fortman TJ. 2004. Does bioavailability limit biodegradation? A comparison of hydrocarbon biodegradation and desorption rates in aged soils. Biodegradation 15:261–274.
  • Hutchinson S, Banks MK, Schwab AP. 2001. Phytoremediation of aged petroleum sludge: effect of inorganic fertilizer. J Environ Qual 30:395–403.
  • Joner EJ, Johansen A, Loibner AP, dela Cruz MA, Szolar OHJ, Portal JM, Leyval C. 2001. Rhizosphere effects on microbial community structure and dissipation and toxicity of polycyclic aromatic hydrocarbons (PAHs) in spiked soil. Environ Sci Technol 35:2773–2777.
  • Kaimi E, Mukaidani T, Tamaki M. 2007. Screening of twelve plant species for phytoremediation of petroleum hydrocarbon contaminated soil. Plant Prod Sci 10:211–218.
  • Kuo HC, Juang DF, Yang L, Kuo WC, Wu YM. 2013. Phytoremediation of soil contaminated by heavy oil with plants colonized by mycorrhizal fungi. Int J Environ Sci Technol 11:1661–1668.
  • Lin X, Li PJ, Tai PD, Gong ZQ, Zhang HR. 2006. Research progress in phyto-microbial remediation of petroleum contaminated soil (In Chinese). Chin J Ecol 25(1):93–100.
  • Liste HH, Prutz I. 2006. Plant performance, dioxygenase expressing rhizosphere bacteria, and biodegradation of weathered hydrocarbons in contaminated soil. Chemosphere 62:1411–1420.
  • Liu H, Weisman D, Ye YB, Cui B, Huang YH, Colón-Carmona A, Wang ZH. 2009. An oxidative stress response to polycyclic aromatic hydrocarbon exposure is rapid and complex in Arabidopsis thaliana. Plant Sci 176:375–382.
  • Lu GL, Wang SJ, Guo GL, Wang X, Zhang Y, Zhang C, Li FS. 2011. Influence of peat on the field bioremediation efficiency of aged oily sludge in oil field (In Chinese). J Environ Eng Technol 1(5):389–395.
  • Matí MC, Camejo D, Fernández-García N, Rellán-Alvarez R, Marques S, Sevilla F, Jiménez A. 2009. Effect of oil refinery sludge on the growth and antioxidant system of alfalfa plants. J Hazard Mater 171:879–885.
  • Merkl N, Schultze-kraft R, Infante C. 2005. Phytoremediation in the tropics influence of heavy crude oil on root morphological characteristics of graminoids. Environ Pollut 38:86–91.
  • Muratova AY, Turkovskaya OV, Hübner T, Kuschk P. 2003. Studies of the efficacy of alfalfa and reed in the phytoremediation of hydrocarbon polluted soil. Appl Biochem Microbiol 39:599–605.
  • Paredes C, Bernal MP, Cegarra J, Roig A. 2002. Bio-degradation of olive mill wastewater sludge by its co-composting with agricultural wastes. Bioresour Technol 85:1–8.
  • Peng S, Zhou Q, Cai Z, Zhang Z. 2009. Phytoremediation of petroleum contaminated soils by Mirabilis Jalapa L. in a greenhouse plot experiment. J Hazard Mater 168:1490–1496.
  • Radwan S, Sorkhoh N, El-Nemr I. 1995. Oil biodegradation around roots. Nature 376:302–302.
  • Robson DB, Knight JD, Farrell R, Germida JJ. 2003 Ability of cold tolerant plants to grow in hydrocarbon contaminated soil. Int J Phytoremed 5:105–123.
  • Siciliano SD, Germida JJ, Banks K, Greer CW. 2003. Changes in microbial community composition and function during a polyaromatic hydrocarbon phytoremediation field trial. Appl Environ Microbial 69:483–489.
  • Soleimani M, Afyuni M, Hajabbasi MA, Nourbakhsh F, Sabzalian MR, Christensen JH. 2010. Phytoremediation of an aged petroleum contaminated soil using endophyte infected and non-infected grasses. Chemosphere 81:1084–1090.
  • Sugiura K, Ishihara M, Shimauchi T, Harayama S. 1997. Physicochemical properties and biodegradability of crude oil. Environ Sci Technol 31:45–51.
  • Tang JC, Lu XQ, Sun Q, Zhu WY. 2012. Aging effect of petroleum hydrocarbons in soil under different attenuation conditions. Agr Ecosyst Environ 149:109–117.
  • Vitória AP, Lea PJ, Azevedo RA. 2001. Antioxidant enzymes responses to cadmium in radish tissues. Phytochimistry 57:701–710.
  • Wang J, Liu XY, Zhang XY, Liang X, Zhang WJ. 2011. Growth response and phytoremediation ability of reed for diesel contaminant. Proc Environ Sci 8:68–74.
  • Wang SJ, Yan ZG, Guo GL, Lu GL, Wang QH, Li FS. 2009. Ecotoxicity assessment of aged petroleum sludge using a suite of effects-based end points in earthworm Eisenia fetida. Environ Monit Assess 169:417–428.
  • Wang SJ, Guo GL, Yan ZG, Lu GL, Wang QH, Li FS. 2010. The development of a method for the qualitative and quantitative determination of petroleum hydrocarbon components using thin-layer chromatography with flame ionization detection. J Chromatogr A 1217:368–374.
  • Wiltse CC, Rooney WL, Chen Z, Schwab AP, Banks MK. 1998. Greenhouse evaluation of agronomic and crude oil-phytoremediation potential among alfalfa genotypes. J Environ Qual 27:169–173.
  • Zhang WR, Ye B, Li YK, Biao KN, Zhang GZ. 1987. Forest Soil Analysis Methods (National Standard, GB7830-7892-87). Beijing (China): Standards Press of China.

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