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Original Articles

Phytoremediation of fuel oil and lead co-contaminated soil by Chromolaena odorata in association with Micrococcus luteus

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References

  • Al-Saleh ES, Obuekwe C. 2005. Inhibition of hydrocarbon bioremediation by lead in a crude oil contaminated soil. Int Biodeter Biodegr 56:1–7.
  • Alkorta I, Garbisu C. 2001. Phytoremediation of organic contaminants in soils. Bioresource Technol 79: 273–276.
  • Alloway BJ. 1990. Soil processes and the behavior of metals. In: Alloway BJ, editor. Heavy metals in soils. London: Blackie and Son. p. 7–27.
  • Anoliefo GO, Vwioko DE, Mpamah P. 2003. Regeneration of Chromolaena odorata (L.) K. & R. in crude oil polluted soil: a possible phytoremediating agent. Benin Science Digest 1: 9–14.
  • Atagana HI. 2008. Phytoremediation of used engine oil contaminated soil by Chromolaena odorata. In: Proceedings of the 3rd International Conference on Soil Pollution and Remediation and 5th International Phytotechnologies Conference, Nanjing, China.
  • Atagana HI. 2011. Bioremediation of co-contamination of crude oil and heavy metals in soil by phytoremediation using Chromoloena odorata (L.) King & H. E. Robinson. Water Air Soil Poll 215:261–271.
  • Basumatary B, Saikia R, Bordoloi S, Das HC, Sarma HP. 2012. Assessment of potential plant species for phytoremediation of hydrocarbon contaminated areas of upper Assam, India. J Chem Technol Biot 87: 1329–1334.
  • Bento FM, Camargo FAO, Okeke BC, Frankenberger JWT. 2005. Comparative bioremediation of soils contaminated with diesel oil by natural attenuation, biostimulation and bioaugmentation. Bioresour Technol 96:1049–1055.
  • Bhargava A, Carmona FF, Bhargava M, Srivastava S. 2012. Approaches for enhanced phytoextraction of heavy metals. J Environ Manage 105:103–120.
  • Chang LK, Ibrahim D, Che OI. 2011. A laboratory scale bioremediation of Tapis crude oil contaminated soil by bioaugmentation of Acinetobacter baumannii T30C. Afr J Microbiol Res 5(18):2609–2615.
  • Cheng SP. 2003. Heavy metal pollution in China: origin, pattern, and control. Environ Sci Pollut R 10(3):192–198.
  • Cui S, Zhou Q, Chao L. 2007. Potential hyperaccumulation of Pb, Zn, Cu and Cd in endurant plants distributed in an old smeltery, Northeast China. Environ Geol 51:1043–1043.
  • Gao YZ, Zhu LZ. 2004. Plant uptake, accumulation and translocation of phenanthrene and pyrene in soils. Chemosphere 55(9):1169–1178.
  • Gao YZ, Shen Q, Ling WT, Ren LL. 2008. Uptake of polycyclic aromatic hydrocarbons by Trifolium pretense L., from water in the presence of a nonionic surfactant. Chemosphere 72:636–643.
  • Garg P, Chandra P. 1994. The duckweed Wolffia globosa as an indicator of heavy metal pollution sensitivity of Cr and Cd. Environ Monit Assess 29:89–95.
  • Hunt R. 1978. Plant growth analysis. London: Edward Arnold.
  • Yan-de Jing, Zhen-li He, Xiao-e Yang. 2007. Role of soil rhizobacteria in phytoremediation of heavy metal contaminated soils. J Zhejiang Univ Sci B 8(3):192–207.
  • Kuiper I, Lagendijk EL, Bloemberg GV, Lugtenberg BJJ. 2004. Rhizoremediation: a beneficial plant-microbe interaction. Mol Plant Microbe In 17(1):6–15.
  • Laskowski R, Maryanski M, Niklinska M. 1994. Effect of heavy metals and mineral nutrients on forest litter respiration rate. Environ Pollut 84:97–102.
  • Lenntech. 2013. Chemical properties of lead—Health effects of lead—Environmental effects of lead, Netherlands. [accessed 2015 Aug 20]. www.lenntech.com/periodic/elements/pb.htm
  • Lin Q, Wang ZW, Ma S, Cheng YX. 2006. Evaluation of dissipation mechanisms by Lolium perenne L. and Raphanus sativus for pentachlorophenol (PCP) in copper co-contaminated soil. Sci Total Environ 368(2–3):814–822.
  • Lovley DR, Coates JD. 1997. Bioremediation of metal contamination. Curr Opin Biotech 8:285–289.
  • Merkl N, Kraft RS, Infante C. 2005. Phytoremediation in the tropics-influence of heavy crude oil on root morphological characteristics of graminoids. Environ Pollut 138:86–91.
  • Moreira ITA, Oliveira OMC, Triguis JA, Queiroz AFS, Barbosa RM, Anjos JASA, Reyes CY, Silva CS, Trindade MCLF, Rios MC. 2013a. Evaluation of the effects of metals on biodegradation of total petroleum hydrocarbons. Microchem J 110:215–220.
  • Moreira ITA, Oliveira OMC, Triguis JA, Queiroz AFS, Ferreira SLC, Martins CMS, Silva ACM, Falcão BA. 2013b. Phytoremediation in mangrove sediments impacted by persistent total petroleum hydrocarbons (TPHs) using Avicennia schaueriana. Mar Pollut Bull 67:130–136.
  • Moubasher HA, Hegazy AK, Mohamed NH, Moustafa YM, Kabiel HF. 2015. Phytoremediation of soils polluted with crude petroleum oil using Bassia scopria and its associated rhizosphere microorganisms. Int Biodeter Biodegr 98:113–120.
  • Muratova AY, Dmitrieva TV, Panchenko LV, Turkovskaya OV. 2008. Phytoremediation of oil sludge contaminated-soil. Int J Phytoremediat 10:486–502.
  • Nedunuri KV, Covindanaraju RS, Banks MK, Schwab AP, Chen Z. 2000. Evaluation of phytoremediation for field-scale degradation of total petroleum hydrocarbons. J Environ Eng 126:483–490.
  • Pascale M, Raina MM. 2000. Rhamnolipid-enhanced mineralization of phenanthrene in organic-metal cocontaminated soils. Biorem J 4(4):295–308.
  • Peng SW, Zhou QX, Cai Z, Zhang ZN. 2009. Phytoremediation of petroleum contaminated soils by Mirabilis jalapa L. in a greenhouse plot experiment. J Hazard Mater 16:1490–1496.
  • Perronnet K, Schwartz C, Morel JL. 2003. Distribution of cadmium and zinc in the hyperaccumulator Thlaspi caerulescens grown on multicontaminated soil. Plant Soil 249:19–25.
  • Phaenark C, Pokethitiyook P, Kruatrachue M, Ngernsansaruay C. 2009. Cd and Zn accumulation in plants from the Padaeng zinc mine area. Int J Phytoremediat 11:479–495.
  • Pichtel J, Liskanen P. 2001. Degradation of diesel fuel in rhizosphere soil. Environ Eng Sci 18(3):145–157.
  • Razmjoo K, Adavi Z. 2012. Assessment of bermuda grass cultivars for phytoremediation of petroleum contaminated soils. Int J Phytoremediat 14(1):14–23.
  • Roongtanakiat N, Chairoj P. 2001. Uptake potential of some heavy metals by vetiver grass. Kasetsart J (Nat Sci) 35:46–50.
  • Rotkittikhun P, Kruatrachue M, Chaiyarat R, Ngernsansaruay C, Pokethitiyook P, Paijitprapaporn A, Baker AJM. 2006. Uptake and accumulation of lead by plants from the Bo Ngam lead mine area in Thailand. Environ Pollut 144:681–688.
  • Rotkittikhun P, Chaiyarat R, Kruatrachue M, Pokethitiyook P, Baker AJM. 2007. Growth and lead accumulation by the grass Vetiveria zizanioides and Thysanolaena maxima in lead-contaminated soil amended with pig manure and fertilizer: a glasshouse study. Chemosphere 66:45–53.
  • Sandrin TR, Maier RM. 2002. Effect of pH on cadmium toxicity, speciation, and accumulation during naphthalene biodegradation. Environ Toxicol Chem 21(10):2075–2079.
  • Sandrin TR, Maier RM. 2003. Impact of metals on the biodegradation of organic pollutants. Environ Health Persp 111(8):1093–1101.
  • Santos HF, Carmo FL, Paes JES, Rosado AS, Peixoto RS. 2011. Bioremediation of mangroves impacted by petroleum. Water Air Soil Poll 216:329–350.
  • Schwartz C, Echevarria G, Morel JL. 2003. Phytoextraction of cadmium with Thlaspi caerulescens. Plant Soil 249:27–35.
  • Siciliano SD, Germida JJ, Banks MK, Greer CW. 2003. Changes in microbial community composition and function during a polyaromatic hydrocarbon phytoremediation field trial. Appl Environ Microbiol 69:483–489.
  • Simmons RW, Pongsakul P, Saiyasitpanich D, Klinphklap S. 2005. Elevated levels of cadmium and zinc in paddy soils and elevated level of cadmium in rice grain downstream of a zinc mineralized area in Thailand: implications for public health. Environ Geochem Health 27:501–511.
  • Sinha RK, Heart S, Tandon PK. 2007. Environmental bioremediation technologies. In: Singh SN, Tripathi RD, editors. Phytoremediation: Role of plants in contaminated site management. New York: Springer. p. 315–351.
  • Sun YB, Zhou QX, Wang L, Liang XF. 2011. Phytoremediation for co-contaminated soils of benzo[a]pyrene (B[a]P) and heavy metals using ornamental plant Tagetes patula. J Hazard Mater 186:2075–2082.
  • Sung K, Corapcioglu Y, Drew MC, Munster CL. 2001. Plant contamination by organic pollutants in phytoremediation. J Environ Qual 30:2081–2090.
  • Susarla S, Medina VF, McCutcheon SC. 2002. Phytoremediation: an ecological solution to organic chemical contamination. Ecol Eng 18:647–658.
  • Tanhan P, Kruatrachue M, Pokethitiyook P, Chaiyarat R. 2007. Uptake and accumulation of cadmium, lead and zinc by Siam weed (Chromolaena odorata (L) King & Robinson). Chemosphere 68:323–329.
  • Tanhan P, Pokethitiyook P, Kruatrachue M, Chaiyarat R, Upatham S. 2011. Effects of soil ammendements and EDTA on lead uptake by Chromolaena odorata: greenhouse and field trial experiments. Int J Phytoremediat 13:897–911.
  • Van Dyke MI, Prosser JI. 2000. Enhanced survival of Pseudomonas fluorescens in soil following establishment of inoculum in a sterile soil carrier. Soil Biol Biochem 32:1377–1382.
  • Vancov T, Jury K, Rice N, Van ZL, Morris S. 2007. Enhancing cell survival of atrazine degrading Rhodococcus erythropolis NI86/21 cells encapsulated in alginate beads. J Appl Microbiol 102:212–220.
  • Wu Z, Peng Y, Guo L, Li C. 2014. Root colonization of encapsulated Klebsiella oxytoca Rs-5 on cotton plants and its promoting growth performance under salinity stress. Eur J Soil Biol 60:81–87.
  • Zhang H, Dang Z, Zheng LC, Yi XY. 2009. Remediation of soil co-contaminated with pyrene and cadmium by growing maize (Zea mays L.). Int J Environ Sci Tech 6(2):249–258.
  • Zhang Z, Rengel Z, Chang H, Meney K, Pantelic L, Tomanovic R. 2012. Phytoremediation potential of Juncus subsecundus in soils contaminated with cadmium and polynuclear aromatic hydrocarbon (PAHs). Geoderma 175–176:1–8.
  • Zhou QX, Song YF. 2004. Principles and methods of contaminated soil remediation. Beijing: Science Press.

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