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Articles

Characterization of coal fly ash and use of plants growing in ash pond for phytoremediation of metals from contaminated agricultural land

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References

  • Aldriano DC, Page AL, Elseewi AA, Chang AC, straugham I. 1980. Utilization and disposal of fly-ash and coal residue in terrestrial ecosystem: a review. J. Environ. Quality. 9:333–344. doi:10.2134/jeq1980.00472425000900030001x.
  • Baker AJM, McGrath SP, Reeves RD, Smith JAC. 2000. Metal hyperaccumulator plants: a review of the ecology and physiology of a biological resource for phytoremediation of metal-polluted soils. Phytoremediat of Conta Soil and Water. Boca Raton (FL): CRC Press,:85–107.
  • Bauddh K, Singh RP. 2012. Cadmium tolerance and its phytoremediation by two oil yielding plants Ricinus communis (L.) and Brassica juncea (L.) from the contaminated soil. Int J Phytoremed. 14:772–785. doi:10.1080/15226514.2011.619238.
  • Bizly S, Rugh CL, Meager RB. 2000. Efficient phytodetoxification of the environmental pollutant methyl mercury by engineered plants. Nat Biotech. 18:213–217.
  • Bowen HJM. 1979. Environmental Chemistry of an element. Academic press: New York.
  • Carlson CL, Adriano DC. 1993. Environmental impacts of coal combustion residue. J. Environ. Quality. 22:227–247. doi:10.2134/jeq1993.00472425002200020002x.
  • Ghosh M, Singh SP. 2005a. A review on phytoremediation of heavy metals and utilization of its byproducts. Appl Ecol and Environ Resea. 3:1–18. doi:10.15666/aeer/0301_001018.
  • Ghosh M, Singh SP. 2005b. Comparative uptake and phytoextraction study of soil induced chromium by accumulator and high biomass weed species. Appl Ecol and Environ Resea. 3(2):67–79. doi:10.15666/aeer/0302_067079.
  • Gupta AK, Sinha S. 2008. Decontamination and/or revegetation of fly ash dykes through naturally growing plants. J Hazar Mater. 153:1078–1087. doi:10.1016/j.jhazmat.2007.09.062.
  • Igwe JC, Abia AA. 2006. A bioseparation process for removing heavy metals from waste water using biosorbents. Afr J Biotec. 5:1167–1179.
  • Kabata-pendias H. 1992. Trace elements in soil and plants. Boca Raton (FL): CRC Press.
  • Kisku GC, Barman SC, Bhargava SK. 2000. Contamination of soil and plants with potentially toxic elements irrigated with mixed industrial effluent and its impact on the environment. Water, Air, & Soil Pollut. 120:121. doi:10.1023/A:1005202304584.
  • Kumar A, Jitendra A, Subodh M, Rimi D. 2015. An Assessment of Metal in fly Ash and Their Translocation and Bioaccumulation in Perennial Grasses Growing at the Reclaimed Opencast Mines. Int J Environ Res. 9(3):1089–1096.
  • Kumar N, Bauddh K, Barman SC, Singh DP. 2012. Accumulationofmetalsinselected sgrownina mixtureofdrainwaterandtanneryeffluentandtheirphytoremediationpotential .J EnvironBiol. 33:323–327.
  • Liu J, Donga Y, Xua H, Wang D, Xu J. 2007. Accumulation of Cd, Pb and Zn by 19 wetland plant species in constructed wetland. J Haz Matt. 147:947–953. doi:10.1016/j.jhazmat.2007.01.125.
  • Lorestani B, Cheraghi M, Yousefi N. 2012. The potential of phytoremediation using hyperaccumulator plants: a case study at a lead-zinc mine site. Int J Phyt. 14:786–795. doi:10.1080/15226514.2011.619594.
  • Nedelkoska TV, Doran PM. 2000. Characteristics of heavy metal up take by plant species with potential for phytoremediation and phytomining. Miner Eng. 13:549–561. doi:10.1016/S0892-6875(00)00035-2.
  • Pattiyage IA, Gomesa B, Asaedab T. 2013. Phytoremediation of heavy metals by calcifying macro-algae (Nitella pseudoflabellata): Implications of redox-insensitive end products. Chemosphere. 92:1328–1334. doi:10.1016/j.chemosphere.2013.05.043.
  • Rascio N, Navari-Izzo F. 2011. Heavy metal hyperaccumulating plants, how and why do they do it? and what makes them so interesting. Plant Scie. 180:169–181. doi:10.1016/j.plantsci.2010.08.016.
  • Raskin I, Ensley BD. 2000. Phytoremediation of Toxic Metals: Using Plants to Clean Up the Environment. John Wiley & Sons, Inc. New York.
  • Raymond AW, Felix EO. 2011. Heavy metals in contaminated soils: A review of sources, chemistry, risks and best available strategies for remediation, Int Scholarly Resear Net ISRN Ecology, Volume 2011, Article ID 402647, 20 pages.
  • Salt DE, Smith RD, Raskin L. 1998. Phytoremediation. Ann. Rev. Plant Phys. Plant Mol. .Biol. 49:643–668. doi:10.1146/annurev.arplant.49.1.643.
  • Sekabira K, Oryemâ“Origa H, Mutumba G, Kakudidi E, Basamba TA. 2011. Heavy metal phytoremediation by Commelinabenghalensis (L) and Cynodondactylon (L) growing in Urban stream sediments. International Journal of Plant Physiology and Biochemistry. Vol. 3(8):133–142.
  • Shuhe W, Qixing Z, Xin W, Kaisong Z, Guanin G, Qiying ML. 2005. A newly – discovered Cd – hyperaccumulator Solanumnigrum L. Chinese Science Bulletin. 50(1):33–38. doi:10.1360/982004-292.
  • Sutherland RA. 2000. Bed sediment-associated trace metals in an urban stream. Oahu, Hawaii, Environ Geol. 39:61–37.
  • Tangahu B, Abdullah S, Basri H, Idris M, Anuar N, Mukhlisin M. 2011. A review on heavy metals (As, Pb, and Hg) uptake by plants through Phytoremediation. Inter J of Chemi Engi 201. doi: 10.1155/2011/939161.
  • Ullah A, Heng S, Munis MFH, Fahad S, Yang X. 2015. Phytoremediation of heavy metals .assisted by plant growth promoting (PGP) bacteria: A review. Environ &Exp Botany. 117:28–40. doi:10.1016/j.envexpbot.2015.05.001.
  • Yanqun Z, Yua L, Jianjun BC, Haiyan C, Li Q, Schvartz C. 2005. Hyperaccumulation of Pb, Zn, and Cd in herbaceous grown on lead-zinc mining area in Yunnan, China. Environ Int. 31:755–762. doi:10.1016/j.envint.2005.02.004.

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