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Phytoremediation of heavy metals from paper mill effluent soil using Croton sparsiflorus

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Effluents from industries contain appreciable amount of metallic cations like zinc, copper, iron, manganese, lead and cadmium. Release of heavy metal without proper treatment poses a significant threat to public health because of its persistence biomagnifications and accumulation in food chain. To reduce metal pollution problems many processes have been developed for the treatment and disposal of metal containing wastes. Certain plants have the ability to accumulate heavy metals such as Pb, Cr, Cd and Zn. At present, phytoremediation of metals may be approaching commercialization. Hence, possibility can be explored to remove heavy metal load, present even in low concentration, in waste water of paper mill effluent soil by using Croton sparsiflorus.
Rocznik
Strony
1--9
Opis fizyczny
Bibliogr. 21 poz., tab., wykr., zdj.
Twórcy
  • Research Scholar, Khadir Mohideen College, Adirampattinam - 614 701, Thanjavur - (Dt), Tamil Nadu, India
  • P.G. and Research Department of Chemistry, A.V.V.M. Sri Pushpam College (Autonomous), Poondi - 613 503, Thanjavur - (Dt), Tamil Nadu, India
  • P.G. and Research Department of Chemistry, A.V.V.M. Sri Pushpam College (Autonomous), Poondi - 613 503, Thanjavur - (Dt), Tamil Nadu, India
  • Department of Chemistry, Khadir Mohideen College, Adirampattinam - 614 701, Thanjavur - (Dt), Tamil Nadu, India
autor
  • Department of Chemistry, Periyar Maniammai University, Vallam - Thanjavur (Dt), Tamil Nadu, India
Bibliografia
  • [1] S.K. Rahman, D. Khanam, T.M. Adyel, M.S. Islam, M.A. Ahsan, M.A. Akbar, Applied Sciences 2(3) (2012) 584-601.
  • [2] K.P. Singh, D. Mohan, S. Sinha, R. Dalwani, Chemosphere 55 (2) (2004) 227-255.
  • [3] A.K. Chopra, S. Srivastava, V. Kumar, C. Pathak, Environmental Monitoring and Assessment 85 (8) (2013) 6635-6644.
  • [4] M.S. Fazeli, F. Khosravan, M. Hossini, S. Sathyaranayanan, P.N. Sathish, Journal of Environmental Geology 34 (4) (1998) 297-302.
  • [5] W.H. Liu, J.Z. Zhao, Z.Y. Ouyang, L. Soderland, G.H. Liu, Environmental International 31(6) (2005) 805-812.
  • [6] A.K. Chopra, C. Pathok, G. Prasad, Journal of Applied And Natural Science 1(1) (2009) 99-108.
  • [7] K. Fytians, G. Katsianis, G. Katsians, P. Triantaflllou, G.Zachariadis, Bulletin of Environmental Contamination and Toxicology 67(3) (2001) 423-430.
  • [8] N.K. Tandi, J. Nyamangara, C. Bangira, Journal of Environmental Science and Health 39(3) (2005) 461-471.
  • [9] C. Pathak, A.K. Chopra, S.Srivastava, Journal of Applied and Natural Science 4(2) (2012) 291-296.
  • [10] C. Pathak, A.K. Chopra, S. Srivastava, Environmental Monitoring and Assement, 2013.
  • [11] D. Sub, G. Mahajan, M.P. Kaur, Biores. Techroe. 99(14) (2008) 6017-6027.
  • [12] V. Kumar, A.K. Chopra, Communication in Soil Science and Plant Analysis 43(6) (2012) 2142-2166.
  • [13] L. Malla, B.K. Mohanty, Journal of Environmental Biology 26(2) (2005) 379-382.
  • [14] F. Mapanda, E.N. Mangwayan, J. Nyamangara, K.E. Giller, Agriculture Ecosystem and Environment 107(2-3) (2005) 151-165
  • [15] V. Kumar, “Effect of Industrial Effluent Irrigation on Agronomical Characteristics of Two Leguminous Crops, Phaseolus vulgaris (L) and Vigna radiate (L)”, Ph.D Thesis, Gurukula Kangri University, Haridwar, 2010.
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  • [20] A.J.M. Baker, S.M. Whiting, New phytologist 155 (2002) 1-7.
  • [21] S.D. Cunningham, W.R. Berti, Invitro Cell Dev. Biol. (1993) 207-212.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f051a9de-6f5f-4d08-88f0-c1a9df748d26
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