López-Barrera, Fabiola., Adrian Newton and Robert Manson. 1985. Edge effects in a tropical montane forest mosaic: experimental tests of post-dispersal acorn removal. Ecological Research , Volume 20, Number 1, 31-40, DOI: 10.1007/s11284-004-0016-7
Macfaralane, G. R., Koller, C. E. and Blomberg, S. P. (2007) Accumulation and partitioning of heavy metals in mangroves: A synthesis of field-based studies. Chemosphere 69(9): 1454- 1464.
Madyiwa, S., Chimbari, M.J. and Schutte, F., 2004. Lead and cadmium interactions in Cynodon nlemfuensis and sandy soil subjected to treated wastewater application under greenhouse conditions. Physics and Chemistry of the Earth. 29: 1043-1048.
Malkoc, E. Nuhoglo, Y. 2005. “Investigations of nickel(ɪɪ) removal from aqueous solutions using tea factory waste” J. Hazardous materials B127 (2005)120–۱۲۸٫
Marchiol, L., Vischi, M., Fellet, G., Marchetti, S. 2006. Phytoextraction of heavy metals by canola (Brassica napus) and radish (Raphanus sativus) and other common plants grown on multinated soil. J. Environ. Pollut. 132: 21- 27
Martinez-Sanchez, M. Garcia-Lorenzo, M. Perez-Sirvent, C. Bech, J. 2012. Trace element accumulation in plants from an aridic area affected by mining activities. Journal of Geochemical Exploration 123 : 8–۱۲٫
Mattina, M.J.I., L. Berger, W. Musante & C. White, 2003. Concurrent plant uptake of heavy metals and persistent organic pollutants from soil. J. Environmental Pollution, 124(4): 375-378.
McGrath, S., Zhao, F. and Lombi, E. (2002) Phytoremediation of metals, metalloids and radionuclides. Advanced in Agronomy 75: 1- 56
McGrath, S.P., E. Lombi., C.W. Gray., N. Caille., S.J. Dunham., and F.J. Zhao. 2006. Field evaluation of Cd and Zn phytoextraction potential by the hyperaccumulators Thlaspi caerulescens and Arabidopsis halleri. Environ. Pollut. 141: 115–۱۲۵٫
Meagher , Richard B., 2000. Phytoremediation of toxic elemental and organic pollutants. Plant Biology, Volume 3, Issue 2, 1 April 2000, Pages 153-162
Memon, A., Aktoprakligil, D., Ozdemir, A. and Vertii, A. (2001) Heavy metal accumulation and detoxification mechanisms in plants. Turk Journal Botany 25: 111-121.
Mico, C., Recatala. L., Peris. M., Sanchez, J., 2006. Assessing heavy metal sources in agricultural soils of European Mediterranean area by multivariate analysis, Journal of Chemosphere, 65, 863–۸۷۲٫
Middleton, N., and D. Thomas, D., eds., 1997. World Atlas of Desertification, 2nd. ed.London: Arnold.
Mohammad, W., Iqbal, M.M. and Shah, S.M., 1990. Effect of mode of application of zinc
and iron on yield of wheat (CV. Pak-81). Sarhad J. of Agric. 6(6): 615-618.
Monaci, F. Leidi, E.O. Mingorance, M.D. Valdes, B. Olivia, S.R. Bargagli, R. 2011. Selective uptake of major and trace elements in Erica andevalensis, an endemic species to extreme habitats in the Iberian Pyrite Belt. Journal of Environmental Sciences, 23 (3): 444 – ۴۵۲٫
Mora A, Ortegacalvo J, Cabrera F, Madejon E. Changes in enzyme activities and microbial biomass after ?in situ? remediation of a heavy metal-contaminated soil. Applied Soil Ecology 2005; 28(2): 125-37.
Moraghan, J. T. 1993. Accumulation of cadmium and selected elements in flax seed grown on a calcareous soil. Plant and Soil 150: 61-68.
Moura M.C.S., Moita G.C. and Neto J.M.M. 2010. Analysis and assessment of heavy metals in urban surface soils of Teresina, Piauí State, Brazil: a study based on multivariate analysis. Comunicata Scientiae, 1:120-127.
Nascimento, C. W. A. D., B. Xing. 2006. Phytoextraction: A review on enhanced metal availability and plant accumulation. Sci. Agric. (Piraci caba, Braz). 63, 299-311.
Németh T, Molna E, Csillag J, Bujtas K, Lukacs A, Partay G (1993) Fate and plant Uptake of Heavy Metals in Soil-Plant Systems Studied on Soil Monoliths. nickel, and copper by Salix acmophylla boiss. : Role of Antioxidant Enzymes and Antixidant substances. Bull. Environ. Contam. Toxicol. 70: 462-469.
Nouri, J., Khorasani, N., Lorestani, B., Karami, M., Hassani, A. H. and Yousefi, N. (2009) Accumulation of heavy metals in soil and uptake by plant species with phytoremediation potential. Environmental Earth Science 59:315-323.
O’Connor, C. S., Leppi, N. W., Edwards, R., & Sunderland, G. (2003). The combined use of electrokinetic remediation and phytoremediation to decontaminate metal.polluted soils: A laboratory. Scale feasibility study. Environmental Monitoring and Assessment, 158- 141, 84.
Ouyang Y. Phytoremediation: modeling plant uptake and contaminant transport in the soil-plant-atmosphere continuum. Journal of Hydrology 2002; 266(1-2): 66-82.
Peretiemo-Clarke BO, Achuba FI. Phytochemical Effect of Petroleum on Peanut (Arachis hypogea)Seedlings, Journal of Plant Pathology. 2007; 6 (2): 179-182.
Perkin-Elmer., 1994. Analytical Methods for Atomic Absorption Spectrometry. The Perkin- Elmer Corporation, USA, 300p.
Pierzynsky, G.M., Sims, J.T. and Vance, G.W. 1994. Soils and environmental quality. Lewis CRC Press, Boca Raton, FL.
Pivetz B. 2001. Phytoremediation of Contaminated Soil and Ground Water at Hazardous Waste Sites. Ground Water Issue. United States Environmental Protection Agency.
Pivetz BE. Ground Water Issue: Phytoremediation of Contaminated Soil and Ground Water at Hazardous Waste Sites [Online]. 2001; Available from: www. epa. gov/ nrmrl/ pubs/ 540s01500/ epa_ 540_ s01_ 500. pdf/.
Poorkhabbaz,A. Rastin, N. Polle, A. Gravenhorst, G. Langenfeld –Heyser, R. 2007. Effect of heavy metal deposition on Platanus orientalis leaves, Institute of Forest Botany, Faculty of Forest Science and Forest Ecology, Georg-August-University, Goettingen, Germany apoorkh@gwdg.de Total Environ 2007; 400(1-3): 162-72.
Prasad, M.N.V. 2004. Phytoremediation of metals and radionuclides in the environment: the case for natural hyperaccumulators, metal transporters, soil-amending chelators and transgenic plants. In: Heavy metal stress inlants: from biomlecules to ecosystems. Heidelberg, Springer-Verlag, 2nd ed., 2004, pp. 345-392.
Prasad,M. N. V, & Freitas, H. (2003). Metal hyperaccumulation in plants- Biodiversity prospecting for phytoremediation technology. Electronic Journal of Biotechnology, 321- 275, 6.
Pugh, R.E., Dick, D.G. and Fredeen, A.L. (2002) Heavy metal (Pb, Zn, Cd, Fe and Cu) contents of plant foliage near the Anvil Range lead/zink mine, Faro, Yukon Territory. Ecotoxicology and Environmental Safety, 52: 273-279.
Pulford ID, Watson C. Phytoremediation of heavy metal-contaminated land by trees–a review. Environ Int 2003; 29(4): 529-40.
Rad, M.H., Sardabi, H., Soltani, M. and Ghelmani, S.V., 2010. Comparison of different eucalypt species and provenances in respect to their vegetative growth, irrigated by wastewater of Yazd City of Iran. Proceedings of Second Seminar on: the Position of Water Reuse and Effluents on Water Resources Management: Applications in Agriculture and Landscape Irrigation, 20 Oct. 2010, Mashhad, I.R. Iran, Abstracts: 105-106.
Raskin, I. and Ensley, B. (2000) Phytoremediation of toxic metals: Using plants to clean up the environment. John Wiley & Sons, Ltd., New York. 304p.
Ravi Naidu, Danielle Oliver and Stuart McConnell . CSIRO Land and Water and EPA Victoria. 2003. Heavy Metal Phytotoxicity in Soils . Proceedings of the Fifth National Workshop on the Assessment of Site Contamination. Page 235. National Environment Protection Council Service Corporation 2003. Printed version ISBN 0-642-32355-0.
Romheld, V. and H. Marschner, 1991. Genotypic differences among graminaceous species in release of phytosiderophores and uptake of iron of phytosiderophores. Plant Soil, 123: 147– ۱۵۳٫
Ross,S.M. 1994. Toxic metals: fate and distribution in contaminated ecosystems. In: Ross, S.M. (Ed.), Toxic metals in Soil-Plant Systems. John Wiley, Chichester, pp. 189-243.
Ryan, J.A., R.M. Bell, J. M. Davidson, and G.A. O’Connor. 2000. Terry, N., and G. Bauٌelos (eds.). 2000. Phytoremediation of Contaminated Soil and Water. Lewis Publishers, Boca Raton, FL. 389 pp.
Salahi, A., 2007. Investigation on the efficiency of Eucalyptus species as hyper-accumulator to uptake heavy metals in some Northern and Southern provinces of Iran. Final Report of National Research Project, Research Institute of Forests and Rangelands, 87 p
Salt, D. E, Smith, R. D., & Raskin, I. (1998). Phytoremediation. Annual Reviw of Plan Physiology and Plant Molecular Biology, 668- 643, 49.
Schilling, J. S. , M.E.,Lehman. 2002. Bioindication of atmospheric heavy metal deposition in the southeastern US using moss Thuidium delicatulum. Atmosph.Environ. 36:1161-1618.
Shah, F.R., Ahmad, N., Masood. K. R., Zahid, D.M., Zubair, M. 2011. Res ponse of Eucalyptus Camaldulensis To Xogenous Application of Cadmium and Chromium. Pak. J. Bot., 42(1): 181- 189.
Sharma P. and R.S. Dubey. 2005. Lead toxicity in plants. Plant physiol., 17, 35-52.
Sheppard, D. S.; Campbell, I. B.; Claridge, G.G. C; Deely, J.M.1994:Contamination of soils about Vanda Station, Antarctica. Institute of Geological and Nuclear Sciences Science report 94/20. 140 p.
Sherivastava, A.K. 2009. A review on copper pollution and its removal from water bodies by pollution control technologies. Environment and pollution, 29, 6: 552-560.
Shete A., Gunali V R. and Pandit G G. 2007. Bioaccumulation of Zn and Pb in Avicennia marina (Forsk.) Vierh. and Sonneratia apetala Buch. Ham. from Urban Areas of Mumbai (Bombay), India. J. Appl. Sci. Environ. Manage. 11(3): 109–۱۱۲٫
Shi, Z., di Toro D.M., Allen H.A., Ponizovsky A.A. 2005. Modeling kinetics of Cu and Zn released from soils. Environ. Sci. Technol. 39:4562–۴۵۶۸٫
Singh, G. Madhulika, B. Thanaram, R. 2010. Use of tree seedlings for the Phytoremediation of a municipal effluent used in dry areas of north- western India: Plant growth and nutrient uptake. Ecological Engineering 36(2010) 1299- 1306.
Soares, C.R.F.S., Grazziotti, P.H., Siqueria, J.O., Carvaiho, J.G., Moreira, F.M.S., 2001. Zinc toxicity on growth and nutrition of Eucalyptus maculate and Eucalyptus urophylla in nutritient solution pesq. Agropec. Bras., Brasilia, V.36,n.z.,p.339-348.
بررسی قابلیت دو گونه گیاهی در جذب فلزات سنگین خاک (مطالعه موردی منطقه نیمه بیابانی چپرقویمه، استان گلستان)- قسمت ۵۷
آخرین نظرات