Identyfikatory
DOI
Warianty tytułu
Języki publikacji
Abstrakty
Phytoremediation is a process of waste utilization and conversion by plants which includes such techniques as: phytoextraction, phytodegradation, phytovolatilization, rhizofiltration (phytofiltration) and phytostabilization. This review provides definitions and brief description of phytoremediation techniques and gives examples of their successful use.
Czasopismo
Rocznik
Tom
Strony
10--13
Opis fizyczny
Bibliogr. 38 poz.
Twórcy
autor
- Institute of General Food Chemistry, Faculty of Biotechnology and Food Sciences, Technical University of Lodz, 90-924 Lodz, 4/10 Stefanowskiego, Poland; Phone: +48 42 631-34-11; Fax: +48 42 631-28-42
autor
- Department of Plant Physiology and Biochemistry, Faculty of Biology and Environmental Protection, University of Lodz, 90-237 Lodz, 12/16 Banacha, Poland
autor
- Institute of General Food Chemistry, Faculty of Biotechnology and Food Sciences, Technical University of Lodz, 90-924 Lodz, 4/10 Stefanowskiego, Poland
Bibliografia
- Alkio, M., T.M. Tabuchi, X. Wang, A. Colon-Carmona. 2005. Stress responses to polycyclic aromatic hydrocarbons in Arabidopsis include growth inhibition and hypersensitive response-like symptoms. Journal of Experimental Botany 56: 2983-2994.
- Burken, J.G., J.L Schnoor. 1999. Ditribution and volatilization of organic compounds following uptake by hybrid poplar trees. International Journal of Phytoremediation 1: 139-151.
- Burns, R.G., J.L. DeForest, J. Marxsen, R.L. Sinsabaugh, M.E. Stromberger, M.D. Wallenstein, M.N. Weintraub, A. Zoppini. 2013. Soil enzymes in a changing environment: current knowledge and future directions. Soil Biology and Biochemistry 58: 216-234.
- Coleman, J., M. Blake-Kalff, T. Davies. 1997. Detoxification of xenobiotics by plants: chemical modification and vacuolar compartmentation. Trends in Plant Science 2: 144-151.
- Cunnigham, S.D.,W.R. Berti. 1993. Remediation of contaminated soils with green plants: an overview. In Vitro, Cell & Developmental Biology 29: 207-212.
- Dordio, A.V., A.J.P. Carvalho. 2013. Organic xenobiotics removal in constructed wetlands, with emphasis on the importance of the support matrix. Journal of Hazardous Materials 252–253: 272–292.
- Edwards, R., D.D. Dixon. 2004. Metabolism of natural and xenobiotic substrates by the plant glutathione S-transferase superfamily. In: Molecular Ecotoxicology of Plants (ed. H. Sandermann), Ecological Studies, Volume 170, pp. 17-50. Springer Verlag, Heidelberg.
- Frick, C.M., R.E. Farrell, J.J. Germida. 1999. Assessment of phytoremediation as an in-situ technique for cleaning oilcontaminated sites. https://clu-in.org/download/remed/phyassess.pdf, accessed December 29, 1999.
- Fu, J., B. Mai, G. Sheng, G. Zhang, X. Wang, P. Peng, X. Xiao, R.R. Cheng, X. Peng, Z. Wang, U.W. Tang. 2003. Persistent organic pollutants in environment of the Pearl River Delta, China: an overview. Chemosphere 52: 1411–1422.
- Gajewska, E., M. Skłodowska, M. Słaba, J. Mazur. 2006. Effect of nickel on antioxidative enzyme activities, proline and chlorophyll contents in wheat shoots. Biologia Plantarum 50: 653- 659.
- Gerhardt, K.E., X.-D. Huang, B.R. Glick, B.M. Greenberg. 2009. Phytoremediation and rhizoremediation of organic soil contaminants: Potential and challenges. Plant Science 176: 20-30.
- Gonçalves, J.F.,A.G. Becker,D. Cargnelutti,A.L. Tabaldi, L.B. Pereira, V. Battisti, R.M. Spanevello, V.M. Morsch, F.T. Nicoloso, M.R.C. Schetinger. 2007. Cadmium toxicity causes oxidative stress and induces response of the antioxidant system in cucumber seedlings. Brazilian Journal of Plant Physiology 19: 223-232.
- Karadede, H., E. Unlü. 2000. Concentrations of some heavy metals in water, sediment and fish species from the Atatürk Dam Lake (Euphrates), Turkey. Chemosphere 41: 1371–1376.
- Komives, T., G. Gullner. 2005. Phase I xenobiotic metabolic systems in plants. Zeitschrift für Naturforschung 60: 179-185.
- Lu, Y., X.R. Li, M.Z. He, Z.N. Wang, H.J. Tan. 2010. Nickel effects on growth and antioxidative enzymes activities in desert plant Zygophyllum xanthoxylon (Bunge) Maxim. Sciences in Cold and Arid Regions 2: 436-444.
- Macek, T., M. Macková, J. Káš. 2000. Exploitation of plants for the removal of organics in enviromental remediation. Biotechnology Advances 18: 23-24.
- Małecka, A, B. Tomaszewska. 2005. Reactive oxygen species in plant cells and antioxidative defence systems. Post´py Biologii Komórki 32: 311-325 (in Polish).
- Marecik, R., P. Króliczak, P. Cyplik. 2006. Phytoremediation – an alternative method for environmental cleanup. Biotechnologia 3: 88-97 (in Polish).
- Mielcarek, A., M. Krzemieniewski. 2013. Research on the use of selected macrophytes in the process of methane fermentation. Rocznik Ochrona Ârodowiska 15: 2611-2624 (in Polish).
- Monferrán, M.V., M.L. Pignata, D.A. Wunderlin. 2012. Enhanced phytoextraction of chromium by the aquatic macrophyte Potamogeton pusillus in presence of copper. Environmental Pollution 161: 15-22.
- Mukhopadhyay, S., S.K. Maiti. 2010. Phytoremediation of metal mine waste. Applied Ecology and Environmental Research 8: 207-222.
- Pivetz, E.B. 2001. Phytoremediation of Contaminated Soil and Ground Water at HazardousWaste Sites. EPA/540/S-01/500. USEPA. 36 p.
- Pratas, J., C. Paulo, P.J.C. Favas, P. Venkatachalam. 2014. Potential of aquatic plants for phytofiltration of uranium-contaminated waters in laboratory conditions. Ecological Engineering 69: 170-176.
- Plechońska, L., A. Klink. 2014. Trace metal bioindication and phytoremediation potentialities of Phalaris arundinacea L. (red canary grass). Journal of Geochemical Exploration 146: 27-33.
- Riding, M.J., K.J. Doick, F.L. Martin, K.C. Jones, K.T. Semple. 2013. Chemical measures of bioavailability/bioaccessibility of PAHs in soil: Fundamentals to application. Journal of Hazardous Materials 261: 687–700.
- Różański, L. 1998. Conversion of Pesticides in Organisms and Environment. 382 p. Wydawnictwo AGRA-ENVIROCAB, Poznań (in Polish).
- Salt, D.E., I.J. Pickering, R.C. Prince, D. Gleba, V. Dushenkov, R.D. Smith, J. Raskin. 1997. Metal accumulation by aquacultured seeds of Indian mustard. Environmental Science and Technology 31: 1636-1644.
- Segura, A., J.L. Ramos. 2013. Plant–bacteria interactions in the removal of pollutants. Current Opinion in Biotechnology 24: 467-473.
- Siwek,M. 2008. Phytoremediation as a biological method of cleaning up the environment. WiadomoÊci Botaniczne 52: 23-28 (in Polish).
- Srivastava, S., S. Sounderajan, A. Udas, P. Suprasanna. 2014. Effect of combinations of aquatic plants (Hydrilla, Ceratophyllum, Eichornia, Lemna and Wolffia) on arsenic removal in field conditions. Ecological Engineering 73: 297- 301.
- Starck, Z. 2005. Plant responses to the abiotic environmental stresses – aclimatization and adaptation. Łakarstwo w Polsce 8: 173-184 (in Polish).
- Stroiński, A. 1999. Some physiological and biochemical aspects of plant resistance to cadmium effect. I. Antioxidative system. Acta Physiologiae Plantarum 21: 175-188.
- Susarla, S., V.F.Medina, S.C.McCutcheon. 2002. Phytoremediation: an ecological solution to organic chemical contamination. Ecological Engineering 18: 647-658.
- Tu, S., L.Q. Ma, G.E. MacDonald, B. Bondada. 2004. Effects of arsenic species and phosphorus on arsenic absorption, arsenate reduction and thiol formation in excised parts of Pteris vittata L. Environmental and Experimental Botany 51: 121-131.
- Wang, J., C.B. Zhang, Z.X. Jin. 2009. The distribution and phytoavailability of heavy metal fractions in rhizosphere soils of Paulowniu fortunei (seem) Hems near a Pb/Zn smelter in Guangdong, PR China. Geoderma 148: 299–306.
- Wójcik, P., B. Tomaszewska. 2005. Biotechnology in remediation of organic contamination. Biotechnologia 4: 156-172 (in Polish).
- Zazouli, A.M., Y. Mahdavi, E. Bazrafshan, D. Balarak. 2014. Phytodegradation potential of bisphenol A from aqueous solution by Azolla filiculoides. Jurnal of Environmental Health Science and Engineering 12: 1-5.
- Zemleduch, A., B. Tomaszewska. 2007. Mechanisms, processes and interactions during phytoremediation. Kosmos, Problemy Nauk Biologicznych 56: 393-407 (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3254d125-2490-42a9-932d-55c533b62725
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