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Badania pierwiastków śladowych zakumulowanych w porostach

Identyfikatory
Warianty tytułu
EN
Trace chemical elements accumulated in lichen
Języki publikacji
PL
Abstrakty
PL
Przedstawiono przykłady wykorzystania metod analitycznych, m.in.: INAA, XRF, MS, PIXE, AAS i AES, do badania pierwiastków śladowych związanych w plesze porostów. Celem opisywanych badań było poznanie mechanizmów sorpcji i miejsca lokalizacji pierwiastków śladowych w porostach oraz ocena i monitoring zanieczyszczenia środowiska na podstawie analizy składu porostów. Przedstawiono niektóre badania dotyczące oceny zanieczyszczenia środowiska na podstawie badań pierwiastków śladowych w plesze porostów, Omówiono również sposoby preparowania próbek, sposoby standaryzacji metodyk badawczych oraz chemometryczne techniki opracowania wyników.
EN
The use of same analytical methods (e.g.: INAA, XRF, MS, PIXE, AAS and AES) in study of the trace elements bound to lichen thallus was reviewed. The aim of the investigation was elucidation of sorption mechanism and localisation of the elements in lichens as well as assessment and monitoring of environment pollution. Some examples of the research data have been presented. Methods of sample preparation and standardization as well as using of chemometric methods for analytical data assessment have been discussed.
Rocznik
Strony
155--178
Opis fizyczny
Bibliogr. 159 poz., 2 rys., 5 tab.
Twórcy
autor
  • Zakład Badań Fizykochemicznych, Katedra Technologii, Uniwersytet Opolski, ul. Kard.B. Kominka 4, 45-951 Opole, tel. (077) 453 89 76, fax (077) 455 91 49
autor
  • Zakład Badań Fizykochemicznych, Katedra Technologii, Uniwersytet Opolski, ul. Kard.B. Kominka 4, 45-951 Opole, tel. (077) 453 89 76, fax (077) 455 91 49
autor
  • Zakład Badań Fizykochemicznych, Katedra Technologii, Uniwersytet Opolski, ul. Kard.B. Kominka 4, 45-951 Opole, tel. (077) 453 89 76, fax (077) 455 91 49
autor
  • Katedra Fizyki Chemicznej, Instytut Chemii, Uniwersytet Opolski, ul. Oleska 48, 45-951 Opole, tel. (077) 454 58 44 w. 2234, fax (077) 455 91 49
  • Zakład Badań Fizykochemicznych, Katedra Technologii, Uniwersytet Opolski, ul. kard. B. Kominka 4, 45-951 Opole, tel. (077) 4538976, fax (077) 4559149, maria.waclawek@uni.opole.pl
Bibliografia
  • [1] Vitikainen O.: William Nylander (1822-1899) and Lichen Chemotaxonomy. Bryologist, 2001, 104(2), 263-267.
  • [2] Kłos A., Rajfur M., Waclawek W. i Waclawek M.: Lichen utilisation for radionuclids etwinmnient pollution dnermination. Chem. Inż. Ekol., 2004, 11(12), w druku.
  • [3] Mazerski J.: Podstawy chemomelrii. Wyd. Politechniki Gdańskiej, Gdańsk 2000.
  • [4] Astel A., Mazerski J., Polkowska Ż. i Namieśnik J.: Analiza chemometryczna w oznaczaniu chemicznych zanieczyszczeń opadów atmosferycznych w rejonie Trójmiasta, cz. 1. Przygotowanie danych. Chem. Inż. Ekol., 2001,8(1), 19-37.
  • [5] Wardencki W. (praca zbiorowa): Bioanalityka w ocenie zanieczyszczeń środowiska. CEEAM, Gdańsk 2004.
  • [6] Kłos A., Waclawek M., Rajfur M. i Waclawek W.: Przyczyny właściwości sorpcyjnych i bioindykacyjnych porostów. Chem. Dydakt. Ekol. Metrol., 2002, 7(1-2), 49-57.
  • [7] Kłos A., Rajfur M., Wacławek M. i Wacławek W.: łon eauilibrium in lichen surrounding. Bioelectrochem., 2004.
  • [8] Tuominen Y. i Jaakkola T.: Absorption and accumulation of mineral elements and radioactive nuclides.The lichens. Academic Press, New York and London 1973, 185-223.
  • [9] Schwartzman D.W., Stieff U, Kasim M., Kombe E., Aung S., Atekwana E., Johnson J. i Schwartzman K.: An ion-exchange model of lead- 210 and lead uptake in a foliose lichen; application to quantitative monitoring ofairborne lead fallout. Sci. Total Environ., 1991, 100, 319-336.
  • [10] Gadd G.M.: Interaction offungi with toxic metals. New Phytol., 1993, 124, 25-60.
  • [11] Brown D.H. i Brumelis G.: A biomonitoring method using the celtular distribution of metals in mosses. Sci. Total Environ., 1996, 187(2), 153-161.
  • [12] Figueira R., Pacheco A.M.G., Sousa A.J. i Catarino F.: Development and calibration of epiphytic Uchem as saltfall biomonitors. Proceedings of the International Workshop in Biomonitoring of atmospheric pol-lution (with emphasis on tracę elements) - BioMAP H, 28 August - 3 Septembrer 2000, LAEA-TECDOC-1338. International Atomie Energy Agency, Vienna 2003, 126-135.
  • [13] Rajfur M., Kłos A., Wacławek M. i Waclawck W.: Analiza właściwości sorpcyjnych porostów Hypo-gymnia physodes. Proc. XII Central European Conference ECOpole'03 (16-18.10.2003, Jamrozowa Polana), Opole 2003, 263-269.
  • [14] Rajfur M., Kłos A., Wacławek W. i Wacławek M.: Heavy metals sorption in lichen Hypogymnia physodes. Anal. Chem. Act., wysiane do druku.
  • [15] Nieboer E. i Richardson D.H.S.: The replacement of the nondescript term 'Heavy Metals' by a biologi-cally and chemically significant classification of metal ions. Environ. Pollut., 1986, Series B, l, 3-26.
  • [16] Hauck M., Mulack C. i Paul A.: Manganese uptake in the epiphytic lichens Hypogyinnia physodes and Lecanora conizaeoides. Environ. Exp. Bot., 2002, 48, 107-117.
  • [17] Branquinho C., Brown D.H. i Catarino F.: The cellular location of Cu in lichens and is effects on membrane integrity and chlorophyll fluorescence. Environ. Exp. Bot., 1997, 38, 165-179.
  • [18] Brown D.H.: Lichen mineral studies - currently clarified or confused. Symbiosis, 1991, 11(2-3), 207-223.
  • [19] Ohnuki T., Sakamoto F., Kozai N., Sakai T., Kamiya T., Satoh T. i Oikawa M.: Micro-pixe study on sorption behaviors of cobalt by lichen biomass. Nuci. Instr. Meth. Phys. Res., 2003, B 210, 407-411.
  • [20] Branquinho C., Catarino F. i Brown D.H.: Improving the use of lichens as biomonitors of atmospheric metal pollution. Proceedings of the International Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 5-16.
  • [21] Schmull M. i Hauck M.: Extraction methods for assessing the availability of cations for epiphytic lichens from bark. Environ. Exp. Bot., 2003, 49, 273-283.
  • [22] Schmull M. i Hauck M.: Element microdistribution in the bark of Abies balsamea and Picea rubens and its impact on epiphytic lichen abundance on Whiteface Mountain. Flora, 2003, 198, 293-303.
  • [23] Saiki M., Horimoto L.K., Vasconcellos M.B.A. i Marcelli M.P.: Substrate influence on elemental com-position of canoparmelia texana lichenized fungi. Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on tracę elements) - BioMAP II, 28 August - 3 September 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 271-277.
  • [24] Hauck M.: Ecology of epiphytic lichens in a montane spruce forest: influence of forest dieback and farest management on chemical habitat conditions. Diss. Bot., 2000, 327, 1-232.
  • [25] Clark B.M., Mangelson N.F., St. Clair L.L., Gardner J.S. Cooper L.S., Rees L.B., Grant P.G. I Bench G.S.: Analysis of lichen ihin sections by PIXE and STIM using a proton microprobe. Nuci. Ins. Meth. Phys. Res., 1999, B 150, 148-253.
  • [26] Garty J. i Theiss H.B.: The localization of lead in the lichen Ramalina duriaei (De Not.j. Bagl. Bot. Acta, 1990, 103,311-314.
  • [27] Goyal R. i Seaward M.R.D.: Metal uptake in terrirolous lichens. III. Translocation in the thallus of Peltigera canina. New Phytol. 1982, 90, 85-98.
  • [28] Hauck M., Paul A., Mulack C., Fritz E i Runge M.: Effects of manganese on the viabilily ofvegetative diaspore of the epiphytic lichen Hypogynmia physodes. Environ. Exp. Bot., 2002, 47, 127-142.
  • [29] Paul A., Hauck M. i Fritz E. Effects of manganese on element dislribulion and structure in thalli of the epiphytic lichens Hypogynmia physodes and Lecanora conizaeoides. Environ. Exp. Bot., 2003, 50, 113-124.
  • [30] Paul A., Hauck M. i Langenfeld-Heyser R.: Ultrastructural changes in soredia of the epiphytic lichen Hypogytnniaphysod.es cultivated with manganese. Environ. Exp. Bot., 2004, 52, 139-147.
  • [31] Garty J., Galun M. i Kessel M.: Localization of heavy metals and other elements accumulated in the lichen thallus. New Phytol., 1979, 82, 159-168.
  • [32] De los Rios A., Wierzchos J. i Ascaso C.: Mic.rohabitats and chemical inicroenvironmentx saxicolius lichens growing on granite. Microb. Ecol., 2002, 43, 181-188.
  • [33] Purvis O.W.: The occ.urrence ofcopper oxalate in lichens growing on copper sulfide-bearing rocks in Scandinavia. Lichenologist, 1984, 16(2), 197-204.
  • [34] Nedić O., Stanković A i Stanković A.: The exislence and remova.l of evaporable 137Cs-conlaining compound(s) from the extract of lichen Cetraria islandica. Chem. Ecol., 1998, 14, 143-149.
  • [35] Nedić O., Stanković A i Stanković A.: Organie cesium carrier(s) in lichen, Sci. Total Environ., 1999, 227,93-100.
  • [36] Takani M., Yajiraa T., Masuda H. i Yamauchi O.: Spectroscopic and structural characterization of copper(II) and palladiumII) complexes of a lichen substance usnie acid and its derivatives. Possible forms of environmental metals ntained in lichens. J. Inorg. Biochem., 2002, 91, 139-150.
  • [37] Falnoga I., Tuśek-Żnidarifi M., Jeran Z., Pavicić J., Ivanković D. i Scanćar J.: Water soluble metalloproteins in Hypogynmia physodes. Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with eraphasis on tracę elements) - BioMAP II. 28 August - 3 Septembrer 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 339-343.
  • [38] Huneck S. i Yoshimura I.: Identification of Lichen Substances. Springer Verlag, Berlin, Heidelberg 1996.
  • [39] Wolterbeek H.Th. i Bodę P.: Strategies in sampling and sample handling in the context of large-scale plant biomonitoring surveys of trace element air pollution. Sci. Total Environ., 1995,176, 33-43.
  • [40] Czarnota P.: Zawartość mikro i makropierwiastków w plechach Hypogynmia physodes w Gorczańskim Parku Narodowym próba lichenoindykacji. Parki Narodowe i Rezerwaty Przyrody, 1995, 14(3), 69-88.
  • [41] Freitas M.C., Reis M.A., Marques A.P. i Wolterbeek H.Th.: Use of lichen transplants in atmospheric deposition studies. J. Radioanal. Nuci. Chem., 2001, 249(2), 307-315.
  • [42] Reis M.A., Alves L.C., Freitas M.C., van Os B. i Wolterbeek H.Th.: Mean annual response of lichen Parmelia sulicata to environmental elernental availability. Proceedings of the International Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000,81-90.
  • [43] Prudencio M.I., Gouveia M.A., Freitas M.C., Chaves I. i Marques A.P.: Soil versus lichen analysis on elemental dispersion studies (Nort of Portugal). Proceedings of the International Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 91-99.
  • [44] Reis M.A., Alves L.C., Freitas M.C., van Os B. i Wolterbeek H.Th: Lichens (Parmelia sulcata) time response model to environmental elemental availability. Sci. Total Environ., 1999, 232, 105-115.
  • [45] Reis M.A., Alves L.C., Freitas M.C., van Os B. i Wolterbeek H.Th.: Lichen Parmelia Sulicata time response model to environmental availability. Proceedings of the Internationa] Workshop: BioMAP, 21- 24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 29-37.
  • [46] Ellis K.M. i Smith J.N.: Dynamie model for radionuc.lide uptake in lichen. J. Environ. Radioactiv., 1987, 5(3), 185-208.
  • [47] van den Berg G.J., Tyssen T.P.M., Ammerlaan M.J.J., Yolkers K.J., Woroniecka U.D., de Bruin M. i Wolterbeek H.Th.: Radiocesium and lead in the lichen species Parmelia sulcata sampled in three regions around Chernobyl: assessment of conc.entrations in 1990. J. Environ. Radioactiv., 1992, 17, 115-128.
  • [48] Steinhausler F.: Uncertainties associated witk the corroboration of official USSR environmental data in areas contaminated by Chemobyl falloul. J. Environ. Radioactiy., 1992,17(2+3), 211-232.
  • [49] Daillant O., Kirchner G., Beltramo J.L., Gueidan C., Jacquiot L., Joyeux E., Loizeau M.N., Paris A., Pognat i Tiller C.: Uchens and new possibilities of bio-indication in France. Proceedings of the International Workshop in Biomonitoring of atinospheric pollution (with emphasis on tracę elements) - BioMAP U, 28 August - 3 Septembrer 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 118-125.
  • [50] Wolterbeek H.Th., Bodę P. Yerburg, T.G.: Assessing the analny of biomonitoring via signal-to-noist ratioanalysis. Sci. Total Environ., 1996,180, 107-116.
  • [51] Kłos A., Rajfur M., Wactawek W. i Wacławek M.: Assessment of precipitation pH value based on the composition of cationactive layer of Uchens. Ann. of the Polish Chem. Soc., 2004, 3(1), 1124-1127.
  • [52] Rajfur M., Kłos A., Wactawek M. i Wactawek W.: Badanie procesów sorpcji w porostach llypogynuiia physodes. Proc. XIII Central European Conference ECOpole'04 (21-23.10.2004. Jamrozowa Polana), Opole 2004.
  • [53] Pacheco A.M.G., Freitas M.C., Barros L.I.C. i Figueira R.' Iwestigating tree bark as an air-pollution biomonitor by means of neutron activallon analysis. J. Radioanal. Nuci. Chem., 2001, 247(2), 327-331.
  • [54] Freitas M.C., Pacheco A.M.G., Marąues A.P., Barros L.I.C. i Reis M.A.: Applications of nuclear ana-lytical techniques to eiwironmental studies. A1P Conference Proceedings, 12.07.2001, 576(1), 508-511.
  • [55] Pacheco A.M.G. i Freitas M.C.: Arę lower epiphytes really that better than higher plants for indicating airborne contaminates? An insight into the elemental contents of lichen thalli and tree bark by 1NAA. J. Radioanal. Nuci. Chem., 2004, 259(1), 27-33.
  • [56] Pacheco A.M.G., Barros L.I.C., Freitas M.C., Reis M.A., Hipólito C. i Oliveira O.: An evaluation of olive-tree bark for biomonitoring airborne contaminants, Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) - BioMAP 11, 28 August - 3 September 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 345-354.
  • [57] Rahn K.A.: A graphical techniąue for distinguishing plant material and soil from atinospheric deposi-tion in biomonitors. Proceedings of the Internacional Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 47-62.
  • [58] Marques A.S,, Freitas M.C., Reis M.A. de Oliveira O. i Wolterbeek H.Th.: Bio-inonitoring of tracę element air pollution in the Sado estuary. Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) - BioMAP 11, 28 August - 3 Seplember 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 223-228.
  • [59] Freitas M.C., Reis M.A., Marques A.P. i Wolterbeek H.Th.: Dispersion of cliemical elements in an industrial environment studied by biomonitoring using Parrnelia sulicata. J. Radioanal. Nuci. Chem., 2000,244(1), 109-113.
  • [60] Hubach D.F., Arribere M.A., Riberio Guevara S. i Calvelo S.: Study on the feasibility of using trans-planted Protousnea magellanica thalli as a bioundicator of atmospheric contarnination. 1. Radioanal. Nuci. Chem., 2001, 250(3), 63-68.
  • [61] Pantelica A. i Cercasov V.: Eksperimental setup and elemental analysis of lichen bioaccumulators before exposure, Report WP2 IDRANAP 03-01/2001, European Commission Center of Excellence In-terDisciplinary Research and Applications Bascd on Nuclear and Atomie Physies, 2001.
  • [62] Pantelica A., Cercasov V., Steinnes E., Bodę P., Wolterbeek B. i Wentz L: Comparative characterisation of air pollution at six industral sites in Romania. Report WP2 IDRANAP 79-04/2004, Europcan Com¬mission Center of Excellence InterDisciplinary Research and Applications Based on Nuclear and Atomie Physies, 2004.
  • [63] Garty J.: Metal amounts in the lichen Ramalina duriaei (De Not.) Bagl. transplanted at biomonitoring sites arounda new coal-firedpower station after 1 year of operation. Environ. Res., 1987, 43(1), 104-116.
  • [64] Garty J.: Comparisons between the metal content of a transplanted lichen before and after the start-up of a coal-fired power station in hrael. C.an. J. Bot., 1988, 66(4), 668-671.
  • [65] Garty J., Cohen Y., Kloog G. i Karnieli A.: Effects of air pollution on celi membranę integrity, spectral reflectance, and metal and sulfur concentrations in Uchens. Environ. Toxicol. Chem., 1997, 16, 1396-1402.
  • [66] Garty J. i Hagemeyer J.: Heavy inetals in the lichen Ramalina duriaei transplanted at biomonitoring stations in the region of a coal-fired power plant in hrael after 3 years of operation. Water, Air, and Soil Pol., 1988, 38(3-4), 311-323.
  • [67] Garty J., Kardish N., Hagemeyer J. i Ronen R.: Correlations between the concentration afadenosine tri-phosphate, chlorophyll degradation and the amounts of airborne heavy metals and sulphur in a transplanted lichen. Arch. Environ. Contam. Toxicol., 1988,17, 601-611.
  • [68] Garty J., Kauppi M. i Kauppi A.: The influence of air pollution on the cimcentration of airborne elements and on the production of stress-ethylene in the lichen Usnea hirta (L.) weber em. Mol. Trans-planted in urban sites in Oulu, N. Finland. Arch. Environ. Contam. Toxicol., 1997, 32, 285-290.
  • [69J Richardson D.H.S., Shore M., Hartree R. i Richardson R.M.: The use of X-rayfluorescence spectrometry for the analysis of plants, especially lichens, employed in biological monitoring. Sci. Total Environ., 1995, 176, 97-105.
  • [70] Namieśnik J., Jamrógiewicz Z., Pilarczyk M. i Torres L.: Przygotowanie próbek środowiskowych do analizy. WNT, Warszawa 2000.
  • [71] Scerbo R., Possenli L., Lampugnani L., Ristori T., Barale R. i Barghigiani C.: Lichen (Xanthoria pariet-ina) biomonitoring of trace element contamination and air quality assessment in Livorno Province (Tuscany, Italy). Sci. Total Environ., 1999, 241, 91-106.
  • [72] Coccaro D.M.B., Saiki M., Yasconcellos M.B.A. i Marcelli M.P.: Analysis of Canopannelia lexana lichens collected in Brazil by neutron activation analysi.s. Proceedings of the International Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 143-148.
  • [73] Clark B.M., Mangelson N.F., St. Clair L.L., Rees L.B., Benech G. i Southon J.R.: Measurement of agę and growth rate in the crustose saxicolous lichen Caloplaca trachyphyila using 14C akcelerator masx spectrometry. Lichenologist, 2000, 32(4), 399-403.
  • [74] Benech G., Clark B.M., Mangelson N.F., St. Clair L.L., Rees L.B., Grant P.G. i Southon J.R.: Accurate lifespan estimates cannot be obtained froin 14C projiles in the crustose liclien Khizocarpon geographicum (L.) DC. Lichenologist, 2001, 33(6), 539-542.
  • [75] Benech G„ Clark B.M., Mangelson N.F., St. Clair L.L., Rees L.B., Grant P.G. i Southon J.R.: Use of 14C/C ratios to provide insights into the magnitude of carbon turnover in the crustose saxicolous lichen Caloplaca trachyphyila. Lichenologist, 2002, 34(2), 169-180.
  • [76] Webster M. i Brown D.H.: Preliminary observations on the growth of transplanted Peltigera canina under semi-natural conditions. Lichenologist, 1997, 29(1), 91-96.
  • [77] Marques A.S., Freitas M.C., Reis M.A., Wolterbeek H.Th. i Yerburg T.: MCTTFA applied to differential biomonitoring in Sodo estuary region. J. Radioanal. Nuci. Chem., 2004, 259(1), 35-40.
  • [78] Garty J. i Amman K.: The amounts of Ni, Cr, Zn, Pb, Cu, Fe and Mn in some lichens growing in Swit-zerland. Environ. Exp. Bot., 1987, 27, 127-138.
  • [79] Jeran Z., Jaćimoyić R., Smodis B. i Batić F.: Epiphytic lichens as quantitative bionwnitors for atmospheric element deposition. Proceedings of the International Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 22-28.
  • [80] Horyat M., Jeran Z., Śpirić Z., Jaćimović R i Miklavćić V.: Mercury and other elements in lichens near the INA Naftaplin gas treatment plant, Molve, Croatia. J. Environ. Monit., 2000, 2, 139-144.
  • [81] Jeran Z,, Horvat M., Jaćimović R. i Spiric Z.: Biomonitoring with epiphytic lichens around gas treatment plants, Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) - BioMAP II, 28 August - 3 September 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Yienna 2003, 160-168.
  • [82] Grasso M.F., Clocchiatti R., Deschamps C. i Vurro F.: Lichens as bioindicators in volcanic areas: Mt. Etna and Yulcano Island (Italy). Environ. Geol., 1999, 37(3), 207-217.
  • [83] Reis M.A., Freitas M.C., De Goeij J. i Wolterbeek H.Th.: Surface-layer model of liclien uptake, model-ling Na response, Proceedings of the Internacional Workshop in Biomoniloring of atmospheric pollution (with emphasis on trace elements) - BioMAP II, 28 August - 3 September 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 152-159.
  • [84] Jasan R.C., Verburg T.G., Wolterbeek H.Th., Pla R.R. i Pignata M.L.: On the use ofthe lichen Ramalina celastri (Spreng.) Krog. & Swinsc. as an indicator of atmospheric pollution in the province of Cordoba, Argentina, c.onsldering botlt lichen physiological parameters and element concentrations. J. Radioanal. Nuci. Chem., 2004, 259(1), 55-63.
  • [85] Loppi S., Nelli L., Ancora S. i Bargagli R.: Passive monitoring of trace elements by means oftree leaves, epiphytic lichens and bark substmte. Environ. Monit. Assess., 1997, 45, 81-88.
  • [86] Bari A., Rosso A., Minciardi M.R., Trojani F. i Piervittiri R.: Analysis of heavy metals in atmospheric particulates in relation to their bioaccumulation in explanted Pseudevernia furfuracea thalli. Environ. Mon. Ass., 2001, 69, 205-220.
  • [87] Matusiewicz H.: Metody rozkładu próbek na mokro w analizie śladowej. Chem. Inż. Ekol., 2004, 11(S4), 463-498.
  • [88] Balarama Krishna M.V. i Arunachalam J.: Ultrasound-assisted extraction procedurę for the fast estima-tiim of major, minor and trace elements in lichen and missel samples by ICP-MS and ICP-AES. Anal. Chim. Act, 2004, 522, 179-187.
  • [89] Pla R.R., Jasan R.C., Pignata M.L. i Kopta R.F.: Trace-element determination in lichens of Cordoba (Argenlina) using neutron activation analysis and atomie absorption spectrometry, Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) -BioMAP II, 28 August - 3 September 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 291-298.
  • [90] Branquinho C. i Brown D.H.: A method for studying the eellular location of lead in lichens. Licheno-logist., 1994, 26, 83-90.
  • [91] Rossbach M. i Grobecker K.H.: Homogeneity studies of reference materials by solid samping - AAS and 1NAA. Accred. Qual. Asur., 1999, 4, 498-503.
  • [92] Rossbach M. i Zeiller E.: Assessment of niement-specific homogeneity in reference material using microanalytical techniaues. Anal. Bioanal. Chem., 2003, 377(2), 334-339.
  • [93] De Regge P., Burns K., Campbeii M., Makarewicz A., Mattiuzzi M., Tajani A., Toervenyi A. i Zeiller E.: The complementary use of radioanalytical methods and traf e analysis methods for the characterisation of environmental IAEA reference materials. J. Radioanal. Nuci. Chem., 2001,248(1), 217-225.
  • [94] http://www-i.rri.kvoto-u.ac.ip/NAA/IAEA336.HTM
  • [95] Polish Certified Reference Materiał for Multielement Tracę Analysis, Mixed Polish Herbs (INCT-MPH-2), Institute of Nuclear Chemistry and Technology, Department of Analytical Chemistry, Warszawa (PL).
  • [96] Senhou A., Chouak A., Cherkaoui R., Lferde M., Elyahyaoui A., Khoukhi T.El., Bounakhla M., Embar-che K., Bertho X., Gaudry A., Ayrault S. i Piccot D.: Comparsion of 14 MeV-NAA; k0-NAA and ED-XRF for air pollution bio-monitoring. J. Radioanal. Nuci. Chem., 2002, 253(2), 247-252.
  • [97] Senhou A., Chouak A., Cherkaoui R., Moutia Z., Lferde M., Elyahyaoui A., Khoukhi T.El., Bounakhla M., Embarche K., Gaudry A., Ayrault S. i Moskura M.: Sensitivity of biomonitors and local variations element concentrations in air pollution biomonitoring. J. Radioanal. Nuci. Chem., 2002, 254(2), 343-349.
  • [98] Revel G. i Ayrault S.: Comparative use of INAA and ICF-MS methods for environmental studies. J. Radioanal. Nuci. Chem., 2000, 244(1), 73-80.
  • [99] Centralne Laboratorium Chemiczne PIG, http:/www.pig.gov.pl/images/stories/tablica.gif
  • [100] Naganowska A., Konieczka P., Zygmunt B. i Namieśnik J.: Badania międzylaboratoryjne w chemii analitycznej. Chem. Inż. Ekol., 2004, S2(l 1), 95-120.
  • [101] Wolterbeek B.: Biomonitoring of trace element air pollution: principles, possibilities and perspectives. Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) - BioMAP II, 28 August - 3 September 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 87-104.
  • [102] Figueira R., Sousa A.J., Pacheco A.M.G. i Catarino F.: Saline variability at the south-wesl of Portugal after kriging data from Ramalina spp. Biomonilors. Proceedings of the International Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 39-46.
  • [103] Costa C.J., Marques A.P., Freitas M.C., Reis M.A. i de Oliveira.: A comparative study for results obtained using biomonitors and pm1O collectores in Sado estuary. Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) - BioMAP II, 28 August - 3 Septembrer 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 259-266.
  • [104] Kirchner G.: The potential of lichens as long term biomonitors of natural and artificial radionuclides. Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) - BioMAP II, 28 August - 3 September 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, pp. 136-142.
  • [105] Dillman K.L: Use of the lichen Rhizoplaca melanophthalma as a biomonitor in relalion to phosphate refineries near Pocatello, Idaho. Environ. Pollut., 1996, 92, 91-96.
  • [106] Jeran Z., Jaćimović R., Batić F., Smodis B. i Wolterbeek H.Th.: Atmospheric heavy metal pollution in Slovenia derivedfrom results for epiphytic lichens. Fresenius J. Anal. Chem., 1996, 354(5-6), 681-687.
  • [107] Jeran Z., Jaćimović R., Batić F. i Mavsar R.: Lichens as integrating air pollution monitors. Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) - BioMAP II, 28 August - 3 September 2000, IAEA-TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 118-125.
  • [108] Herzig R., Liebendorfer L., Urech M., Ammann K., Cuecheva M. i Landolt W.: Passive biomonitoring with lichens aa a pan of an integrated biological measuring system for monitoring air pollution in Switzerland. Intern. J. Environ. Anal. Chem., 1989, 35, 43-57.
  • [109] Chibowski S. i Reszka M.: Investigation of Lublin town environment contamination by radionuclides and heavy metals with application of Parmeliaceae lichens. J. Radioanal. Nuci. Chem., 2000, 247(2), 443-446.
  • [110] Bettinelli M., Perotti M., Sapezia S., Baffi C., Beone G.M., Alberici R, Bergonzi S., Bettinelli C., Cantarini P. i Mascetti L.: The role of analytical methods for the determination of trace elementu in environmental biomonitors. Microchem. J., 2002, 73, 131-152.
  • [111] Freitas M.C., Reis M.A., Mar2ues A.P., Almeida S.M., Farinha M.M., de Oliveira O., Ventura M.G., Pacheco A.M.G. i Barros L.I.C.. Monitoring of environmental contaminants: 10 years of application of k0,-INAA. J. Radioanal. Nuci. Chem., 2003, 257(3), 621-625.
  • [112] Garty J.-. Lichens as environmental biomonitors in Israel: Two decades of research. Proceedings of the International Workshop: BioMAP, 21-24 September 1997, lAEA-TECDOC-1152, International Atomie Energy Agency, Vienna2000, 17-21.
  • [113] Garty J., Kloog N. i Cohen Y.: Integrity of lichen celi membranes in relation to ccincentration of airborne elementy. Arch. Environ. Toxicol., 1998, 34, 136-144,
  • [114] Conti M.E. i Cecchetti G.: Biological monitoring: lichens as bioindicators of air pollution assessment - a review. Environ. Pollut., 2001,114, 471-492.
  • [115] Yarrica D., Aiuppa A. i Dongarra G.: Volcanic and anthropogenic contribution to heavy metal content in lichens from Mt. Etna and Vulcano island (Sicily). Erwiron. Pollut., 2000,108, 153-162.
  • [116] Bargagli R. i Barghigiani C.: Lichen biomonitoring of mercury emission and deposilion in mining, geothermal and volcanic, areas ofltaly. Environ. Monit. Assess., 1991,16, 265-275.
  • [117] Hasanen E. i Miettinen J.K.'. Gamma emitting radionuclides in subarctic vegetation during 1962-1964. Naturę, 1966, 212, 379-382.
  • [118] Godoy J.M.L.A., Schuch D.J.R., Nordemann Y.R.G., Ries M., Ramalho J.C., Recio R.R.A. i Olech M.A. 137Cs, 226, 228 Ra, 210Pb, 40K concelrations in Antarctic soil, sediment and selected inoss and lichen samples. J. Environ. Radioactivity, 1998, 41, 33-45.
  • [119] Mietelski J. W., Gaca P. i Olech M. A.: Radioactive contamination of lichem and mosses collected in South Shetlands and Antarctic Peninsula. J. Radioanal. Nuci. Chem., 2000, 245(3), 527-537.
  • [120] Ford J., Landers D., Kugler D., Lasorsa B., Allen-Gil S., Crecelius E. i Martinson J.: Inorganic contaminants in Arctic Alaskan ecosystems: long-range atmospheric transport or local point sources. Sci. Total Environ., 1995,160/161, 323-335.
  • [121] Pilegaard. K.: Deposition of airborne metals around the lead-zinc minę in Maarmorilik monitored by lichens and mosses. Bioscience, 1994, 43, 1-20.
  • [122] Hansen E.S.. The lichen flora near a lead-zinc minę at Maarmorilik in West Greenland. Lichenologist., 1991,23(4), 381-391.
  • [123] Pobiel A., Andrade S., Scagliola M., Vodopivez C., Curtosi A., Pucci A. i Marcovecchio J.: The use of epilithic Antarctic lichens (Usnea aurantiacoatra and U. antartica) to determine deposition patterns of heavy metals in the Shetland Islands, Antarctica. Sci. Total Environ., 1997, 207, 187-194.
  • [124] Grodzinska K., Godzik B. i Szarek G.: Heavy metals and sulphur in lichens from soulhern Spitsbergen. Fragm. Florist. et Geobot. Supplementum, 1993, 2(2), 699-708.
  • [125] Olech M.: Preliminary obsenations on the content of heavy metals in thalli of lisnea antarctica Du Rietz (Lichenes) in the vicinity ofthe "H. Arctowski" Polish Antarctic Station. Polish Polar Res., 1991, 12(1), 129-131.
  • [126] Olech M., Osyczka P. i Dutkiewicz E.M.: Lokalne zanieczyszczenia metalami ciężkimi środowiska w rejonie Zatoki Admiralicji (Szetlandy Poludniowe, Antarktyka). XXVII Międzynarodowe Sympozjum Polarne, Toruń 2000, 48-49.
  • [127] Seaward M.R.D., Bylinska E.A. i Goyal R.: Heavy metal content of limbilicaria species from the Sudety region ofSWPoland. Oikos, 1981, 36, 107-113.
  • [128] Godzik B. i Kiszka J.: Concentration of heavy metals in thalluses of Hypogymnia physodes (L.) Nyl. In the Czarna Wiselka and in the Biala Wiselka catchments (Western Carpathians). Studia Naturae, 44, 73-80.
  • [129] Migaszewski Z.M., Gałuszka A. i Paslawski P.: The use ofthe barbell cluster ANOVA design for the assessment of environmental pollution: a case study, Wigierski National Park, NE Poland. Environ. Poll., 2005,133, 213-223.
  • [130] Migaszewski Z.M., Gałuszka A. i Pastawski P.: Polynuclear aromatic hydrocarbons, phenols, and trace metals in selected soil profiles and plant bioindicators in the Holy Cross Mountains, South- Central Poland. Environ. Internation., 2002, 28, 303-313.
  • [131] Migaszewski Z.M., Gałuszka A., Świercz A. i Kucharzyk J.: Element concentrations in soils and plant bioindicators in selected habitads of the Holy Cross Mountains, Poland. Water, Air and Soil Pollut., 2001,129,369-386.
  • [132] Pla R.R., Moreno M.A. i Adler M.: The use biotnonitors and neutron activation analysis in the study of air pollution of Buenos Aires city. Proceedings of the International Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 122-128.
  • [133] Saiki M., Horimoto L.K., Yasconcellos M.B.A., Marcelli M.P. i Coccaro D.M.B.: Sumery of elemental concentrations in lichen samples collected from Sao Paulo State. J. Radioanal. Nuci. Chem., 2001, 249(2), 317-320.
  • [134] Zhang Zh.H., Chai Z.F., Mao X.Y. i Chen J.B.: Biomonitoring trace element atmospheric deposition using lichens in China. Proceedings of the International Workshop in Biomonitoring of atmospheric pollution (with emphasis on trace elements) - BioMAP II, 28 August - 3 September 2000, IAEA- TECDOC-1338, International Atomie Energy Agency, Vienna 2003, 229-234.
  • [135] Cislaghi C. i Nimis P.L.: Lichens, Air pollution and lung cancer. Nature, 1997, 387, 463-464.
  • [136] Tuncel S.G. i Yenisoy-Karakas S.: Elemental concentration in lichen in Western Anatolia. Water, Air, and Soil Pollut., 2003, 3, 97-107.
  • [137] Yenisoy-Karakas S. i Tuncel S.G.: Cotnparison of accumulation capacities oft\vo lichen species analyied by instrumental neutron activation analysis. J. Radioanal. Nuci. Chem., 2004, 259(1), 113-118.
  • [138] Egilli (ÓOmez) E., Topcuoglu S., Kut D., Kirbasoglu C. i Esen N.: Heavy metals and radionuclides ilichens and mosses in Thrace, Turkey. Buli. Environ. Contam. Toxicol., 2003, 70, 502-508.
  • [139] Outola L: Effect of industrial pollution on the distribution of Pu and Am in soil and on soil-to-plant transfer of Pu and Am in a pine forest in SW Finland. J. Radioanal. Nuci. Chem., 2003, 257(2), 267-274.
  • [140] Takala K. i Olkkonen H.: Titanium content of lichens in Finland. Ann. Bot. Fenn., 1985, 22, 229-305.
  • [141] Takala K., Olkkonen H. i Salminen R.: Iron content and relations to the sulphur and titanium contents of epiphytic and terricolous lichens and pine bark in Finland. Environ. Pollut., 1994, 84, 131-138.
  • [142] Riga-Karandinos A.N. i Karandinos M.G.: Assessment of air pollution from a lignite power plant in the plain of Megalopolis (Grecce) using as biomonitors three species of lichens; impacts on some biochemical parameters of lichens. Sci. Total Environ., 215, 167-183.
  • [143] Dubey A.N., Pandey V., Upreti D.K. i Singli J.: Accumulation of lead by lichens growing in and around Faizabad, U.P. India. i. Environ. Biol., 1999, 20(3), 223-225.
  • [144] Tomassini F.D., Puckett K.J., Nieboer E., Richardson D.H.S. i Grace B.: Determination ofcopper, iron, nickel, and sulphur by X-ray fluorescence in lichens from the Mackenzie Valley, Northwest Territories, and the Sudburg distrect, Ontario. Can. J. Bot., 1987, 54, 1591-1603.
  • [145] Puckett K.J. i Finegan E.J.: An analisis ofthe element content of lichens from the northwest territores, Canada. Can. J. Bot., 1980, 58, 2073-2089.
  • [146] Folkeson L.: Interspecies calibration of hevy metal concentrations in nine mosses and lichens: applicability to deposition measurements. Water, Air, and Soil Pollut., 1979,11, 253-260.
  • [147] Ikingura J.R. i Akagi H.: Lichens as a good bioindicator of air pollution by mercury in small-scale gold mining areas, Tanzania. Buli. Environ. Contam. Toxicol., 2002, 68, 699-704.
  • [148] Doyle P., Fletcher W.K. i Brink V.C.: Tracę element content of soils and plants from the Selwyn Mountains, Yukon and Northwest Territories. Can. J. Bot., 1973, 54, 421-427.
  • [149] Olmez L, Gulovali M.C. i Gordon G.E.: Tracę element concentrations in lichens near a coal-fired power plant. Atmos. Environ., 1985,19(10), 1663-1670.
  • [150] Frenzel R.W., Witmer G.W. i Starkey E.E.: Heavy metal concentrations in a lichen of Mt. Rainier and Olympic National Parks, Washington. USA. Buli. Environ. Cont. Toxicol., 1990, 44(1),158-164.
  • [151] Bennett J.P. i Wetmore C.M.: Chemical element concentrations infour lichens on a transect entering Voyageurs National Park. Environ. Exp. Bot., 1997, 37, 173-185.
  • [152] Ellison G., Newham J., Pinchin M.J. i Thompson I.: Heavy metal content of moss in the region of Consett (north east England). Environ. Pollut., 1976, 11(3), 167-174.
  • [153] Gailey F.A.Y. i Lloyd O.L.: Spatial and temporal patterns ofairborne metal pollution: the value of low technology sampling to an environmental epidemiology study. Sci. Total Environ., 1993, 133, 201-219.
  • [154] Gillette D.A. i Dobrowolski J.P.: Soil crust formation by dust deposition at Shaartuz, Tadzhik, S.S.R. Atmos. Environ, 1993, 27A, 2519-2525.
  • [155] Yevseev A.V. i Krasovskaya T.M.: Spatial and tempami patterns in pollutant accumulation in the ecosystems of the Kola Peninsula. Aquilo Ser. Bot, 1994, 34, 65-68.
  • [156] Medvedev N.: Concentrations of cadmium, lead and sulpkur in tissues of wild, forest reindeer from north-west Russia. Environ. Pollut., 1995, 90(1), 1-5.
  • [157] Rossbaeh M., Jayasekera R. i Kniewald G.: Large scalę air monitoring: Biological indicators versux air particulate matler. Proceedings of the International Workshop: BioMAP, 21-24 September 1997, IAEA-TECDOC-1152, International Atomie Energy Agency, Vienna 2000, 71-80.
  • [158] Czarnota P.: Porosty jako indykatory zanieczyszczenia środowiska - Przegląd metod lichenoindykacyjnyc.h. Przegl. Przyrod., 1998, IX(l/2), 55-72.
  • [159] Nylander W.: Les lichens du Jardin du Lwcembourg, Buli. Soc. Bot. Fr., 1866, 13, 364-372, [w:] Conti M.E. i Cecchetti G.: Biological monitoring: lichens as bioindicators of air pollution assessment - a review. Environ. Pollut., 2001, 114, 471-492.
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