Мохоподібні (Bryobionta) як тест-об’єкти бріогеохімічної індикації атмосферних випадань важких металів та радіонуклідів у навколишньому середовищі Європи. Аналітичний огляд

Проведення комплексного аналізу публікацій, присвячених проблемам використання мохоподібних для бріогеохімічної індикації атмосферних випадань важких металів та радіонуклідів. Визначення найбільш придатних видів мохів для біомоніторингу важких металів.

Рубрика Экология и охрана природы
Вид статья
Язык украинский
Дата добавления 28.05.2023
Размер файла 99,6 K

Отправить свою хорошую работу в базу знаний просто. Используйте форму, расположенную ниже

Студенты, аспиранты, молодые ученые, использующие базу знаний в своей учебе и работе, будут вам очень благодарны.

35. Delfanti R., Papuccia U.C., Benco C. Mosses as indicators of radioactivity deposition around a coal-fired power station. Sci. of the Total Environ. 1999. Vol. 227. P. 49-56.

36. Dilks T.J.K., Proctor M.C.F. Photosynthesis, respiration and water content in bryophytes. New Phytologist. 1979. Vol. 82. P. 97-114.

37. Dimovska B., Sajn R., Stafilov T., Baceva K., Tanaselia C. Determination of atmospheric pollution around the thermoelectric power plant using a moss biomonitoring. Air Qual. Atmos. Health. 2014. Vol. 7. P. 541-557.

38. Dragovich S., Mihailovich N. Analysis of mosses and topsoils for detecting sources of heavy metal pollution: multivariante and enrichment factor analysis. Environ. Monitoring and Assess. 2009. Vol. 157. P. 383-390.

39. Ermakova E.V., Frontasyeva M.V., Pavlov S.S., Povtireiko E.A., Steinnes E., Cheremisina Ye.N. Air pollution studies in central Russia (Tver and Yaroslavl Regions) using the moss biomonitoring technique and neutron activation analysis. J. of Atmosph. Chem. 2004. Vol. 49. P. 549-561.

40. Fernandez C.C., Shevock R., Glaser N.A., Thompson J.N. Cryptic species within the cosmopolitan dessication- tolerant moss Grimmia laevigata. PNAS. 2006. Vol. 103. P. 637-642.

41. Fernandez J.A., Puche F., Gimeno C., Carballeira A. Primeros datos sobre el biocontrol de la deposicion atmosferica de metais pesados en las provincias de Valencia, Castellon y Teruel mediante musgos terrestres. Ecologia. 1999. Vol. 13. P. 83-91.

42. Figueira R., Sergioa C., Sousa A.J. Distribution of trace metals in moss biomonitors and assessment of contamination sources in Portugal. Environ. Pollution. 2002. Vol. 118. P. 153-163.

43. Florek M., Mankovska B., Oszlanyi Y., Frontasyeva M.V., Ermakova E., Pavlov S.S. The Slovak heavy metals survey by means the Bryophyte technique. Ekologia (Bratislava). 2007. Vol. 26, № 1. P. 99-114.

44. Frontasyeva M.V., Nazarov V.M., Grass F. and Steinnes E.: Intercomparison of moss reference material by different multi-element techniques. J. Radioanalyt. Nucl. Chem. - 1995. Vol. 192(2). P. 371-379.

45. Gjengedal E., Steinnes E. Uptake of metal ions in moss from artificial precipitation. Environ. Monitoring and Assess. 1990. Vol. 14. P. 77-87.

46. Gonzalez A.G., Pokrovsky O.S. Metal adsorption on mosses: toward a universal adsorption model. J. Colloid and Interface Science. 2014. Vol. 415. P. 169-178.

47. Grodzinska K. Mosses as bioindicators of heavy metal pollution in Polish national parks. Water, Air and Soil Pollution. 1978. Vol. 9. P. 83-97.

48. Grunfeld K. Integrating spatio-temporal information in environmental monitoring data--a visualization approach applied to moss data. Sci. of the Total Environ. 2005. Vol. 347(1). P. 120-124.

49. Guilitte O., Brobant B., Garsia M.S. Use of mosses and lichens for the evaluation of radioactive fallout, deposits and flows under forest cover. Mem. Soc. Royal Bot. Belg. - 1990. Vol. 12. P. 89-99.

50. Guillitte O., Kirchmann R., Van Gelder E. and Hurtgen C. Radionuclides fallout on lichens and mosses and their leaching by rain in a forest ecosystem. Transfer of radionuclides in natural and semi-natural environments. Eds. G. Desmet, P. Nassimbeni, M. Belli. London-New York: Elsevier Applied Science, 1990. P. 110-117.

51. Harmens H., Mills G., Hayes F., Jones L., Norris D., Cooper D. ICP vegetation annual report 2008/2009. 2010. 144 p.

52. Harmens H., Norris D., Nemitz E. and participans of the European Moss Survey-2009. Spatial and temporal trends in heavy metal accumulation in mosses in the UK and Europe. CAPER-2009 - 34th Annual Meeting, Manchester, UK, 6-8 April 2009. nora.necr.ac.uk/8674/2/HarmensN008674CP.pdf>.

53. Harmens, H., Norris, D.A., Steinnes, E., Kubin, E., Piispanen, J., Alber, R., et al. Mosses as biomonitors of atmospheric heavy metal deposition: spatial patterns and temporal trends in Europe. Environ. Pollution. 2010. Vol. 158. P. 3144-3156.

54. Harmens H., Norris D.A., Sharps K., Mills G., Alber R., Aleksiayenak Y., Blum O. et al. Heavy metal and nitrogen concentrations in mosses are declining across Europe whilst some “hotspots” remain in 2010. Environ. Pollution. 2015. Vol. 200. P. 93-104.

55. Hodgetts N.G., Soderstrom L., Blockeel T.L. et al. An annotated checklist of bryophytes of Europe, Macaronesia and Cyprus. Journal of Bryology. 2020. Vol. 41(2). P. 1-116.

56. Holy M., Pesch R., Schroder W., Harmens H. et al. First thorough identification of factors associated with Cd, Hg and Pb concentrations in mosses sampled in the European Surveys 1990, 1995, 2000 and 2005. J. Atmos. Chem. 2009. Vol. 63. P. 109-124.

57. Klos A., Czora M., Rajfur M., Waclawek M. Mechanisms for translocation of heavy metals from soil to epigeal mosses. Water, Air and Soil Pollut. 2012. Vol. 223. P. 1829-1836.

58. Klos A., Rajfur M., Waclawek M. Application of enrichment factor (EF) to the interpretation of results from the biomonitoring studies. Ecol. Chem. and Engineerings. 2011. Vol. 18(2). P. 171-183.

59. Klos A., Rajfur M., Waclawek M., Waclawek W., Frontasyeva M.V. and Pankratova J.S.: The influence of unidentified pollution sources on the irregularity of biomonitoring tests results. Water, Air and Soil Pollut. 2008. Vol. 191. P. 345-352.

60. Korzekwa S., Pankratova Y.S., Frontasyeva M.V. Air pollution studiesin Opole region, Poland, using the moss biomonitoring technique and neutron activation analysis. Proc. of ECOpole. 2007. Vol. 1, № 1-2. Р. 43-51.

61. Kosior G., Dolhanczuk-Srodka A., Ziembik Z., Brudzinska-Kosior A. Comparison of active and passive biomonitoring methods using moss Pleurozium schreberi (Brid.).

62. Mitt. as a bioindicator of radionuclides pollution of a heavi- lyindustrialized area in Upper Silesia (Poland). V Intern. Conf. on Environ. Protection «Terrestrial Radioisotopes in Environment», Veszprem, Hungary, 2016. Eds. T. Kovacs, E. Toth-Bodrogi, G. Bator. Veszprem: Soc. Organization for Radioecol. Cleanliness, 2016. Р. 105.

63. Koz B., Cevik U. Lead adsorption capacity of some moss species used for heavy metal analysis. Ecological Indicators. 2014. Vol. 36. P. 491-494.

64. Krzeslowska M., Rabeda I., Lewandowski M., Samardakiewicz S., Basinska A., Mellerowicz E.J., Woznyl A. Pb induces plant cell wall modifications - in particular - the increase of pectins able to bind metal ions level. E3S Web of Conference. 2013. Vol. 1.26008.

65. Lazo P., Vasjari M., Frontasyeva M. et al. The study of atmospheric deposition of heavy metals in Tirana and Vlora cities, Albania, by active biomonitoring technique. Fresenius Environ. Bull. 2012. Vol. 21, № 8. P. 2170.

66. Liiv S., Kaasik M. Trace metals in mosses in the Estonian oil shale processing region. J. of Atmosph. Chem. 2004. Vol. 49. P. 563-578.

67. Little P., Martin M.H. Biological monitoring of heavy metal pollution. Environ. Pollut. - 1974. Vol. 6. P. 1-19.

68. Lucaciu A., Timofte L., Culicov O., Frontasyeva M.V., Oprea C., Cucuman S., Mocanu R., Steinnes E. Atmospheric deposition of trace elements in Romania studied by the moss biomonitoring technique. J. of Atmosph. Chem. 2004. Vol.49. P. 533-548.

69. Maevskaya S.M., Kardash A.R., Demkiv O.T. Absorption of cadmium and lead ions by gametophyte of the moss Plagiomnium undulatum. Russ. J. of Plant Physiol. 2001. Vol. 48. P. 820-824.

70. Marinova S., Yurukova L.,. Frontasyeva M.V., Steinnes E., Strelkova L.P., Marinov A., Karadzhinova A.G. Air pollution studies in Bulgaria using the moss biomonitoring technique. Ecol. Chem. and Engineerings. 2010. Vol. 17, № 1. P. 37-52.

71. Markert B., Weckert V. Fluctuations of element concentrations during the growing season of Polytrichum formosum. Water, Air and Soil Pollution. 1989. Vol. 43. P. 177-189.

72. Meyer C., Diaz-de-Quijano M., Monna F. et al. Characterisation and distribution of deposited trace elements transported over long and intermediate distances in north-eastern France using Sphagnum peatlands as a sentinel ecosystem. Atmosph. Environ. 2015. Vol. 101. P. 286-293.

73. Monitoring of atmosphere deposition of heavy metals, nitrogen and pops in Europe using bryophytes [monitoring manual 2010 survey]. icpvegetation.ceh.ac. uk/manuals/documents/UNECEHEAVYMETALSMOSSMANUAL.2010POPsadaptedfinal_220510_.pdf>.

74. Motyka O., Maceckova B., Seidlerova J., Krejci B. Novel technique of active biomonitoring introduced in the Czech Republic: bioaccumulation of atmospheric trace metals in two moss species. GeoScience Engineering. 2011. Vol. LVII, № 3. P. 30-36.

75. Nickel S., Hertel A., Pesch R., Schroder W., Steinnes E., Uggerud H.T. Correlating concentrations of heavy metals in atmospheric deposition with respective accumulation in moss and natural surface soil for ecological land classes in Norway between 1990 and 2010. Environ. Sci. Pollut. Res. 2014. DOI 10.1007/s11356-014-4018-x.

76. Nickel S, Schroder W, Wosniok W. et al. Modelling and mapping heavy metal and nitrogen concentrations in moss in 2010 throughout Europe by applying Random Forests models. Atmosph. Environ. 2017. Vol. 156. P. 146-159.

77. Nieme M., Piispanen J., Poikolainen J., Peramaki P. Preliminary study of the use of terrestrial moss (Pleurozium schreberi) for biomonitoring traffic-related Pt and Rh deposition. Arch. Environ. Contam. Toxicol. 2007. Vol. 52. P. 347-354.

78. Оkland T., Halvorsen R., Оkland A., Steinnes E. Element concentrations in the boreal forest moss Hylocomium splendens: variation related to gradients in vegetation and local environmental factors. Plant and Soil. 1999. Vol. 209. P. 71-83.

79. Poikolainen J. Mosses, epiphytic lichens and tree bark as biomonitors for air pollution - specifically for heavy metals in regional surveys. Oulu: Oulun Yliopisto, 2004. 64 p.

80. Poikolainen J., Kubin E., Piispanen J., Karhu J. Atmospheric heavy metal deposition in Finland during 1985-2000 using mosses as bioindicators. Sci. of the Total Environ. 2004. Vol. 318. P. 171-185.

81. Popovic D., Todorovic D., Ajtic J., Nikolic J. Active biomonitoring of air radioactivity in urban areas. Nucl. Technology and Radiation Protection. 2002. N°2. P. 100-103.

82. Popovic D., Todorovic D., Frontasyeva M., Ajtic J., Tasic M. and Rajsie S. Radionuclides and heavy metals in Bo- rovac, Southern Serbia. Environ. Sci. Pollut. Res. - 2008. Vol. 15. P. 509-520.

83. Proctol M.C.F., & Tuba Z. Poikilohydry and homoi- hydry: antithesis or spectrum of possibilities? New Phytologist. 2002. Vol. 156(3). P. 327-349.

84. Radziemska M., Mazur Z., Bes A., Majewski G., Guziatin Z.M., Brtnicky M. Using mosses as bioindicators of potentially toxic element contamination in ecologically valuable areas located in the vicinity of a road: a case study. Environ. Research and Public Health. 2019. Vol. 16. P. 3963-3975.

85. Rahman U., Awan M.A., Hassan S.T., & Khattak M.M. Mosses as indicators of atmospheric pollution of trace metals (Cd, Cu, Mn, Pb and Zn) in the vicinity of coal-fired brick kilns in north-eastern suburbs of Islamabad, Pakistan. J. of Radioanalyt. and Nuclear Chem. 2000. Vol. 246(2). P. 331-336.

86. Rosman K.J., Ly Ch., Steinnes E. Spatial and temporal variation in isotopic composition of atmospheric lead in Norvegian moss. Environ. Sci. and Technology. 1998. Vol. 32. P. 2542-2546.

87. Sakalys J., Kvietkus K., Sucharova J., Suchara I., Valiulis D. Changes in total concentrations and assessed background concentrations of heavy metals in moss in Lithuania and the Czech Republic between 1995 and 2005. Chemosphere. 2009. Vol. 76. P. 91-97.

88. Sassmann S., Wernitznig S., Lichtscheidl I.K., Lang I. Comparing copper resistance in two bryophytes: Mielichhoferia elongata Hornst. Versus Physcometria patens Hedw. Protoplasma. 2010. Vol. 246. P. 119-123.

89. Sawidis T., Tsikritzis L., Tsigaridas K. Cesium-137 monitoring using mosses from W. Macedonia, N. Greece. J. of Environ. Management. 2009. Vol. 90. P. 2620-2627.

90. Schintu M., Cogoni A., Durante L., Cantaluppi C., Contu A.. Moss (Bryum radiculosum) as a bioindicator of trace metal deposition around an industrialised area in Sardinia (Italy). Chemosphere. 2005. Vol. 60. P. 610-618.

91. Schofield, W.B. Ecological significance of morphological characters in the moss gametophyte. Bryologist. 1981. Vol. 84(2). P. 149-165.

92. Schroder W., Holy M., Pesch R., Harmens H. et al. Are cadmium, lead and mercury concentrations in mosses across Europe primarily determined by atmospheric deposition of these metals? J. Soils Sediments. 2010. Vol. 10. P. 1572-1584.

93. Schroder W., Nickel S., Schonrock S. et al. Bioindication and modelling of atmospheric deposition in forests enable exposure and effect monitoring at high spatial density across scales. Annals of Forest Science. 2017. Vol. 74. P. 31.

94. Shakya K., Chetti M.K., Sawidis T. Impact of heavy metals (copper, zink, and lead) on the chlorophyll content of some mosses. Arch. Environ. Contam. Toxicology. 2008. Vol. 54. P. 412-421.

95. Shaw A.J., Goffinet B. Bryophyte biology. Cambridge: Cambridge University Press, 2000. 348 p.

96. Smirnov L.I., Frontasyeva M.V., Steinnes E., Lyapunov S.M., Cherchintsev V.D., Romanov S.A. et al. Multidimensional statistical analysis of the concentration of heavy metals and radionuclides in moss and soil in Southern Urals. Atomic Energy. 2004. Vol. 97(1). P. 510-515.

97. Spiric Z., Ivana Vuckovic I., Stafilov T., Kusan V., Frontasyeva M. Air pollution study in Croatia using moss biomonitoring and ICP-AES and AAS analytical techniques. Arch. Environ. Contam. Toxicol. 2013. Vol. 65. P. 33-46.

98. Stankovic J.D., Sabovljevic A.D., Sabovljevic M.S. Bryophytes and heavy metals: a review. Acta Bot. Croat. 2018. Vol. 77(2). P. 109-118.

99. State G., Popescu I.V., Radulescu C.,-Macris С., Stihi C., Gheboianu A., Dulama I., Nijescu O. Comparative studies of metal air pollution by atomic spectrometry techniques and biomonitoring with moss and lichens. Bull. Environ. Contam. Toxicol. 2012. Vol. 89. P. 580-586.

100. State of the terrestrial environment in the joint Finnish, Norwegian and Russian border area on the basis of bioindicators. Final technical report of the Pasvik Environment Monitoring Programme. Eds. Rautio P., Poikolainen J. Kopijyva Oy, Kuopio, 2014. 17 p.

101. Suchara, I., Mankovska, B., Sucharova, J., Florek, M., Godzik, B., Rabnecz, G., et al. Mapping of main sources of pollutants and their transport in the Visegrad space. Part II: fifty three elements. Project 11007-2006-IVF. Zvolen: KLEMO spol. s r.o., 2007. 213 p.

102. Sucharova J., Suchara I., Hola M., Reimann C. Contemporary lead concentration and stable lead isotope ratio distribution in forest moss across the Czech Republic. Applied Geo- chem. 2014. Vol. 40. P. 51-60.

103. Sun S.Q., He M., Cao T., Zhang Y.C., Han W. Response mechanisms of antioxidants in bryophyte Hypnum plumaeforme under the stress of single or combined Pb and/or Ni. Environ. Monitoring and Assess. 2009. Vol. 149. P. 291-302.

104. Szarek-Lukaszewska G., Grodzinska K., Braniewski S. Heavy metal concentration in the moss Pleurozium schreberi in the Niepolomice forest, Poland: changes during 20 years. Environ. Monitoring and Assess. 2002. Vol. 79. P. 231-237.

105. Tamm C.O. Growth, yield and nutrition in carpets of a forest moss (Hylocomium splendens). Meddelanden Fran Statens Skogsforskningsinstitut. 1953. Vol. 43. P. 1-140.

106. Tipping E., Vincent C.D., Lawror A.J., Lofts S. Metal accumulation by stream bryophytes, related to chemical specia- tion. Environ. Pollution. 2008. Vol. 156. P. 936-943.

107. Tyler G. AA or ICP - Which do you choose? 1991. http://www.varianinc.com/media/sci/apps/icpes003.pdf.

108. Ugur B., Ozden M.M., Yener G. Biomonitoring of 210Po and 210Pb using lichens and mosses around a uraniferous coal-fired power plant in western Turkey. Atmosph. Environ. 2003. Vol. 37. P. 2237-2245.

109. Vukojevic V., Sabovlevic M., Sabovlevic A., Mihailovic N., Drazic G., and VuciniC Z. Determination of heavy metal deposition in the country Obrenovac (Serbia) using mosses as bioindicators. IV. Manganese (Mn), molybdenum (Mo), and nickel (Ni). Arch. Biol. Sci., Belgrade. 2009. Vol. 61(4). P. 835-845.

110. Wang Q., Wu N., Luo P., Yi Sh., Bao W., Shi F. Growth rate of mosses and their environmental determinants in subalpine coniferous forests and clear-cuts at the eastern edge of the Qinghai-Tibetan Plateau, China. Front. For. China. 2008. Vol. 3(2). P. 171-176.

111. Wells J.M., Brown D.H., Beckett R.P. Kinetic analysis of Cd uptake in Cd-tolerant and intolerant populations of the moss Rhytidiadelphus squarrosus (Hedw.) Warnst. and the lichen Peltigera membranaceae (Ach.) Nyl. New Phytologist. 1995. Vol. 129. P. 477-486.

112. Wolterbeek H. Th., Kuik R., Verburg T. G.. Moss interspecies comparison in trace element concentration. Environ. Monitoring and Assess. 1995. Vol. 35. P. 263-286.

113. Yurukova, L., Tsakiri, E., & Cayir, A. Cross-border response of moss, Hypnum cupressiforme Hedw., to atmospheric deposition in southern Bulgaria and northeastern Greece. Bull. of Environ. Contamin. and Toxicol. 2009. Vol. 83. P. 174-179.

114. Zechmeister H.G., Dirnbock T., Huber K., Mirtl M. Assessing airborne pollution effects on bryophytes-lessons learned through long-term integrated monitoring in Austria. Environ. Pollution. 2007. Vol. 147. P. 696-705.

115. Zechmeister H.G., Grodzinska K., Szarek-Lukaszewska G. Chapter 10. Bryophytes. Bio indicators and Biomonitors (Principles, concepts and applications) (Trace Metals and other Contaminants in the Environment. Oxford: Elsevier Applied Science. 2003. P. 329-375.

116. Zvereva E.L., Kozlov M.V. Impact of industrial polluters on bryophytes: meta-analysis of observational studies. Water, Air and Soil Pollution. 2011. Vol. 218. P. 573-586.

References

1. Krasnov, V.P., Orlov, О.О., Kurbet, T.V. (2006), Radioactivity after nuclear explosions and accidents: proc. of Intern. conf. (Moscow, 2005, December 5-6). Vol. 3. Spb.: Hydrometeoizdat. P. 103-108.

2. Orlov, А.А., Krasnov, V.P. (2002), Herald of National Nucl. Center of Republic of Kazahstan 3. Radioecology. Environmental protection. Semipalatinsk. P. 45-54.

3. Sobchenko, V.A. (2001), Collection of sci. work of Biol. Dep. of Gomel State Univ. Gomel: GSU. P. 264-273.

4. Sobchenko, V.A., Khramchenkova O.M. (2002), Problems of ecology of Belorussian Polessye: collection od sci. work, 2. Gomel: GSU. P. 181-187.

5. Tiutiunnik, Yu.G., Blum, O.B., Shabatura, A.V. (2005), Geography and Natural Resources. 1: 138-146.

6. Tiutiunnik, Yu.G., Blum, O.B. (2017), Proc. of Russ. sci. conf. «Monitoring of state and environmental pollution. The main results and ways of development» (Moscow, March, 20-22, 2017 г.). - М.: FGBU. P. 618-619.

7. Shabatura, A.V., Blum, O.B., Tiutiunnik, Yu.G. (2018), Biosphere, 10(1): 23-35.

8. An elementary overview of elemental analysis. AAS, GFAAS, ICP or ICP-MS? Which technique should I use? <www.thermo.com./eThermo/CMA/PDFs/.../articlesFile_18407. pdf>.

9. Angelovska, S., Stafilov, T., Balabanova, B., Sajn, R., Baceva, K. (2014), Modern Chemistry & Applications, 2, iss. 1. 1000123.

10. Anicic, M., Frontasyeva, M., Tomasevich, M., Popovic, A. (2007), Environ. Monitoring and Assess., 129(1-3): 207219.

11. Anicic, M., Frontasyeva, M., Tomasevich, M., Rajsik, S., Strelkova, L.P., Popovic, A., Steinnes, E. (2009), Environ. Chem. Letters, 7(1): 55-60.

12. Astel, A., Astel, K., & Biziuk, M. (2008), Environ. Sci. and Pollution Research, 15(1): 41-50.

13. Baceva, K., Stafilov, T., Sajn, R., Tanaselia, C. (2013), Environ. Sci. and Pollution Research. DOI 10.1007/s 11356-013-1845-0.

14. Bargagli, R., Brown, D. H. & Nelli, L. (1995), Environ. Pollution, 89: 169-175.

15. Basile, A., Sorbo, S., Aprile, G., Conte, B., Cobianchi, R.C. (2008), Environ. Pollution, 151(2): 401-407.

16. Basile, A., Sorbo, S., Aprile, G., Conte, B., Cobianchi, R.C., Pisani, T., Loppi, S. (2009), Environ. Pollution, 157: 2255-2260.

17. Basile, A., Sorbo, S., Pisani, T., Paoli, L., Munzi, S., Loppi, S. (2012), Environ. Pollution, 166: 208-211.

18. Bates, J.W., Bakken, S. (1998), Nutrient retention, desiccation and redistribution in mosses. Bryology in the Twenty-first Century / Eds. J.W. Bates, N.W. Ashton, J.G. Duckett. Leeds: Maney Publishers and BBS: 293-304.

19. Berg, T., Steinnes, E. (1997), Environ. Pollution, 98: 61-71.

20. Blagnyte, R., Paliulis, D. (2020), Environ. Research, Engineering and Management, 4(54): 26-33.

21. Boquete, M.T., Fernandez, J.A., Aboal, J.R., Carbal- leira, A. (2011), Atmospheric Environ., 45: 2704-2710.

22. Bringmark, L., Lundin, L., Augustaitis, A., Beudert, В. et al. (2013), Water, Air and SoilPollut., 224: 1502.

23. Bykowszczenko, N., Baranowska-Bosiacka, I., Bosiacka, B., Kaczmarek, A., Chlubek, D. (2006), Polish J. Environ. Studies, 15(1): 41-46.

24. Ceburnis, D., Ruhling, A., Kvietkus, K. (1997), Environ. Monitoring and Assess., 47: 135-152.

25. Ceburnis, D., Sakalys, J., Armolaitis, K., Valiulis, D., Kvietkus, K. (2002), Atmospheric Environ., 36: 1465-1474.

26. Ceburnis, D., Valiulis, D. (1999), Sci. of the Total Environ, 226: 247-253.

27. Cenci, R.M., Sena, F., Bergonzoni, M., Simonazzi, N., Meglioli, E., Canovi, L. et al. (2003), 9-th Intern. Waste Management and Landfill Symp. Sardinia: 12-22.

28. Chakrabortty, S., Paratkar, G.T. (2006), Aerosol and Air Quality Research, 6: 247-258.

29. Choudhuri, S., Panda, S.K. (2005), Water, Air and Soil Pollution, 167: 73-90.

30. Co§kun, M., Frontasyeva, M.V., Steiness, E., Cotuk, A.Y., Pavlov, S.S., Coskun, M. et al. (2005), Bull. of Environ. Contamination and Toxicology, 74: 201-209.

31. Coskun, M., Yurukova, L., Qayir, A., Coskun, M., & Gecheva, G. (2009), Environ. Monitoring and Assess., 157: 529-537.

32. Couto, J.A., Fernandez, J. A., Aboal, J.R., Carballeira, A. (2005), Sci. of the Total Environ., 324: 211-222.

33. Cuculovic, A., Sabovljevic, C.R., Veselinovic, D. (2012), Arch. Biol. Sci., Belgrade, 64(3): 917-925.

34. Culicov, O.A., Frontasyeva, M.V., Steinnes, E., Okina, O.S., Santa, Z., Todoran, R. (2002), J. of Radioanalyt. andNucl. Chem., 254(1): 109-115.

35. Delfanti, R., Papuccia, U.C, Benco, C. (1999), Sci. of the Total Environ., 227: 49-56.

36. Dilks, T.J.K., Proctor, M.C.F. (1979), New Phytologist, 82: 97-114.

37. Dimovska, B., Sajn, R., Stafilov, T., Baceva, K., Tanaselia, C. (2014), Air Qual. Atmos. Health, 7: 541-557.

38. Dragovich, S., Mihailovich, N. (2009), Environ. Monitoring and Assess., 157: 383-390.

39. Ermakova, E.V., Frontasyeva, M.V., Pavlov, S.S., Povtireiko, E.A., Steinnes, E., Cheremisina, Ye.N. (2004), J. of Atmosph. Chem., 49: 549-561.

40. Fernandez, C.C., Shevock, R., Glaser, N.A., Thompson, J.N. (2006), PNAS, 103: 637-642.

41. Fernandez, J.A., Puche, F., Gimeno, C., Carballeira, A. (1999), Ecologia, 13: 83-91.

42. Figueira, R., Sergioa, C., Sousa, A.J. (2002), Environ. Pollution, 118: 153-163.

43. Florek, M., Mankovska, B., Oszlanyi, Y., Frontasyeva, M.V., Ermakova, E., Pavlov, S.S. (2007), Ekologia (Bratislava), 26, № 1: 99-114.

44. Frontasyeva, M.V., Nazarov, V.M., Grass, F., Steinnes, E. (1995), J. Radioanalyt. Nucl. Chem., 192(2): 371379.

45. Gjengedal, E., Steinnes, E. (1990), Environ. Monitoring and Assess., 14: 77-87.

46. Gonzalez, A.G., Pokrovsky, O.S. (2014), J. Colloid and Interface Science, 415: 169-178.

47. Grodzinska, K. (1978), Water, Air and Soil Pollution, 9: 83-97.

48. Grunfeld, K. (2005), Sci. of the Total Environ, 347(1): 120-124.

49. Guilitte, O., Brobant, B., Garsia, M.S. (1990), Mem. Soc. RoyalBot. Belg., 12: 89-99.

50. Guillitte, O., Kirchmann, R., Van Gelder, E., Hurtgen, С. (1990), Transfer of radionuclides in natural and semi-natural environments. Eds. G. Desmet, P. Nassimbeni, M. Belli. London-New York: Elsevier Applied Science: 110-117.

51. Harmens, H., Mills, G., Hayes, F., Jones, L., Norris, D., Cooper, D. (2010), ICP vegetation annual report 2008/2009. 144 p.

52. Harmens, H., Norris, D., Nemitz, E. and participans of the European Moss Survey-2009 (2009), Spatial and temporal trends in heavy metal accumulation in mosses in the UK and Europe. CAPER-2009 - 34th Annual Meeting, Manchester, UK, 6-8 April 2009. nora.necr.ac.uk/8674/2/HarmensN008674CP.pdf.

53. Harmens, H., Norris, D. A., Steinnes, E., Kubin, E., Piispanen, J., Alber, R., et al. (2010), Environ. Pollution, 158: 3144-3156.

54. Harmens, H., Norris, D.A., Sharps, K., Mills, G., Alber, R., Aleksiayenak, Y., Blum, O. et al. (2015), Environ. Pollution., 200: 93-104.

55. Hodgetts, N.G., Soderstrom, L., Blockeel, T.L. et al. (2020), Journal of Bryology, 41(2): 1-116.

56. Holy, M., Pesch, R., Schroder, W., Harmens, H. et al. (2009), J. Atmos. Chem, 63: 109-124.

57. Klos, A., Czora, M., Rajfur, M., Waclawek, M. (2012), Water, Air and SoilPollut., 223: 1829-1836.

58. Klos, A., Rajfur, M., Waclawek, M. (2011), Ecol. Chem. and Engineerings, 18(2): 171-183.

59. Klos, A., Rajfur, M., Waclawek, M., Waclawek, W., Frontasyeva, M.V., Pankratova, Y.S. (2008), Water, Air and Soil Pollut, 191: 345-352.

60. Korzekwa, S., Pankratova, Y.S., Frontasyeva, M.V. (2007), Proc. of ECOpole, 1, № 1-2: 43-51.

61. Kosior, G., Dolhanczuk-Srodka, A., Ziembik, Z., Bru- dzinska-Kosior, A. (2016), V Intern. Conf. on Environ. Protection «Terrestrial Radioisotopes in Environment», Veszprem, Hungary, 2016. Eds. T. Kovacs, E. Toth-Bodrogi, G. Bator. Veszprem: Soc. Organization for Radioecol. Cleanliness, 2016. Р. 105.

62. Koz, B., Cevik, U. (2014), Ecological Indicators, 36: 491-494.

63. Krzeslowska, M., Rabeda, I., Lewandowski, M., Samardakiewicz, S., Basinska, A., Mellerowicz, E.J., Woznyl, A. (2013), E3S Web of Conference, 1. 26008.

64. Lazo, P., Vasjari, M., Frontasyeva, M. et al. (2012), Fresenius Environ. Bull, 21: 2170.

65. Liiv, S., Kaasik, M. (2004), J. of Atmosph. Chem., 49: 563-578.

66. Little, P., Martin, M.H. (1974), Environ. Pollut., 6: 119.

67. Lucaciu, A., Timofte, L., Culicov, O., Frontasyeva, M.V., Oprea, C., Cucuman, S., Mocanu, R., Steinnes, E. (2004), J. of Atmosph. Chem., 49: 533-548.

68. Maevskaya, S.M., Kardash, A.R., Demkiv, O.T. (2001), Russ. J. of Plant Physiol., 48: 820-824.

69. Marinova, S., Yurukova, L., Frontasyeva, M.V., Steinnes, E., Strelkova, L.P., Marinov, A., Karadzhinova, A.G. (2010), Ecol. Chem. and Engineerings, 17, № 1: 37-52.

70. Markert, B., Weckert, V. (1989), Water, Air and Soil Pollution, 43: 177- 189.

71. Meyer, C., Diaz-de-Quijano, M., Monna, F. et al. (2015), Atmosph. Environ., 101: 286-293.

72. Monitoring of atmosphere deposition of heavy metals, nitrogen and pops in Europe using bryophytes [monitoring manual 2010 survey]. <http://icpvegetation.ceh.ac.uk/manuals/documents/UNECEHEAVYMETALSMOSSMANU- AL.2010POPsadaptedfinal_220510_.pdf>.

73. Motyka, O., Maceckova, B., Seidlerova, J., Krejci, B. (2011), GeoScience Engineering, LVII, № 3: 30-36.

74. Nickel, S., Hertel, A., Pesch, R., Schroder, W., Steinnes, E., Uggerud, H.T. (2014), Environ. Sci. Pollut. Res., DOI 10.1007/s11356-014-4018-x.

75. Nickel, S, Schroder, W, Wosniok, W. et al. (2017), Atmosph. Environ, 156: 146-159.

76. Nieme, M., Piispanen, J., Poikolainen, J., Peramaki, P. (2007), Arch. Environ. Contam. Toxicol., 52: 347-354.

77. Оkland, T., Halvorsen, R., Оkland, A., Steinnes, E. (1999), Plant and Soil, 209: 71-83.

78. Poikolainen, J. (2004), Mosses, epiphytic lichens and tree bark as biomonitors for air pollution - specifically for heavy metals in regional surveys. Oulu: Oulun Yliopisto, 64 p.

79. Poikolainen, J., Kubin, E., Piispanen, J., Karhu, J. (2004), Sci. of the Total Environ., 318: 171-185.

80. Popovic, D., Todorovic, D., Ajtic, J., Nikolic, J. (2002), Nucl. Technology and Radiation Protection, 2: 100-103.

81. Popovic, D., Todorovic, D., Frontasyeva, M., Ajtic, J., Tasic, M., Rajsie, S. (2008), Environ. Sci. Pollut. Res., 15: 509520.

82. Proctol, M.C.F., Tuba, Z. (2002), New Phytologist, 156(3): 327-349.

83. Radziemska, M., Mazur, Z., Bes, A., Majewski, G., Guziatin, Z. M., Brtnicky, M. (2019), Environ. Research and Public Health, 16: 3963-3975.

84. Rahman, U., Awan, M.A., Hassan, S.T., Khattak, M.M. (2000), J. of Radioanalyt. and Nuclear Chem., 246(2): 331336.

85. Rosman, K.J., Ly, Ch., Steinnes, E. (1998), Environ. Sci. and Technology, 32: 2542-2546.

86. Sakalys, J., Kvietkus, K., Sucharova, J., Suchara, I., Valiulis, D. (2009), Chemosphere, 76: 91-97.

87. Sassmann, S., Wernitznig, S., Lichtscheidl, I.K., Lang, I. (2010), Protoplasma, 246: 119-123.

88. Sawidis, T., Tsikritzis, L., Tsigaridas, K. (2009), J. of Environ. Management, 90: 2620-2627.

89. Schintu, M., Cogoni, A., Durante, L., Cantaluppi, C., Contu, A. (2005), Chemosphere, 60: 610-618.

90. Schofield, W.B. (1981), Bryologist, 84(2): 149-165.

91. Schroder, W., Holy, M., Pesch, R., Harmens, H. et al. (2010), J. Soils Sediments, 10: 1572-1584.

92. Schroder W., Nickel S., Schonrock S. et al. (2017), Annals of Forest Science, 74: 31.

93. Shaky a, K., Chetti, M.K., Sawidis, T. (2008), Arch. Environ. Contam. Toxicology, 54: 412-421.

94. Shaw, A.J., Goffinet, B. (2000), Bryophyte biology. Cambridge: Cambridge University Press. 348 p.

95. Smirnov, L.I., Frontasyeva, M.V., Steinnes, E., Lyapunov, S.M., Cherchintsev, V.D., Romanov, S.A. et al. (2004), Atomic Energy, 97(1): 510-515.

96. Spiric, Z., Vuckovic, I., Stafilov, T., Kusan, V., Frontasyeva, M. (2013), Arch. Environ. Contam. Toxicol., 65: 33-46.

97. Stankovic, J.D., Sabovljevic, A.D., Sabovljevic, M.S. (2018), Acta Bot. Croat, 77(2): 109-118.

98. State, G., Popescu, I.V., Radulescu, C.,-Macris, C.,-Stihi, C., Gheboianu, A., Dulama, I., Ni(escu, O. (2012), Bull. Environ. Contam. Toxicol, 89: 580-586.

99. State of the terrestrial environment in the joint Finnish, Norwegian and Russian border area on the basis of bioindicators (2014). Final technical report of the Pasvik Environment Monitoring Programme. Eds. Rautio P., Poikolainen J. Kopijyva Oy, Kuopio. 17 p.

100. Suchara, I., Mankovska, B., Sucharova, J., Florek, M., Godzik, B., Rabnecz, G. et al. (2007), Mapping of main sources of pollutants and their transport in the Visegrad space. Part II: fifty three elements. Project 11007-2006-IVF. Zvolen: KLEMO spol. s r.o. 213 p.

101. Sucharova, J., Suchara, I., Ho la, M., Reimann, C. (2014), Applied Geochem., 40: 51-60.

102. Sun, S.Q., He, M., Cao, T., Zhang, Y.C., Han, W. (2009), Environ. Monitoring and Assess., 149: 291-302.

103. Szarek-Lukaszewska, G., Grodzinska, K., Braniewski, S. (2002), Environ. Monitoring and Assess., 79: 231-237.

104. Tamm, C.O. (1953), Meddelanden Fran Statens Skogsforskningsinstitut, 43: 1-140.

105. Tipping, E., Vincent, C.D., Lawror, A.J., Lofts, S. (2008), Environ. Pollution, 156: 936-943.

106. Tyler, G. (1991), AA or ICP - Which do you choose?. http://www.varianinc.com/media/sci/apps/icpes003.pdf.

107. Ugur, B., Ozden, M.M., Yener, G. (2003), Atmosph. Environ, 37: 2237-2245.

108. Vukojevic, V., Sabovlevic, M., Sabovlevic, A., Mihai- lovic, N., Drazic, G., Vucinic, Z. (2009), Arch. Biol. Sci., Belgrade, 61(4): 835-845.

109. Wang, Q., Wu, N., Luo, P., Yi, Sh., Bao, W., Shi, F. (2008), Front. For. China, 3(2): 171-176.

110. Wells, J.M., Brown, D.H., Beckett, R.P. (1995), New Phytologist, 129: 477-486.

111. Wolterbeek, H.Th., Kuik, R., Verburg, T. G. (1995), Environ. Monitoring and Assess., 35: 263-286.

112. Yurukova, L., Tsakiri, E., Cayir, A. (2009), Bull. of Environ. Contamin. and Toxicol., 83: 174-179.

113. Zechmeister, H.G., Dirnbock, T., Huber, K., Mirtl, M. (2007), Environ. Pollution, 147: 696. - 705.

114. Zechmeister H.G., Grodzinska K., Szarek-Lukaszewska G. (2003), Chapter 10. Bryophytes. Bioindicators and Biomonitors. Eds. B.A. Markert, A.M. Breure & H.G. Zechmeister. Oxford: Elsevier Applied Science. P. 329-375.

115. Zvereva, E.L., Kozlov, M.V. (2011), Water, Air and Soil Pollution, 218: 573-586.

Размещено на Allbest.ru

...

Подобные документы

Работы в архивах красиво оформлены согласно требованиям ВУЗов и содержат рисунки, диаграммы, формулы и т.д.
PPT, PPTX и PDF-файлы представлены только в архивах.
Рекомендуем скачать работу.