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Assessment of the influence of soil properties on 137Cs accumulation in Of horizon in forest soils

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The work focuses on assessment of soil physicochemical parameters influence on 137Cs accumulation in Of soil horizon. Besides organic matter content and pH, the parameters related to sorption properties and mobile ions concentration were considered. The data were transformed using Box-Cox formula. To find mutual relationships between variables cluster analysis (CA) and principal components analysis (PCA) were used. It was found that the transformed physicochemical parameters in Of horizon are more or less related with each other but no linear or nearly linear relationships between 137Cs activity and physicochemical parameters were found.
Czasopismo
Rocznik
Strony
205--212
Opis fizyczny
Bibliogr. 32 poz., rys.
Twórcy
autor
autor
  • Chair of Biotechnology and Molecular Biology, Opole University, 4 B. Kominka Str., 45-032 Opole, Tel.: +48 77 401 6050, Fax: +48 77 401 6051, ziembik@uni.opole.pl
Bibliografia
  • 1. Beli M, Sansone U, Menegon S (1994) Behaviour of radiocaesium in a forest in the easter Italian Alps. Sci Total Environ 157:257–260
  • 2. Berg MT, Shuman LJ (1995) A three-dimensional stochastic model of the behavior of radionuclides in forest. Ecol Modelling 83:359–372
  • 3. Biernacka M, Koczyński A, Sosińska A (2004) Systematic measurements of gamma radiation background and of radioactive contamination of the ground. In: Report of Central Laboratory of Radiological Protection 2002–2003. CLOR, Warsaw, pp 64–66
  • 4. Block J, Pimpl M (1990) Cycling of radiocesium in two forest ecosystems in the state of Rhineland-Palatinate. Elsevier, London and New York, pp 450–458
  • 5. Bunzl K, Schimmack W (1989) Effect of the microbial biomass reduction by gamma-irradiation on the sorption of Cs-137, Sr-85, Ce-139, Co-59, Cd-109, Zm-65, Ru-103, Tc-103 and I-131 by soil. Radiat Environ Biophys 27:165–176
  • 6. Communique II.411.K.S.96 (1996) Soil contamination in communes of Opole Voivodship. Państwowa Inspekcja Ochrony Środowiska/Wojewódzki Inspektorat Ochrony Środowiska, Opole, Poland (in Polish)
  • 7. Cremers A, Elsen A, De Preter P, Maes A (1988) Quantitative analysis of radiocaesium retention in soil. Nature 335:247–249
  • 8. De Brouwer S, Thiry Y, Myttenaere C (1994) Availability and fixation of radiocaesium in a forest brown acid soil. Sci Total Environ 143:183–191
  • 9. Dołhańczuk-Śródka A, Majcherczyk T, Ziembik Z, Smuda M, Wacławek M (2006) Spatial 137Cs distribution in forest soil. Nukleonika 51;S2:S69–S79
  • 10. Dołhańczuk-Śródka A, Ziembik Z, Majcherczyk T, Smuda M, Wacławek M, Wacławek W (2006) Factors influencing perpendicular and horizontal translocation of 137Cs in forest environment. In: Pachocki K (ed) Chernobyl – 20 years later: environment and food contamination, health effects. Nuclear power in Poland: pros and cons. Polskie Towarzystwo Badań Radiacyjnych, Zakopane, pp 427–435 (in Polish)
  • 11. Dołhańczuk-Śródka A, Ziembik Z, Wacławek M, Wacławek W (2006) Research of radiocaesium activity in the Opole Anomaly area and in the Czech Republic. Environ Eng Sci 23;4:642–649
  • 12. El-Reefy HI, Sharshar T, Zaghloul R, Badran HM (2006) Distribution of gamma-ray emitting radionuclides in the environment of Burullus Lake: I. Soils and vegetations. J Environ Radioact 87:148–169
  • 13. El Samad O, Zahraman K, Baydoun R, Nasreddine M (2007) Analysis of radiocaesium in the Lebanese soil one decade after the Chernobyl accident. J Environ Radioact 92:72–79
  • 14. Giannakopoulou F, Haidouti C, Chronopoulou A, Gasparatos D (2007) Sorption behavior of cesium on various soils under different pH levels. J Hazard Mater 149:553–556
  • 15. Handl J, Sachse R, Jakob D et al. (2008) Accumulation of 137Cs in Brazilian soils and its transfer to plants under different climatic conditions. J Environ Radioact 99:271–287
  • 16. ISO (1995) Soil quality – sampling. Part 4: Guidance on the procedure for investigations of natural, near natural and cultivated sites. ISO/DIS 10381-4. International Standard Organization, Geneva
  • 17. Jagielak J, Biernacka M, Grabowski D, Henschke J (1996) Changes in environmental radiological situation in Poland during 10 years period after Chernobyl breakdown. Państwowa Inspekcja Ochrony Środowiska, Warsaw (in Polish)
  • 18. Jolliffe IT (2002) Principal component analysis. Springer Verlag, New York
  • 19. Kaufman L, Rousseeuw PJ (2005) Finding groups in data. An introduction to cluster analysis. John Willey & Sons, Inc., Hoboken, New Jersey
  • 20. Korobova E, Linnik V, Chizhikova N (2008) The history of the Chernobyl 137Cs contamination of the flood plain soils and its relation to physical and chemical properties of the soil horizons (a case study). J Geochem Explor 96:236–255
  • 21. Kruyts N, Delvaux B (2002) Soil organic horizons as a major source for radiocesium biorecycling in forest ecosystems. J Environ Radioact 58:175–190
  • 22. Nakamaru Y, Ishikawa N, Tagami K, Uchida S (2007) Role of soil organic matter in the mobility of radiocesium in agricultural soils common in Japan. Colloids Surf A 306:111–117
  • 23. Nimis PL (1996) Radiocesium in plants forest ecosystems. Stud Geobot 15:3–49
  • 24. Ostrowska A, Gawliński S, Szczubiałka Z (1999) Methods of analysis and assessment of soil and plants properties. The catalog. Institute of Environmental Protection, Warsaw (in Polish)
  • 25. R Development Core Team (2008) R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna. http://www.R-project.org
  • 26. Rogowski A, Tamura T (1970) Erosional behavior of cesium-137. Health Phys 18:446–477
  • 27. Schuller P, Handl J, Trumper RE (1988 Dependence of the 137Cs soil-to-plant transfer factor on soil parameters. Health Phys 5:3–15
  • 28. Squire HM, Middleton LJ (1966) Behaviour of 137Cs in soils and pastures: a long-term experiment. Radiat Bot 6:413–423
  • 29. Takenaka Ch, Ondaa Y, Hamajima Y (1998) Distribution of cesium-137 in Japanese forest soils: correlation with the contents of organic carbon. Sci Total Environ 222:193–199
  • 30. Wacławek M, Dołhańczuk-Śródka A, Wacławek W (2004) Radioisotopes in environment. In: Pathways of pollutants and mitigation strategies of their impact on the ecosystems. Monografie Komitetu Inżynierii Środowiska. Vol. 27. Państwowe Wydawnictwo Naukowe, Lublin, pp 245–256
  • 31. Zhiyanski M, Bech J, Sokolovska M, Lucot E, Bech J, Badot PM (2008) Cs-137 distribution in forest floorand surface soil layers from two mountainous regions in Bulgaria. J Geochem Explor 96:256–266
  • 32.Ziembik Z, Dołhańczuk-Śródka A, Wacławek M (2009) Multiple regression model application for assessment of soil properties influence on 137Cs accumulation in forest soils. Water, Air Soil Pollut 198:219–232
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ7-0014-0034
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