938
Views
3
CrossRef citations to date
0
Altmetric
Research Article

Radioactivity in wild-growing mushrooms of the Calabria region, south of Italy

& | (Reviewing Editor)
Article: 1354957 | Received 30 May 2017, Accepted 07 Jul 2017, Published online: 26 Jul 2017

References

  • Aumann, D. C., Cloth, G., Steffan, B., & Steglich, W. (1989). Complexation of cesium 137 by the cap pigments of the Bay Boletus (Xerocomus badius). Angewandte Chemie International Edition in English, 28, 453–454. doi:10.1002/anie.198904531
  • Baeza, A., Hernandez, S., Guillen, F. J., Moreno, G., Manjon, J. L., & Pascual, R. (2004). Radiocaesium and natural gamma emitters in mushrooms collected in Spain. Science of the Total Environment, 318, 59–71. doi:10.1016/S0048-9697(03)00363-2
  • Ban-Nai, T., Muramatsu, Y., & Yoshida, S. (1997). Concentrations of 137Cs and 40K in edible mushrooms collected in Japan and radiation dose due to their consumption. Health Physics, 72, 384–389. Retrieved from https://jrr.jstage.jst.go.jp
  • Beresford, N. A., Voigt, G., Wright, S. M., Howard, B. J., Bennett, C. L., & Prister, B. (2001). Self-help countermeasure strategies for populations living within contaminated areas Belarus, Russia and Ukraine. Journal of Environmental Radioactivity, 56, 215–239. doi:10.1016/S0265-931X(01)00055-8
  • Caridi, F., Belvedere, A., D’Agostino, M., & Marguccio, S. (2017). 137Cs activity concentration in mosses in the Calabria region, south of Italy. Journal of Instrumentation, 12, P05001. doi:10.1088/1748-0221/12/05/P05001
  • Caridi, F., D’Agostino, M., Marguccio, S., Belvedere, A., Belmusto, G., Marcianò, G., … Mottese, A. (2016). Radioactivity, granulometric and elemental analysis of river sediments samples from the coast of Calabria, south of Italy. The European Physical Journal Plus, 131, 136. doi:10.1140/epjp/i2016-16136-1
  • Caridi, F., D’Agostino, M., Messina, M., Marcianò, G., Grioli, L., Belvedere, A., … Belmusto, G. (2017). Lichens as environmental risk detectors. The European Physical Journal Plus, 132, 189. doi:10.1140/epjp/i2017-11459-y
  • Caridi, F., Marguccio, S., Belvedere, A., Belmusto, G., Marcianò, G., Sabatino, G., & Mottese, A. (2016). Natural radioactivity and elemental composition of beach sands in the Calabria region, south of Italy. Environmental Earth Science, 75, 629. doi:10.1007/s12665-016-5393-z
  • European Commission (EC). (2008). Council Regulation No 733/2008 of 15 July 2008 on the conditions governing imports of agricultural products originating in third countries following the accident at the Chernobyl nuclear power station (Codified version).
  • Horyna, J. (1991). Wild mushrooms – The most significant source of internal contamination. Isotopenpraxis, 27, 23–24. doi:10.1080/10256019108622456
  • ICRP. (2012). Compendium of dose coefficients based on ICRP publication 60. ICRP Publication 119 Annals of ICRP, 41(Suppl.).
  • Italian Legislative Decree 230/95. (1995). Italian Legislative Decree 230/95 and successful modifications and integrations.
  • Júnior, J. A. S., Cardoso, J. J. R. F., Silva, C. M., Silveira, S. V., & Amaral, R. S. (2006). Determination of radionuclides in the environment using gamma-spectrometry. Journal of Radioanalytical and Nuclear Chemistry, 269, 451–455. doi:10.1007/s10967-006-0417-x
  • Kalac, P. (2010). Trace element contents in European species of wild growing edible mushrooms: A review for the period 2000–2009. Food Chemistry, 122, 2–15. doi:10.1016/j.foodchem.2010.02.045
  • Lux, D., Kammerer, L., Ruhm, W., & Wirth, E. (1995). Cycling of Pu, Sr, Cs, and other long-living radionuclides in forest ecosystems of the 30 km zone around Chernobyl. Science of the Total Environment, 173, 375–384. doi:10.1016/0048-9697(95)04741-7
  • Mietelski, J. W., Baeza, A. S., Guillen, J., Buzinny, M., Tsigankov, N., & Gaca, P. (2002). Plutonium and other alpha emitters in mushrooms from Poland, Spain and Ukraine. Applied Radiation & Isotopes, 56, 717–729. doi:10.1016/S0969-8043(01)00281-0
  • Mietelski, J. W., Jasinska, M., Kozak, K., & Ochab, E. (1996). The method of measurement used in the investigation of radioactive contamination of forests in Poland. Applied Radiation and Isotopes, 47, 1089–1095. Retrieved from https://www.infona.pl/resource/bwmeta1.element.elsevier-d085ac7c-c7cf-39cd-8397-e84ce46faffd
  • Mietelski, J. W., Jasinska, M., Kubica, B., Kozak, K., & Macharski, P. (1994). Radioactive contamination of polish mushrooms. Science of the Total Environment, 157, 217–226. doi:10.1016/0048-9697(94)90582-7
  • Seeger, D. R., & Schweinshaut, P. (1981). Vorkommen von caesium in hoheren pilzen. The Science of the Total Environment, 19, 253–276. Retrieved from www.intechopen.com
  • Skuterud, L., Travnikova, I. G., Balonov, M. I., Strand, P., & Howard, B. J. (1997). Contribution of fungi to radiocaesium intake by rural populations in Russia. Science of the Total Environment, 193, 237–242. Retrieved from www.researchgate.net
  • Tagliavini, O., & Tagliavini, R. (2003). Italian atlantic of mushrooms. Basilicata: ARPA Basilicata.
  • UNSCEAR. (2000). United nations scientific committee on the effects of atomic radiation. UNSCEAR 2000 Report to the General Assembly, with Scientific Annexes. New York, NY: United Stations.
  • Wichterey, K., & Sawallisch, S. (2002). Naturally occurring radionuclides in mushroom from uranium mining regions in Germany. Radioprotection, 37, 353–358. Retrieved from www.radioprotection.org/articles/.../2002/.../rad20021pC1-353....
  • Yoshida, S., & Muramatsu, Y. (1994). Accumulation of radiocesium in basidiomycetes collected from Japanese forests. Science of the Total Environment, 157, 197–205. doi:10.1016/0048-9697(94)90580-0