179
Pantelica A, Salagean M, Georgescu I, Pincovschi E (1997) INAA of some phosphates used in
fertilizer industries. J Radioanal Nucl Chem 216:261–264
Rothbaum HP, McGaveston DA, Wall T, Johnston AE, Mattingly GEG (1979) Uranium accumulation in soils from long-continued applications of superphosphate. J Soil Sci 30:147–153
Sahoo SK, Hosoda M, Kamagata S, Sorimachi A, Ishikawa T, Tokonami S, Uchida S (2011)
Thorium, uranium and rare earth elements concentration in weathered Japanese soil samples.
Prog Nucl Sci Technol 1:416–419
Sahoo SK, Hosoda M, Prasad G, Takahashi H, Sorimachi A, Ishikawa T, Tokonami S, Uchida S
(2013) Naturally occurring radionuclides and rare earth elements in weathered Japanese soil
samples. Acta Geophys 61:876–885
Sasaki T, Tashiro Y, Fujinaga H, Ishii T, Gunji Y (2002) Determination of transfer factors of uranium, thorium, radium and lead from soil to agricultural product in Japan for estimating internal radiation dose through ingestion. Jpn J Health Phys 37:208–221. (In Japanese with English
abstract)
Shibata T, Nakamura E (1997) Across-arc variations of isotope and trace element compositions
from Quaternary basaltic volcanic rocks in northeastern Japan: Implications for interaction
between subducted oceanic slab and mantle wedge. J Geophys Res-Solid Earth 102:8051–8064
Soudek P, Petrová Š, Benešová D, Dvořáková M, Vaněk T (2011) Uranium uptake by hydroponically cultivated crop plants. J Environ Radioactiv 102:598–604
Tagami K, Uchida S (2006) Use of a natural U/Th concentration ratio for estimation of anthropogenic uranium concentration in Japanese agricultural soils due to application of phosphatic
fertilizers. Radioisotopes 55:71–78. (In Japanese with English abstract)
Tagami K, Uchida S, Hirai I (2009) Soil-to-plant transfer factor of uranium by measuring naturally occurring uranium at trace levels in plants and soils by ICP-MS. Waste Management
Symposium Proceeding 35:9105
Takeda A, Tsukada H, Takaku Y, Hisamatsu S, Nanzyo M (2006) Accumulation of uranium derived
from long-term fertilizer applications in a cultivated Andisol. Sci Total Environ 367:924–931
Terashima S, Imai N, Ohta A, Okai T, Mikoshiba M (2004) Geochemistry of soils from the
southern Kanto district, Japan: Preliminary study for the soil geochemical mapping (part 5:
Generalization). Bull Geol Surv Japan 55:1–18. (In Japanese with English abstract)
Tezuka A (1972) Uranium and thorium contents and uranium distribution in igneous apatite.
J Geochem Soc Japan 5:28–37. (In Japanese with English abstract)
Tomé FV, Rodrıguez PB, Lozano JC (2002) Distribution and mobilization of U, Th and
226
Ra in
the plant–soil compartments of a mineralized uranium area in south-west Spain. J Environ
Radioactiv 59:41–60
Tsukada H, Nakamura Y (1998) Transfer factors of 31 elements in several agricultural plants collected from 150 farm fields in Aomori, Japan. J Radioanal Nucl Chem 236:123–131
Tsumura A, Yamasaki S (1993) Behavior of uranium, thorium, and lanthanoids in paddy fields.
Radioisotopes 42:265–272. (In Japanese with English abstract)
Uchida S, Tagami K, Hirai I (2007a) Soil-to-plant transfer factors of stable elements and naturally occurring radionuclides: (1) upland field crops collected in Japan. J Nucl Sci Technol
44:628–640
Uchida S, Tagami K, Hirai I (2007b) Soil-to-plant transfer factors of stable elements and naturally
occurring radionuclides: (2) Rice collected in Japan. J Nucl Sci Technol 44:779–790
Vandenhove H, Van Hees M, Wannijn J, Wouters K, Wang L (2007) Can we predict uranium bioavailability based on soil parameters? Part 2 soil solution uranium concentration is not a good
bioavailability index. Environ Pollut 145:577–586
Vandenhove H, Vanhoudt N, Duquène L, Antunes K, Wannijn J (2014) Comparison of two sequential extraction procedures for uranium fractionation in contaminated soils. J Environ Radioact
137:1–9
Wan J, Tokunaga TK, Brodie E, Wang Z, Zheng Z, Herman D, Hazen TC, Firestone MK, Sutton
SR (2005) Reoxidation of bioreduced uranium under reducing conditions. Environ Sci Technol
39:6162–6169
Soil-to-Crop Transfer Factor: Consideration on Excess Uranium…
Pantelica A, Salagean M, Georgescu I, Pincovschi E (1997) INAA of some phosphates used in
fertilizer industries. J Radioanal Nucl Chem 216:261–264
Rothbaum HP, McGaveston DA, Wall T, Johnston AE, Mattingly GEG (1979) Uranium accumulation in soils from long-continued applications of superphosphate. J Soil Sci 30:147–153
Sahoo SK, Hosoda M, Kamagata S, Sorimachi A, Ishikawa T, Tokonami S, Uchida S (2011)
Thorium, uranium and rare earth elements concentration in weathered Japanese soil samples.
Prog Nucl Sci Technol 1:416–419
Sahoo SK, Hosoda M, Prasad G, Takahashi H, Sorimachi A, Ishikawa T, Tokonami S, Uchida S
(2013) Naturally occurring radionuclides and rare earth elements in weathered Japanese soil
samples. Acta Geophys 61:876–885
Sasaki T, Tashiro Y, Fujinaga H, Ishii T, Gunji Y (2002) Determination of transfer factors of uranium, thorium, radium and lead from soil to agricultural product in Japan for estimating internal radiation dose through ingestion. Jpn J Health Phys 37:208–221. (In Japanese with English
abstract)
Shibata T, Nakamura E (1997) Across-arc variations of isotope and trace element compositions
from Quaternary basaltic volcanic rocks in northeastern Japan: Implications for interaction
between subducted oceanic slab and mantle wedge. J Geophys Res-Solid Earth 102:8051–8064
Soudek P, Petrová Š, Benešová D, Dvořáková M, Vaněk T (2011) Uranium uptake by hydroponically cultivated crop plants. J Environ Radioactiv 102:598–604
Tagami K, Uchida S (2006) Use of a natural U/Th concentration ratio for estimation of anthropogenic uranium concentration in Japanese agricultural soils due to application of phosphatic
fertilizers. Radioisotopes 55:71–78. (In Japanese with English abstract)
Tagami K, Uchida S, Hirai I (2009) Soil-to-plant transfer factor of uranium by measuring naturally occurring uranium at trace levels in plants and soils by ICP-MS. Waste Management
Symposium Proceeding 35:9105
Takeda A, Tsukada H, Takaku Y, Hisamatsu S, Nanzyo M (2006) Accumulation of uranium derived
from long-term fertilizer applications in a cultivated Andisol. Sci Total Environ 367:924–931
Terashima S, Imai N, Ohta A, Okai T, Mikoshiba M (2004) Geochemistry of soils from the
southern Kanto district, Japan: Preliminary study for the soil geochemical mapping (part 5:
Generalization). Bull Geol Surv Japan 55:1–18. (In Japanese with English abstract)
Tezuka A (1972) Uranium and thorium contents and uranium distribution in igneous apatite.
J Geochem Soc Japan 5:28–37. (In Japanese with English abstract)
Tomé FV, Rodrıguez PB, Lozano JC (2002) Distribution and mobilization of U, Th and
226
Ra in
the plant–soil compartments of a mineralized uranium area in south-west Spain. J Environ
Radioactiv 59:41–60
Tsukada H, Nakamura Y (1998) Transfer factors of 31 elements in several agricultural plants collected from 150 farm fields in Aomori, Japan. J Radioanal Nucl Chem 236:123–131
Tsumura A, Yamasaki S (1993) Behavior of uranium, thorium, and lanthanoids in paddy fields.
Radioisotopes 42:265–272. (In Japanese with English abstract)
Uchida S, Tagami K, Hirai I (2007a) Soil-to-plant transfer factors of stable elements and naturally occurring radionuclides: (1) upland field crops collected in Japan. J Nucl Sci Technol
44:628–640
Uchida S, Tagami K, Hirai I (2007b) Soil-to-plant transfer factors of stable elements and naturally
occurring radionuclides: (2) Rice collected in Japan. J Nucl Sci Technol 44:779–790
Vandenhove H, Van Hees M, Wannijn J, Wouters K, Wang L (2007) Can we predict uranium bioavailability based on soil parameters? Part 2 soil solution uranium concentration is not a good
bioavailability index. Environ Pollut 145:577–586
Vandenhove H, Vanhoudt N, Duquène L, Antunes K, Wannijn J (2014) Comparison of two sequential extraction procedures for uranium fractionation in contaminated soils. J Environ Radioact
137:1–9
Wan J, Tokunaga TK, Brodie E, Wang Z, Zheng Z, Herman D, Hazen TC, Firestone MK, Sutton
SR (2005) Reoxidation of bioreduced uranium under reducing conditions. Environ Sci Technol
39:6162–6169
Soil-to-Crop Transfer Factor: Consideration on Excess Uranium…
