ARTICLE;
BACTERIAL COUNT;
BACTERIUM;
GEL ELECTROPHORESIS;
INCUBATION TIME;
NONHUMAN;
POPULATION ABUNDANCE;
SOIL;
SOIL WATER CONTENT;
SOLUBILITY;
SPECIES COMPOSITION;
BACTERIA;
CHEMICAL COMPOSITION;
CONCENTRATION;
DRYING;
ELECTROPHORESIS;
FARM CROPS;
SOIL;
SOLUBILITY;
Comparative metabolic behaviour and interrelationships of Tc and S in soybean plants
Cataldo D.A., Garland T.R., Wildung R.E., and Fellows R.J. Comparative metabolic behaviour and interrelationships of Tc and S in soybean plants. Health Phys. 57 (1989) 281-288
Reduction of pertechnetate in solution by heterogeneous electron transfer from Fe(II)-containing geological material
Cui D., and Eriksen T.E. Reduction of pertechnetate in solution by heterogeneous electron transfer from Fe(II)-containing geological material. Environ. Sci. Technol. 30 (1996) 2263-2269
Distribution of microbial assemblages in the Central Arctic Ocean Basin studied by PCR/DGGE: analysis of a large data set
Ferrari V.C., and Hollibaugh J.T. Distribution of microbial assemblages in the Central Arctic Ocean Basin studied by PCR/DGGE: analysis of a large data set. Hydrobiologia 401 (1999) 55-68
Insolubilization of Technetium by microorganisms in waterlogged soils
(in Japanese, with English abstract)
Ishii N., and Tagami K. Insolubilization of Technetium by microorganisms in waterlogged soils. Radioisotopes 52 (2003) 475-482 (in Japanese, with English abstract)
Physicochemical forms of technetium in surface water covering paddy and upland fields
Ishii N., Tagami K., and Uchida S. Physicochemical forms of technetium in surface water covering paddy and upland fields. Chemosphere 57 (2004) 953-959
Gram-negative bacteria responsible for insoluble technetium formation and the fate of insoluble Tc in the water column above flooded paddy soil
Ishii N., and Uchida S. Gram-negative bacteria responsible for insoluble technetium formation and the fate of insoluble Tc in the water column above flooded paddy soil. Chemosphere 60 (2005) 157-163
A novel PhosphoImager-based technique for monitoring the microbial reduction of technetium
Lloyd J.R., and Macaskie L.E. A novel PhosphoImager-based technique for monitoring the microbial reduction of technetium. Appl. Environ. Microbiol. 62 (1996) 578-582
Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA
Muyzer G., De Waal E.C., and Uitterlinden A.G. Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA. Appl. Environ. Microbiol. 59 (1993) 695-700
Phylogenetic relationships of Thiomicrospira species and their identification in deep-sea hydrothermal vent samples by denaturing gradient gel electrophoresis of 16S rDNA fragments
Muyzer G., Tesje A., Wirsen C.O., and Jannasch H.W. Phylogenetic relationships of Thiomicrospira species and their identification in deep-sea hydrothermal vent samples by denaturing gradient gel electrophoresis of 16S rDNA fragments. Arch. Microbiol. 164 (1995) 165-172
Source terms for Technetium-99 from nuclear fuel cycle facilities
Desmet G., and Myttenaere C. (Eds), Elsevier Applied Science Publishers, London
Till J.E. Source terms for Technetium-99 from nuclear fuel cycle facilities. In: Desmet G., and Myttenaere C. (Eds). Technetium in the Environment (1986), Elsevier Applied Science Publishers, London 1-20