Environmental Engineering Reference
In-Depth Information
during in situ biostimulation of subsurface
sediment cocontaminated with uranium
and nitrate. Applied and Environmental
Microbiology 70, 4911 4920.
Nyman, J. L., Marsh, T. L., Ginder Vogel, M. A.,
Gentile, M., Fendorf, S. and Criddle, C.
(2006) Heterogeneous response to
biostimulation for U(VI) reduction in
replicated sediment microcosms.
Biodegradation 17, 303 316.
Ohnuki, T., Yoshida, T., Ozaki, T. et al. (2005)
Interactions of uranium with bacteria
and kaolinite clay. Chemical Geology 220,
237 243.
Ohnuki, T., Yoshida, T., Ozaki, T. et al. (2007)
Chemical speciation and association of
plutonium with bacteria, kaolinite clay,
and their mixture. Environmental Science and
Technology 41, 3134 3139.
Pedersen, K. (2005) Micro organisms and their
influence on radionuclide migration in
igneous rock environments. Journal of
Nuclear and Radiochemical Sciences 6, 11 15.
Renshaw, J. C., Butchins, L. J., Livens, F. R., May, I.,
Charnock, J. M. and Lloyd, J. R. (2005)
Bioreduction of uranium: environmental
implications of a pentavalent intermediate.
Environmental Science and Technology 39,
5657 5660.
Renshaw, J. C., Law, N., Geissler, A., Livens, F. R.
and Lloyd, J. R. (2008) Impact of the
Fe(III) reducing bacteria Geobacter
sulfurreducens and Shewanella oneidensis on the
speciation of plutonium. Short
communication. Biogeochemistry submitted.
Renshaw, J. C., Lloyd, J. R. and Livens, F. R. (2007)
Microbial interactions with actinides and
long lived fission products. Comptes Rendus
Chimie 10, 1067 1077.
Ruggiero, C. E., Boukhalfa, H., Forsythe, J. H.,
Lack, J. G., Hersman, L. E. and Neu, M. P.
(2005) Actinide and metal toxicity to
prospective bioremediation bacteria.
Environmental Microbiology 7, 88 97.
Selenska Pobell, S. (2002) Diversity and activity
of bacteria in uranium waste piles.
In: Interactions of Micro organisms with
Radionuclides (eds. M. J. Keith Roach and
F. R. Livens). 225: Elsevier Sciences Ltd,
Oxford, UK.
Selenska Pobell, S., Geissler, A., Merroun, M.,
Flemming, K., Geipel, G. and Reuther, H.
(2008) Biogeochemical changes induced by
uranyl nitrate in a uranium mining waste
pile. In: Uranium, Mining and Hydrogeology
(eds. B. J. Merkel and A. Hasche Berger),
pp. 743 752. Springer Verlag, New York.
Selenska Pobell, S., Panak, P., Miteva, V.,
Boudakov, I., Bernhard, G. and Nitsche, H.
(1999) Selective accumulation of heavy
metals by three indigenous Bacillus strains,
B. cereus, B. megaterium and B. sphaericus, from
drain waters of a uranium waste pile. FEMS
Microbiology Ecology 29, 59 67.
Senko, J. M., Istok, J. D., Suflita, J. M. and
Krumholz, L. R. (2002) In situ evidence for
uranium immobilization and
remobilization. Environmental Science and
Technology 36, 1491 1496.
Shelobolina, E. S., O'Neill, K., Finneran, K. T.,
Hayes, L. A. and Lovley, D. R. (2003) Potential
for in situ bioremediation of a lowpH, high
nitrate uraniumcontaminated groundwater.
Soil and Sediment Contamination 12, 865 884.
Shelobolina, E. S., Sullivan, S. A., O'Neill, K. R.,
Nevin, K. P. and Lovley, D. R. (2004)
Isolation, characterization, and
U(VI) reducing potential of a facultatively
anaerobic, acid resistant bacterium from
low pH, nitrate and U(VI) contaminated
subsurface sediment and description of
Salmonella subterranea sp. nov. Applied and
Environmental Microbiology 70, 2959 2965.
Spain, A. M., Peacock, A. D., Istok, J. D. et al. (2007)
Identification and isolation of a Castellaniella
species important during biostimulation of
an acidic nitrate and uranium
contaminated aquifer. Applied and
Environmental Microbiology 73, 4892 4904.
Suzuki, Y. and Banfield, J. (1999)
Geomicrobiology of uranium. Reviews in
Mineralogy and Geochemistry 38, 393 432.
Suzuki, Y. and Banfield, J. F. (2004) Resistance to,
and accumulation of, uranium by bacteria
Search WWH ::




Custom Search