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David B Watson

Showing results (11-20 of 56) with videos related to

Pageof 6
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Environmental Science & Technology|August 9, 2005
Natural humics impact uranium bioreduction and oxidationBaohua Gu, Hui Yan, Ping Zhou, et al.
Analytical Chemistry|March 26, 2010
Membrane-extraction ion mobility spectrometry for in situ detection of chlorinated hydrocarbons in waterYongzhai Du, Wei Zhang, William Whitten, et al.
Environmental Monitoring and Assessment|August 27, 2002
Microbiological characteristics in a zero-valent iron reactive barrierBaohua Gu, David B Watson, Liyou Wu, et al.
Ground Water|April 12, 2005
Plume and lithologic profiling with surface resistivity and seismic tomographyDavid B Watson, William E Doll, T Jeffrey Gamey, et al.
Applied and Environmental Microbiology|September 28, 2011
Linking specific heterotrophic bacterial populations to bioreduction of uranium and nitrate in contaminated subsurface sediments by using stable isotope probingDenise M Akob, Lee Kerkhof, Kirsten Küsel, et al.
Journal of Hazardous Materials|February 2, 2010
Prediction of uranium and technetium sorption during titration of contaminated acidic groundwaterFan Zhang, Jack C Parker, Scott C Brooks, et al.
Environmental Science & Technology|February 27, 2013
U(VI) bioreduction with emulsified vegetable oil as the electron donor--model application to a field testGuoping Tang, David B Watson, Wei-Min Wu, et al.
Environmental Research|July 2, 2013
Characterization of soils from an industrial complex contaminated with elemental mercuryCarrie L Miller, David B Watson, Brian P Lester, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 8, 2007
A catalytic beacon sensor for uranium with parts-per-trillion sensitivity and millionfold selectivityJuewen Liu, Andrea K Brown, Xiangli Meng, et al.
Journal of Hazardous Materials|May 3, 2011
Modeling uranium transport in acidic contaminated groundwater with base additionFan Zhang, Wensui Luo, Jack C Parker, et al.
Pageof 6

Showing results (11-20 of 56) with videos related to

Sort By:
Pageof 6
Environmental Science & Technology|August 9, 2005
Natural humics impact uranium bioreduction and oxidationBaohua Gu, Hui Yan, Ping Zhou, et al.
Analytical Chemistry|March 26, 2010
Membrane-extraction ion mobility spectrometry for in situ detection of chlorinated hydrocarbons in waterYongzhai Du, Wei Zhang, William Whitten, et al.
Environmental Monitoring and Assessment|August 27, 2002
Microbiological characteristics in a zero-valent iron reactive barrierBaohua Gu, David B Watson, Liyou Wu, et al.
Ground Water|April 12, 2005
Plume and lithologic profiling with surface resistivity and seismic tomographyDavid B Watson, William E Doll, T Jeffrey Gamey, et al.
Applied and Environmental Microbiology|September 28, 2011
Linking specific heterotrophic bacterial populations to bioreduction of uranium and nitrate in contaminated subsurface sediments by using stable isotope probingDenise M Akob, Lee Kerkhof, Kirsten Küsel, et al.
Journal of Hazardous Materials|February 2, 2010
Prediction of uranium and technetium sorption during titration of contaminated acidic groundwaterFan Zhang, Jack C Parker, Scott C Brooks, et al.
Environmental Science & Technology|February 27, 2013
U(VI) bioreduction with emulsified vegetable oil as the electron donor--model application to a field testGuoping Tang, David B Watson, Wei-Min Wu, et al.
Environmental Research|July 2, 2013
Characterization of soils from an industrial complex contaminated with elemental mercuryCarrie L Miller, David B Watson, Brian P Lester, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 8, 2007
A catalytic beacon sensor for uranium with parts-per-trillion sensitivity and millionfold selectivityJuewen Liu, Andrea K Brown, Xiangli Meng, et al.
Journal of Hazardous Materials|May 3, 2011
Modeling uranium transport in acidic contaminated groundwater with base additionFan Zhang, Wensui Luo, Jack C Parker, et al.
Pageof 6