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D I Kaplan

Showing results (1-10 of 12) with videos related to

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Environmental Science & Technology|September 1, 2001
Colloid transport and deposition in water-saturated Yucca Mountain tuff as determined by ionic strengthA P Gamerdinger, D I Kaplan
Environmental Science & Technology|July 4, 2001
Physical and chemical determinants of colloid transport and deposition in water-unsaturated sand and Yucca Mountain tuff materialA P Gamerdinger, D I Kaplan
Journal of Hazardous Materials|September 8, 2017
Residence time effects on technetium reduction in slag-based cementitious materialsYuji Arai, Brian A Powell, D I Kaplan
The Science of the Total Environment|September 10, 2005
Phosphate sources and their suitability for remediation of contaminated soilsA S Knox, D I Kaplan, M H Paller
The Science of the Total Environment|April 1, 2008
Interactions among phosphate amendments, microbes and uranium mobility in contaminated sedimentsAnna Sophia Knox, R L Brigmon, D I Kaplan, et al.
Journal of Environmental Quality|April 24, 2003
Apatite and phillipsite as sequestering agents for metals and radionuclidesA S Knox, D I Kaplan, D C Adriano, et al.
Journal of Environmental Radioactivity|March 16, 2010
Upward movement of plutonium to surface sediments during an 11-year field studyD I Kaplan, D I Demirkanli, F J Molz, et al.
Journal of Environmental Radioactivity|March 14, 2017
Recent advances in the detection of specific natural organic compounds as carriers for radionuclides in soil and water environments, with examples of radioiodine and plutoniumP H Santschi, C Xu, S Zhang, et al.
Environmental Science & Technology|November 13, 2010
A novel approach for the simultaneous determination of iodide, iodate and organo-iodide for 127I and 129I in environmental samples using gas chromatography-mass spectrometryS Zhang, K A Schwehr, Y-F Ho, et al.
Critical Reviews in Environmental Science and Technology|September 30, 2014
Radioiodine Biogeochemistry and Prevalence in GroundwaterD I Kaplan, M E Denham, S Zhang, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Environmental Science & Technology|September 1, 2001
Colloid transport and deposition in water-saturated Yucca Mountain tuff as determined by ionic strengthA P Gamerdinger, D I Kaplan
Environmental Science & Technology|July 4, 2001
Physical and chemical determinants of colloid transport and deposition in water-unsaturated sand and Yucca Mountain tuff materialA P Gamerdinger, D I Kaplan
Journal of Hazardous Materials|September 8, 2017
Residence time effects on technetium reduction in slag-based cementitious materialsYuji Arai, Brian A Powell, D I Kaplan
The Science of the Total Environment|September 10, 2005
Phosphate sources and their suitability for remediation of contaminated soilsA S Knox, D I Kaplan, M H Paller
The Science of the Total Environment|April 1, 2008
Interactions among phosphate amendments, microbes and uranium mobility in contaminated sedimentsAnna Sophia Knox, R L Brigmon, D I Kaplan, et al.
Journal of Environmental Quality|April 24, 2003
Apatite and phillipsite as sequestering agents for metals and radionuclidesA S Knox, D I Kaplan, D C Adriano, et al.
Journal of Environmental Radioactivity|March 16, 2010
Upward movement of plutonium to surface sediments during an 11-year field studyD I Kaplan, D I Demirkanli, F J Molz, et al.
Journal of Environmental Radioactivity|March 14, 2017
Recent advances in the detection of specific natural organic compounds as carriers for radionuclides in soil and water environments, with examples of radioiodine and plutoniumP H Santschi, C Xu, S Zhang, et al.
Environmental Science & Technology|November 13, 2010
A novel approach for the simultaneous determination of iodide, iodate and organo-iodide for 127I and 129I in environmental samples using gas chromatography-mass spectrometryS Zhang, K A Schwehr, Y-F Ho, et al.
Critical Reviews in Environmental Science and Technology|September 30, 2014
Radioiodine Biogeochemistry and Prevalence in GroundwaterD I Kaplan, M E Denham, S Zhang, et al.
Pageof 2