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Daniel I Kaplan

Showing results (71-80 of 84) with videos related to

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Environmental Science & Technology|August 28, 2015
Evidence for Hydroxamate Siderophores and Other N-Containing Organic Compounds Controlling (239,240)Pu Immobilization and Remobilization in a Wetland SedimentChen Xu, Saijin Zhang, Daniel I Kaplan, et al.
Environmental Science & Technology|July 23, 2014
Uranium immobilization in an iron-rich rhizosphere of a native wetland plant from the Savannah River Site under reducing conditionsHyun-shik Chang, Shea W Buettner, John C Seaman, et al.
Environment International|March 11, 2019
Iodine speciation in a silver-amended cementitious systemDaniel I Kaplan, Kimberly A Price, Chen Xu, et al.
The Science of the Total Environment|June 7, 2011
Factors controlling mobility of 127I and 129I species in an acidic groundwater plume at the Savannah River SiteShigeyoshi Otosaka, Kathleen A Schwehr, Daniel I Kaplan, et al.
The Science of the Total Environment|May 12, 2019
Nagasaki sediments reveal that long-term fate of plutonium is controlled by select organic matter moietiesPeng Lin, Chen Xu, Daniel I Kaplan, et al.
Applied and Environmental Microbiology|February 25, 2014
Superoxide production by a manganese-oxidizing bacterium facilitates iodide oxidationHsiu-Ping Li, Benjamin Daniel, Danielle Creeley, et al.
Environmental Science & Technology|March 30, 2012
Bacterial production of organic acids enhances H2O2-dependent iodide oxidationHsiu-Ping Li, Chris M Yeager, Robin Brinkmeyer, et al.
Environmental Science & Technology|November 1, 2011
Sequestration and remobilization of radioiodine (129I) by soil organic matter and possible consequences of the remedial action at Savannah River SiteChen Xu, Eric J Miller, Saijin Zhang, et al.
Environmental Science & Technology|January 31, 2015
Spectroscopic evidence of uranium immobilization in acidic wetlands by natural organic matter and plant rootsDien Li, Daniel I Kaplan, Hyun-Shik Chang, et al.
The Science of the Total Environment|February 23, 2013
Novel molecular-level evidence of iodine binding to natural organic matter from Fourier transform ion cyclotron resonance mass spectrometryChen Xu, Hongmei Chen, Yuko Sugiyama, et al.
Pageof 9

Showing results (71-80 of 84) with videos related to

Sort By:
Pageof 9
Environmental Science & Technology|August 28, 2015
Evidence for Hydroxamate Siderophores and Other N-Containing Organic Compounds Controlling (239,240)Pu Immobilization and Remobilization in a Wetland SedimentChen Xu, Saijin Zhang, Daniel I Kaplan, et al.
Environmental Science & Technology|July 23, 2014
Uranium immobilization in an iron-rich rhizosphere of a native wetland plant from the Savannah River Site under reducing conditionsHyun-shik Chang, Shea W Buettner, John C Seaman, et al.
Environment International|March 11, 2019
Iodine speciation in a silver-amended cementitious systemDaniel I Kaplan, Kimberly A Price, Chen Xu, et al.
The Science of the Total Environment|June 7, 2011
Factors controlling mobility of 127I and 129I species in an acidic groundwater plume at the Savannah River SiteShigeyoshi Otosaka, Kathleen A Schwehr, Daniel I Kaplan, et al.
The Science of the Total Environment|May 12, 2019
Nagasaki sediments reveal that long-term fate of plutonium is controlled by select organic matter moietiesPeng Lin, Chen Xu, Daniel I Kaplan, et al.
Applied and Environmental Microbiology|February 25, 2014
Superoxide production by a manganese-oxidizing bacterium facilitates iodide oxidationHsiu-Ping Li, Benjamin Daniel, Danielle Creeley, et al.
Environmental Science & Technology|March 30, 2012
Bacterial production of organic acids enhances H2O2-dependent iodide oxidationHsiu-Ping Li, Chris M Yeager, Robin Brinkmeyer, et al.
Environmental Science & Technology|November 1, 2011
Sequestration and remobilization of radioiodine (129I) by soil organic matter and possible consequences of the remedial action at Savannah River SiteChen Xu, Eric J Miller, Saijin Zhang, et al.
Environmental Science & Technology|January 31, 2015
Spectroscopic evidence of uranium immobilization in acidic wetlands by natural organic matter and plant rootsDien Li, Daniel I Kaplan, Hyun-Shik Chang, et al.
The Science of the Total Environment|February 23, 2013
Novel molecular-level evidence of iodine binding to natural organic matter from Fourier transform ion cyclotron resonance mass spectrometryChen Xu, Hongmei Chen, Yuko Sugiyama, et al.
Pageof 9