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Drew E Latta

Showing results (11-20 of 22) with videos related to

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Environmental Science. Processes & Impacts|August 7, 2025
Dichloroethene reduction by Fe(II): role of transient Fe(II) phasesCaroline E Chelsvig, Malvika Patial, Drew E Latta, et al.
Environmental Science. Processes & Impacts|September 8, 2018
Reduction of PCE and TCE by magnetite revisitedJohnathan D Culpepper, Michelle M Scherer, Thomas C Robinson, et al.
Environmental Science & Technology|July 10, 2019
Mineral Defects Enhance Bioavailability of Goethite toward Microbial Fe(III) ReductionLuiza Notini, James M Byrne, Elizabeth J Tomaszewski, et al.
Environmental Science & Technology|April 2, 2013
Fate of CuO and ZnO nano- and microparticles in the plant environmentChristian O Dimkpa, Drew E Latta, Joan E McLean, et al.
Environmental Science & Technology|December 14, 2011
Influence of magnetite stoichiometry on U(VI) reductionDrew E Latta, Christopher A Gorski, Maxim I Boyanov, et al.
Environmental Science & Technology|February 7, 2018
The Role of Defects in Fe(II)-Goethite Electron TransferLuiza Notini, Drew E Latta, Anke Neumann, et al.
Environmental Science & Technology|April 21, 2025
Effect of Impurities on the Redox Properties of GoethiteDrew E Latta, Sebastian T Mergelsberg, Duo Song, et al.
Environmental Science. Processes & Impacts|February 5, 2019
Effect of bicarbonate and phosphate on arsenic release from mining-impacted sediments in the Cheyenne River watershed, South Dakota, USACherie L DeVore, Lucia Rodriguez-Freire, Abdul Mehdi-Ali, et al.
Inorganic Chemistry|March 9, 2026
Cation Site Occupancy in Natural Ferroan Double Carbonates via Mössbauer and Fe K-Edge X-ray Absorption SpectroscopyDaria V Boglaienko, Micah P Prange, C Heath Stanfield, et al.
Environmental Science & Technology|September 24, 2014
Fe(II)-catalyzed recrystallization of goethite revisitedRobert M Handler, Andrew J Frierdich, Clark M Johnson, et al.
Pageof 3

Showing results (11-20 of 22) with videos related to

Sort By:
Pageof 3
Environmental Science. Processes & Impacts|August 7, 2025
Dichloroethene reduction by Fe(II): role of transient Fe(II) phasesCaroline E Chelsvig, Malvika Patial, Drew E Latta, et al.
Environmental Science. Processes & Impacts|September 8, 2018
Reduction of PCE and TCE by magnetite revisitedJohnathan D Culpepper, Michelle M Scherer, Thomas C Robinson, et al.
Environmental Science & Technology|July 10, 2019
Mineral Defects Enhance Bioavailability of Goethite toward Microbial Fe(III) ReductionLuiza Notini, James M Byrne, Elizabeth J Tomaszewski, et al.
Environmental Science & Technology|April 2, 2013
Fate of CuO and ZnO nano- and microparticles in the plant environmentChristian O Dimkpa, Drew E Latta, Joan E McLean, et al.
Environmental Science & Technology|December 14, 2011
Influence of magnetite stoichiometry on U(VI) reductionDrew E Latta, Christopher A Gorski, Maxim I Boyanov, et al.
Environmental Science & Technology|February 7, 2018
The Role of Defects in Fe(II)-Goethite Electron TransferLuiza Notini, Drew E Latta, Anke Neumann, et al.
Environmental Science & Technology|April 21, 2025
Effect of Impurities on the Redox Properties of GoethiteDrew E Latta, Sebastian T Mergelsberg, Duo Song, et al.
Environmental Science. Processes & Impacts|February 5, 2019
Effect of bicarbonate and phosphate on arsenic release from mining-impacted sediments in the Cheyenne River watershed, South Dakota, USACherie L DeVore, Lucia Rodriguez-Freire, Abdul Mehdi-Ali, et al.
Inorganic Chemistry|March 9, 2026
Cation Site Occupancy in Natural Ferroan Double Carbonates via Mössbauer and Fe K-Edge X-ray Absorption SpectroscopyDaria V Boglaienko, Micah P Prange, C Heath Stanfield, et al.
Environmental Science & Technology|September 24, 2014
Fe(II)-catalyzed recrystallization of goethite revisitedRobert M Handler, Andrew J Frierdich, Clark M Johnson, et al.
Pageof 3