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Christopher Boothman

Showing results (31-40 of 48) with videos related to

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The Science of the Total Environment|April 25, 2020
Microbial bloom formation in a high pH spent nuclear fuel pondLynn Foster, Christopher Boothman, Sharon Ruiz-Lopez, et al.
Geochemical Transactions|September 28, 2022
Geochemistry and microbiology of tropical serpentine soils in the Santa Elena Ophiolite, a landscape-biogeographical approachAgustín F Solano-Arguedas, Christopher Boothman, Laura Newsome, et al.
ACS Earth & Space Chemistry|November 26, 2021
Biogenic Sulfidation of U(VI) and Ferrihydrite Mediated by Sulfate-Reducing Bacteria at Elevated pHLuke T Townsend, Gina Kuippers, Jonathan R Lloyd, et al.
The Science of the Total Environment|April 23, 2022
Retention of immobile Se(0) in flow-through aquifer column systems during bioreduction and oxic-remobilizationMallory S Ho, Gianni F Vettese, Katherine Morris, et al.
Environmental Microbiology|September 12, 2023
Copper bioreduction and nanoparticle synthesis by an enrichment culture from a former copper mineRichard L Kimber, Gretta Elizondo, Klaudia Jedyka, et al.
Mbio|November 30, 2017
Microbial Community Structure and Arsenic Biogeochemistry in Two Arsenic-Impacted Aquifers in BangladeshEdwin T Gnanaprakasam, Jonathan R Lloyd, Christopher Boothman, et al.
Environmental Science & Technology|February 26, 2009
Corrosion and fate of depleted uranium penetrators under progressively anaerobic conditions in estuarine sedimentStephanie Handley-Sidhu, Paul J Worsfold, Christopher Boothman, et al.
Environmental Science & Technology|December 14, 2025
Technetium Retention and Remobilization Potential after Prolonged Reaction in Fe(III)- and Sulfate-Reducing Model Aquifer SystemsMallory S Ho, Gianni F Vettese, Katherine Morris, et al.
Environmental Science & Technology|June 22, 2006
Reoxidation behavior of technetium, iron, and sulfur in estuarine sedimentsIan T Burke, Christopher Boothman, Jonathan R Lloyd, et al.
The Science of the Total Environment|September 19, 2025
Probing the mechanisms of Fe(III)/As(V) reduction and As mobilisation using mineral-coated sands; impact of electron donor treatmentsOliver C Moore, Laura A Richards, Christopher Boothman, et al.
Pageof 5

Showing results (31-40 of 48) with videos related to

Sort By:
Pageof 5
The Science of the Total Environment|April 25, 2020
Microbial bloom formation in a high pH spent nuclear fuel pondLynn Foster, Christopher Boothman, Sharon Ruiz-Lopez, et al.
Geochemical Transactions|September 28, 2022
Geochemistry and microbiology of tropical serpentine soils in the Santa Elena Ophiolite, a landscape-biogeographical approachAgustín F Solano-Arguedas, Christopher Boothman, Laura Newsome, et al.
ACS Earth & Space Chemistry|November 26, 2021
Biogenic Sulfidation of U(VI) and Ferrihydrite Mediated by Sulfate-Reducing Bacteria at Elevated pHLuke T Townsend, Gina Kuippers, Jonathan R Lloyd, et al.
The Science of the Total Environment|April 23, 2022
Retention of immobile Se(0) in flow-through aquifer column systems during bioreduction and oxic-remobilizationMallory S Ho, Gianni F Vettese, Katherine Morris, et al.
Environmental Microbiology|September 12, 2023
Copper bioreduction and nanoparticle synthesis by an enrichment culture from a former copper mineRichard L Kimber, Gretta Elizondo, Klaudia Jedyka, et al.
Mbio|November 30, 2017
Microbial Community Structure and Arsenic Biogeochemistry in Two Arsenic-Impacted Aquifers in BangladeshEdwin T Gnanaprakasam, Jonathan R Lloyd, Christopher Boothman, et al.
Environmental Science & Technology|February 26, 2009
Corrosion and fate of depleted uranium penetrators under progressively anaerobic conditions in estuarine sedimentStephanie Handley-Sidhu, Paul J Worsfold, Christopher Boothman, et al.
Environmental Science & Technology|December 14, 2025
Technetium Retention and Remobilization Potential after Prolonged Reaction in Fe(III)- and Sulfate-Reducing Model Aquifer SystemsMallory S Ho, Gianni F Vettese, Katherine Morris, et al.
Environmental Science & Technology|June 22, 2006
Reoxidation behavior of technetium, iron, and sulfur in estuarine sedimentsIan T Burke, Christopher Boothman, Jonathan R Lloyd, et al.
The Science of the Total Environment|September 19, 2025
Probing the mechanisms of Fe(III)/As(V) reduction and As mobilisation using mineral-coated sands; impact of electron donor treatmentsOliver C Moore, Laura A Richards, Christopher Boothman, et al.
Pageof 5