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Research in Microbiology|June 11, 2018
Imaging redox activity and Fe(II) at the microbe-mineral interface during Fe(III) reductionHelen F Downie, Joel P Standerwick, Letitia Burgess, et al.Scientific Reports|June 10, 2018
The biogeochemical fate of nickel during microbial ISA degradation; implications for nuclear waste disposalGina Kuippers, Christopher Boothman, Heath Bagshaw, et al.Analytical Chemistry|July 30, 2008
Surface-enhanced Raman scattering from intracellular and extracellular bacterial locationsRoger M Jarvis, Nicholas Law, Iqbal T Shadi, et al.Environmental Science & Technology|January 26, 2026
The Biogeochemical Fate of Se(VI) in Bentonite Systems Relevant to the Disposal of High-Level Radioactive WasteMax Rose, Samuel Shaw, Katherine Morris, et al.Applied and Environmental Microbiology|February 28, 2023
Microbial Reduction of Antimony(V)-Bearing Ferrihydrite by Geobacter sulfurreducensJinxin Xie, Victoria S Coker, Brian O'Driscoll, et al.ACS Omega|December 8, 2025
Microbially-Induced Carbonate Precipitation in Low pH Cement; Potential for Self-Healing in Radioactive Waste Geodisposal SystemsAnanya Singh, Natalie Byrd, Dirk Engelberg, et al.Journal of Hazardous Materials|April 14, 2023
The interplay between Cs and K in Pseudanabaena catenata; from microbial bloom control strategies to bioremediation options for radioactive watersKejing Zhang, Lynn Foster, Dawn Buchanan, et al.Microbiology Spectrum|December 1, 2022
Guar Gum Stimulates Biogenic Sulfide Production in Microbial Communities Derived from UK Fractured Shale Production FluidsLisa Cliffe, Natali Hernandez-Becerra, Christopher Boothman, et al.Harmful Algae|July 13, 2024
Control of cyanobacterial growth with potassium; implications for bloom control in nuclear storage pondsKejing Zhang, Lynn Foster, Christopher Boothman, et al.Applied and Environmental Microbiology|March 26, 2013
Microbial reduction of Fe(III) under alkaline conditions relevant to geological disposalAdam J Williamson, Katherine Morris, Sam Shaw, et al.Pageof 13