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Environmental Microbiome|March 1, 2023
New microbiological insights from the Bowland shale highlight heterogeneity of the hydraulically fractured shale microbiomeNatali Hernandez-Becerra, Lisa Cliffe, Wei Xiu, et al.Biotechnology and Bioengineering|June 29, 2006
Reactive azo dye reduction by Shewanella strain J18 143Carolyn I Pearce, Robert Christie, Christopher Boothman, et al.Environmental Science. Processes & Impacts|May 19, 2018
Effect of humic acid & bacterial exudates on sorption-desorption interactions of 90Sr with bruciteHollie Ashworth, Liam Abrahamsen-Mills, Nick Bryan, et al.The Science of the Total Environment|December 1, 2020
Natural attenuation of lead by microbial manganese oxides in a karst aquiferLaura Newsome, Charles G D Bacon, Hokyung Song, et al.Water Research|January 7, 2014
Inhibition of sulfate reducing bacteria in aquifer sediment by iron nanoparticlesNaresh Kumar, Enoma O Omoregie, Jerome Rose, et al.Frontiers in Microbiology|May 17, 2021
Microbial Degradation of Citric Acid in Low Level Radioactive Waste Disposal: Impact on Biomineralization ReactionsNatalie Byrd, Jonathan R Lloyd, Joe S Small, et al.Environmental Science & Technology|September 9, 2014
Redox interactions between Cr(VI) and Fe(II) in bioreduced biotite and chloriteDiana R Brookshaw, Victoria S Coker, Jonathan R Lloyd, et al.Biofouling|October 25, 2023
The potential role of biofilms in promoting fouling formation in radioactive discharge pipelinesFranky Barton, Ben F Spencer, Romain Tartèse, et al.Environmental Science & Technology|October 3, 2017
Quantifying Technetium and Strontium Bioremediation Potential in Flowing Sediment ColumnsClare L Thorpe, Gareth T W Law, Jonathan R Lloyd, et al.Environmental Science & Technology|September 19, 2014
Microbial reduction of U(VI) under alkaline conditions: implications for radioactive waste geodisposalAdam J Williamson, Katherine Morris, Gareth T W Law, et al.Pageof 13