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Biochemistry Insights|August 13, 2014
Dying for Good: Virus-Bacterium Biofilm Co-evolution Enhances Environmental FitnessHongjun Jin, Thomas C Squier, Philip E LongEnvironmental Science & Technology|January 14, 2011
Phase preference by active, acetate-utilizing bacteria at the rifle, CO integrated field research challenge siteLee J Kerkhof, Ken H Williams, Philip E Long, et al.Trends in Microbiology|May 10, 2016
Microbial Metagenomics Reveals Climate-Relevant Subsurface Biogeochemical ProcessesPhilip E Long, Kenneth H Williams, Susan S Hubbard, et al.Environmental Science & Technology|August 1, 2014
Uranium bioreduction rates across scales: biogeochemical hot moments and hot spots during a biostimulation experiment at Rifle, ColoradoChen Bao, Hongfei Wu, Li Li, et al.Applied and Environmental Microbiology|October 9, 2012
Evaluation of a genome-scale in silico metabolic model for Geobacter metallireducens by using proteomic data from a field biostimulation experimentYilin Fang, Michael J Wilkins, Steven B Yabusaki, et al.Journal of Contaminant Hydrology|December 22, 2010
Direct coupling of a genome-scale microbial in silico model and a groundwater reactive transport modelYilin Fang, Timothy D Scheibe, Radhakrishnan Mahadevan, et al.Plos One|September 19, 2015
Identification of Bacteria Synthesizing Ribosomal RNA in Response to Uranium Addition During Biostimulation at the Rifle, CO Integrated Field Research SiteLora R McGuinness, Michael J Wilkins, Kenneth H Williams, et al.Environmental Science & Technology|May 24, 2008
Sustained removal of uranium from contaminated groundwater following stimulation of dissimilatory metal reductionA Lucie N'Guessan, Helen A Vrionis, Charles T Resch, et al.Microbial Biotechnology|January 26, 2011
Coupling a genome-scale metabolic model with a reactive transport model to describe in situ uranium bioremediationTimothy D Scheibe, Radhakrishnan Mahadevan, Yilin Fang, et al.Environmental Science & Technology|November 20, 2009
Electrode-based approach for monitoring in situ microbial activity during subsurface bioremediationKenneth H Williams, Kelly P Nevin, Ashley Franks, et al.Pageof 6