Publications

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Understanding drivers of antibiotic resistance genes in High Arctic soil ecosystems Environment International (2019) Vol. 125, pp. 497-504

Conceptual Learning Outcomes of Virtual Experiential Learning: Results of Google Earth Exploration in Introductory Geoscience Courses Research in Science Education (2018), Vol. 48, No. 3, pp. 533-548.

Demonstrating the Impact of Classroom Transformation on the Inequality in DFW Rates (“D” or “F” grade or withdraw) for First-Time Freshmen, Females, and Underrepresented Minorities Through a Decadal Study of Introductory Geology Courses Journal of Geoscience Education (2018), Vol. 66, No. 4, pp. 1-15.

Microbial Communities in a High Arctic Polar Desert Landscape Frontiers in Microbiology (2016) Vol 7, pp. 419

Microbially Catalyzed Dolomite Formation: From Near-Surface to Burial Earth-Science Reviews (2017), Vol. 171, pp. 558-582.

Soil Geochemistry Confines Microbial Abundances Across an Arctic Landscape; Implications for Net Carbon Exchange with the Atmosphere Biogeochemistry (2014), Vol. 120, No. 1-3, pp. 307-317.

Applications and Implications of Direct Groundwater Velocity Measurement at the Centimetre Scale Vol. 127, No. 1-4, pp. 3-14. Journal of Contaminant Hydrology (2012),

Field GPR Monitoring of Biostimulation in Saturated Porous Media Journal of Applied Geophysics (2012), Vol. 78, pp. 102-112.

Model for How Microbial Methane Generation can Preserve Early Porosity in Dolomite and Limestone Reservoirs Geohorizons AAPG Bulletin (2012), Vo. 96, No. 3, pp. 399-413.

Ordered Low-Temperature Dolomite Mediated by Carboxyl-Group Density of Microbial Cell Walls AAPG Bulletin (2013), Vol. 97, No. 11, pp. 2113-2125.

Paleoclimatic Applications and Modern Process Studies of Pedogenic Siderite New Frontiers in Paleopedology and Terrestrial Paleoclimatology (2013), SEPM (Society for Sedimentary Geology) No. 104, pp. 79–87.

Microbially Indurated Rammed Earth: A Long Awaited Next Phase of Earthen Architecture ARCC Conference Repository (2013)

Surface Chemistry Allows for Abiotic Precipitation of Dolomite at Low Temperature Proceedings of the National Academy of Sciences (2013),

Ground‐Penetrating Radar Observations of Enhanced Biological Activity in a Sandbox Reactor Journal of Geophysical Research: Biogeosciences (2010), Vol. 115, No. G3, pp.

Micromorphology and Stable-Isotope Geochemistry of Historical Pedogenic Siderite Formed in PAH-Contaminated Alluvial Clay Soils, Tennessee, USA Journal of Sedimentary Research (2010), Vol. 80, No. 11, pp. 943-954.

The Methane Cycle in Ferruginous Lake Matano Geobiology (2011), Vol. 9, No. 1, pp. 61-78.

Stimulation of Methanotroph Activity by Cu-substituted Borosilicate Glass Geomicrobiology Journal (2011), Vol. 28, No. 1, pp. 1-10.

Transient Heterogeneity in an Aquifer Undergoing Bioremediation of Hydrocarbons Groundwater (2011), Vol. 49, No. 2, pp. 184-196.

The Methane Cycle in Ferruginous Lake Matano Geobiology (2011), Vol. 9, No. 1, pp. 61-78.

Counting and Imaging Bacteria on Mineral Surfaces Methods of Investigating Microbial-Mineral Interactions, Clay Mineral Society Workshop Lectures (2006), Vol. 14, pp. 37.

Spectroscopic Investigation of the Microbial Controls on Trace Element Mobility in Iron Rich Equatorial Lacustrine Sediments Geochimica et Cosmochimica Acta (2006), Vol. 18, No. 70, pp. A695.

Entrapment of Bacteria in Fluid Inclusions in Laboratory-Grown Halite Astrobiology (2006), Vol. 6, N0. 4, pp. 552-562.

Attachment Behavior of Shewanella Putrefaciens onto Magnetite Under Aerobic and Anaerobic Conditions Geomicrobiology Journal (2006), Vol. 23, No. 8, pp. 631-640.

Alteration of Iron‐Rich Lacustrine Sediments by Dissimilatory Iron‐Reducing Bacteria Geobiology (2007), Vol. 5, No. 1, pp. 63-73.

Methane Monooxygenase Gene Expression Mediated by Methanobactin in the Presence of Mineral Copper Sources Proceedings of the National Academy of Sciences (2007), Vol. 104, No. 29, pp. 12040-12045.

Mineralogic Control on Abundance and Diversity of Surface-Adherent Microbial Communities Geomicrobiology Journal (2007), Vol. 24, No. 3-4, pp. 167-177.

Reductive Dissolution of Trace Metals from Sediments Geomicrobiology Journal (2007), Vol. 24, No. 3-4, pp. 157-165.

Methanobactin‐Promoted Dissolution of Cu‐Substituted Borosilicate Glass Geobiology (2007), Vol. 5, No. 3, pp. 251-263.

The Evolution of Geomicrobiology: Perspectives From the Mineral–Bacteria Interface Geobiology (2007), Vol. 5, No. 3.

Frontiers in Assessing the Role of Chemical Speciation and Natural Attenuation on the Bioavailability of Contaminants in the Terrestrial Environment Developments in Soil Science (2008), Vol. 32, pp. 99-136.

Teaching the Principles of Geomicrobiology and the Process of Experimental Research to Undergraduate and First-Year Graduate Students Journal of College Science Teaching (2008), Vol. 38, No. 2, pp. 30-38.

Increasing Shallow Groundwater CO2 and Limestone Weathering, Konza Prairie, USA Geochimica et Cosmochimica Acta (2008), Vol. 72, No. 23, pp. 5581-5599.

Precipitation of Low‐Temperature Dolomite From an Anaerobic Microbial Consortium: The Role of Methanogenic Archaea Geobiology (2009), Vol. 7, No. 5, pp. 556-565.

Microbial Control of Mineral–Groundwater Equilibria: Macroscale to Microscale Hydrogeology Journal (2000), Vol. 8, No. 1, pp. 47-62.

Silicates, Silicate Weathering, and Microbial Ecology Geomicrobiology Journal (2002), Vol. 18, No. 1, pp. 3-19.

Mineral Stimulation of Subsurface Microorganisms: Release of Limiting Nutrients from Silicates Chemical Geology (2004), Vol. 23, No. 1-2, pp. 91-108.

Microbial Precipitation of Dolomite in Methanogenic Groundwater Geology (2004), Vol. 32, No. 4, pp. 277-280.

Preservation of Microborings as Fluid Inclusions The Canadian Mineralogist (2004), Vol. 42, No. 5, pp. 1563-1581.

Inhibition and Enhancement of Microbial Surface Colonization: The Role of Silicate Composition Chemical Geology (2004), Vol. 212, No. 3-4, pp. 313-327.

Microbial Precipitation of Dolomite in Methanogenic Groundwater Geology (2004), Vol. 32, No. 4, pp. 277-280

Mineral Stimulation of Subsurface Microorganisms: Release of Limiting Nutrients From Silicates ,Chemical Geology (2004), Vol. 203, No. 1-2, pp. 91-108

Silicates, Silicate Weathering, and Microbial Ecology ,Geomicrobiology Journal, 18:1, 3-19,

Feldspars as a Source of Nutrients for Microorganisms American Mineralogist (1998), Vol. 83, No. 11-12, pp. 1532-1540.

Feldspars as a Source of Nutrients for Microorganisms American Mineralogist Vol. 83, No. 11-12 Part 2, pp. 1532–1540