Search Results - "Barnhart, Elliott P."

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  1. 1

    Robotic environmental DNA bio-surveillance of freshwater health by Sepulveda, Adam J., Birch, James M., Barnhart, Elliott P., Merkes, Christopher M., Yamahara, Kevan M., Marin, Roman, Kinsey, Stacy M., Wright, Peter R., Schmidt, Christian

    Published in Scientific reports (01-09-2020)
    “…Autonomous water sampling technologies may help to overcome the human resource challenges of monitoring biological threats to rivers over long time periods and…”
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    Journal Article
  2. 2

    Krumholzibacteriota and Deltaproteobacteria contain rare genetic potential to liberate carbon from monoaromatic compounds in subsurface coal seams by Campbell, Bronwyn C, Greenfield, Paul, Barnhart, Elliott P, Gong, Se, Midgley, David J, Paulsen, Ian T, George, Simon C

    Published in mBio (13-03-2024)
    “…Biogenic methane in subsurface coal seam environments is produced by diverse consortia of microbes. Although this methane is useful for global energy security,…”
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    Journal Article
  3. 3

    Algal amendment enhances biogenic methane production from coals of different thermal maturity by Platt, George A, Davis, Katherine J, Schweitzer, Hannah D, Smith, Heidi J, Fields, Matthew W, Barnhart, Elliott P, Gerlach, Robin

    Published in Frontiers in microbiology (2023)
    “…The addition of small amounts of algal biomass to stimulate methane production in coal seams is a promising low carbon renewable coalbed methane enhancement…”
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    Journal Article
  4. 4

    Investigation of coal-associated bacterial and archaeal populations from a diffusive microbial sampler (DMS) by Barnhart, Elliott P., De León, Kara Bowen, Ramsay, Bradley D., Cunningham, Alfred B., Fields, Matthew W.

    Published in International journal of coal geology (01-08-2013)
    “…The Powder River Basin (PRB) in southeastern Montana and northeastern Wyoming contains massive coal deposits with biologically generated coal bed methane…”
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    Journal Article Conference Proceeding
  5. 5

    Repetitive Sampling and Control Threshold Improve 16S rRNA Gene Sequencing Results From Produced Waters Associated With Hydraulically Fractured Shale by Shelton, Jenna L., Barnhart, Elliott P., Ruppert, Leslie, Jubb, Aaron M., Blondes, Madalyn S., DeVera, Christina A.

    Published in Frontiers in microbiology (11-09-2020)
    “…Sequencing microbial DNA from deep subsurface environments is complicated by a number of issues ranging from contamination to non-reproducible results. Many…”
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    Journal Article
  6. 6

    Subsurface hydrocarbon degradation strategies in low- and high-sulfate coal seam communities identified with activity-based metagenomics by Schweitzer, Hannah D., Smith, Heidi J., Barnhart, Elliott P., McKay, Luke J., Gerlach, Robin, Cunningham, Alfred B., Malmstrom, Rex R., Goudeau, Danielle, Fields, Matthew W.

    Published in NPJ biofilms and microbiomes (17-02-2022)
    “…Environmentally relevant metagenomes and BONCAT-FACS derived translationally active metagenomes from Powder River Basin coal seams were investigated to…”
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    Journal Article
  7. 7

    The effect of coal bed dewatering and partial oxidation on biogenic methane potential by Jones, Elizabeth J.P., Harris, Steve H., Barnhart, Elliott P., Orem, William H., Clark, Arthur C., Corum, Margo D., Kirshtein, Julie D., Varonka, Matthew S., Voytek, Mary A.

    Published in International journal of coal geology (01-08-2013)
    “…Coal formation dewatering at a site in the Powder River Basin was associated with enhanced potential for secondary biogenic methane determined by using a…”
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    Journal Article Conference Proceeding
  8. 8

    Type and amount of organic amendments affect enhanced biogenic methane production from coal and microbial community structure by Davis, Katherine J., Lu, Shipeng, Barnhart, Elliott P., Parker, Albert E., Fields, Matthew W., Gerlach, Robin

    Published in Fuel (Guildford) (01-01-2018)
    “…•Coal is an important carbon substrate in biogenic CBM production.•Organic amendments enhance biogenic coal-to-methane conversion.•Increasing amendment…”
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    Journal Article
  9. 9

    Activity-based, genome-resolved metagenomics uncovers key populations and pathways involved in subsurface conversions of coal to methane by McKay, Luke J., Smith, Heidi J., Barnhart, Elliott P., Schweitzer, Hannah D., Malmstrom, Rex R., Goudeau, Danielle, Fields, Matthew W.

    Published in The ISME Journal (01-04-2022)
    “…Microbial metabolisms and interactions that facilitate subsurface conversions of recalcitrant carbon to methane are poorly understood. We deployed an in situ…”
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    Journal Article
  10. 10

    Methanogenic archaea in subsurface coal seams are biogeographically distinct: an analysis of metagenomically‐derived mcrA sequences by Campbell, Bronwyn C., Greenfield, Paul, Gong, Se, Barnhart, Elliott P., Midgley, David J., Paulsen, Ian T., George, Simon C.

    Published in Environmental microbiology (01-09-2022)
    “…Summary The production of methane as an end‐product of organic matter degradation in the absence of other terminal electron acceptors is common, and has often…”
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    Journal Article
  11. 11

    Prokaryotic microbial ecology as an ecosurveillance tool for eukaryotic pathogen colonisation: Meiothermus and Naegleria fowleri by Malinowski, Natalia, Morgan, Matthew J., Wylie, Jason, Walsh, Tom, Domingos, Sergio, Metcalfe, Suzanne, Kaksonen, Anna H., Barnhart, Elliott P., Mueller, Rebecca, Peyton, Brent M., Puzon, Geoffrey J.

    Published in Water research (Oxford) (01-05-2024)
    “…•Prokaryotic microbial ecology as a predictor of N. fowleri colonisation.•Ecogenomic methods identify multi-domain trophic interactions.•Selective microbial…”
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    Journal Article
  12. 12

    Biogenic Coal-to-Methane Conversion Efficiency Decreases after Repeated Organic Amendment by Davis, Katherine J, Barnhart, Elliott P, Fields, Matthew W, Gerlach, Robin

    Published in Energy & fuels (15-03-2018)
    “…Addition of organic amendments to coal-containing systems can increase the rate and extent of biogenic methane production for 60–80 days before production…”
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    Journal Article
  13. 13

    Biogenic coal-to-methane conversion can be enhanced with small additions of algal amendment in field-relevant upflow column reactors by Davis, Katherine J., Platt, George A., Barnhart, Elliott P., Hiebert, Randy, Hyatt, Robert, Fields, Matthew W., Gerlach, Robin

    Published in Fuel (Guildford) (15-11-2019)
    “…•Algal amendment increased biogenic coal-to-methane conversion.•Produced gas exceeded full conversion of amendment, indicating coal-to-CH4 conversion.•13C…”
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    Journal Article
  14. 14
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    Biogenic coal-to-methane conversion can be enhanced with small additions of algal amendment in field-relevant upflow column reactors by Davis, Katherine J., Platt, George A., Barnhart, Elliott P., Hiebert, Randy, Hyatt, Robert, Fields, Matthew W., Gerlach, Robin

    Published in Fuel (Guildford) (15-08-2019)
    “…Subsurface coal environments, where biogenic coal-to-methane conversion occurs, are difficult to access, resulting in inherent challenges and expenses for in…”
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    Journal Article
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    Potential Role of Acetyl-CoA Synthetase (acs) and Malate Dehydrogenase (mae) in the Evolution of the Acetate Switch in Bacteria and Archaea by Barnhart, Elliott P., McClure, Marcella A., Johnson, Kiki, Cleveland, Sean, Hunt, Kristopher A., Fields, Matthew W.

    Published in Scientific reports (03-08-2015)
    “…Although many Archaea have AMP-Acs (acetyl-coenzyme A synthetase) and ADP-Acs, the extant methanogenic genus Methanosarcina is the only identified Archaeal…”
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    Journal Article
  18. 18

    Naegleria fowleri Detected in Grand Teton National Park Hot Springs by Barnhart, Elliott P., Kinsey, Stacy M., Wright, Peter R., Caldwell, Sara L., Hill, Vince, Kahler, Amy, Mattioli, Mia, Cornman, Robert S., Iwanowicz, Deborah, Eddy, Zachary, Halonen, Sandra, Mueller, Rebecca, Peyton, Brent M., Puzon, Geoffrey J

    Published in ACS ES&T water (09-02-2024)
    “…The free-living thermophilic amoeba Naegleria fowleri (N. fowleri) causes the highly fatal disease primary amoebic meningoencephalitis. The environmental…”
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    Journal Article
  19. 19

    Integrating Environmental DNA Results With Diverse Data Sets to Improve Biosurveillance of River Health by Sepulveda, Adam J., Hoegh, Andrew, Gage, Joshua A., Caldwell Eldridge, Sara L., Birch, James M., Stratton, Christian, Hutchins, Patrick R., Barnhart, Elliott P.

    Published in Frontiers in ecology and evolution (16-03-2021)
    “…Autonomous, robotic environmental (e)DNA samplers now make it possible for biological observations to match the scale and quality of abiotic measurements…”
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    Journal Article
  20. 20

    Quantification of changing Pseudomonas aeruginosa sodA, htpX and mt gene abundance in response to trace metal toxicity: a potential in situ biomarker of environmental health by Bouskill, Nicolas J, Barnhart, Elliott P, Galloway, Tamara S, Handy, Richard D, Ford, Timothy E

    Published in FEMS microbiology ecology (01-05-2007)
    “…Sediment-dwelling prokaryotes play a vital role in determining the fate and speciation of metals, yet are also susceptible to the biological effects of trace…”
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    Journal Article