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Showing 1 to 3 of 3 for “"dissimilatory nitrate reduction to ammonium (DNRA)"”.

  1. Management, microbiology, and machine learning: A systems approach to evaluating the nitrogen cycling microbiome in agricultural soils

    Soil microorganisms are integral to the regulation of Earth’s biogeochemical cycles. Within the nitrogen (N) cycle, the soil microbiome is responsible for a multitude of competing processes, some which lead to ecosystem N retention, and others to loss. Because they determine the fate of nitrogenous …

    uiuc Repository record for Management, microbiology, and machine learning: A systems approach to evaluating the nitrogen cycling microbiome in agricultural soils (opens in a new tab)

  2. Microbial Dynamics and Mechanistic Insights into a Hydrogenotrophic Denitrifying Microbial Consortium

    … used in wastewater treatment plants can lead to the fugitive emission of greenhouse gases (N2O and CO2). This is due to microbial competition for limited organic electron donors such as methanol and acetate. Recently, autotrophic denitrification using hydrogen as a clean electron donor, also …

    auckland-ms Repository record for Microbial Dynamics and Mechanistic Insights into a Hydrogenotrophic Denitrifying Microbial Consortium (opens in a new tab)

  3. Intact soil core experiments reveal that temperature and depth influence microbial community function and impact the fate of nitrogenous fertilizer amendments

    The application of nitrogenous fertilizer to agricultural soil has potentially large impacts on environmental quality, including large scale emission of the potent greenhouse gas nitrous oxide and runoff of nitrates. Through their metabolic activities, including nitrification, denitrification and …

    uiuc Repository record for Intact soil core experiments reveal that temperature and depth influence microbial community function and impact the fate of nitrogenous fertilizer amendments (opens in a new tab)