Harnessing the potential of microbial methane utilization for chasing sustainability. [PDF]
Kalyuzhnaya MG, Wang J, Rosenzweig AC.
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Nitrogen Redox Controls on Greenhouse Gas Production in Yedoma Taliks. [PDF]
Bergman O +3 more
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Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat. [PDF]
Kazmi FA +10 more
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Basic assessment of microbial dynamics in large- and small-scale biofilters. [PDF]
Wagner AO +6 more
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Rice gs3 allele and low-nitrogen conditions enrich rhizosphere microbiota that mitigate methane emissions and promote beneficial crop traits. [PDF]
Kwon Y +13 more
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Strigolactone GR24 modulates citrus root architecture and rhizosphere microbiome under nitrogen and phosphorus deficiency. [PDF]
Soliman S +8 more
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Investigation of peatland restoration (grip blocking) techniques to achieve best outcomes for methane and greenhouse gas emissions/balance. Controlled Environment (Mesocosm) Experiment. Final Report to Defra. Project code SP1202 [PDF]
Baird, A +3 more
core
Community Structure and Function of Aerobic Methanotrophs in Urban River Sediments: A Case Study of the Jialing River. [PDF]
Mo Y, Huang J, Hu M, Lu L, Shaaban M.
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Dissolved organic matter and sulfide enhance the CH<sub>4</sub> consumption of a psychrophilic lake methanotroph, <i>Methylobacter</i> sp. S3L5C. [PDF]
Rissanen AJ +4 more
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Anaerobic Methanotrophy in an Oil Sands End Pit Lake
Albertan oil sands, and even oil sands reclamation projects, emit large volumes of greenhouse gases. Methane is one of the most potent greenhouse gases, and aerobic methane oxidation has been a subject of interest for methane mitigation. However, anaerobic oxidation of methane (AOM) may be just as influential in reducing methane emissions, as concerns ...
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