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In situ aerobic methane oxidation rates in a stratified lake

Limnology and Oceanography
AbstractMicrobial aerobic methane oxidation is an important sink for aquatic methane worldwide. Despite its importance to global methane fluxes, few aerobic methane oxidation rates have been obtained in freshwater or marine environments without imposing changes to the microbial community through use of ex situ methods. A novel in situ incubation method
Zachary W. Hudspeth   +5 more
openaire   +1 more source

Tidal control on aerobic methane oxidation and mitigation of methane emissions from coastal mangrove sediments

Environmental Research
Mangrove forests represent important sources of methane, partly thwarting their ecosystem function as an efficient atmospheric carbon dioxide sink. Many studies have focused on the spatial and temporal variability of methane emissions from mangrove ecosystems, yet little is known about the microbial and physical controls on the release of biogenic ...
Guangyi, Su   +6 more
openaire   +2 more sources

[Engineering application of aerobic methane oxidizing bacteria (methanotrophs): a review].

Sheng wu gong cheng xue bao = Chinese journal of biotechnology, 2022
Aerobic methane oxidizing bacteria (methanotrophs) can use methane as carbon source and energy source, eliminating 10%-20% of global methane. Methanotrophs can also effectively synthesize valuable methane-derived products. This article introduced the methane oxidizing mechanism of methanotrophs, and summarized the practical application and research ...
Cheng, Yan, Juan, Mei, Youcai, Zhao
openaire   +1 more source

Ecology of aerobic methane oxidizing bacteria (methanotrophs)

Acta Ecologica Sinica, 2013
贠娟莉 YUN Juanli   +2 more
openaire   +1 more source

Denitrification and the hypoxic response in obligate aerobic methane-oxidizing bacteria

2016
Aerobic methanotrophic bacteria lessen the impact of the greenhouse gas methane (CH4) not only because they are a sink for atmospheric methane but also because they oxidize it before it is emitted to the atmospheric reservoir. Aerobic methanotrophs, unlike anaerobic methane oxidizing archaea, have a dual need for molecular oxygen (O2) for respiration ...
openaire   +1 more source

Coupled Aerobic Methane Oxidation and Arsenate Reduction Contributes to Soil-Arsenic Mobilization in Agricultural Fields

Environmental Science & Technology, 2022
Lizhong Zhu   +2 more
exaly  

Aerobic and anaerobic methane oxidation in Lake Rotsee

2007
E Durisch-Kaiser   +4 more
openaire   +1 more source

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