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  1. 27 Μαρ 2015 · To date, methane emissions from lakes in the pan-arctic region are poorly quantified. In order to investigate the response of methane emissions from this region to global warming, a process-based climate-sensitive lake biogeochemical model was developed.

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      Accepted 21 MAR 2015 Accepted article online 27 MAR 2015...

  2. 31 Δεκ 2017 · This study of sub-Arctic lake sediments provides DNA-SIP-based evidence that type I aerobic methanotrophs belonging to the genus Methylobacter assimilate methane-derived C under anaerobic conditions.

  3. 1 Νοε 2015 · A polar version of the CHIMERE chemistry-transport model is used to simulate the evolution of tropospheric methane in the Arctic during 2012, including all known regional anthropogenic and...

  4. 27 Ιουν 2022 · Here, we unravel the important role and drivers of groundwater discharge for CH 4 emissions from Arctic lakes. Spatial patterns across lakes suggest groundwater inflows are primarily related to...

  5. 27 Μαρ 2023 · Here we quantify the methane emissions from both land and freshwater bodies in the pan-Arctic with two process-based biogeochemistry models by minimizing the double accounting at the landscape scale. Two non-overlapping dynamic areal change datasets are used to drive the models.

  6. 30 Οκτ 2015 · AMAP, 2015. AMAP Assessment 2015: Methane as an Arctic climate forcer. AMAP, Oslo. 2015.

  7. 9 Οκτ 2020 · Sub-sea Arctic methane and gas hydrate reservoirs are expected to be severely impacted by ocean temperature increase and sea-level rise. Our understanding of the gas emission...

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