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Atmospheric methane control mechanisms during the early Holocene
by
Ryu, Yeongjun
, Yang, Ji-Woong
, Brook, Edward J.
, Ahn, Jinho
in
Analysis
/ Anthropogenic factors
/ Archives & records
/ Atmospheric chemistry
/ Atmospheric methane
/ Climate
/ Climate change
/ Climate prediction
/ Environmental aspects
/ Future climates
/ Global warming
/ Holocene
/ Holocene atmospheric methane
/ Holocene paleogeography
/ Human influences
/ Humidity
/ Hydrology
/ Interglacial periods
/ Intertropical convergence zone
/ Land use
/ Methane
/ Mixing ratio
/ open climate campaign
/ Oxidation
/ Paleogeography
/ Precipitation
/ Rain
/ Rainfall
/ Tropical climate
/ Wetlands
/ Wind
2017
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Atmospheric methane control mechanisms during the early Holocene
by
Ryu, Yeongjun
, Yang, Ji-Woong
, Brook, Edward J.
, Ahn, Jinho
in
Analysis
/ Anthropogenic factors
/ Archives & records
/ Atmospheric chemistry
/ Atmospheric methane
/ Climate
/ Climate change
/ Climate prediction
/ Environmental aspects
/ Future climates
/ Global warming
/ Holocene
/ Holocene atmospheric methane
/ Holocene paleogeography
/ Human influences
/ Humidity
/ Hydrology
/ Interglacial periods
/ Intertropical convergence zone
/ Land use
/ Methane
/ Mixing ratio
/ open climate campaign
/ Oxidation
/ Paleogeography
/ Precipitation
/ Rain
/ Rainfall
/ Tropical climate
/ Wetlands
/ Wind
2017
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Atmospheric methane control mechanisms during the early Holocene
by
Ryu, Yeongjun
, Yang, Ji-Woong
, Brook, Edward J.
, Ahn, Jinho
in
Analysis
/ Anthropogenic factors
/ Archives & records
/ Atmospheric chemistry
/ Atmospheric methane
/ Climate
/ Climate change
/ Climate prediction
/ Environmental aspects
/ Future climates
/ Global warming
/ Holocene
/ Holocene atmospheric methane
/ Holocene paleogeography
/ Human influences
/ Humidity
/ Hydrology
/ Interglacial periods
/ Intertropical convergence zone
/ Land use
/ Methane
/ Mixing ratio
/ open climate campaign
/ Oxidation
/ Paleogeography
/ Precipitation
/ Rain
/ Rainfall
/ Tropical climate
/ Wetlands
/ Wind
2017
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Atmospheric methane control mechanisms during the early Holocene
Journal Article
Atmospheric methane control mechanisms during the early Holocene
2017
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Overview
Understanding processes controlling the atmospheric methane (CH4) mixing ratio is crucial to predict and mitigate future climate changes in this gas. Despite recent detailed studies of the last ∼ 1000 to 2000 years, the mechanisms that control atmospheric CH4 still remain unclear, partly because the late Holocene CH4 budget may be comprised of both natural and anthropogenic emissions. In contrast, the early Holocene was a period when human influence was substantially smaller, allowing us to elucidate more clearly the natural controls under interglacial conditions more clearly. Here we present new high-resolution CH4 records from Siple Dome, Antarctica, covering from 11.6 to 7.7 thousands of years before 1950 AD (ka). We observe four local CH4 minima on a roughly 1000-year spacing, which correspond to cool periods in Greenland. We hypothesize that the cooling in Greenland forced the Intertropical Convergence Zone (ITCZ) to migrate southward, reducing rainfall in northern tropical wetlands. The inter-polar difference (IPD) of CH4 shows a gradual increase from the onset of the Holocene to ∼ 9.5 ka, which implies growth of boreal source strength following the climate warming in the northern extratropics during that period.
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