Drivers of intra-individual spatial variability in methane emissions from tree trunks in upland forest
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CH4 emissions from tree trunks in upland forests should be scaled accurately in order to assess the role of tree trunks in the forest CH4Â budget. As the chambers used to measure emissions cover only a small part of the tree trunks, it is necessary to understand the intra-individual spatial variability in trunk CH4Â emissions. We measured trunk CH4Â flux at nine locations per individual on four trees in a cool-temperate upland forest. To appreciate the origin of this variability and the underlying processes, we also measured the potential rate of CH4 production and CH4 concentration at sapwood and characterized wood and bark. Up to 15-fold spatial variation in CH4Â fluxes were observed at the individual level. This variability can be highlighted by the variation in the sapwood CH4Â concentration which was further explained by the variation in CH4 production rate. The radial CH4Â diffusivity calculated from concentration gradients and emissions was not related to the measured characteristics o..., Trunk CH4 flux was measured using a cavity-enhanced absorption spectroscopy gas analyzer (Li-7810, Licor, Lincoln, USA), from the trunk surface area of 127 cm2 on average, with a volume of a measuring system including a chamber, tubes, and an analyzer of 2509 cm3. Changes in the CH4 and CO2 concentrations in the stem chamber were recorded for 4 min at a frequency of 1 Hz.
After finishing all trunk CH4 flux measurements, chambers were removed, and the wood at these chamber locations was bored with an increment borer (5.15 mm internal diameter, Haglof Sweden) to a depth of 20 cm. After the removal of the wood core, the hole left by the borer was enlarged using a driller to a diameter of 10 mm. A stainless-steel tube (10 mm outer diameter, 12 cm length) was inserted into the hole to a depth of 10 cm. The tube was flushed with pure N2 to expel as much O2 as possible, then the open end of the tube was capped with a rubber septum (Asone, Butyl W Plug, Osaka, Japan). As the inner 10 cm part of..., , # Drivers of intra-individual spatial variability in methane emissions from tree trunks in upland forest
[https://doi.org/10.5061/dryad.z34tmpgm4](https://doi.org/10.5061/dryad.z34tmpgm4)
## Description of methods
Trunk CH4 flux was measured using a cavity-enhanced absorption spectroscopy gas analyzer (Li-7810, Licor, Lincoln, USA), from the trunk surface area of 127 cm2 on average, with a volume of a measuring system including a chamber, tubes, and an analyzer of 2509 cm3. Changes in the CH4 and CO2 concentrations in the stem chamber were recorded for 4 min at a frequency of 1 Hz.
After finishing all trunk CH4 flux measurements, chambers were removed, and the wood at these chamber locations was bored with an increment borer (5.15 mm internal diameter, Haglof Sweden) to a depth of 20 cm. After the removal of the wood core, the hole left by the borer was enlarged using a driller to a diameter of 10 mm. A stainless-steel tube (10 mm outer diameter, 12 cm length) was inserted into the ...
创建时间:
2025-07-29



