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  3. Forestry and Resource Conservation / 森林環境暨資源學系
  4. Canopy conductance and gas exchange of a Japanese cypress forest after rainfall-induced wetness
 
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Canopy conductance and gas exchange of a Japanese cypress forest after rainfall-induced wetness

Journal
Ecological Research
Journal Volume
36
Journal Issue
6
Start Page
947
End Page
960
Date Issued
2021
Author(s)
Jiao, Linjie
Kosugi, Yoshiko
Sempuku, Yuichi
TING-WEI CHANG  
DOI
10.1111/1440-1703.12257
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85111730236&doi=10.1111%2f1440-1703.12257&partnerID=40&md5=d08abd6f6018933b48f9656f6895d10d
https://scholars.lib.ntu.edu.tw/handle/123456789/721717
Abstract
Increased stomatal conductance of the dry leaves right after wetness ended was reported before, while few studies paid attention to this phenomenon in canopy scale and its contribution to the forest carbon sink function. Therefore, we observed the continuous change of canopy wetness and ecosystem fluxes after wetness ended by using wetness sensors and eddy covariance method for a Japanese cypress forest (Chamaecyparis obtuse Sieb. Et Zucc.) in the Asian monsoon area. Larger gc (canopy conductance) were found in the relationships with both vapor pressure deficit and Rn (net radiation) during the first several hours after wetness ended. The results for λE (latent heat flux) were similar to that of gc in spring and summer. Net ecosystem exchange (NEE) in the relationships with Rn at different stages after wetness ended did not show clear difference except in spring. Nevertheless, annual summed-up NEE showed that the average CO2 uptake at the first several hours after wetness ended was larger than the usual dry period. These results suggest that the improved stomatal opening at the first several hours after wetness ended plays a significant role in the canopy-scale gas exchange processes. © 2021 The Ecological Society of Japan.
Subjects
canopy conductance
eddy covariance
latent heat flux
leaf wetness
net ecosystem exchange
Type
journal article

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