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Soil respiration and its temperature sensitivity in Pinus koraiensis plantations are mediated by temperature, humidity, and wind speed

Bibliographic Data

ID19586751
AuthorsLianqiang Li (0009-0009-9831-7770, Liaoning Academy of Agricultural Sciences, corresponding author), Huixia Yang (0000-0001-8954-2102, Liaoning Academy of Agricultural Sciences), Hongyu Li (0009-0001-4711-9557, Liaoning Academy of Agricultural Sciences), Jiatong Sun (0000-0001-8767-9316, Liaoning Academy of Agricultural Sciences), Fuqiang Shang (Liaoning Academy of Agricultural Sciences)
Year2025
Volume19
Pages100784
Publication date2025-03-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueTrees Forests and People (JOURNAL)
Journal identifiersISSN: 2666-7193 • E-ISSN: 2666-7193
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.tfp.2025.100784
OpenAlexW4406614800
LanguageEN
References cited59

Soil respiration (RS) plays a key role in the carbon cycle which is sensitive to climate change. Therefore, understanding potential regulatory mechanisms of RS and its temperature sensitivity( Q 10 ) in plantations are important. In this study the changes in RS and its Q 10 along with their potential environmental driving factors of surface soil of Pinus koraiensis plantations in the Liaodong mountain area of Liaoning Province were studied. The results showed that variation in RS of the plantations is significant and unstable, whereas the variation in Q 10 is relatively small and stable. RS was significantly positively correlated with soil temperature, soil moisture, air temperature, and air humidity, and negatively correlated with wind speed; Q 10 was significantly positively correlated with air humidity and soil moisture, and negatively correlated with wind speed. Soil moisture and soil temperature accounted for 58 % and 35 % variability in RS, respectively, whereas air humidity and wind speed accounted for 25 % and 11 % variability in Q 10 , respectively. This study reveals that RS and its Q 10 in Pinus koraiensis plantations are significantly mediated by temperature, humidity, and wind speed, and thus, this study has significant implications on soil carbon cycling in plantations under changing climate

Air temperature · Atmospheric sciences · Biology · Botany · Geography · Humidity · Meteorology · Physics · Pinus · Pinus koraiensis · Respiration · Soil respiration · Soil water · Wind speed · Aeolian processes and effects · Engineering · Environmental Science · Plant Water Relations and Carbon Dynamics · Tree Root and Stability Studies · Forestry · Soil Science

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