Title of article :
Quantification of soil respiration in forest ecosystems across China
Author/Authors :
Song، نويسنده , , Xinzhang and Peng، نويسنده , , Changhui and Zhao، نويسنده , , Zhengyong and Zhang، نويسنده , , Zhiting and Guo، نويسنده , , Baohua and Wang، نويسنده , , Weifeng and Jiang، نويسنده , , Hong and Zhu، نويسنده , , Qiuan، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
6
From page :
546
To page :
551
Abstract :
We collected 139 estimates of the annual forest soil CO2 flux and 173 estimates of the Q10 value (the temperature sensitivity) assembled from 90 published studies across Chinese forest ecosystems. We analyzed the annual soil respiration (Rs) rates and the temperature sensitivities of seven forest ecosystems, including evergreen broadleaf forests (EBF), deciduous broadleaf forests (DBF), broadleaf and needleleaf mixed forests (BNMF), evergreen needleleaf forests (ENF), deciduous needleleaf forests (DNF), bamboo forests (BF) and shrubs (SF). The results showed that the mean annual Rs rate was 33.65 t CO2 ha−1 year−1 across Chinese forest ecosystems. Rs rates were significantly different (P < 0.001) among the seven forest types, and were significantly and positively influenced by mean annual temperature (MAT), mean annual precipitation (MAP), and actual evapotranspiration (AET); but negatively affected by latitude and elevation. The mean Q10 value of 1.28 was lower than the world average (1.4–2.0). The Q10 values derived from the soil temperature at a depth of 5 cm varied among forest ecosystems by an average of 2.46 and significantly decreased with the MAT but increased with elevation and latitude. Moreover, our results suggested that an artificial neural network (ANN) model can effectively predict Rs across Chinese forest ecosystems. This study contributes to better understanding of Rs across Chinese forest ecosystems and their possible responses to global warming.
Keywords :
Temperature sensitivity , Soil CO2 flux , artificial neural network model , carbon cycle , climate change
Journal title :
Atmospheric Environment
Serial Year :
2014
Journal title :
Atmospheric Environment
Record number :
2242921
Link To Document :
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