globalchange  > 气候变化事实与影响
DOI: 10.1002/2017GB005644
Scopus记录号: 2-s2.0-85042419809
论文题名:
The Temperature Sensitivity (Q10) of Soil Respiration: Controlling Factors and Spatial Prediction at Regional Scale Based on Environmental Soil Classes
作者: Meyer N; , Welp G; , Amelung W
刊名: Global Biogeochemical Cycles
ISSN: 8866236
出版年: 2018
卷: 32, 期:2
起始页码: 306
结束页码: 323
语种: 英语
英文关键词: CO2 ; soil moisture ; soil organic matter ; soil respiration ; soil temperature
Scopus关键词: carbon flux ; catchment ; factor analysis ; forest soil ; grassland soil ; prediction ; sensitivity analysis ; soil moisture ; soil organic matter ; soil respiration ; soil temperature ; spatial analysis ; temperature effect ; Belgium ; Germany ; Netherlands
英文摘要: The temperature sensitivity of heterotrophic soil respiration is crucial for modeling carbon dynamics but it is variable. Presently, however, most models employ a fixed value of 1.5 or 2.0 for the increase of soil respiration per 10°C increase in temperature (Q10). Here we identified the variability of Q10 at a regional scale (Rur catchment, Germany/Belgium/Netherlands). We divided the study catchment into environmental soil classes (ESCs), which we define as unique combinations of land use, aggregated soil groups, and texture. We took nine soil samples from each ESC (108 samples) and incubated them at four soil moisture levels and five temperatures (5–25°C). We hypothesized that Q10 variability is controlled by soil organic carbon (SOC) degradability and soil moisture and that ESC can be used as a widely available proxy for Q10, owing to differences in SOC degradability. Measured Q10 values ranged from 1.2 to 2.8 and were correlated with indicators of SOC degradability (e.g., pH, r = −0.52). The effect of soil moisture on Q10 was variable: Q10 increased with moisture in croplands but decreased in forests. The ESC captured significant parts of Q10 variability under dry (R2 = 0.44) and intermediate (R2 = 0.36) moisture conditions, where Q10 increased in the order cropland
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/77665
Appears in Collections:气候变化事实与影响

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作者单位: Institute of Crop Science and Resource Conservation, Soil Science and Soil Ecology, University of Bonn, Bonn, Germany

Recommended Citation:
Meyer N,, Welp G,, Amelung W. The Temperature Sensitivity (Q10) of Soil Respiration: Controlling Factors and Spatial Prediction at Regional Scale Based on Environmental Soil Classes[J]. Global Biogeochemical Cycles,2018-01-01,32(2)
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