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首页> 外文期刊>Soil Biology & Biochemistry >Temperature sensitivity of soil respiration is affected by prevailing climatic conditions and soil organic carbon content: A trans-China based case study
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Temperature sensitivity of soil respiration is affected by prevailing climatic conditions and soil organic carbon content: A trans-China based case study

机译:土壤呼吸的温度敏感性受主要气候条件和土壤有机碳含量的影响:基于中国的案例研究

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摘要

Understanding the spatial variation of temperature sensitivity (i.e. Q10) of soil respiration (Rs) and its controlling factors, is critical to improve the precision of carbon budget estimations at regional scales. In this study, data from 2-3 continuous years of Rs measurements over 15 ecosystems of ChinaFLUX were summarized to analyze the response of Rs to soil temperature. Moreover, we improved our dataset by collecting previously published Q10 values from 34 ecosystems in China. The ecosystems studied were located in the main climatic zones of China, spanning from alpine via temperate to tropical. Spatial variations of Q10 and its controlling factors were analyzed. The results showed that soil temperature at a 5 cm depth satisfactorily explained the seasonal variations in Rs of the 15 ChinaFLUX ecosystems (R2 varying from 0.37 to 0.83). Based on the overall data, the Q10 values of Rs in China ranged from 1.28 to 4.75. The spatial variations in Q10 were primarily determined by soil temperature during measurement periods, soil organic carbon (SOC) content, and ecosystem type. Ecosystems in colder regions and with higher SOC content had relatively higher Q10 values. Moreover, ecosystems of different vegetation types showed different Q10 values. A temperature- and SOC-dependent function for Q10 is suggested, which could be a valuable reference for improving the regional-scale models of Rs and ecosystem carbon cycles.
机译:了解土壤呼吸(Rs)的温度敏感性(即Q10)的空间变化及其控制因素,对于提高区域尺度碳预算估算的精度至关重要。在这项研究中,总结了ChinaFLUX 15个生态系统中连续2-3年进行Rs测量的数据,以分析Rs对土壤温度的响应。此外,我们通过收集中国34个生态系统先前发布的Q10值来改进数据集。研究的生态系统位于中国的主要气候区,从高山到温带再到热带。分析了Q10的空间变化及其控制因素。结果表明,5 cm深度的土壤温度令人满意地解释了15个ChinaFLUX生态系统Rs的季节性变化(R2从0.37到0.83变化)。根据整体数据,中国的Rs Q10值在1.28至4.75之间。 Q10的空间变化主要由测量期间的土壤温度,土壤有机碳(SOC)含量和生态系统类型决定。较冷地区和SOC含量较高的生态系统的Q10值相对较高。此外,不同植被类型的生态系统显示出不同的Q10值。提出了Q10的温度和SOC依赖性函数,这对于改进Rs和生态系统碳循环的区域尺度模型可能是有价值的参考。

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