首页> 外文会议>Meeting of the International Humic Substances Society >Field Temperature Dominantly Affected Soil Organic Carbon Stability along an Altitudinal Gradient in Changbai Mountain, Northeast China
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Field Temperature Dominantly Affected Soil Organic Carbon Stability along an Altitudinal Gradient in Changbai Mountain, Northeast China

机译:田间温度沿着中国东北地区长白山的一直梯度显着影响土壤有机碳稳定性

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An improved understanding of how soil organic carbon (SOC) stability varied with temperature and forest type was required to evaluate the global warming effects on SOC dynamics and the potential feedback of forest ecosystems to the climate change.Here,SOC stability along an altitudinal gradient in Cbangbai Mountain was investigated with a 180-day incubation experiment at the field temperature of 15 °C.Soil respirations were determined dynamically to quantify the decomposition rate and the stability of SOC.The respiration rate declined at the first 30 days and became relatively constant within the latter days.After fitting two-pool C decomposition model,the rate constant of stable C pool increased with the increase of mean growing season temperature except soil from Picea and Abies forest which had weaker physical protection than other soils.In conclusion,SOC stability increased with mean growing season temperature,while forest type had little effect on SOC stability.
机译:改进了对土壤有机碳(SOC)稳定性如何在温度和森林类型变化的了解,以评估对SOC动态的全球变暖效应以及森林生态系统对气候变化的潜在反馈。,沿着一般性梯度的SoC稳定性CBangbai山脉在5°C的培养实验中进行了180天的培养实验,动态测定了呼吸,以量化分解率和SoC的稳定性。在前30天内呼吸率下降,并且内部变得相对恒定拟合双池C分解模型后,稳定C池的速率常数随着Picea和And Forest的平均生长季节温度的增加而比物理保护较弱的土壤,其结论,SoC稳定性随着季节温度的平均增加而增加,而森林类型对SoC稳定性影响不大。

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