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Factors controlling soil organic carbon stability along a temperate forest altitudinal gradient

机译:温带森林海拔梯度上控制土壤有机碳稳定性的因素

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摘要

Changes in soil organic carbon (SOC) stability may alter carbon release from the soil and, consequently, atmospheric CO2 concentration. The mean annual temperature (MAT) can change the soil physico-chemical characteristics and alter the quality and quantity of litter input into the soil that regulate SOC stability. However, the relationship between climate and SOC stability remains unclear. A 500-day incubation experiment was carried out on soils from an 11 °C-gradient mountainous system on Changbai Mountain in northeast China. Soil respiration during the incubation fitted well to a three-pool (labile, intermediate and stable) SOC decomposition model. A correlation analysis revealed that the MAT only influenced the labile carbon pool size and not the SOC stability. The intermediate carbon pool contributed dominantly to cumulative carbon release. The size of the intermediate pool was strongly related to the percentage of sand particle. The decomposition rate of the intermediate pool was negatively related to soil nitrogen availability. Because both soil texture and nitrogen availability are temperature independent, the stability of SOC was not associated with the MAT, but was heavily influenced by the intrinsic processes of SOC formation and the nutrient status.
机译:土壤有机碳(SOC)稳定性的变化可能会改变土壤中碳的释放,从而改变大气中的CO2浓度。年平均温度(MAT)可以改变土壤的理化特性,并改变进入土壤的凋落物的质量和数量,从而调节SOC的稳定性。但是,气候与SOC稳定性之间的关系仍然不清楚。在来自中国东北长白山的11°C梯度山区系统的土壤上进行了500天的温育实验。孵育过程中的土壤呼吸非常适合三池(不稳定,中等和稳定)的SOC分解模型。相关分析表明,MAT仅影响不稳定碳库的大小,而不影响SOC的稳定性。中间碳库对累积碳释放起主要作用。中间池的大小与砂粒的百分比密切相关。中间库的分解速率与土壤氮素利用率负相关。由于土壤质地和氮素有效性均与温度无关,因此SOC的稳定性与MAT无关,但受SOC形成的内在过程和养分状况的影响很大。

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