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Hierarchical saturation of soil carbon pools near a natural CO2 spring

机译:天然CO2春季附近土壤碳库的分层饱和

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摘要

Soil has been identified as a possible carbon (C) sink to mitigate increasing atmospheric CO2 concentration. However, several recent studies have suggested that the potential of soil to sequester C is limited and that soil may become saturated with C under increasing CO2 levels. To test this concept of soil C saturation, we studied a gley and organic soil at a grassland site near a natural CO2 spring. Total and aggregate-associated soil organic C (SOC) concentration showed a significant increase with atmospheric CO2 concentration. An asymptotic function showed a better fit of SOC and aggregation with CO2 level than a linear model. There was a shift in allocation of total C from smaller size fractions to the largest aggregate fraction with increasing CO2 concentration. Litter inputs appeared to be positively related to CO2 concentration. Based on modeled function parameters and the observed shift in the allocation of the soil C from small to large aggregate-size classes, we postulate that there is a hierarchy in C saturation across different SOC pools. We conclude that the asymptotic response of SOC concentration at higher CO2 levels indicates saturation of soil C pools, likely because of a limit to physical protection of SOC.
机译:已经确定土壤是缓解大气中CO2浓度增加的可能的碳(C)汇。但是,最近的一些研究表明,土壤固存碳的潜力是有限的,并且在二氧化碳含量增加的情况下,土壤可能会被碳饱和。为了测试这种土壤C饱和度的概念,我们在天然CO2泉附近的草地上研究了ley水和有机土壤。土壤总有机碳和总有机碳含量随大气CO2浓度显着增加。与线性模型相比,渐近函数显示SOC和聚集与CO2水平的拟合更好。随着CO2浓度的增加,总C的分配从较小的馏分转移到最大的聚集馏分。垃圾输入与CO2浓度呈正相关。基于模型化的函数参数和观察到的土壤碳从小到大的聚集体类别的分配变化,我们假设在不同的SOC池中C饱和度存在一个层次。我们得出的结论是,较高的CO2水平下SOC浓度的渐近响应表明土壤C池已饱和,这可能是因为SOC的物理保护受到限制。

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