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Forest type affects the coupled relationships of soil C and N mineralization in the temperate forests of northern China

机译:森林类型影响中国北方温带森林土壤碳和氮矿化的耦合关系

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摘要

Decomposition of soil organic matter (SOM) is sensitive to vegetation and climate change. Here, we investigated the influence of changes in forest types on the mineralization of soil carbon (C) and nitrogen (N), and their temperature sensitivity ( Q 10) and coupling relationships by using a laboratory soil incubation experiments. We sampled soils from four forest types, namely, a primary Quercus liaotungensis forest (QL), Larix principis-rupprechtii plantation (LP), Pinus tabulaeformis plantation (PT), and secondary shrub forest (SS) in temperate northern China. The results showed that soil C and N mineralization differed significantly among forest types. Soil C and N mineralization were closely coupled in all plots, and C:N ratios of mineralized SOM ranged from 2.54 to 4.12. Forest type significantly influenced the Q 10 values of soil C and N mineralization. The activation energy ( Ea ) of soil C and N mineralization was negatively related to the SOM quality index in all forest types. The reverse relationships suggested that the carbon quality-temperature (CQT) hypothesis was simultaneously applicable to soil C and N mineralization. Our findings show that the coupled relationships of soil C and N mineralization can be affected by vegetation change.
机译:土壤有机质(SOM)的分解对植被和气候变化敏感。在这里,我们通过实验室土壤培养研究了森林类型的变化对土壤碳(C)和氮(N)矿化及其温度敏感性(Q 10 )及其耦合关系的影响。实验。我们对中国北方温带地区的四种森林类型的土壤进行了采样,即原始的辽阔栎林(QL),华北落叶松人工林(LP),油松人工林(PT)和次生灌木林(SS)。结果表明,森林类型中土壤碳和氮的矿化差异显着。在所有样区中,土壤碳和氮矿化紧密相关,矿化SOM的C:N比范围为2.54至4.12。森林类型显着影响土壤碳和氮矿化的Q 10 值。在所有森林类型中,土壤碳和氮矿化的活化能(E a )与SOM质量指数呈负相关。反向关系表明碳质量-温度(CQT)假说同时适用于土壤碳和氮矿化。我们的发现表明,土壤碳和氮矿化的耦合关系可能受到植被变化的影响。

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