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Decoupling of soil carbon and nitrogen turnover partly explains increased net ecosystem production in response to nitrogen fertilization

机译:土壤碳氮转化的解耦部分解释了氮肥施用后净生态系统产量的增加

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摘要

During the last decade there has been an ongoing controversy regarding the extent to which nitrogen fertilization can increase carbon sequestration and net ecosystem production in forest ecosystems. The debate is complicated by the fact that increased nitrogen availability caused by nitrogen deposition has coincided with increasing atmospheric carbon dioxide concentrations. The latter could further stimulate primary production but also result in increased allocation of carbon to root exudates, which could potentially 'prime' the decomposition of soil organic matter. Here we show that increased input of labile carbon to forest soil caused a decoupling of soil carbon and nitrogen cycling, which was manifested as a reduction in respiration of soil organic matter that coincided with a substantial increase in gross nitrogen mineralization. An estimate of the magnitude of the effect demonstrates that the decoupling could potentially result in an increase in net ecosystem production by up to 51 kg C ha-1 day-1 in nitrogen fertilized stands during peak summer. Even if the effect is several times lower on an annual basis, the results still suggest that nitrogen fertilization can have a much stronger influence on net ecosystem production than can be expected from a direct stimulation of primary production alone.
机译:在过去的十年中,关于氮肥可在多大程度上增加森林生态系统中的碳固存和净生态系统产量一直存在争议。由于氮沉积引起的氮可利用量增加与大气中二氧化碳浓度增加同时发生,使辩论变得复杂。后者可能进一步刺激初级生产力,但也会增加碳在根系分泌物中的分配,这可能“引发”土壤有机质的分解。在这里,我们表明,对森林土壤的不稳定碳输入增加导致土壤碳和氮循环的脱钩,这表现为土壤有机质呼吸减少,而总氮矿化量显着增加。对影响程度的估计表明,脱钩可能导致夏季高峰期氮肥林分的生态系统净产量增加多达51 kg C ha-1 day-1。即使这种影响每年降低几倍,结果仍然表明,氮肥对生态系统净生产的影响要比单独直接刺激初级生产所预期的要大得多。

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