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Long-term nutrient addition increased CH4 emission from a bog through direct and indirect effects

机译:长期添加营养物通过直接和间接影响增加了沼泽中CH4的排放

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摘要

Peatlands are globally significant sources of atmospheric methane (CH4). While several studies have examined the effects of nutrient addition on CH4 dynamics, there are few long-term peatland fertilization experiments, which are needed to understand the aggregated effects of nutrient deposition on ecosystem functioning. We investigated responses of CH4 flux and production to long-term field treatments with three levels of N (1.6–6.4 g m−2 yr−1 as NH4NO3), potassium and phosphorus (PK, 5.0 g P and 6.3 g K m−2 yr−1 as KH2PO4), and NPK in a temperate bog. Methane fluxes were measured in the field from May to August in 2005 and 2015. In 2015 CH4 flux was higher in the NPK treatment with 16 years of 6.4 g N m−2 yr−1 than in the control (50.5 vs. 8.6 mg CH4 m−2 d−1). The increase in CH4 flux was associated with wetter conditions derived from peat subsidence. Incubation of peat samples, with and without short-term PK amendment, showed that potential CH4 production was enhanced in the PK treatments, both from field application and by amending the incubation. We suggest that changes in this bog ecosystem originate from long-term vegetation change, increased decomposition and direct nutrient effects on microbial dynamics.
机译:泥炭地是全球重要的大气甲烷(CH4)来源。尽管有几项研究检查了养分添加对CH4动态的影响,但很少进行长期的泥炭地施肥实验,以了解养分沉积对生态系统功能的总体影响。我们调查了CH4的通量和产量对长期施用氮(1.6–6.4 g m −2 yr -1 作为NH4NO3)的长期田间处理的响应。磷(PK,5.0 g P和6.3 g K m -2 yr -1 作为KH2PO4)和NPK在温带沼泽中。 2005年和2015年5月至8月在田间测量了甲烷通量。2015年,NPK处理中的CH4通量更高,使用16年的6.4 g N m −2 yr −1 < / sup>(50.5 vs. 8.6mg CH4 m -2 d -1 )。 CH4通量的增加与泥炭沉降引起的湿润条件有关。在有或没有短期PK修正的情况下,泥炭样品的孵育表明,在PK处理中,无论是通过田间施用还是通过修改孵育,都可能增加CH4的产生。我们建议,这种沼泽生态系统的变化源于长期的植被变化,分解的增加以及养分对微生物动力学的直接影响。

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