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Effects of climate factors and vegetation on the CO2 fluxes and δ13C from re-established grassland

机译:气候因子和植被对重新建立草地CO2助势和δ13C的影响

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The relationship between stable carbon isotope composition (δ13C -CO2) of soil CO2 flux, vegetation cover and weather conditions was investigated in a short-term campaign at a temperate re-established grassland in Germany. During August-September 2016, we measured surface CO2 flux with a closed-chamber method at high and low soil moisture content (‘wet’, ‘dry’), with and without above ground vegetation (‘planted’, ‘clear-cut’) and estimated the effects of treatments on respective δ13C -CO2 values. The concentration and stable carbon isotope composition of CO2 were determined using the gas chromatography and mass spectrometry analyses. The δ13C -CO2 of the soil fluxes decreased over sampling time for the ‘dry-warm’ conditions and canopy manipulation. The ecosystem-derived δ13C -CO2 values (corrected for the atmospheric δ13C -CO2) which included predominately soil-and rhizosphere respiration were –26.2 ± 0.8‰ for the ‘dry-warm’ conditions and decreased down to –28.1 ± 1.4‰ over a period of 28 days from late August to the end of September. The decrease coincided with the lowering of CO2 flux and could be attributed to changes in plant physiological processes at the end of the vegetation season. Though the removal of shoots did not significantly affect the δ13C -CO2 values as compared with the control, the pattern of further δ13C -CO2 decrease (down to –28.8 ± 0.8‰) supported the role of living vegetation in a contribution of 13C-enriched CO2 to the ecosystem respiration.
机译:在德国温带重建草原的短期运动中调查了土壤二氧化碳通量,植被覆盖和天气条件的稳定碳同位素组成(δ13C-CO2)的关系。在2016年8月至9月期间,在高低土壤水分含量(“湿润”,“干燥”),带有和不高于地面植被('种植','清除',测量表面二氧化碳磁通量)并且估计治疗对各自的Δ13C-CO2值的影响。使用气相色谱法和质谱分析测定CO 2的浓度和稳定的碳同位素组合物。土壤助熔剂的δ13C-CO2通过对“干燥温热”条件和冠层操作的采样时间降低。生态系统衍生的δ13C-CO2值(校正大气δ13C-CO2),其包括占地面积和根际呼吸为-26.2±0.8‰,用于“干燥温热”条件,下降至-28.1±1.4°从8月下旬到9月底的28天。随着CO2通量的降低而逐渐降低,可归因于植被季节结束时的植物生理过程的变化。虽然与对照相比,去除芽面没有显着影响Δ13C-CO2值,但进一步Δ13C-CO2的图案减少(低至-28.8±0.8‰)支持植物植被在13℃的贡献中的作用CO2到生态系统呼吸。

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