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Characteristics of soil CO2 fluxes and N2O emission in a winter wheat ecosystem under enhanced UV-B radiation

机译:UV-B辐射增强下冬小麦生态系统土壤CO2通量和N2O排放特征

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Field experiments were conducted during the 2007 to 2008 winter wheat-growing season to investigate the influence of enhanced UV-B radiation on diurnal variations in soil CO2?fluxes and nitrous oxide (N2O) emissions from a winter wheat ecosystem. CO2?and N2O fluxes were measured by static opaque chamber-gas chromatograph technique. Results showed that on sunny days, soil CO2?fluxes and N2O emissions from the soil-wheat system exhibited obvious diurnal variation patterns, which enhanced UV-B radiation. During the jointing, booting, and heading stages, enhanced UV-B radiation significantly decreased the mean diurnal CO2?fluxes of the soil by 49.62% (p?= 0.000), 50.39% (p?= 0.004) and 51.44% (p?= 0.022), respectively. Enhanced UV-B radiation also reduced the mean diurnal N2O fluxes (MNF) of the soil-wheat system by 48.35% (p?= 0.017) and soil?MNF by 36.87% (p?= 0.027) during the grain-filling stage. Our findings suggested that enhanced UV-B radiation did not change the diurnal variation patterns of soil CO2?fluxes and N2O emissions from the soil-wheat system, but influenced mean diurnal CO2?and N2O fluxes.
机译:在2007年至2008年冬小麦生长季节进行了田间试验,以研究UV-B辐射增强对冬小麦生态系统土壤CO2通量和一氧化二氮(N2O)排放的昼夜变化的影响。 CO 2和N 2 O通量通过静态不透明室气相色谱技术测量。结果表明,在晴天,土壤-小麦系统中的CO2通量和N2O排放量表现出明显的昼夜变化规律,从而增强了UV-B辐射。在拔节,孕穗和抽head阶段,增强的UV-B辐射显着降低了土壤的平均日CO2通量,分别降低了49.62%(p?= 0.000),50.39%(p?= 0.004)和51.44%(p?)。 = 0.022)。在灌浆期,增强的UV-B辐射还使土壤-小麦系统的平均日N2O通量(MNF)降低了48.35%(p?= 0.017),土壤?MNF降低了36.87%(p?= 0.027)。我们的发现表明,增强的UV-B辐射不会改变土壤-小麦系统中土壤CO2通量和N2O排放的日变化模式,但会影响平均CO2和N2O通量。

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