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首页> 外文期刊>The Forestry Chronicle >Vertical and seasonal variations in soil CO2 production in a 55-year-old oriental arborvitae (Platycladus orientalis) plantation in China
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Vertical and seasonal variations in soil CO2 production in a 55-year-old oriental arborvitae (Platycladus orientalis) plantation in China

机译:中国55年历史的侧柏(Platycladus Orientalis)人工林土壤CO2产生的垂直和季节性变化

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The aim of this work was to explore the vertical and seasonal variations of CO2 within the soil profile based on Fick's law of diffusion in an oriental arborvitae plantation. We continuously measured the soil CO2 concentration profile using CO2 sensors buried at different depths in a coniferous forest in northern China and calculated the CO2 flux based on the profile measurements using a dynamic model. The diurnal pattern of CO2 concentration and flux fluctuated during the day and varied less at night. The CO2 profile had a vertical gradient, with the highest concentrations in the deepest soil layers. The CO2 flux had a clear seasonal pattern with a maximum in summer and a minimum in winter. The contributions of the H, A, B, and C horizons to the total CO2 flux were 75.38, 13.52, 7.61, and 3.49%, respectively. Q(10) was 2.668, 4.469, 1.175, and 3.333 in the H, A, B, and C horizons, respectively. The CO2 flux determined from the concentration profiles agreed well with the CO2 flux measured by open dynamic chambers, suggesting that this model could be used to successfully measure soil CO2 emissions and to describe the processes underlying CO2 efflux.
机译:这项工作的目的是根据菲克在侧柏种植园中的扩散定律,探索土壤剖面中二氧化碳的垂直和季节性变化。我们使用埋在中国北方针叶林不同深度的CO2传感器连续测量了土壤CO2浓度分布,并基于分布模型使用动态模型计算了CO2通量。 CO2浓度和通量的昼夜模式在白天波动,而在晚上变化较小。 CO2剖面具有垂直梯度,在最深的土壤层中浓度最高。 CO2通量具有明显的季节性模式,夏季最高,冬季最低。 H,A,B和C层对总CO2通量的贡献分别为75.38%,13.52%,7.61%和3.49%。 Q(10)在H,A,B和C层分别为2.668、4.469、1.175和3.333。由浓度曲线确定的CO2通量与通过开放式动态室测得的CO2通量非常吻合,这表明该模型可用于成功测量土壤CO2排放并描述CO2排放的潜在过程。

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