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Soil carbon dioxide fluxes of a typical broad-leaved/Korean pine mixed forest in Changbai Mountain, China

机译:长白山典型阔叶红松混交林的土壤二氧化碳通量

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The forest ecosystem plays an important role in the global carbon cycling. A study was conducted to evaluate soil CO2 flux and its seasonal and diurnal variation with the air and soil temperatures by using static closed chamber technique in a typical broad-leaved/Korean pine mixed forest area on the northern slope of Changbai Mountain, Jilin Province, China. The experiment was carried out through the day and night in the growing season (from June to September) in situ and sample gas was analyzed by a gas chromatograph. Results showed that the forest floor was a large net source of carbon, and soil CO2 fluxes had an obvious law of seasonal and diel variation. The soil CO2 flux of broad-leaved/Korean pine mixed forest was in the range of 0.30-2.42μmol·m-2·s-1 with the mean value of 0.98μmol·m-2·s-1. An examination on the seasonal pattern of soil CO2 emission suggested that the variability in soil CO2 flux could be correlated with variations in soil temperature, and the maximum of mean CO2 flux occurred in July ((1.27±23%)μmol·m-2·s-1) and the minimum was in September ((0.50±28%)μmol·m-2·s-1). The fluctuations in diel soil CO2 flux were also correlated with changes in soil temperature; however, there existed a factor for a time lag. Soil CO2 flux from the forest floor was strongly related to soil temperature and had the highest correlation with temperature at 6-cm depth of soil. Q10 values based on air temperature and soil temperature of different soil depths were at the ranges of 2.09 - 3.40.
机译:森林生态系统在全球碳循环中起着重要作用。在吉林省长白山北坡典型的阔叶/红松混交林区,采用静态密闭室技术,研究了土壤CO2通量及其随空气和土壤温度的季节性和昼夜变化。中国。实验在生长季节(6月至9月)的白天和黑夜进行,并通过气相色谱仪分析样气。结果表明,林地是碳的主要净来源,土壤CO2通量具有明显的季节变化和diel变化规律。阔叶/红松混交林的土壤CO2通量范围为0.30-2.42μmol·m-2·s-1,平均值为0.98μmol·m-2·s-1。通过对土壤CO2排放季节变化的研究表明,土壤CO2通量的变化可能与土壤温度的变化有关,平均CO2通量的最大值出现在7月((1.27±23%)μmol·m-2· s-1),最小值为9月((0.50±28%)μmol·m-2·s-1)。 Diel土壤CO2通量的波动也与土壤温度的变化相关。但是,存在时间滞后的因素。林地的土壤CO2通量与土壤温度密切相关,并且与土壤6 cm深度的温度相关性最高。基于空气温度和不同土壤深度的土壤温度的Q10值在2.09-3.40的范围内。

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