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Soil respiration at forest sites in Saxony (Central Europe)

机译:萨克森(中欧)森林地带的土壤呼吸

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摘要

Soil respiration is the second largest CO2-exchange process between terrestrial ecosystems and the atmosphere. Yet, high-quality experimental data are still in demand. During the vegetation period of 2013 we measured soil and ecosystem respiration with a closed dynamic flux chamber at six Saxon ICP-Forests Level II monitoring sites, representative for Central Europe. Each site comprises a closed canopy (UC) and an open field (OF) plot. Apart from CO2 fluxes, meteorological parameters were recorded, assuring that the chosen measurement period was representative for longer time frames. Additional soil samples delivered current chemical conditions. Carbon dioxide fluxes at the open field plots were 30-250 % higher than under canopy-due to different plant cover. Under canopy, 2.7-5.8 mu mol CO2 m(-2) s(-1) were determined (median 3.5 lmol CO2 m(-2) s(-1)), while the open field showed a range of 3.2-15.5 lmol CO2 m(-2) s(-1) (median 7.6 lmol CO2 m(-2) s(-1)). The key drivers for soil metabolism, soil temperature, humidity and nutrient budget, showed distinct plot and site differences. Surmising that the determined fluxes are representative for Saxony and its temperate forests, and calculating with winter half year data from the literature, it can be deduced that 3.85 Mt C of carbon would be released annually from Saxon forest soils.
机译:土壤呼吸是陆地生态系统与大气之间的第二大二氧化碳交换过程。但是,仍然需要高质量的实验数据。在2013年的植被时期,我们在六个中欧地区的撒克逊ICP森林II级监测点使用封闭的动态通量室测量了土壤和生态系统的呼吸。每个站点都包含一个封闭的顶篷(UC)和一个开放的字段(OF)地块。除二氧化碳通量外,还记录了气象参数,以确保所选的测量周期可以代表更长的时间范围。其他土壤样品提供了当前的化学条件。由于不同的植物覆盖率,露天田地的二氧化碳通量比冠层下的通量高出30-250%。在冠层下,确定2.7-5.8μmol CO2 m(-2)s(-1)(中值3.5 lmol CO2 m(-2)s(-1)),而开放视野显示范围为3.2-15.5 lmol CO2 m(-2)s(-1)(中值7.6 lmol CO2 m(-2)s(-1))。土壤代谢,土壤温度,湿度和养分收支的主要驱动力显示出明显的地块和地点差异。推测所确定的通量代表了萨克森及其温带森林,并根据文献中的冬季半年数据计算,可以推断出每年从萨克森森林土壤中释放出3.85 Mt C的碳。

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