首页> 外文期刊>Ecosystems >Biometric based carbon flux measurements and net ecosystem production (NEP) in a temperate deciduous broad-leaved forest beneath a flux tower.
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Biometric based carbon flux measurements and net ecosystem production (NEP) in a temperate deciduous broad-leaved forest beneath a flux tower.

机译:基于生物特征的碳通量测量和通量塔下的温带落叶阔叶林中的净生态系统生产(NEP)。

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摘要

Biometric based carbon flux measurements were conducted over 5 years (1999-2003) in a temperate deciduous broad-leaved forest of the AsiaFlux network to estimate net ecosystem production (NEP). Biometric based NEP, as measured by the balance between net primary production (including NPP of canopy trees and of forest floor dwarf bamboo) and heterotrophic respiration (RH), clarified the contribution of various biological processes to the ecosystem carbon budget, and also showed where and how the forest is storing C. The mean NPP of the trees was 5.4+or-1.07 t C ha-1 y-1, including biomass increment (0.3+or-0.82 t C ha-1 y-1), tree mortality (1.0+or-0.61 t C ha-1 y-1), aboveground detritus production (2.3+or-0.39 t C ha-1 y-1) and belowground fine root production (1.8+or-0.31 t C ha-1 y-1). Annual biomass increment was rather small because of high tree mortality during the 5 years. Total NPP at the site was 6.5+or-1.07 t C ha-1 y-1, including the NPP of the forest floor community (1.1+or-0.06 t C ha-1 y-1). The soil surface CO< sub>2 efflux (RS) was averaged across the 5 years of record using open-flow chambers. The mean estimated annual RS amounted to 7.1+or-0.44 t C ha-1, and the decomposition of soil organic matter (SOM) was estimated at 3.9+or-0.24 t C ha-1. RH was estimated at 4.4+or-0.32 t C ha-1 y-1, which included decomposition of coarse woody debris. Biometric NEP in the forest was estimated at 2.1+or-1.15 t C ha-1 y-1, which agreed well with the eddy-covariance based net ecosystem exchange (NEE). The contribution of woody increment ( Delta biomass+mortality) of the canopy trees to NEP was rather small, and thus the SOM pool played an important role in carbon storage in the temperate forest. These results suggested that the dense forest floor of dwarf bamboo might have a critical role in soil carbon sequestration in temperate East Asian deciduous forests.
机译:基于生物特征的碳通量测量是在AsiaFlux网络的一个温带落叶阔叶林中进行的,历时5年(1999-2003年),以估算净生态系统产量(NEP)。基于生物特征的NEP,通过净初级生产(包括冠层树和林地矮竹的NPP)与异养呼吸(RH)之间的平衡来衡量,阐明了各种生物过程对生态系统碳预算的贡献,并指出了树木的平均NPP为5.4+或-1.07 t C ha-1 y-1,包括生物量增加(0.3+或-0.82 t C ha-1 y-1),树木死亡率(1.0+或-0.61 t C ha-1 y-1),地上碎屑产量(2.3+或-0.39 t C ha-1 y-1)和地下细根产量(1.8+或-0.31 t C ha-1 y-1)。由于5年内树木死亡率高,因此每年的生物量增量很小。该地点的总NPP为6.5+或-1.07 t C ha-1 y-1,其中包括林地群落的NPP(1.1+或-0.06 t C ha-1 y-1)。使用开式流室对5年记录中的土壤表面CO 2 外流(RS)进行平均。估计的年均RS平均值为7.1+或-0.44 t C ha-1,而土壤有机质的分解估计为3.9+或-0.24 t C ha-1。相对湿度估计为4.4+或-0.32 t C ha-1 y-1,其中包括粗木屑的分解。森林中的生物特征NEP估计为2.1+或1.15 t C ha-1 y-1,这与基于涡度协方差的净生态系统交换(NEE)非常吻合。冠层树木的木质增量(Delta生物量+死亡率)对NEP的贡献很小,因此SOM库在温带森林的碳储存中起着重要作用。这些结果表明,矮矮竹的茂密林底可能在温带东亚落叶林的土壤固碳中起关键作用。

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