Natural Resources Canada, Canadian Forest Service - Laurentian Forestry Centre, PO 10380, Sainte-Foy, QC, G1V 4C7, Canada.
Tree Physiol. 2010 Apr;30(4):527-40. doi: 10.1093/treephys/tpq002. Epub 2010 Mar 8.
We measured respiratory fluxes of carbon dioxide by aboveground tree components and soil respiration with chambers in 2005 and scaled up these measurements over space and time to estimate annual ecosystem respiration (R(e)) at a mature black spruce (Picea mariana (Mill.) B.S.P.) ecosystem in Quebec, Canada. We estimated periodic annual net primary production (NPP) for this ecosystem also. R(e) was estimated at 10.32 Mg C ha(-)(1) year(-)(1); heterotrophic respiration (R(h)) accounted for 52% of R(e) and autotrophic respiration (R(a)) accounted for the remainder. We estimated NPP at 3.02 Mg C ha(-1) year(-1), including production of bryophyte biomass but not including shrub NPP. We used these estimates of carbon fluxes to calculate a carbon use efficiency [CUE = NPP/(NPP + R(a))] of 0.38. This estimate of CUE is similar to those reported for other boreal forest ecosystems and it is lower than the value frequently used in global studies. Based on the estimate of R(h) being greater than the estimate of NPP, the ecosystem was determined to emit approximately 2.38 Mg C ha(-1) year(-1) to the atmosphere in 2005. Estimates of gross primary production (GPP = NPP + R(a)) and R(e) differed substantially from estimates of these fluxes derived from eddy covariance measurements during 2005 at this site. The ecological estimates of GPP and R(e) were substantially greater than those estimated for eddy covariance measurements. Applying a correction for lack of energy balance closure to eddy covariance estimates reduces differences with ecological estimates. We reviewed possible sources of systematic error in ecological estimates and discuss other possible explanations for these discrepancies.
我们在 2005 年使用气室法测量了地上树木部分和土壤呼吸的二氧化碳通量,并将这些测量结果在空间和时间上进行扩展,以估算加拿大魁北克成熟黑云杉(Picea mariana (Mill.) B.S.P.)生态系统的年生态系统呼吸(R(e))。我们还估算了该生态系统的周期性年净初级生产力(NPP)。R(e)估计为 10.32 Mg C ha(-)(1) year(-)(1);异养呼吸(R(h))占 R(e)的 52%,自养呼吸(R(a))占其余部分。我们估计 NPP 为 3.02 Mg C ha(-1) year(-1),包括苔藓生物量的产生,但不包括灌木的 NPP。我们使用这些碳通量估计值来计算碳利用效率[CUE = NPP/(NPP + R(a))]为 0.38。这个 CUE 的估计值与其他北方森林生态系统的报告值相似,并且低于全球研究中常用的值。根据 R(h)的估计值大于 NPP 的估计值,该生态系统在 2005 年向大气排放约 2.38 Mg C ha(-1) year(-1)。总初级生产力(GPP = NPP + R(a))和 R(e)的估算值与该地点 2005 年涡度协方差测量得出的这些通量的估算值有很大差异。生态系统对 GPP 和 R(e)的估算值大大高于涡度协方差测量的估算值。对涡度协方差估算值应用缺乏能量平衡闭合的校正会降低与生态估算值的差异。我们审查了生态估算中可能存在的系统误差源,并讨论了这些差异的其他可能解释。