Biomass distribution, allocation and growth efficiency in European beech trees of different ages in pure even-aged stands in northeast France

IF 1.4 Q2 FORESTRY Central European Forestry Journal Pub Date : 2022-08-23 DOI:10.2478/forj-2022-0008
Noël Le Goff, J. Ottorini
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引用次数: 1

Abstract

Abstract Determination of the biomass and biomass increment of trees in managed stands is a pre-requisite for estimating the carbon stocks and fluxes, in order to adapt the forests to new climatic requirements, which impose to maximize the CO2 retained by forests. Tree biomass and biomass increment equations were formerly developed in two young experimental beech stands in the Hesse forest (NE France). To extend such a study to beech stands of different age classes, it was necessary to build biomass and biomass increment equations that could be used for any age, called generalized biomass equations. For that, trees were sampled in plots covering a large age range in Hesse forest, and in each plot several trees were chosen to represent the different social classes. Compatible biomass and biomass increment equations for the different tree compartments and their combination in above and belowground tree parts were developed and fitted, allowing the analysis of the variations of the biomass distribution and allocation with tree age. Stem growth efficiency (stem growth per unit of leaf area) appeared dependent on tree age and tree social status. The biomass and biomass increment equations established for beech allow the estimation of the biomass and carbon stocks and fluxes (NPP) for the even-aged beech stands of the Hesse forest, whatever their age. These equations could also be used to analyze the effects of silvicultural treatments on the biomass and carbon stocks and fluxes of beech stands, using the available stand growth and yield models of beech.
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法国东北部纯均龄林分不同年龄欧洲山毛榉的生物量分布、分配及生长效率
摘要:人工林生物量和生物量增量的测定是估算森林碳储量和碳通量的先决条件,目的是使森林适应新的气候要求,从而最大限度地提高森林保留的二氧化碳。在法国东北部黑森森林的两个年轻的实验山毛榉林分中建立了树木生物量和生物量增量方程。为了将这一研究扩展到不同年龄等级的山毛榉林分,有必要建立适用于任何年龄的生物量和生物量增量方程,即广义生物量方程。为此,在黑森森林中,树木在覆盖大年龄范围的地块中进行采样,并在每个地块中选择几棵树来代表不同的社会阶层。建立并拟合了不同树室及其地上、地下组合的相容生物量和生物量增量方程,分析了生物量分布和分配随树龄的变化。茎生长效率(单位叶面积的茎生长)与树龄和树的社会地位有关。建立的山毛榉生物量和生物量增量方程可以估算黑森森林平均年龄的山毛榉林分的生物量和碳储量和通量(NPP),无论其年龄如何。利用现有的山毛榉林分生长和产量模型,这些方程也可用于分析造林处理对山毛榉林分生物量和碳储量及通量的影响。
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来源期刊
CiteScore
3.20
自引率
6.20%
发文量
23
审稿时长
22 weeks
期刊介绍: Central European Forestry Journal (published as Lesnícky Èasopis - Forestry Journal until 2016) publishes novel science originating from research in forestry and related braches. Central European Forestry Journal is a professional peer-reviewed scientific journal published 4-time a year. The journal contains original papers and review papers of basic and applied research from all fields of forestry and related disciplines. The editorial office accepts the manuscripts within the focus of the journal exclusively in English language. The journal does not have article processing charges (APCs) nor article submission charges. Central European Forestry Journal, abbreviation: Cent. Eur. For. J., publishes original papers and review papers of basic and applied research from all fields of forestry and related scientific areas. The journal focuses on forestry issues relevant for Europe, primarily Central European regions. Original works and review papers can be submitted only in English language.
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