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首页> 外文期刊>Biomass & bioenergy >Below-ground biomass production and allometric relationships of eucalyptus coppice plantation in the central highlands of Madagascar
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Below-ground biomass production and allometric relationships of eucalyptus coppice plantation in the central highlands of Madagascar

机译:马达加斯加中部高原桉树人工林的地下生物量生产和异速关系

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摘要

Short rotations of Eucalyptus plantations under coppice regime are extensively managed for wood production in Madagascar. Nevertheless, little is known about their biomass production and partitioning and their potential in terms of carbon sequestration. If above-ground biomass (AGB) can be estimated based on established allometric relations, below-ground (BGB) estimates are much less common. The aim of this work was to develop allometric equations to estimate biomass of these plantations, mainly for the root components. Data from 9 Eucalyptus robusta stands (47-87 years of plantation age, 3-5 years of coppice-shoot age) were collected and analyzed. Biomass of 3 sampled trees per stand was determined destructively. Dry weight of AGB components (leaves, branches and stems) were estimated as a function of basal area of all shoots per stump and dry weight for BGB components (mainly stump, coarse root (CR) and medium root (MR)) were estimated as a function of stump circumference. Biomass was then computed using allometric equations from stand inventory data. Stand biomass ranged from 102 to 130 Mgha 1 with more than 77% contained in the BGB components. The highest dry weight was allocated in the stump and in the CR (51% and 42% respectively) for BGB parts and in the stem (69%) for AGB part. Allometric relationships developed herein could be applied to other Eucalyptus plantations which present similar stand density and growing conditions; anyhow, more is needed to be investigated in understanding biomass production and partitioning over time for this kind of forest ecosystem.
机译:在马达加斯加,广泛种植了在矮灌木林制度下进行的桉树人工林的短期轮作。然而,关于它们的生物量生产和分配以及它们在碳固存方面的潜力知之甚少。如果可以基于已建立的异速关系来估算地上生物量(AGB),那么地下(BGB)估算就不那么普遍了。这项工作的目的是开发等速方程,以估计这些人工林的生物量,主要是针对根部生物量。收集并分析了来自9个强壮桉树林分(人工林年龄47-87岁,小灌木林期3-5年)的数据。破坏性地确定了每个林分的3个取样树的生物量。 AGB成分(叶,枝和茎)的干重估计为每个树桩所有芽的基面积的函数,BGB成分(主要是树桩,粗根(CR)和中根(MR))的干重估计为是树桩周长的函数。然后,使用来自种群库存数据的异速方程计算生物量。林分生物量范围从102到130 Mgha 1,其中BGB成分中的生物量超过77%。最高干重分配给BGB零件的树桩和CR(分别为51%和42%)和AGB零件的茎(69%)。本文开发的异速生长关系可以应用于其他具有相似林分密度和生长条件的桉树人工林;无论如何,对于这种森林生态系统随着时间的流逝生物量的产生和分配需要进行更多的研究。

著录项

  • 来源
    《Biomass & bioenergy 》 |2012年第10期| p.1-10| 共10页
  • 作者单位

    Ecole Superieure des Sciences Agronomiques, Departement des Eaux et Forets, Uniuersite d'Antananarivo, BP 175, Madagascar,IRD, UMR 210 Eco&Sols et Laboratoire des Radiolsotopes, Departement de la Radio Agronomie, Route d'Andraisoro, BP 3383,101 Antananarivo, Madagascar;

    Ecole Superieure des Sciences Agronomiques, Departement des Eaux et Forets, Uniuersite d'Antananarivo, BP 175, Madagascar;

    Ecole Superieure des Sciences Agronomiques, Departement des Eaux et Forets, Uniuersite d'Antananarivo, BP 175, Madagascar;

    Cirad, UR 105 Biens et Services des Ecosystemes Forestiers, Campus International de Baillarguet, TA C-105/D F-34398 Montpellier Cedex 5, France,Cirad-Madagascar, DRP Foret et Biodiuersite, BP 904, Ambatobe, 101-Antananariuo, Madagascar;

    IRD, UMR 210 Eco&Sols et Laboratoire des Radiolsotopes, Departement de la Radio Agronomie, Route d'Andraisoro, BP 3383,101 Antananarivo, Madagascar;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    allometry; root biomass; short rotation forestry; coppice; eucalyptus robusta smith; chronosequence;

    机译:异速根生物量;短轮伐林业;矮林;桉树铁匠史密斯时间序列;

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