大西洋森林片段生物量和碳储量估算

IF 0.2 Q4 AGRONOMY
Igor Rodrigues Henud, Stella Manes, Ludmila De Souza Varejão Marinho, Ana Carolina Clemente, Júlia Kazue Shimabukuro, K. Tanizaki-Fonseca
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引用次数: 0

摘要

碳固存是一项至关重要的生态系统服务,可以自然缓解和减少气候变化日益严重的威胁。大型森林,如大西洋森林,是从大气中去除碳并将其储存在生物量中的重要碳库。对森林碎片碳储量的评估有助于更好地了解碳循环和气候缓解战略的潜力。因此,我们估计了位于Pedra de Itaocaia山麓的大西洋森林碎片的生物量和碳储量。我们使用了一种基于攀爬技术和异速测量方程的非破坏性方法。我们爬了七棵树,以便彻底测量它们的整体,并计算出树木隔间的体积。我们将从攀爬中获得的测量体积与估计的树木圆柱形体积进行了比较,并在两者之间建立了0.65的校正因子(即树形因子)。树形因子调整了异速生长方程,并允许在不需要攀爬碎片中所有树木的情况下进行碳估计。获得的生物量和碳储量估计值分别为100.1和50.5 MgC/ha,这意味着碎片在大约40岁时处于再生的中间阶段。该异速方程有效地整合了类似于Pedra de Itaocaia的森林碎片的结构特征,从而有助于提高对大西洋森林中森林碎片发生过程的认识。碳估计对于更好地理解气候缓解战略至关重要,因为气候缓解战略可以恢复气候变化对生态系统的威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomass and carbon stock estimation of an Atlantic Forest fragment
Carbon sequestration is a crucial ecosystem service, naturally mitigating and reducing the ever-growing threat from climate change. Large forests, such as the Atlantic Forest, are important carbon reservoirs removing carbon from the atmosphere and storing it in their biomass. The assessment of carbon stock from forests fragments helps to establish a better understanding of the carbon cycle and the potential of climate mitigation strategies. Thus, we estimated the biomass and carbon stock of an Atlantic Forest fragment located in the foothills of Pedra de Itaocaia. We used a non-destructive methodology based on climbing techniques and an allometric equation. We climbed seven trees in order to thoroughly measure them in whole and calculate the volume of arboreal compartments. We compared the measured volume obtained from the climb to an estimated tree cylindrical volume and established a correction factor of 0.65 between both (i.e. tree form factor). The tree form factor adjusts the allometric equation and allows carbon estimations without the need to climb all trees in the fragment. The biomass and carbon stock estimates obtained were 100.1 and 50.5 MgC/ha, respectively, which implies that the fragment is on an intermediary stage of regeneration at approximately forty years old. This allometric equation efficiently integrates structural features of forest fragments similar to the one of Pedra de Itaocaia, thus contributing to advance the knowledge about processes taking place in forest fragments situated in the Atlantic Forest. Carbon estimation is imperative for a better understanding of climate mitigation strategies that can revert the threat of climate change to ecosystems.
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