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首页> 外文期刊>Forestry >Aboveground and belowground biomass and carbon pools in highland temperate forest landscape in Central Mexico.
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Aboveground and belowground biomass and carbon pools in highland temperate forest landscape in Central Mexico.

机译:墨西哥中部高原温带森林景观中的地上和地下生物量和碳库。

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摘要

Temperate forests play a significant role in the global carbon cycle. However, deforestation, land use changes and differences in successional and species composition cause a spatial heterogeneity in the potential carbon storage in the landscape. The aims of this study were (1) to quantify aboveground and belowground biomass and respective carbon storage and (2) to project the future carbon storage in temperate forests landscape in Cofre de Perote, Veracruz, Mexico. Aboveground and belowground biomass was estimated in seven forests with different species composition and conservation status and management, in three grasslands and in two shrublands at a range of altitudes. Total biomass in forests ranged from 91.07 to 383.78 Mg ha-1, in grassland from 9.83 to 24.93 Mg ha-1 and in successional (shrublands) from 6.33 to 7.69 Mg ha-1. This suggests that deforestation and changes of land use could reduce aboveground biomass by 90 per cent. Mature forests had the largest aboveground and belowground biomass and the lowest density (number of trees per hectare) but a lower potential for accumulation of C in the future; in contrast, young forests and reforested areas had higher growth and carbon storage potential. Our results suggest that avoiding deforestation and improving forest management could play a major role in global climate change mitigation.
机译:温带森林在全球碳循环中起着重要作用。但是,森林砍伐,土地利用变化以及演替和物种组成的差异会导致景观潜在碳储量的空间异质性。这项研究的目的是(1)量化地上和地下的生物量以及相应的碳储量,以及(2)预测墨西哥韦拉克鲁斯州Cofre de Perote温带森林景观中的未来碳储量。在海拔高度不同的三个草地和两个灌木林中,估计了七个具有不同物种组成,保护状况和管理方式的森林的地上和地下生物量。森林总生物量为91.07至383.78 Mg ha -1 ,草地为9.83至24.93 Mg ha -1 ,连续(灌木丛)生物量为6.33至7.69 Mg ha -1 。这表明森林砍伐和土地利用的变化可能使地上生物量减少90%。成熟的森林地上和地下生物量最大,密度(每公顷树木数)最低,但将来碳积累的潜力较低。相反,年轻的森林和重新造林的地区具有更高的增长和碳储存潜力。我们的结果表明,避免森林砍伐和改善森林管理可能在缓解全球气候变化中发挥重要作用。

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