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Unexpectedly large impact of forest management and grazing on global vegetation biomass

机译:森林管理和放牧对全球植被生物量产生了意料之外的巨大影响

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摘要

Carbon stocks in vegetation have a key role in the climate system(1-4). However, the magnitude, patterns and uncertainties of carbon stocks and the effect of land use on the stocks remain poorly quantified. Here we show, using state-of-the-art datasets, that vegetation currently stores around 450 petagrams of carbon. In the hypothetical absence of land use, potential vegetation would store around 916 petagrams of carbon, under current climate conditions. This difference highlights the massive effect of land use on biomass stocks. Deforestation and other land-cover changes are responsible for 53-58% of the difference between current and potential biomass stocks. Land management effects (the biomass stock changes induced by land use within the same land cover) contribute 42-47%, but have been underestimated in the literature. Therefore, avoiding deforestation is necessary but not sufficient for mitigation of climate change. Our results imply that trade-offs exist between conserving carbon stocks on managed land and raising the contribution of biomass to raw material and energy supply for the mitigation of climate change. Efforts to raise biomass stocks are currently verifiable only in temperate forests, where their potential is limited. By contrast, large uncertainties hinder verification in the tropical forest, where the largest potential is located, pointing to challenges for the upcoming stocktaking exercises under the Paris agreement.
机译:植被中的碳储量在气候系统中具有关键作用(1-4)。但是,碳储量的大小,模式和不确定性以及土地使用对碳储量的影响仍然很难量化。在这里,我们使用最先进的数据集显示,植被目前存储了约450 petagrams的碳。在假设没有土地利用的情况下,在当前气候条件下,潜在的植被将存储约916皮克的碳。这种差异凸显了土地利用对生物量资源的巨大影响。森林砍伐和其他土地覆被变化造成了目前和潜在生物量之间差异的53-58%。土地管理效应(在同一土地覆被范围内由土地利用引起的生物量变化)贡献了42-47%,但是在文献中被低估了。因此,必须避免森林砍伐,但这不足以减轻气候变化。我们的结果表明,要在减少被管理土地上的碳储量与提高生物量对缓解气候变化的原材料和能源供应的贡献之间存在取舍。目前,只有在潜力有限的温带森林中才能证实增加生物量储备的努力。相比之下,巨大的不确定性阻碍了在潜力最大的热带森林中的核查,这为根据巴黎协定进行的盘点工作提出了挑战。

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  • 来源
    《Nature》 |2018年第7686期|73-76|共4页
  • 作者单位

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria;

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria|Senckenberg Biodivers & Climate Res Ctr SBiK F, Senckenberganlage 25, D-60325 Frankfurt, Germany;

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria|Univ Vienna, Div Conservat Biol Vegetat Ecol & Landscape Ecol, Rennweg 14, A-1030 Vienna, Austria;

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria;

    Max Planck Inst Biogeochem, Hans Knoll Str 10, D-07745 Jena, Germany|Univ Nova Lisboa, Fac Ciencias & Tecnol, Dept Ciencias & Engn Ambiente, CENSE, P-2829516 Caparica, Portugal;

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria;

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria;

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria;

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria;

    Alpen Adria Univ Klagenfurt Vienna Graz, Inst Social Ecol Vienna, Schottenfeldgasse 29, A-1070 Vienna, Austria;

    Max Planck Inst Meteorol, Bundesstr 53, D-20146 Hamburg, Germany;

    Stockholm Univ, Dept Environm Sci & Analyt Chem ACES, Svante Arrhenius Vag 8, S-10691 Stockholm, Sweden|Stockholm Univ, Bolin Ctr Climate Res, S-10691 Stockholm, Sweden;

    Vrije Univ Amsterdam, Dept Ecol Sci, NL-1081 HV Amsterdam, Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:51:25

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