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Estimating aboveground carbon density and its uncertainty in Borneo's structurally complex tropical forests using airborne laser scanning

机译:使用空气激光扫描估算婆罗洲结构复杂的热带森林的地上碳密度及其不确定性

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摘要

Borneo contains some of the world's most biodiverse and carbon-dense tropical forest, but this 750 000 km(2) island has lost 62% of its old-growth forests within the last 40 years. Efforts to protect and restore the remaining forests of Borneo hinge on recognizing the ecosystem services they provide, including their ability to store and sequester carbon. Airborne laser scanning (ALS) is a remote sensing technology that allows forest structural properties to be captured in great detail across vast geographic areas. In recent years ALS has been integrated into statewide assessments of forest carbon in Neotropical and African regions, but not yet in Asia. For this to happen new regional models need to be developed for estimating carbon stocks from ALS in tropical Asia, as the forests of this region are structurally and composition-ally distinct from those found elsewhere in the tropics. By combining ALS imagery with data from 173 permanent forest plots spanning the lowland rainforests of Sabah on the island of Borneo, we develop a simple yet general model for estimating forest carbon stocks using ALS-derived canopy height and canopy cover as input metrics. An advanced feature of this new model is the propagation of uncertainty in both ALS- and ground-based data, allowing uncertainty in hectare-scale estimates of carbon stocks to be quantified robustly. We show that the model effectively captures variation in aboveground carbon stocks across extreme disturbance gradients spanning tall dipterocarp forests and heavily logged regions and clearly outperforms existing ALS-based models calibrated for the tropics, as well as currently available satellite-derived products. Our model provides a simple, generalized and effective approach for mapping forest carbon stocks in Borneo and underpins ongoing efforts to safeguard and facilitate the restoration of its unique tropical forests.
机译:婆罗洲含有一些世界上最多的一些生物多样性和碳密集的热带森林,但这座750 000公里(2)米岛在过去40年内失去了62%的旧增长森林。保护和恢复婆罗洲铰链剩余森林的努力,以认识到他们提供的生态系统服务,包括他们储存和螯合碳的能力。机载激光扫描(ALS)是一种遥感技术,允许在广大地理区域的森林结构特性以较大的细节捕获。近年来,ALS一直纳入森林碳的全型森林碳的评估,但尚未在亚洲。为此,需要开发新的区域模型,以便为估算热带亚洲的ALS中的碳储存,因为该地区的森林在结构上和构成与热带其他地方在其他地方发现的群体不同。通过将ALS图像与来自婆罗洲岛屿的Sabah的低地雨林的173个永久林地块组合,我们开发了一种简单但普遍的模型,可以使用ALS衍生的冠层高度和Canopy Copt作为输入指标来估算森林碳储备。这种新模型的高级特征是在基于ALS和地面数据中的不确定性的传播,允许碳股的公顷规模估计的不确定性稳健。我们表明,该模型有效地捕获了跨越Dipterocarp森林的极端扰动梯度的地上碳储存的变化,并且严重记录区域,并且显然优于现有的基于ALS的模型,用于热带地区,以及目前可用的卫星衍生的产品。我们的模型提供了一种简单,广义和有效的方法,可以在婆罗洲绘制森林碳股,并为维护和促进其独特的热带森林的恢复而努力进行努力。

著录项

  • 来源
    《Biogeosciences》 |2018年第12期|共20页
  • 作者单位

    Univ Cambridge Dept Plant Sci Forest Ecol &

    Conservat Grp Cambridge CB2 3EA England;

    Carnegie Inst Sci Dept Global Ecol 260 Panama St Stanford CA 94305 USA;

    Fdn E Mach Res &

    Innovat Ctr Dept Sustainable Agroecosyst &

    Bioresources Via E Mach 1 I-38010 San Michele All Adige Italy;

    Carnegie Inst Sci Dept Global Ecol 260 Panama St Stanford CA 94305 USA;

    Swiss Fed Inst Technol Dept Environm Syst Sci Univ Str 16 CH-8092 Zurich Switzerland;

    Carnegie Inst Sci Dept Global Ecol 260 Panama St Stanford CA 94305 USA;

    Univ Aberdeen Sch Biol Sci Cruickshank Bldg St Machar Dr Aberdeen AB24 3UU Scotland;

    Univ Helsinki Dept Biosci Viikki Plant Sci Ctr ViPS FIN-00014 Helsinki Finland;

    Univ Aberdeen Sch Biol Sci Cruickshank Bldg St Machar Dr Aberdeen AB24 3UU Scotland;

    Univ Kent DICE Sch Anthropol &

    Conservat Canterbury CT2 7NR Kent England;

    Imperial Coll London Silwood Pk Campus Buckhusrt Rd Ascot SL5 7PY Berks England;

    Mendel Univ Brno Dept Forest Bot Dendrol &

    Geobiocoenol Fac Forestry &

    Wood Technol Brno Czech Republic;

    Univ Leeds Sch Geog Leeds LS2 9JT W Yorkshire England;

    Univ Oxford Environm Change Inst Sch Geog &

    Environm Oxford OX1 3QY England;

    Univ Aberdeen Sch Biol Sci Cruickshank Bldg St Machar Dr Aberdeen AB24 3UU Scotland;

    Forest Res Ctr Sabah Forestry Dept POB 1407 Sandakan 90715 Sabah Malaysia;

    Newcastle Univ Sch Biol Newcastle NE1 7RU England;

    Univ Leeds Sch Geog Leeds LS2 9JT W Yorkshire England;

    Imperial Coll London Silwood Pk Campus Buckhusrt Rd Ascot SL5 7PY Berks England;

    Permian Global Savoy Hill House 7-10 Savoy Hill London WC2R 0BU England;

    Danum Valley Field Ctr SEARRP POB 60282 Lahad Datu 91112 Saga Malaysia;

    Imperial Coll London Silwood Pk Campus Buckhusrt Rd Ascot SL5 7PY Berks England;

    Univ Kent DICE Sch Anthropol &

    Conservat Canterbury CT2 7NR Kent England;

    Mendel Univ Brno Dept Forest Bot Dendrol &

    Geobiocoenol Fac Forestry &

    Wood Technol Brno Czech Republic;

    Univ Cambridge Dept Zool Downing St Cambridge CB2 3EJ England;

    Univ Cambridge Dept Plant Sci Forest Ecol &

    Conservat Grp Cambridge CB2 3EA England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物地球化学、气体地球化学;
  • 关键词

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