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首页> 外文期刊>Science of the total environment >Identifying and addressing knowledge gaps for improving greenhouse gas emissions estimates from tropical peat forest fires
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Identifying and addressing knowledge gaps for improving greenhouse gas emissions estimates from tropical peat forest fires

机译:确定和解决改善热带泥炭林火灾的温室气体排放估计的知识差距

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摘要

Tropical peatlands are areas of high carbon density that are important in biosphere-atmosphere interactions. Drainage and burning of tropical peatlands releases about 5% of global greenhouse gas (GHG) emissions, yet there is great uncertainty in these estimates. Our comprehensive literature review of parameters required to calculate GHG emissions from burnt peat forests, following the international guidelines, revealed many gaps in knowledge of carbon pools and few recent supporting studies. To improve future estimates of the total ecosystem carbon balance and peatfire emissions this study aimed to account for all carbon pools: aboveground, deadwood, pyrogenic carbon (PyC) and peat of single and repeatedly burnt peat forests. A further aim was to identify the minimum sampling intensity required to detect with 80% power significant differences in these carbon pools among long unburnt, recently burnt and repeatedly burnt peat swamp forests. About 90 Mg C ha~(-1) remains aboveground as deadwood after a single fire and half of this remains after a second fire. One fire produces 4.5 ± 0.6 Mg C ha~(-1) of PyC with a second fire increasing this to 7.1 ± 0.8 Mg C ha~(-1).For peat swamp forests these aboveground carbon pools are rarely accounted in estimates of emissions following multiple fires, while PyC has not been included in the total peat carbon mass balance. Peat bulk density and peat carbon content change with fire frequency, yet these parameters often remain constant in the published emission estimates following a single and multiple fires. Our power analysis indicated that as few as 12 plots are required to detect meaningful differences between fire treatments for the major carbon pools. Further field studies directed at improving the parameters for calculating carbon balance of disturbed peat forest ecosystems are required to better constrain peatfire GHG emission estimates.
机译:热带泥炭地是高碳密度的区域,对生物圈 - 大气相互作用重要。热带泥炭地的排水和燃烧释放了大约5%的全球温室气体(GHG)排放,但这些估计存在很大的不确定性。我们综合文献综述对国际指南计算烧焦泥炭林中的GHG排放所需的参数综述,揭示了许多碳库知识和最近的支持研究的差距。提高未来生态系统总碳平衡和泥炭排放的估计,本研究旨在占所有碳池:地上,底层,热原碳(PYC)和泥炭的单一和反复烧焦的泥炭林。进一步的目的是识别在长UNBURNT中使用80%功率显着差异的最小抽样强度,最近烧焦并反复烧焦泥炭沼泽森林。大约90毫克C HA〜(-1)在地上仍然在地上作为奥德伍德之后,在二次火灾之后仍然存在一半。一火产生4.5±0.6mg C ha〜(-1)PYC,第二次火焰增加至7.1±0.8 mg C HA〜(-1)。对于泥炭沼泽森林,这些地上碳池很少占排放的估计在多次火灾之后,PYC未包含在总泥炭碳质量平衡中。泥炭堆积密度和泥炭碳含量随火频率而变化,但这些参数通常在单一和多次火灾后发布的发射估计中保持恒定。我们的功率分析表明,只需12个块的距离,以检测主要碳池的消防治疗之间的有意义差异。需要进一步的现场研究,改善用于计算受干扰的泥炭林生态系统的碳平衡的参数,以更好地限制泥炭火灾温室气体排放估计。

著录项

  • 来源
    《Science of the total environment 》 |2021年第1期| 142933.1-142933.11| 共11页
  • 作者单位

    School of Ecosystem and Forest Sciences Faculty of Science The University of Melbourne Creswick Victoria 3363 Australia;

    Forest Research and Development Center Forestry and Environment Research Development and Innovation Agency (FORDA) Jl. Gunung Batu No 5 Bogor 16610 Indonesia;

    Forest Research and Development Center Forestry and Environment Research Development and Innovation Agency (FORDA) Jl. Gunung Batu No 5 Bogor 16610 Indonesia;

    Forest Research and Development Center Forestry and Environment Research Development and Innovation Agency (FORDA) Jl. Gunung Batu No 5 Bogor 16610 Indonesia;

    Forestry and Environment Research and Development Institute Banjarbaru 70721 Indonesia;

    Forestry and Environment Research and Development Institute Banjarbaru 70721 Indonesia;

    Forestry and Environment Research and Development Institute Banjarbaru 70721 Indonesia;

    School of Ecosystem and Forest Sciences Faculty of Science The University of Melbourne Creswick Victoria 3363 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass burning; Indonesia; Repeated fires; Pyrogenic carbon; Deadwood; Power analysis;

    机译:生物质燃烧;印度尼西亚;重复火灾;热原碳;死胡同;权力分析;

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