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首页> 外文期刊>International Journal of Wildland Fire >Fuel reduction burning mitigates wildfire effects on forest carbon and greenhouse gas emission
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Fuel reduction burning mitigates wildfire effects on forest carbon and greenhouse gas emission

机译:减少燃料燃烧可减轻野火对森林碳和温室气体排放的影响

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摘要

A high-intensity wildfire burnt through a dry Eucalyptus forest in south-eastern Australia that had been fuel reduced with fire 3 months prior, presenting a unique opportunity to measure the effects of fuel reduction (FR) on forest carbon and greenhouse gas (GHG) emissions from wildfires at the start of the fuel accumulation cycle. Less than 3% of total forest carbon to 30-cm soil depth was transferred to the atmosphere in FR burning; the subsequent wildfire transferred a further 6% to the atmosphere. There was a 9% loss in carbon for the FR-wildfire sequence. In nearby forest, last burnt 25 years previously, the wildfire burning transferred 16% of forest carbon to the atmosphere and was characterised by more complete combustion of all fuels and less surface charcoal deposition, compared with fuel-reduced forest. Compared to the fuel-reduced forests, release of non-CO2 GHG doubled following wildfire in long-unburnt forest. Although this is the maximum emission mitigation likely within a planned burning cycle, it suggests a significant potential for FR burns to mitigate GHG emissions in forests at high risk from wildfires.
机译:高强度的野火在澳大利亚东南部的一片干燥的桉树森林中燃烧,在三个月前已用火减少了燃料,这提供了一个独特的机会来衡量燃料减少(FR)对森林碳和温室气体(GHG)的影响燃料累积周期开始时因野火产生的排放。在FR燃烧中,不到30%土壤深度的森林碳总量的3%转移到了大气中;随后的野火又将6%的气体转移到了大气中。 FR野火序列的碳损失了9%。在附近森林中,最后一次燃烧是25年前,森林大火燃烧将森林碳的16%排放到大气中,与减少燃料的森林相比,其特点是所有燃料的燃烧更完全,表面木炭的沉积更少。与减少燃料的森林相比,长期未燃烧的森林在野火后释放的非二氧化碳温室气体增加了一倍。尽管这是在计划的燃烧周期内最大程度地减少排放,但这表明阻燃燃烧具有很大的潜力,可以减轻森林大火引发的森林中温室气体的排放。

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