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The greenhouse gas impacts of burning post-harvest debris piles on Vancouver Island, BC

机译:卑诗省温哥华岛上焚烧收获后垃圾堆的温室气体影响

摘要

It is increasingly important to identify climate change mitigation opportunities at different scales within all sectors. Avoiding burning of post-harvest debris piles may be a viable regional-scale mitigation strategy within the forestry sector. I used the Carbon Budget Model of the Canadian Forest Sector to simulate alternate burning scenarios over 2008-2050 and greenhouse gas (GHG) consequences over 2008-2250. The results show that the delayed release of carbon (through decomposition rather than burning) provides a benefit that persists for decades to centuries. Burning debris also releases a fraction of the stored carbon as CH4 and releases N2O, both of which are more powerful GHGs than CO2. The quantity, form and timing of GHGs released are all critical components to address when evaluating the net climate impact of human activities. When applied across a large landscape over several decades, avoiding debris burning makes a meaningful contribution to a regional mitigation portfolio.
机译:确定所有部门不同规模的减缓气候变化机会越来越重要。在林业部门内,避免焚烧收获后的杂物堆可能是可行的区域规模缓解战略。我使用了加拿大林业部门的碳预算模型来模拟2008-2050年间的替代燃烧情景和2008-2250年间的温室气体(GHG)后果。结果表明,碳的延迟释放(通过分解而不是燃烧)提供了持续数十年至数百年的益处。燃烧的碎片还释放出一部分储存的碳,如CH4并释放N2O,两者均比CO2更有力。在评估人类活动对气候的净影响时,要释放的温室气体的数量,形式和时间都是至关重要的组成部分。几十年来,如果将其应用于广阔的景观中,避免碎片燃烧对区域减灾组合做出了有意义的贡献。

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    Hall Alexander Wesley;

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  • 年度 2011
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