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Fire decline in dry tropical ecosystems enhances decadal land carbon sink

机译:干燥热带生态系统的火灾衰落增强了Decadal Land Carbon Count

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The terrestrial carbon sink has significantly increased in the past decades, but the underlying mechanisms are still unclear. The current synthesis of process-based estimates of land and ocean sinks requires an additional sink of 0.6?PgC yr -1 in the last decade to explain the observed airborne fraction. A concurrent global fire decline was observed in association with tropical agriculture expansion and landscape fragmentation. Here we show that a decline of 0.2?±?0.1?PgC yr -1 in fire emissions during 2008-2014 relative to 2001-2007 also induced an additional carbon sink enhancement of 0.4?±?0.2?PgC yr -1 attributable to carbon cycle feedbacks, amounting to a combined sink increase comparable to the 0.6?PgC yr -1 budget imbalance. Our results suggest that the indirect effects of fire, in addition to the direct emissions, is an overlooked mechanism for explaining decadal-scale changes in the land carbon sink and highlight the importance of fire management in climate mitigation.
机译:过去几十年来,陆地碳水槽大幅增加,但潜在的机制尚不清楚。目前的基于过程的土地和海洋水槽估计的综合需要额外的下沉为0.6?PGC YR-1在过去的十年中,以解释观察到的空中级分。与热带农业扩张和景观碎片相关联,观察到同时的全球火灾下降。在这里,我们表明,在2008 - 2014年相对于2001-2007期间,在2008 - 2014年的火灾排放中下降0.2?0.1?PGC YR -1也诱导了额外的碳水槽增强0.4≤0.2?PGC YR -1归因于碳循环反馈,相当于0.6?PGC YR -1预算不平衡的组合水槽增加。我们的研究结果表明,除了直接排放之外,火灾的间接影响是解释土地碳汇的二等规模变化的忽略机制,并突出了火灾管理在气候缓解中的重要性。

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