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Sensitivity of climate mitigation strategies to natural disturbances

机译:气候减缓策略对自然干扰的敏感性

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The present and future concentration of atmospheric carbon dioxide depends on both anthropogenic and natural sources and sinks of carbon. Most proposed climate mitigation strategies rely on a progressive transition to carbon-efficient technologies to reduce industrial emissions, substantially supported by policies to maintain or enhance the terrestrial carbon stock in forests and other ecosystems. This strategy may be challenged if terrestrial sequestration capacity is affected by future climate feedbacks, but how and to what extent is little understood. Here, we show that climate mitigation strategies are highly sensitive to future natural disturbance rates (e.g. fires, hurricanes, droughts), because of the potential effect of disturbances on the terrestrial carbon balance. Generally, altered disturbance rates affect the pace of societal and technological transitions required to achieve the mitigation target, with substantial consequences on the energy sector and the global economy. An understanding of the future dynamics and consequences of natural disturbances on terrestrial carbon balance is thus essential for developing robust climate mitigation strategies and policies.
机译:当前和未来大气中二氧化碳的浓度取决于人为和自然来源以及碳汇。大多数拟议的缓解气候变化战略都依赖于逐步向碳效率技术过渡,以减少工业排放,这在很大程度上得到了维持或提高森林和其他生态系统中陆地碳储量的政策的支持。如果地面固存能力受到未来气候反馈的影响,则该策略可能会受到挑战,但是如何以及在何种程度上了解甚少。在这里,我们表明气候减缓策略对未来的自然干扰率(例如火灾,飓风,干旱)高度敏感,因为干扰可能会对地球碳平衡产生潜在影响。通常,扰动率的变化会影响实现减排目标所需的社会和技术转型的步伐,对能源部门和全球经济产生重大影响。因此,了解自然干扰对地球碳平衡的未来动态和后果,对于制定强有力的气候缓解策略和政策至关重要。

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