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Large climate mitigation potential from adding trees to agricultural lands

机译:将树木添加到农业土地上的大气候减缓潜力

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摘要

While improved management of agricultural landscapes is promoted as a promising natural climate solution, available estimates of the mitigation potential are based on coarse assessments of both agricultural extent and aboveground carbon density. Here we combine 30 meter resolution global maps of aboveground woody carbon, tree cover, and cropland extent, as well as a 1 km resolution map of global pasture land, to estimate the current and potential carbon storage of trees in nonforested portions of agricultural lands. We find that global croplands currently store 3.07 Pg of carbon (C) in aboveground woody biomass (i.e., trees) and pasture lands account for an additional 3.86 Pg C across a combined 3.76 billion ha. We then estimate the climate mitigation potential of multiple scenarios of integration and avoided loss of trees in crop and pasture lands based on region-specific biomass distributions. We evaluate our findings in the context of nationally determined contributions and find that the majority of potential carbon storage from integration and avoided loss of trees in crop and pasture lands is in countries that do not identify agroforestry as a climate mitigation technique.
机译:虽然提高了农业景观的管理被推广为有希望的自然气候解决方案,但可测量潜力的可用估计基于对农业范围和地上碳密度的粗略评估。在这里,我们将30米分辨率的全球地图结合在一起的地上木质碳,树木覆盖,树木覆盖范围,以及全球牧场地图的1公里分辨率地图,估计了农业土地的非持久部分树木的当前和潜在的碳储存。我们发现全球农作物目前在地上木质生物量(即,树木)和牧场占地上的3.07百张碳(C)占额外3.86亿公顷的牧场。然后,我们估计了基于地区特异性生物量分布的作物和牧场地区的多种情景的气候缓解潜力。我们在国家确定的贡献的背景下评估了我们的调查结果,并发现大多数潜在的碳储存来自整合和避免在作物和牧场的土地中的树木丧失的国家是不识别农林遗传学作为气候缓解技术的国家。

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