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Global Sequestration Potential of Increased Organic Carbon in Cropland Soils

机译:农田土壤中有机碳增加的全球封存潜力

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The role of soil organic carbon in global carbon cycles is receiving increasing attention both as a potentially large and uncertain source of CO2 emissions in response to predicted global temperature rises, and as a natural sink for carbon able to reduce atmospheric CO2. There is general agreement that the technical potential for sequestration of carbon in soil is significant, and some consensus on the magnitude of that potential. Croplands worldwide could sequester between 0.90 and 1.85 Pg C/yr, i.e. 26–53% of the target of the “4p1000 Initiative: Soils for Food Security and Climate”. The importance of intensively cultivated regions such as North America, Europe, India and intensively cultivated areas in Africa, such as Ethiopia, is highlighted. Soil carbon sequestration and the conservation of existing soil carbon stocks, given its multiple benefits including improved food production, is an important mitigation pathway to achieve the less than 2?°C global target of the Paris Climate Agreement.
机译:土壤有机碳在全球碳循环中的作用正受到越来越多的关注,这既是潜在的大量不确定的CO2排放源,是对全球气温上升的预期响应,又是能够减少大气中CO2的天然碳汇。人们普遍认为,固碳在土壤中的技术潜力是巨大的,并且对该潜力的大小也有一些共识。全世界的农田每年可封存0.90至1.85 Pg C /年,即“ 4p1000倡议:土壤为粮食安全和气候”目标的26-53%。强调了诸如北美,欧洲,印度等集约化种植区以及埃塞俄比亚等非洲集约化种植区的重要性。考虑到固碳和保护现有土壤碳储量的多重好处,包括改善粮食生产,这是实现《巴黎气候协定》低于2摄氏度的全球目标的重要缓解途径。

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