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Source apportionment of circum-Arctic atmospheric black carbon from isotopes and modeling

机译:同位素对北极-北极大气中黑碳的物源分配

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Black carbon (BC) contributes to Arctic climate warming, yet source attributions are inaccurate due to lacking observational constraints and uncertainties in emission inventories. Year-round, isotope-constrained observations reveal strong seasonal variations in BC sources with a consistent and synchronous pattern at all Arctic sites. These sources were dominated by emissions from fossil fuel combustion in the winter and by biomass burning in the summer. The annual mean source of BC to the circum-Arctic was 39 ± 10% from biomass burning. Comparison of transport-model predictions with the observations showed good agreement for BC concentrations, with larger discrepancies for (fossil/biomass burning) sources. The accuracy of simulated BC concentration, but not of origin, points to misallocations of emissions in the emission inventories. The consistency in seasonal source contributions of BC throughout the Arctic provides strong justification for targeted emission reductions to limit the impact of BC on climate warming in the Arctic and beyond.
机译:黑碳(BC)助长了北极的气候变暖,但由于缺乏观测限制和排放清单的不确定性,导致来源归因不准确。全年的同位素约束观测表明,在所有北极地区,BC源的季节性变化都很大,且具有一致且同步的模式。这些来源主要是冬季化石燃料燃烧产生的排放和夏季生物质燃烧产生的排放。来自生物质燃烧的BC到北极圈的年平均来源为39±10%。运输模型预测值与观测值的比较显示,BC浓度具有很好的一致性,(化石/生物质燃烧)源的差异更大。模拟的BC浓度(而不是起源)的准确性表明排放清单中排放的分配不正确。在整个北极地区,卑诗省季节性资源贡献的一致性为有针对性的减排提供了强有力的理由,以限制卑诗省对北极及其以外地区气候变暖的影响。

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