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A potential large and persistent black carbon forcing over Northern Pacific inferred from satellite observations

机译:根据卫星观测推断北太平洋可能存在大量持续的黑碳强迫。

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摘要

Black carbon (BC) aerosol strongly absorbs solar radiation, which warms climate. However, accurate estimation of BC’s climate effect is limited by the uncertainties of its spatiotemporal distribution, especially over remote oceanic areas. The HIAPER Pole-to-Pole Observation (HIPPO) program from 2009 to 2011 intercepted multiple snapshots of BC profiles over Pacific in various seasons, and revealed a 2 to 5 times overestimate of BC by current global models. In this study, we compared the measurements from aircraft campaigns and satellites, and found a robust association between BC concentrations and satellite-retrieved CO, tropospheric NO2, and aerosol optical depth (AOD) (R2 > 0.8). This establishes a basis to construct a satellite-based column BC approximation (sBC*) over remote oceans. The inferred sBC* shows that Asian outflows in spring bring much more BC aerosols to the mid-Pacific than those occurring in other seasons. In addition, inter-annual variability of sBC* is seen over the Northern Pacific, with abundances varying consistently with the springtime Pacific/North American (PNA) index. Our sBC* dataset infers a widespread overestimation of BC loadings and BC Direct Radiative Forcing by current models over North Pacific, which further suggests that large uncertainties exist on aerosol-climate interactions over other remote oceanic areas beyond Pacific.
机译:炭黑(BC)气溶胶强烈吸收太阳辐射,从而温暖了气候。但是,准确估算卑诗省的气候影响受到其时空分布的不确定性的限制,尤其是在偏远的海洋地区。从2009年到2011年的HIAPER极点观测(HIPPO)计划在不同季节截获了太平洋上BC剖面的多个快照,并揭示了当前全球模型的BC高估2至5倍。在这项研究中,我们比较了飞机战役和卫星的测量结果,发现BC浓度与卫星satellite回的CO,对流层NO2和气溶胶光学深度(AOD)之间存在强相关性(R 2

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