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亚洲排放物中棕色碳气溶胶的光吸收特性:日本福冈岛滤膜和地面遥感观测相结合的启示。

Light-absorption properties of brown carbon aerosols in the Asian outflow: Implications of a combination of filter and ground remote-sensing observations at Fukue Island, Japan.

机构信息

Research Institute for Global Change, Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokohama 2360001, Japan.

Research Institute for Global Change, Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokohama 2360001, Japan.

出版信息

Sci Total Environ. 2021 Nov 25;797:149155. doi: 10.1016/j.scitotenv.2021.149155. Epub 2021 Jul 20.

DOI:10.1016/j.scitotenv.2021.149155
PMID:34346377
Abstract

Brown carbon (BrC) aerosols have important warming effects on Earth's radiative forcing. However, information on the evolution of the light-absorption properties of BrC aerosols in the Asian outflow region is limited. In this study, we evaluated the light-absorption properties of BrC using in-situ filter measurements and sky radiometer observations of the ground-based remote sensing network SKYradiometer NETwork (SKYNET) made on Fukue Island, western Japan in 2018. The light-absorption coefficient of BrC obtained from filter measurements had a temporal trend similar to that of the ambient concentration of black carbon (BC), indicating that BrC and BC have common combustion sources. The absorption Angstrom exponent in the wavelength range of 340-870 nm derived from the SKYNET observations was 15% higher in spring (1.81 ± 0.30) than through the whole year (1.53 ± 0.50), suggesting that the Asian outflow carries light-absorbing aerosols to Fukue Island and the western North Pacific. After eliminating the contributions of BC, the absorption Angstrom exponent of BrC alone obtained from filter observations had a positive Spearman correlation (r = 0.77, p < 0.1) with that derived from SKYNET observations but 33% higher values, indicating that the light-absorption properties of BrC were successfully captured using the two methods. Using the atmospheric transport model FLEXPART and fire hotspots obtained from the Visible Infrared Imaging Radiometer Suite product, we identified a high-BrC event related to an air mass originating from regions with consistent fossil fuel combustion and sporadic open biomass burning in central East China. The results of the study may help to clarify the dynamics and climatic effects of BrC aerosols in East Asia.

摘要

棕色碳(BrC)气溶胶对地球辐射强迫具有重要的变暖效应。然而,亚洲流出区 BrC 气溶胶光吸收性质演变的信息有限。在这项研究中,我们使用 2018 年在日本西部福冈岛上的地基遥感网络 SKYradiometer NETwork(SKYNET)的现场滤膜测量和天空辐射计观测评估了 BrC 的光吸收特性。滤膜测量得到的 BrC 光吸收系数具有与黑碳(BC)环境浓度相似的时间趋势,表明 BrC 和 BC 具有共同的燃烧源。从 SKYNET 观测得到的 340-870nm 波长范围内的吸收 Angstrom 指数在春季(1.81 ± 0.30)比全年(1.53 ± 0.50)高 15%,表明亚洲流出物将吸光性气溶胶带到了福冈岛和西北太平洋。在消除 BC 贡献后,从滤膜观测得到的 BrC 单独的吸收 Angstrom 指数与从 SKYNET 观测得到的吸收 Angstrom 指数呈正 Spearman 相关(r = 0.77,p < 0.1),但高 33%,表明两种方法都成功地捕捉到了 BrC 的光吸收特性。使用大气输送模型 FLEXPART 和可视红外成像辐射计套件产品中的火灾热点,我们确定了一个与源自中国东部地区化石燃料燃烧一致和间歇性开放生物质燃烧地区的空气团有关的高 BrC 事件。该研究结果可能有助于阐明东亚 BrC 气溶胶的动力学和气候效应。

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