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Optical source apportionment and radiative effect of light-absorbing carbonaceous aerosols in a tropical marine monsoon climate zone: the importance of ship emissions

机译:光学源分摊和热带海洋季风气候区中光吸收碳质气溶胶的辐射效果:船舶排放的重要性

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Source-specific optical properties of light-absorbing carbonaceous (LAC) aerosols in the atmosphere are poorly understood because they are generated by various sources. In this study, a receptor model combining multi-wavelength absorption and chemical species was used to explore the source-specific optical properties of LAC aerosols in a tropical marine monsoon climate zone. The results showed that biomass burning and ship emissions were the dominant contributors to average aerosol light absorption. The source-specific absorption ?ngstr?m exponent (AAE) indicated that black carbon (BC) was the dominant LAC aerosol in ship and motor vehicle emissions. Moreover, brown carbon (BrC) was present in biomass-burning emissions. The source-specific mass absorption cross section (MAC) showed that BC from ship emissions had a stronger light-absorbing capacity compared to emissions from biomass burning and motor vehicles. The BrC MAC derived from biomass burning was also smaller than the BC MAC and was highly dependent on wavelength. Furthermore, radiative effect assessment indicated a comparable atmospheric forcing and heating capacity of LAC aerosols between biomass burning and ship emissions. This study provides insights into the optical properties of LAC aerosols from various sources. It also sheds more light on the radiative effects of LAC aerosols generated by ship emissions.
机译:气氛中的光吸收碳质(Lac)气溶胶的源特异性光学性质差不不容,因为它们由各种来源产生。在该研究中,组合多波长吸收和化学物质的受体模型用于探讨热带海洋季风气候区中Lac气溶胶的源特异性光学性质。结果表明,生物质燃烧和船舶排放是平均气溶胶光吸收的主要贡献者。源特异性的吸收?NGSTR?M代表(AAE)表明,黑碳(BC)是船舶和机动车排放中的主导Lac气溶胶。此外,棕色碳(BRC)存在于生物质燃烧的排放中。与生物量燃烧和机动车辆的排放相比,源特异性质量吸收横截面(Mac)表明,与来自生物质燃烧和机动车辆的排放相比,来自船舶排放的BC具有更强的光吸收能力。来自生物质燃烧的BRC MAC也小于BC MAC,高度依赖于波长。此外,辐射效应评估表明了生物量燃烧和船舶排放之间Lac气溶胶的相当大气压和加热能力。本研究提供了来自各种来源Lac气溶胶的光学性质的见解。它还在船舶排放产生的Lac气溶胶的辐射效果上阐明了更多的光芒。

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