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Anthropogenic iron oxide aerosols enhance atmospheric heating

机译:人为氧化铁气溶胶增强大气加热

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摘要

Combustion-induced carbonaceous aerosols, particularly black carbon (BC) and brown carbon (BrC), have been largely considered as the only significant anthropogenic contributors to shortwave atmospheric heating. Natural iron oxide (FeOx) has been recognized as an important contributor, but the potential contribution of anthropogenic FeOx is unknown. In this study, we quantify the abundance of FeOx over East Asia through aircraft measurements using a modified single-particle soot photometer. The majority of airborne FeOx particles in the continental outflows are of anthropogenic origin in the form of aggregated magnetite nanoparticles. The shortwave absorbing powers (Pabs) attributable to FeOx and to BC are calculated on the basis of their size-resolved mass concentrations and the mean Pabs(FeOx)/Pabs(BC) ratio in the continental outflows is estimated to be at least 4–7%. We demonstrate that in addition to carbonaceous aerosols the aggregate of magnetite nanoparticles is a significant anthropogenic contributor to shortwave atmospheric heating.
机译:燃烧诱导的碳质气溶胶,特别是黑碳(BC)和褐碳(BrC),已被广泛认为是短波大气加热的唯一重要人为因素。天然氧化铁(FeOx)被认为是重要的贡献者,但人为生成的FeOx的潜在贡献尚不清楚。在这项研究中,我们通过使用改良的单颗粒碳烟光度计进行飞机测量,量化了整个东亚地区的FeOx含量。大陆流出物中大多数的机载FeOx颗粒都是人为来源的,其形式为聚集的磁铁矿纳米颗粒。由FeOx和BC引起的短波吸收功率(Pabs)是根据其大小分辨的质量浓度计算得出的,大陆流出的平均Pabs(FeOx)/ Pabs(BC)比估计至少为4– 7%。我们证明,除了碳质气溶胶以外,磁铁矿纳米粒子的聚集体是短波大气加热的重要人为贡献者。

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