A lack of consensus on the distributions and formation pathways of secondary organic aerosols (SOA) over oceanic regions downwind of pollution sources limits our ability to assess their climate impact globally. As a case study, we report here on water-soluble SOA components such as dicarboxylic acids, oxocarboxylic acids, and α-dicarbonyls in the continental outflows from the Indo-Gangetic Plain (IGP) and Southeast Asia (SEA) to the Bay of Bengal. Oxalic acid (C₂) is the dominant species followed by succinic (C₄) and glyoxylic acids (ωC₂) in the outflow. Nonsea-salt SO₄²⁻ also dominates (∼70%) total water-soluble inorganic constituents and correlates well with aerosol liquid water content (LWC) and C₂, indicating their production through aqueous phase photochemical reactions. Furthermore, mass ratios of dicarboxylic acids (C₂/C₄, C₂/ωC₂), and their relative abundances in water-soluble organic carbon and total organic carbon are quite similar between the two continental (IGP and SEA) outflows, indicating the formation of SOA through aqueous phase photochemical reactions in LWC-enriched aerosols, largely controlled by anthropogenic SO₄²⁻.
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Bikkina et al. (2017) studied this question.
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