中观
海上浪花
海水
气溶胶
浮游植物
作文(语言)
环境化学
总有机碳
化学
颗粒有机碳
溶解有机碳
碳纤维
化学成分
海洋学
地质学
材料科学
营养物
有机化学
复合材料
哲学
复合数
语言学
作者
Daniel R. Crocker,Chathuri P. Kaluarachchi,Ruochen Cao,Julie Dinasquet,Emily B. Franklin,Clare K. Morris,Sarah Amiri,Daniel Petras,Tran B. Nguyen,Ralph R. Torres,Todd R. Martz,Francesca Malfatti,Allen H. Goldstein,Alexei V. Tivanski,Kimberly A. Prather,M. H. Thiemens
标识
DOI:10.1021/acs.est.2c02154
摘要
To elucidate the seawater biological and physicochemical factors driving differences in organic composition between supermicron and submicron sea spray aerosol (SSAsuper and SSAsub), carbon isotopic composition (δ13C) measurements were performed on size-segregated, nascent SSA collected during a phytoplankton bloom mesocosm experiment. The δ13C measurements indicate that SSAsuper contains a mixture of particulate and dissolved organic material in the bulk seawater. After phytoplankton growth, a greater amount of freshly produced carbon was observed in SSAsuper with the proportional contribution being modulated by bacterial activity, emphasizing the importance of the microbial loop in controlling the organic composition of SSAsuper. Conversely, SSAsub exhibited no apparent relationship with biological activity but tracked closely with surface tension measurements probing the topmost ∼0.2–1.5 μm of the sea surface microlayer. This probing depth is similar to a bubble's film thickness at the ocean surface, suggesting that SSAsub organic composition may be influenced by the presence of surfactants at the air–sea interface that are transferred into SSAsub by bubble bursting. Our findings illustrate the substantial impact of seawater dynamics on the pronounced organic compositional differences between SSAsuper and SSAsub and demonstrate that these two SSA populations should be considered separately when assessing their contribution to marine aerosols and climate.
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