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A sea-state based source function for size- and composition-resolved marine aerosol production

机译:基于海区的大小和组成分辨海洋气溶胶生产的源功能

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A parameterization for the size- and composition-resolved production fluxes of nascent marine aerosol was developed from prior experimental observations and extrapolated to ambient conditions based on estimates of air entrainment by the breaking of wind-driven ocean waves. Production of particulate organic carbon (OCaer) was parameterized based on Langmuir equilibrium-type association of organic matter to bubble plumes in seawater and resulting aerosol as constrained by measurements of aerosol produced from productive and oligotrophic seawater. This novel approach is the first to parameterize size- and composition-resolved aerosol production based on explicit evaluation of wind-driven air entrainment/detrainment fluxes and chlorophyll-a as a proxy for surfactants in surface seawater. Production fluxes were simulated globally with an eight aerosol-size-bin version of the NCAR Community Atmosphere Model (CAM v3.5.07). Simulated production fluxes fell within the range of published estimates based on observationally constrained parameterizations. Because the parameterization does not consider contributions from spume drops, the simulated global mass flux (1.5 × 103 Tg y?1) is near the lower end of published estimates. The simulated production of aerosol number (1.4 × 106 m?2 s?1) and OCaer (29 Tg C y?1) fall near the upper end of published estimates and suggest that primary marine aerosols may have greater influences on the physicochemical evolution of the troposphere, radiative transfer and climate, and associated feedbacks on the surface ocean than suggested by previous model studies.
机译:从现有的实验观察结果开发了新生海洋气溶胶的大小和组合分辨的生产助熔剂的参数化,并通过破坏海浪的破坏估计,外推到环境条件。基于Langmuir平衡型有机物质与海水中的泡沫羽泡的甘露血管平衡型和由生产性和寡糖海水产生的气溶胶测量产生的气溶胶进行参数,得到颗粒状有机物碳(OCAer)。这种新方法是首先参数化尺寸和组成解决的气溶胶生产,基于风力的空气夹带/碎片/碎片助熔剂和叶绿素-A作为表面海水中表面活性剂的代理。通过NCAR社区气氛模型的八个气溶胶尺寸-Bin版本(CAM V3.5.07),在全球模拟生产助熔剂。基于观测到约束的参数化的已发布估计范围内落入了模拟生产助条件。因为参数化不考虑烟尘液滴的贡献,所以模拟的全局质量通量(1.5×103 Tg Y.1)靠近发布估计的下端。模拟生产气溶胶数(1.4×106m?2 s?1)和ocaer(29 tg cy≤1)靠近公布估计的上端,并表明主要海洋气溶胶可能对物理化学演变产生更大的影响对流层,散热和气候,以及表面海洋的相关反馈比以前的模型研究表明。

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