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Connecting marine productivity to sea-spray via nanoscale biological processes: Phytoplankton Dance or Death Disco?

机译:通过纳米生物过程将海洋生产力与海洋喷雾联系起来:浮游植物舞蹈或迪斯科舞厅?

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Bursting bubbles at the ocean-surface produce airborne salt-water spray-droplets, in turn, forming climate-cooling marine haze and cloud layers. The reflectance and ultimate cooling effect of these layers is determined by the spray’s water-uptake properties that are modified through entrainment of ocean-surface organic matter ( OM ) into the airborne droplets. We present new results illustrating a clear dependence of OM mass-fraction enrichment in sea spray ( OM ss ) on both phytoplankton-biomass, determined from Chlorophyll-a ( Chl-a ) and Net Primary Productivity ( NPP ). The correlation coefficient for OM ss as a function of Chl-a increased form 0.67 on a daily timescale to 0.85 on a monthly timescale. An even stronger correlation was found as a function of NPP , increasing to 0.93 on a monthly timescale. We suggest the observed dependence is through the demise of the bloom, driven by nanoscale biological processes (such as viral infections), releasing large quantities of transferable OM comprising cell debris, exudates and other colloidal materials. This OM , through aggregation processes, leads to enrichment in sea-spray, thus demonstrating an important coupling between biologically-driven plankton bloom termination, marine productivity and sea-spray modification with potentially significant climate impacts.
机译:海洋表面的气泡破裂会产生空气中的盐水喷雾滴,进而形成气候凉爽的海洋雾霾和云层。这些层的反射率和最终的冷却效果取决于喷雾的吸水特性,该特性通过将海洋表面有机物(OM)夹带到空气中的液滴中而得以改变。我们提出了新的结果,说明海洋喷雾中的OM质量分数富集(OM ss )对浮游植物生物量的明确依赖性,这取决于叶绿素a(Chl-a)和净初级生产力(NPP) )。 OM ss 作为Chl-a的函数的相关系数在每日时间尺度上从0.67增加到每月时间尺度上的0.85。发现与NPP的函数关系更强,在每月时间尺度上增加到0.93。我们建议观察到的依赖性是由于绽放的消亡,是由纳米级生物过程(例如病毒感染)驱动的,释放了大量包含细胞碎片,渗出液和其他胶体材料的可转移OM。该OM通过聚集过程导致海喷雾的富集,从而证明了生物驱动的浮游生物花粉终止,海洋生产力和对海喷雾的修饰之间的重要耦合,并可能对气候产生重大影响。

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