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Natural sea-salt emissions moderate the climate forcing of anthropogenic nitrate

机译:天然海盐排放中度人为硝酸盐的气候迫使

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Natural sea-salt aerosols, when interacting with anthropogenic emissions, can enhance the formation of particulate nitrate. This enhancement has been suggested to increase the direct radiative forcing of nitrate, called the “mass-enhancement effect”. Through a size-resolved dynamic mass transfer modeling approach, we show that interactions with sea salt shift the nitrate from sub- to super-micron-sized particles (“redistribution effect”), and hence this lowers its efficiency for light extinction and reduces its lifetime. The redistribution effect overwhelms the mass-enhancement effect and significantly moderates nitrate cooling; e.g., the nitrate-associated aerosol optical depth can be reduced by 10%–20% over European polluted regions during a typical sea-salt event, in contrast to an increase by ~10% when only accounting for the mass-enhancement effect. Global model simulations indicate significant redistribution over coastal and offshore regions worldwide. Our study suggests a strong buffering by natural sea-salt aerosols that reduces the climate forcing of anthropogenic nitrate, which had been expected to dominate the aerosol cooling by the end of the century. Comprehensive considerations of this redistribution effect foster better understandings of climate change and nitrogen deposition.
机译:当与人为排放相互作用时,天然海盐气溶胶可以增强颗粒硝酸盐的形成。已经提高这种增强来增加硝酸盐的直接辐射迫使,称为“质量增强效应”。通过尺寸分辨的动态传质建模方法,我们表明与海盐的相互作用将硝酸盐从子到超微微米尺寸的颗粒(“再分配效应”(“再分配效应”转变,因此这降低了其光灭火的效率并降低了其寿命。再分配效应压倒了质量增强效果,显着调节硝酸盐冷却;例如,在典型的海盐事件期间,硝酸盐相关的气溶胶光学深度可以减少10%-20%的欧洲污染区域,相反,只有在核算质量增强效果时增加〜10%。全球模型模拟表明全球沿海和海上地区的重新分配。我们的研究表明,天然海盐气溶胶的强烈缓冲,减少了人为硝酸盐的气候迫使,预计将在本世纪末占据气溶胶冷却。对这种再分配效应的综合考虑促进了对气候变化和氮沉积的更好理解。
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