Lightning declines over shipping lanes following regulation of fuel sulfur emissions

Chris J. Wright, Joel A. Thornton, Lyatt Jaeglé, Yang Cao, Yannian Zhu, Jihu Liu, Randall Jones II, Robert H Holzworth, Daniel Rosenfeld, Robert Wood, Peter Blossey, Daehyun Kim
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Abstract

Aerosol interactions with clouds represent a significant uncertainty in our understanding of the Earth system. Deep convective clouds may respond to aerosol perturbations in several ways that have proven difficult to elucidate with observations. Here, we leverage the two busiest maritime shipping lanes in the world, which emit aerosol particles and their precursors into an otherwise relatively clean tropical marine boundary layer, to make headway on the influence of aerosol on deep convective clouds. The recent seven-fold change in allowable fuel sulfur by the International Maritime Organization allows us to test the sensitivity of the lightning to changes in ship plume aerosol size distributions. We find that, across a range of atmospheric thermodynamic conditions, the previously documented enhancement of lightning over the shipping lanes has fallen by over 40\%. The enhancement is therefore at least partially aerosol-mediated, a conclusion that is supported by observations of droplet number at cloud base, which show a similar decline over the shipping lane. These results have fundamental implications for our understanding of aerosol-cloud interactions, suggesting that deep convective clouds are impacted by the aerosol number distribution in the remote marine environment.
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燃料硫排放法规实施后航道上空闪电减少
气溶胶与云的相互作用是我们了解地球系统过程中的一个重大不确定因素。深层对流云可能会以多种方式对气溶胶扰动做出反应,而这些方式已被证明很难通过观测来阐明。在这里,我们利用世界上最繁忙的两条海上航道--它们将气溶胶粒子及其前体排放到其他相对清洁的热带海洋边界层--在气溶胶对深对流云的影响方面取得了进展。国际海事组织最近将允许的燃料硫含量提高了七倍,这使我们能够测试闪电对船舶羽流气溶胶大小分布变化的敏感性。我们发现,在一系列大气热力学条件下,之前记录的航道上空闪电增强下降了 40% 以上。因此,闪电的增强至少部分是由气溶胶介导的,这一结论得到了云基水滴数观测结果的支持,云基水滴数在航道上空也出现了类似的下降。这些结果对我们理解气溶胶与云的相互作用具有根本性的影响,表明深对流云受到远洋环境中气溶胶数量分布的影响。
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