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Transport of short-lived halocarbons to the stratosphere over the Pacific Ocean

机译:在太平洋的平流层上运送短寿命的卤素质

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The effectiveness of transport of short-lived halocarbons to the upper troposphere and lower stratosphere remains an important uncertainty in quantifying the supply of ozone-depleting substances to the stratosphere. In early 2014, a major field campaign in Guam in the western Pacific, involving UK and US research aircraft, sampled the tropical troposphere and lower stratosphere. The resulting measurements of CH3I, CHBr3 and CH2Br2 are compared here with calculations from a Lagrangian model. This methodology benefits from an updated convection scheme that improves simulation of the effect of deep convective motions on particle distribution within the tropical troposphere. We find that the observed CH3I, CHBr3 and CH2Br2 mixing ratios in the tropical tropopause layer (TTL) are consistent with those in the boundary layer when the new convection scheme is used to account for convective transport. More specifically, comparisons between modelled estimates and observations of short-lived CH3I indicate that the updated convection scheme is realistic up to the lower TTL but is less good at reproducing the small number of extreme convective events in the upper TTL. This study consolidates our understanding of the transport of short-lived halocarbons to the upper troposphere and lower stratosphere by using improved model calculations to confirm consistency between observations in the boundary layer, observations in the TTL and atmospheric transport processes. Our results support recent estimates of the contribution of short-lived bromocarbons to the stratospheric bromine budget.
机译:短期卤碳运输到上层对流层和较低平流层的有效性仍然是量化臭氧消耗物质对平流层的影响的重要不确定性。 2014年初,西太平洋的关岛主要野外活动,涉及英国和美国研究飞机,采样热带对流层和较低的平流层。在这里与拉格朗日模型的计算比较CH3I,CHBR3和CH2BR2的所得测量。该方法从更新的对流方案中受益,这提高了深对流运动对热带对流层内颗粒分布的影响的模拟。我们发现,当使用新的对流方案用于考虑对流运输时,热带对流层层(TTL)中观察到的CH3I,CHBR3和CH2BR2混合比与边界层中的那些一致。更具体地,建模估计和短寿命CH3i观察的比较表明更新的对流方案是逼真的,直到较低的TTL,但在再现上TTL中的少量极端对流事件时不太擅长。本研究通过利用改进的模型计算,通过改进的模型计算使我们对较高卤碳运输到上层对流层和较低平流层的理解,以确认在边界层中的观察结果之间的一致性,TTL和大气输送过程中的观察结果。我们的研究结果支持最近对短期溴碳烹调对地流层溴预算的贡献估计。

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    《Nature reviews Cancer》 |2020年第2期|共19页
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  • 正文语种 eng
  • 中图分类 肿瘤学;
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  • 入库时间 2022-08-19 17:30:32

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