首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >ON THE RELATION BETWEEN STRATOSPHERIC CHLORINE/BROMINE LOADING AND SHORT-LIVED TROPOSPHERIC SOURCE GASES
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ON THE RELATION BETWEEN STRATOSPHERIC CHLORINE/BROMINE LOADING AND SHORT-LIVED TROPOSPHERIC SOURCE GASES

机译:平流氯/溴负载与短寿命对流源气体之间的关系

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Current methods for estimating the concentrations of inorganic chlorine/bromine species (Cl-y/Br-y) in the stratosphere due to decomposition of tropospheric source gases assume that the Cl-y/Br-y concentration in the stratosphere is determined mainly by the balance between production from in situ oxidation of the source gases in the stratosphere and removal by transport of Cl-y/Br-y out of the stratosphere. The rationale being that for source gases whose lifetimes are of;he order oi several months or longer the concentration of Cl-y/Br-y in the troposphere is small because they are produced at a relatively slow rate and also removed efficiently by washout processes. As a result of the small concentration, the rate at which Cl-y/Br-y is transported to the stratosphere is expected to be small compared to the in situ stratospheric production. Thus the transport of Cl-y/Br-y from the troposphere contributes little to the stratospheric concentration. In contrast, the origin of stratospheric Cl-y/Br-y from reactive source gases with tropospheric lifetimes comparable to the washout lifetime of Cl-y/Br (of the order of 10-30 days) in the troposphere is distinctly different. The in situ source in the stratosphere is expected to be significantly smaller because only a small portion of the source gas is expected to survive the troposphere to be transported into this region. At the same time these short-lived source gases produce appreciable amounts of Cl-y/Br-y in the troposphere such that transport to the stratosphere offers a larger source for stratospheric Cl-y/Br-y than in situ production. Thus, for reactive source species, simple methods of estimating the concentration of stratospheric Cl-y/Br-y that ignore the tropospheric contribution will seriously underestimate the loading. Therefore estimation of the stratospheric Cl-y/Br-y loading requires not only measurements of tropospheric source gases but also measurements of Cl-y/Br-y at the tropopause. This paper illustrates the mechanism by using results from a two-dimensional chemistry-transport model. However, in view of the importance of tropospheric transport on stratospheric loading the detailed values should be further evaluated using a three-dimensional model with appropriate treatment of convective transport. [References: 21]
机译:估算由于对流层源气体分解而导致的平流层中无机氯/溴物种(Cl-y / Br-y)浓度的当前方法是假设平流层中的Cl-y / Br-y浓度主要取决于在平流层中源气体的原位氧化生产与通过将Cl-y / Br-y运出平流层进行清除之间的平衡。基本原理是,对于使用寿命长达数月或更长时间的源气体,对流层中Cl-y / Br-y的浓度较小,这是因为它们的产生速度相对较慢,并且还可以通过冲洗过程有效去除。由于浓度低,与原位平流层生产相比,预计Cl-y / Br-y输送到平流层的速率较小。因此,来自对流层的Cl-y / Br-y的传输对平流层浓度的贡献很小。相反,平流层Cl-y / Br-y的起源与对流层寿命与对流层Cl-y / Br的冲洗寿命(约10-30天)相当的对流层寿命不同。平流层中的原位气源预计会大大缩小,因为预计只有一小部分源气能够在对流层中幸存下来,并被输送到该区域。同时,这些短寿命的源气体在对流层中产生大量的Cl-y / Br-y,因此与平流生产相比,向平流层的传输提供了更大的平流层Cl-y / Br-y来源。因此,对于反应性源物质,忽略对流层贡献的简单估算平流层Cl-y / Br-y浓度的方法将严重低估负荷。因此,对平流层Cl-y / Br-y负荷的估算不仅需要对流层源气体的测量,还需要对流层顶对Cl-y / Br-y的测量。本文利用二维化学传输模型的结果说明了这种机理。但是,鉴于对流层运输对平流层载荷的重要性,应使用三维模型对流运输进行适当处理,进一步评估详细值。 [参考:21]

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