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Latitudinal and vertical distribution of bromine monoxide in the lower stratosphere from Scanning Imaging Absorption Spectrometer for Atmospheric Chartography limb scattering measurements

机译:扫描成像吸收光谱仪在大气平线图肢体散射测量中平流层下部一氧化溴的纵横分布

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摘要

Vertical profiles of stratospheric bromine monoxide (BrO) in the 15–30 km range are retrieved from SCIAMACHY limb scatter data over the globe. First validation comparisons with the balloon-borne SAOZ-BrO and LPMA/DOAS instruments indicate retrieval biases of ?20% or less. Propagated spectral fitting uncertainties lead to a precision approaching ?25% on a 2 km grid at 25 km. This worsens at higher altitudes because of reduced signal and at lower altitudes because of the reduced penetrability of the atmosphere. In terms of volume mixing ratio (VMR), the single profile precision increases from ?4 pptv at 17 km to ?8 pptv at 27 km. Repeatability, an alternative indicator of precision, is 2–3 pptv for SCIAMACHY retrievals and independent of altitude. The BrO stratospheric number density peak generally lies 5 ± 2 km above the tropopause. In the tropics, the stratospheric BrO VMR generally increases with increasing altitude. The observed stratospheric BrO global distribution is generally consistent with previous balloon measurements but does not agree well with results of a model that uses Bry inferred only from the observed breakdown of long-lived bromoalkanes (i.e., methyl bromide and halons). We find best agreement with the observed vertical and latitudinal distribution of BrO for model results that include an 8.4 ± 2 pptv contribution to stratospheric Bry, most of which is expected from the breakdown of VSL (very short lived) bromocarbons, in addition to the ?16 pptv contribution from longer-lived sources. This suggests that stratospheric Bry exceeds 20 pptv. Profiles of Bry profiles derived from the balloon measurements of BrO also suggest Bry is in excess of 20 pptv, but the uncertainty and variability of these results do not allow us to definitively rule out this concentration. We find typical BrO VMRs of ?4 pptv at 15 km in the tropical tropopause layer, suggesting that a significant portion of the bromine from VSL bromoalkane sources may be carried across the tropopause in the form of inorganic decomposition products. We discuss a variety of VSL bromocarbons species that may be contributing to the elevated concentrations of stratospheric BrO.
机译:从SCIAMACHY全球各地的肢体散布数据中可以检索到15-30 km范围内的平流层一氧化溴(BrO)的垂直剖面。与气球式SAOZ-BrO和LPMA / DOAS仪器的首次验证比较表明,检索偏差小于或等于20%。传播的频谱拟合不确定性导致在25 km的2 km网格上精度接近25%。由于信号降低,在较高的高度上情况恶化,而由于大气的渗透性降低,在较低的情况下情况恶化。就体积混合比(VMR)而言,单轮廓精度从17 km时的?4 pptv增加到27 km时的?8 pptv。重复性是精度的替代指标,对于SCIAMACHY检索而言,精度为2-3 pptv,并且与海拔高度无关。 BrO平流层数密度峰值通常位于对流层顶上方5±2 km。在热带地区,平流层BrO VMR通常随高度的增加而增加。观测到的平流层BrO总体分布通常与先前的球囊测量结果一致,但与仅使用Bry的模型结果相吻合,该模型仅从观测到的长寿命溴代烷烃(即甲基溴和哈龙)的分解中推断出来。对于模型结果,我们发现与观测到的BrO的垂直和纬度分布最为吻合,该模型结果包括对平流层Bry的贡献为8.4±2 pptv,其中大部分期望来自VSL(极短寿命)溴碳的分解。寿命更长的来源贡献了16 pptv。这表明平流层Bry超过20 pptv。从BrO的球囊测量得出的Bry谱图也表明Bry超过20 pptv,但是这些结果的不确定性和可变性使我们无法确切地排除这一浓度。我们在热带对流层顶层15 km处发现典型的BrO VMR≥4 pptv,这表明来自VSL溴烷来源的大部分溴可能以无机分解产物的形式穿过对流层顶。我们讨论了可能导致平流层BrO浓度升高的多种VSL溴碳化合物。

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