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The contribution of natural and anthropogenic very short-lived species to stratospheric bromine

机译:天然和人为的非常短的物种对平坦溴的贡献

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We have used a global three-dimensional chemical transport model to quantify the impact of the very short-lived substances (VSLS) CHBr3, CH2Br2, CHBr2Cl, CHBrCl2, CH2BrCl and C2H5-Br on the bromine budget of the stratosphere. Atmospheric observations of these gases allow constraints on surface mixing ratios that, when incorporated into our model, contribute ~4.9–5.2 parts per trillion (ppt) of inorganic bromine (Bry) to the stratosphere. Of this total, ~76 % comes from naturally-emitted CHBr3 and CH2Br2. The remaining species individually contribute modest amounts. However, their accumulated total accounts for up to ~1.2 ppt of the supply and thus should not be ignored. We have compared modelled tropical profiles of a range of VSLS with observations from the recent 2009 NSF HIPPO-1 aircraft campaign. Modelled profiles agree reasonably well with observations from the surface to the lower tropical tropopause layer. We have also considered the poorly studied anthropogenic VSLS, C2H5Br, CH2BrCH2Br, n-C3H7Br and i-C3H7Br. We find the local atmospheric lifetime of these species in the tropical tropopause layer are ~183, 603, 39 and 49 days, respectively. These species, particularly C2H5Br and CH2BrCH2Br, would thus be important carriers of bromine to the stratosphere if emissions were to increase substantially. Our model shows ~70–73 % and ~80–85 % of bromine from these species in the tropical boundary layer can reach the lower stratosphere.
机译:我们使用了全球三维化学传输模型来量化非常短寿命的物质(VSL)CHBR3,CH2BR2,CHBR2CL,CHBRCL2,CH2BRCL和C2H5-BR对平流层的溴预算的影响。这些气体的大气观察允许对表面混合比的限制,当纳入我们的模型时,将〜4.9-5.2份每万亿(PPT)贡献到平流层中的4.9-5.2份(PPT)。其中,〜76%来自自然发出的CHBR3和CH2BR2。其余物种单独贡献适度的金额。但是,他们的累计总占供应的〜2.2个PPT,因此不容忽视。我们将一系列VSL的建模热带配置文件与最近的2009年NSF HIPPO-1飞机活动的观测进行了比较了一系列的VSL。建模型材与从表面到下热带对流层层层的观察结果相当好。我们还考虑了学习的人为VSL,C2H5BR,CH2BRCH2BR,N-C3H7BR和I-C3H7BR。我们在热带对象层层中发现了这些物种的本地大气寿命分别是〜183,603,39和49天。因此,如果发射大幅增加,则这些物种,特别是C2H5BR和CH2BRCH 2BR的重要载体对平流层的溴载体。我们的模型显示在热带边界层中的这些物种中〜80-73%和〜80-85%的溴可达到较低的平流层。

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