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Acetylene C2H 2 retrievals from MIPAS data and regions of enhanced upper tropospheric concentrations in August 2003

机译:乙炔C2H 2 2003年8月的MIPA数据和增强的上部对流层浓度的地区检索

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Acetylene (C2H2) volume mixing ratios (VMRs) have been successfully retrieved from the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) Level 1B radiances during August 2003, providing the first global map of such data and ratios to CO in the literature. The data presented here contain most information between 300 hPa and 100 hPa with systematic errors less than 10% at the upper levels. Random errors per point are less than 15% at lower levels and are closer to 30% at 100 hPa. Global distributions of the C2H2 and C2H2/CO ratio confirm significant features associated with both the Asian monsoon anticyclone and biomass burning for this important hydrocarbon in a characteristic summer month (August 2003), showing tight correlations regionally, particularly at lower to medium values, but globally emphasising the differences between sources and lifetimes of CO and C2H2. The correlations are seen to be particularly disturbed in the regions of highest C2H2 concentrations, indicating variability in the surface emissions or fast processing. A strong isolation of C2H2 within the Asian monsoon anticyclone is observed, evidencing convective transport into the upper troposphere, horizontal advection within the anticyclone at 200 hPa, distinct gradients at the westward edge of the vortex and formation of a secondary dynamical feature from the eastward extension of the anticyclone outflow over the Asian Pacific. Ratios of C2H2/CO are consistent with the evidence from the cross-sections that the C2H2 is uplifted rapidly in convection. Observations are presented of enhanced C2H2 associated with the injection from biomass burning into the upper troposphere and the outflow from Africa at 200 hPa into both the Atlantic and Indian Oceans. In the biomass burning regions, C2H2 and CO are well correlated, but the uplift is less marked and peaks at lower altitudes compared to the strong effects observed in the Asian monsoon anticyclone. Ratios of C2H2/CO clearly decay along transport pathways for the outflow, indicating photochemical ageing of the plumes. Overall, the data show the distinctive nature of C2H2 distributions, confirm in greater detail than previously possible features of hydrocarbon enhancements in the upper troposphere and highlight the future use of MIPAS hydrocarbon data for testing model transport and OH decay regimes in the middle to upper troposphere.
机译:乙炔(C2H2)体积混合比(VMRS)已经从2003年8月的被动大气探测(MIPAS)级别1B辐射的Michelson干涉仪已成功检索,提供了在文献中的这种数据和比率的第一个全球地图。这里呈现的数据包含300 HPA和100​​ HPA之间的大多数信息,系统误差在上层小于10%。每点随机误差低于15%,较低水平,在100 HPA时更接近30%。 C2H2和C2H2 / CO比的全局分布证实了与亚洲季风抗气旋和生物量在特征夏季(2003年8月)中这一重要烃的亚洲季风抗气旋和生物质燃烧相关的显着特征,显示出区间的紧密相关性,特别是低至中等值,但在全球范围内强调CO和C2H2的来源和寿命之间的差异。在最高C2H2浓度的区域中,相关性被认为在最高C2H2浓度的区域中特别干扰,表明表面排放或快速加工的可变性。观察到亚洲季风抗岩内的C2H2的强烈分离,证明对对流层的对流转运,在200 HPA的200 HPA内,在涡旋的西部边缘处的不同梯度和从东扩形成的二次动态特征的梯度横向转移在亚太地区的反气旋流出。 C2H2 / CO的比率与来自横截面的证据一致,即C2H2在对流中迅速提升。将观察结果提出,从生物质燃烧到上层对流层中的生物质和200 HPA的流出,呈现出与注射的增强的C2H2呈现给大西洋和印度海洋。在生物质燃烧区域中,C2H2和CO具有很好的相关性,但与亚洲季风抗岩酮中观察到的强烈效应相比,隆起的较低较低的峰值较低。 C2H2 / CO的比率清楚地沿流出的运输途径衰减,表明羽毛的光化学老化。总的来说,数据显示了C2H2分布的独特性,比上述对流层中的先前可能的碳氢化合物增强功能更详细地确认,并突出了MIPAS碳氢化合物数据的未来使用,以测试模型运输和中间到上层中间到上层对流层的俄亥俄州腐烂制度。

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