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Mapping Asian anthropogenic emissions of non-methane volatile organic compounds to multiple chemical mechanisms

机译:将非甲烷挥发性有机化合物的亚洲人为排放映射到多种化学机制

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An accurate speciation mapping of non-methane volatile organic compounds (NMVOC) emissions has an important impact on the performance of chemical transport models (CTMs) in simulating ozone mixing ratios and secondary organic aerosols. Taking the INTEX-B Asian NMVOC emission inventory as the case, we developed an improved speciation framework to generate model-ready anthropogenic NMVOC emissions for various gas-phase chemical mechanisms commonly used in CTMs in this work, by using an explicit assignment approach and updated NMVOC profiles. NMVOC profiles were selected and aggregated from a wide range of new measurements and the SPECIATE database v.4.2. To reduce potential uncertainty from individual measurements, composite profiles were developed by grouping and averaging source profiles from the same category. The fractions of oxygenated volatile organic compounds (OVOC) were corrected during the compositing process for those profiles which used improper sampling and analyzing methods. Emissions of individual species were then lumped into species in different chemical mechanisms used in CTMs by applying mechanism-dependent species mapping tables, which overcomes the weakness of inaccurate mapping in previous studies. Emission estimates for individual NMVOC species differ between one and three orders of magnitude for some species when different sets of profiles are used, indicating that source profile is the most important source of uncertainties of individual species emissions. However, those differences are diminished in lumped species as a result of the lumping in the chemical mechanisms. Gridded emissions for eight chemical mechanisms at 30 min × 30 min resolution as well as the auxiliary data are available at http://mic.greenresource.cn/intex-b2006. The framework proposed in this work can be also used to develop speciated NMVOC emissions for other regions.
机译:非甲烷挥发性有机化合物(NMVOC)排放的精确的物质定位对模拟臭氧混合比和二次有机气溶胶的化学输送模型(CTMS)的性能具有重要影响。考虑到Intex-B亚洲NMVOC排放库存,我们开发了一种改进的物种框架,通过使用明确的分配方法并更新,为CTMS中常用的各种气相化学机制产生模型就绪的人体化型NMVOC排放NMVOC档案。从各种新测量和Speciation Database V.4.2中选择并汇总了NMVOC型材。为了降低各个测量的潜在不确定性,通过从相同类别分组和平均源配置文件来开发复合型材。在使用不当采样和分析方法的那些型材的合成过程中校正了含氧挥发性有机化合物(OVOC)的级分。然后,通过施加机制依赖性物种映射表,将个体物种的排放量集中在CTMS中使用的不同化学机制中,这克服了先前研究中的不准确测绘的弱点。当使用不同的曲线时,各种NMVOC物种的排放估计在使用不同的曲线时为某些物种的一个和三个数量级之间的差异,表明源简档是个体物种排放的最重要的不确定性来源。然而,由于化学机制中的局部,这些差异在集失的物种中减少。在30分钟×30分钟的分辨率和辅助数据以及辅助数据提供网格排放,以及辅助数据可在http://mic.greenresource.cn/intex-b2006获得。本工作所提出的框架也可以用于为其他地区制定规范的NMVOC排放。

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