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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Contribution of isoprene to chemical budgets: A model tracer study with the NCAR CTM MOZART-4
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Contribution of isoprene to chemical budgets: A model tracer study with the NCAR CTM MOZART-4

机译:异戊二烯化学预算的贡献:一个NCAR澳门电讯MOZART-4模型示踪研究

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We present a study of the sensitivity of isoprene emission calculations in a global chemistry transport model (CTM) to input land cover characteristics and analyze the impacts of changes in isoprene on the tropospheric budgets of atmospheric key species. The CTM Model for Ozone and Related Chemical Species, version 4 (MOZART-4) includes the online calculation of isoprene emissions based on the Model of Emissions of Gases and Aerosols from Nature (MEGAN), which is driven by three different land parameter inputs. We also included a tagging scheme in the CTM, which keeps track of the production of carbon containing species from isoprene oxidation. It is found that the amount of tropospheric carbon monoxide (CO), formaldehyde (HCHO) and peroxyacetylnitrate (PAN) explained by isoprene oxidation ranges from 9–16%, 15–27%, and 22–32%, depending on the isoprene emissions scenario. Changes in the global tropospheric burden with different land cover inputs can reach up to 10% for CO, 15% for HCHO, and 20% for PAN. Changes for ozone are small on a global scale, but regionally differences are as large as 3DU in the tropospheric column and as large as 5 ppbv in the surface concentrations. Our results demonstrate that a careful integration of isoprene emissions and chemistry in CTMs is very important for simulating the budgets of a number of atmospheric trace gases. We further demonstrate that the model tagging scheme has the capability of improving conventional methods of constraining isoprene emissions from space-borne HCHO column observations, especially in regions where a considerable part of the variability in the HCHO column is not related to isoprene.
机译:提出了一种研究异戊二烯的敏感性在全球排放计算化学运输模型(CTM)输入土地覆盖特点和分析的影响异戊二烯在对流层预算的变化大气的关键物种。臭氧和相关的化学物种,版本4(MOZART-4)包括在线计算异戊二烯的排放模型的基础上气体和气溶胶的排放来自大自然(梅根),它是由三个不同的土地参数输入。在中医方案,跟踪生产的含碳物种异戊二烯氧化。对流层的一氧化碳(CO),甲醛(一氧化碳)和peroxyacetylnitrate (PAN)解释为异戊二烯氧化范围从9 - 16%, 15 - 27%和22 - 32%,根据异戊二烯的排放情况。全球对流层负担不同的土地公司覆盖输入可达10%,为15%一氧化碳,锅为20%。小的在全球范围内,但是区域差异是3 du一样大对流层列和5 ppbv一样大表面浓度。小心集成的异戊二烯的排放在ctm和化学是非常重要的模拟的大气的预算痕量气体。模型标签计划的能力改善传统的约束方法异戊二烯的排放太空一氧化碳列观察,特别是在地区相当大的一部分一氧化碳的可变性列与异戊二烯。

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