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首页> 外文期刊>Atmospheric chemistry and physics >Evaluating BC and NOx emission inventories for the Paris region from MEGAPOLI aircraft measurements
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Evaluating BC and NOx emission inventories for the Paris region from MEGAPOLI aircraft measurements

机译:通过MEGAPOLI飞机测量评估巴黎地区的BC和NOx排放清单

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摘要

High uncertainties affect black carbon (BC) emissions, and, despite its important impact on air pollution and climate, very few BC emissions evaluations are found in the literature. This paper presents a novel approach, based on airborne measurements across the Paris, France, plume, developed in order to evaluate BC and NOx emissions at the scale of a whole agglomeration. The methodology consists in integrating, for each transect, across the plume observed and simulated concentrations above background. This allows for several error sources (e.g., representativeness, chemistry, plume lateral dispersion) to be minimized in the model used. The procedure is applied with the CHIMERE chemistry-transport model to three inventories - the EMEP inventory and the so-called TNO and TNO-MP inventories - over the month of July 2009. Various systematic uncertainty sources both in the model (e.g., boundary layer height, vertical mixing, deposition) and in observations (e.g., BC nature) are discussed and quantified, notably through sensitivity tests. Large uncertainty values are determined in our results, which limits the usefulness of the method to rather strongly erroneous emission inventories. A statistically significant (but moderate) overestimation is obtained for the TNO BC emissions and the EMEP and TNO-MP NOx emissions, as well as for the BC/NOx emission ratio in TNO-MP. The benefit of the airborne approach is discussed through a comparison with the BC/NOx ratio at a ground site in Paris, which additionally suggests a spatially heterogeneous error in BC emissions over the agglomeration.
机译:高度不确定性影响黑碳(BC)排放,尽管其对空气污染和气候有重要影响,但文献中很少发现BC排放评估。本文提出了一种新颖的方法,该方法是基于整个法国巴黎羽流的空中测量结果而开发的,目的是评估整个集聚规模的BC和NOx排放量。该方法包括针对每个样条,对观察到的羽流和高于背景的模拟浓度进行积分。这允许在所使用的模型中使几个误差源(例如,代表性,化学性,羽流横向分散)最小化。该程序与CHIMERE化学传输模型一起应用于2009年7月的三个清单-EMEP清单以及所谓的TNO和TNO-MP清单。模型中都有各种系统不确定性源(例如边界层)高度,垂直混合,沉积)和观测结果(例如BC性质)进行了讨论和量化,特别是通过敏感性测试。我们的结果确定了较大的不确定性值,这将方法的实用性限制在非常错误的排放清单中。对于TNO-BC排放,EMEP和TNO-MP NOx排放以及TNO-MP中的BC / NOx排放比,获得了统计学上显着(但中等)的高估。通过与巴黎地面站点的BC / NOx比值进行比较,讨论了机载方法的好处,这还表明了整个集散中BC排放的空间异质性误差。

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