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首页> 外文期刊>Journal of the air & waste management association >A Combined Approach for the Evaluation of a Volatile Organic Compound Emissions Inventory
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A Combined Approach for the Evaluation of a Volatile Organic Compound Emissions Inventory

机译:评估挥发性有机化合物排放清单的综合方法

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摘要

Emissions inventories significantly affect photochemical air quality model performance and the development of effective control strategies. However, there have been very few studies to evaluate their accuracy. Here, to evaluate a volatile organic compound (VOC) emissions inventory, we implemented a combined approach: comparing the ratios of carbon bond (CB)-Ⅳ VOC groups to nitrogen oxides (NO_x) or carbon monoxide (CO) using an emission preprocessing model, comparing the ratios of VOC source contributions from a source apportionment technique to NO_x or CO, and comparing ratios of CB-Ⅳ VOC groups to NO_x or CO and the absolute concentrations of CB-Ⅳ VOC groups using an air quality model, with the corresponding ratios and concentrations observed at three sites (Maryland, Washington, DC, and New Jersey). The comparisons of the ethene/NO_x ratio, the xylene group (XYL)/NO_x ratio, and ethene and XYL concentrations between estimates and measurements showed some differences, depending on the comparison approach, at the Maryland and Washington, DC sites. On the other hand, consistent results at the New Jersey site were observed, implying a possible overestimation of vehicle exhaust. However, in the case of the toluene group (TOL), which is emitted mainly from surface coating and printing sources in the solvent utilization category, the ratios of TOL/ NO_x or CO, as well as the absolute concentrations revealed an overestimate of these solvent sources by a factor of 1.5 to 3 at all three sites. In addition, the overestimate of these solvent sources agreed with the comparisons of surface coating and printing source contributions relative to NO_x from a source apportionment technique to the corresponding value of estimates at the Maryland site. Other studies have also suggested an overestimate of solvent sources, implying a possibility of inaccurate emission factors in estimating VOC emissions from surface coating and printing sources. We tested the impact of these overestimates with a chemical transport model and found little change in ozone but substantial changes in calculated secondary organic aerosol concentrations.
机译:排放清单显着影响光化学空气质量模型的性能和有效控制策略的发展。但是,很少有研究来评估其准确性。在这里,为了评估挥发性有机化合物(VOC)的排放清单,我们采用了一种组合方法:使用排放预处理模型比较碳键(CB)-ⅣVOC基团与氮氧化物(NO_x)或一氧化碳(CO)的比率,使用空气质量模型比较源分配技术对VOC的贡献量与NO_x或​​CO的比率,并比较CB-ⅣVOC组与NO_x或​​CO的比率以及CB-ⅣVOC组的绝对浓度,在三个地点(马里兰州,华盛顿特区和新泽西州)观察到的比率和浓度。估计值和测量值之间的乙烯/ NO_x比率,二甲苯基(XYL)/ NO_x比率以及乙烯和XYL浓度的比较根据马里兰州和华盛顿特区的站点显示出一些差异。另一方面,在新泽西州的站点观察到一致的结果,这意味着可能会高估车辆的排气量。但是,对于主要从溶剂利用类别中的表面涂料和印刷来源发出的甲苯基(TOL),TOL / NO_x或​​CO的比率以及绝对浓度表明这些溶剂的估计过高在所有三个站点上的信号源的1.5到3倍。此外,这些溶剂来源的高估与表面涂料和印刷来源相对于来源分摊技术的NO_x与马里兰州工厂的相应估计值的比较相一致。其他研究也表明溶剂来源过高,这意味着在估算表面涂料和印刷来源的VOC排放时,排放因子可能不准确。我们使用化学迁移模型测试了这些高估的影响,发现臭氧变化不大,但是计算出的次级有机气溶胶浓度却发生了实质性变化。

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