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首页> 外文期刊>Atmospheric environment >Intra- And Inter-annual Variability Of Voc Emissions From Natural And Semi-natural Vegetation In Europe And Neighbouring Countries
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Intra- And Inter-annual Variability Of Voc Emissions From Natural And Semi-natural Vegetation In Europe And Neighbouring Countries

机译:欧洲和邻国天然和半天然植被的VOC排放量的年内和年际变化

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Biogenic VOC emission estimates from the earth's surface are crucial input parameters in air quality models. Knowledge accumulated in the last years about BVOC source distributions and chemical compound species emission profiles in Europe as well as the demand of air quality modellers for a finer resolution in space and time of BVOC estimates have led to the set-up of new emission modelling systems. An updated fast BVOC emission modelling platform explicitly considering the seasonality of emission potentials and leaf temperature gradients in forest canopies by the semi-empirical emission module (seBVOC) will be proposed and used for estimating hourly values of chemical compound-specific emissions in Europe (33-68° north; 10° west to 40° east) in the years 1997, 2000, 2001, and 2003. Spatial resolution will be 10 km by 10 km. The database used contains latest land and forest distributions, updated foliar biomass densities, leaf area indices (LAI), and plant as well as chemical compound-specific emission potentials, if available. Meteorological input parameters for the respective years will be generated using the non-hydrostatic meteorological model MM5. Highest BVOC emissions occur in daytime hours around noon from the end of May to mid-August in the Mediterranean area and from the mid of June to the end of July in the boreal forests. Comparison of 3 BVOC model approaches will reveal that for July 2003, the European isoprene and monoterpene totals range from 1124 Gg to 1446 Gg and from 338 Gg to 1112 Gg, respectively. Small-scale deviations may be as high as ±0.6 Mg km~(-2) for July 2003, reflecting the current uncertainty range for BVOC estimates. Key sources of errors in inventories are still insufficiently detailed land use data for some areas and lacking chemically speciated plant-specific emission potentials in particular in boreal, south-eastern, and northern African landscapes. The hourly emissions of isoprene, speciated terpenes, and oxyVOC have been made available by the NatAir database.
机译:来自地球表面的生物VOC排放估算值是空气质量模型中的关键输入参数。过去几年中积累的有关欧洲BVOC来源分布和化学物质排放概况的知识,以及对空气质量建模人员对BVOC估算的时空更精细分辨率的需求,导致建立了新的排放建模系统。将提出一个更新的快速BVOC排放建模平台,该平台将通过半经验排放模块(seBVOC)明确考虑森林冠层的排放潜力和叶片温度梯度的季节性,并将其用于估算欧洲特定化合物的每小时排放值(33 -1997年,2000年,2001年和2003年为北-68°;西为10°至东为40°。空间分辨率为10 km x 10 km。使用的数据库包含最新的土地和森林分布,更新的叶生物量密度,叶面积指数(LAI),植物以及特定化合物的排放潜力(如果有)。使用非静水气象模型MM5将生成相应年份的气象输入参数。从5月底到8月中旬,在地中海地区,从6月中旬到7月底,北方森林中的BVOC排放最高。三种BVOC模型方法的比较表明,对于2003年7月,欧洲异戊二烯和单萜的总量分别为1124 Gg至1446 Gg和338 Gg至1112 Gg。 2003年7月的小规模偏差可能高达±0.6 Mg km〜(-2),反映了当前BVOC估计的不确定性范围。清单错误的主要根源仍然是某些地区的土地使用数据不够详细,并且缺乏化学特定植物的特定排放潜力,尤其是在北方,东南部和北部非洲地区。 NatAir数据库提供了每小时异戊二烯,特定的萜烯和oxyVOC的排放量。

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