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Airborne flux measurements of biogenic isoprene over California

机译:加利福尼亚州生物原异戊二烯的空气传播通量测量

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Biogenic isoprene fluxes were measured onboard the CIRPAS Twin Otter aircraft as part of the California Airborne Biogenic volatile organic compound (BVOC) Emission Research in Natural Ecosystem Transects (CABERNET) campaign during June 2011. The airborne virtual disjunct eddy covariance (AvDEC) approach used measurements from a proton transfer reaction mass spectrometer (PTR–MS) and a wind radome probe to directly determine fluxes of isoprene over 7400 km of flight paths focusing on areas of California predicted to have the largest emissions. The fast Fourier transform (FFT) approach was used to calculate fluxes of isoprene over long transects of more than 15 km, most commonly between 50 and 150 km. The continuous wavelet transformation (CWT) approach was used over the same transects to also calculate instantaneous isoprene fluxes with localization of both frequency and time independent of non-stationarities. Fluxes were generally measured by flying consistently at 400 m ± 50 m (a.g.l.) altitude, and extrapolated to the surface according to the determined flux divergence determined in the racetrack-stacked profiles. The wavelet-derived surface fluxes of isoprene averaged to 2 km spatial resolution showed good correspondence to basal emission factor (BEF) land-cover data sets used to drive BVOC emission models. The surface flux of isoprene was close to zero over Central Valley crops and desert shrublands, but was very high (up to 15 mg m?2 h1) above oak woodlands, with clear dependence of emissions on temperature and oak density. Isoprene concentrations of up to 8 ppb were observed at aircraft height on the hottest days and over the dominant source regions. Even though the isoprene emissions from agricultural crop regions, shrublands, and coniferous forests were extremely low, observations at the Walnut Grove tower south of Sacramento demonstrate that isoprene oxidation products from the high emitting regions in the surrounding oak woodlands accumulate at night in the residual layer above the valley and mix down into the valley in the morning. Thus, the isoprene emissions surrounding the valley have relevance for the regional photochemistry that is not immediately apparent solely from the direct emission flux distribution. This paper reports the first regional observations of fluxes from specific sources by eddy covariance from an aircraft which can finally constrain statewide isoprene emission inventories used for ozone simulations by state agencies. While previously there was no available means to constrain the biogenic models, our results provide a good understanding of what the major sources of isoprene are in California, their magnitude, and how they are distributed. This data set on isoprene fluxes will be particularly useful for evaluating potential model alternatives which will be dealt with in a separate paper to assess isoprene emission models and their driving variable data sets.
机译:在2011年6月的自然生态系统横断面(Cabernet)竞选中的加州空气传播的生物挥发性有机化合物(BVOC)排放研究的一部分,将生物异戊二烯通量测量为Cirpas Twin Otter飞机。在2011年6月的竞争中的一部分。空中虚拟分离涡涡流协方差(AVDEC)方法使用测量从质子转移反应质谱仪(PTR-MS)和风弧菌探针直接测定异戊二烯的助焊剂,超过7400公里的飞行路径,重点在加利福尼亚州预测的排放最大的区域。快速傅里叶变换(FFT)方法用于计算异戊二烯的助焊剂,长途横断足超过15公里,最常见于50至150公里。在相同的横断面上使用连续小波变换(CWT)方法,以计算瞬时异戊二烯通量,其频率和时间的定位独立于非平等性。通常通过在400m±50m(A.G.L.)高度始终如一地通过在400m±50μm(A.G.1.)高度,并根据在跑道堆叠的轮廓中确定的确定的助焊剂发散来将助熔剂持续测量。异戊二烯的小波衍生的表面通量平均为2km空间分辨率,显示出用于驱动BVOC发射模型的基础排放因子(BEF)覆盖数据集的良好对应关系。异戊二烯的表面通量在中央山谷作物和沙漠灌木丛中接近零,但在橡木林地上方非常高(高达15mg M?2 H1),具有清除对温度和橡木密度的依赖性。在最热的日子和主导源区的飞机高度下观察到异戊二烯浓度高达8ppb。尽管来自农业作物地区的异戊二烯排放量,灌木丛和针叶树林极低,但萨克拉门托南部的核桃树丛塔的观察表明,来自周围橡木地区的高散发区域的异戊二烯氧化产品在夜间积聚在残余层中在山谷上方,早上混合到山谷中。因此,谷的异戊二烯排放与区域光化学相关的相关性,这些光化学不仅仅是从直接发射通量分布立即明显。本文报告了通过来自飞机的涡流协方差从特定来源的第一个区域观察来自一架飞机,最终限制州各机构用于臭氧模拟的全态异戊二烯排放清单。虽然以前没有可用的手段来限制生物模型,但我们的结果就会良好地了解异戊二烯的主要来源,它们在加利福尼亚州,其幅度以及它们的分布方式。在异戊二烯通量上设定的该数据对于评估潜在的模型替代品特别有用,这将在单独的纸上处理,以评估异戊二烯排放模型及其驱动可变数据集。

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