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Emissions of organic carbon and methane from petroleum and dairy operations in California's San Joaquin Valley

机译:加利福尼亚州石油和乳品业务的有机碳和甲烷排放的San Joaquin Valley

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Petroleum and dairy operations are prominent sources of gas-phase organic compounds in California's San Joaquin Valley. It is essential to understand the emissions and air quality impacts of these relatively understudied sources, especially for oil/gas operations in light of increasing US production. Ground site measurements in Bakersfield and regional aircraft measurements of reactive gas-phase organic compounds and methane were part of the CalNex (California Research at the Nexus of Air Quality and Climate Change) project to determine the sources contributing to regional gas-phase organic carbon emissions. Using a combination of near-source and downwind data, we assess the composition and magnitude of emissions, and provide average source profiles. To examine the spatial distribution of emissions in the San Joaquin Valley, we developed a statistical modeling method using ground-based data and the FLEXPART-WRF transport and meteorological model. We present evidence for large sources of paraffinic hydrocarbons from petroleum operations and oxygenated compounds from dairy (and other cattle) operations. In addition to the small straight-chain alkanes typically associated with petroleum operations, we observed a wide range of branched and cyclic alkanes, most of which have limited previous in situ measurements or characterization in petroleum operation emissions. Observed dairy emissions were dominated by ethanol, methanol, acetic acid, and methane. Dairy operations were responsible for the vast majority of methane emissions in the San Joaquin Valley; observations of methane were well correlated with non-vehicular ethanol, and multiple assessments of the spatial distribution of emissions in the San Joaquin Valley highlight the dominance of dairy operations for methane emissions. The petroleum operations source profile was developed using the composition of non-methane hydrocarbons in unrefined natural gas associated with crude oil. The observed source profile is consistent with fugitive emissions of condensate during storage or processing of associated gas following extraction and methane separation. Aircraft observations of concentration hotspots near oil wells and dairies are consistent with the statistical source footprint determined via our FLEXPART-WRF-based modeling method and ground-based data. We quantitatively compared our observations at Bakersfield to the California Air Resources Board emission inventory and find consistency for relative emission rates of reactive organic gases between the aforementioned sources and motor vehicles in the region. We estimate that petroleum and dairy operations each comprised 22% of anthropogenic non-methane organic carbon at Bakersfield and were each responsible for 8–13% of potential precursors to ozone. Yet, their direct impacts as potential secondary organic aerosol (SOA) precursors were estimated to be minor for the source profiles observed in the San Joaquin Valley.
机译:石油和乳制品业务是加利福尼亚州的San Joaquin山谷中的气相有机化合物的着名。鉴于美国生产增加,必须了解这些相对较低的来源的排放和空气质量影响,特别是对于石油/天然气运行。 Bakersfield的地面现场测量和反应性气相有机化合物和甲烷的区域飞机测量是Calnex(加利福尼亚州的空气质量和气候变化中的加州研究)项目的一部分,以确定有助于区域气相有机碳排放的来源。使用近源和下行数据的组合,我们评估排放的组成和幅度,并提供平均源配置文件。为了检查圣何基因谷的排放的空间分布,我们开发了一种使用地面数据和FlexPart-WRF传输和气象模型的统计建模方法。我们提出了来自石油操作和来自乳制品(和其他牛)操作的石油操作和含氧化合物的石蜡烃的大来源的证据。除了通常与石油操作相关的小直链烷基,我们观察到各种支链和环状烷烃,其中大部分是在原位测量或石油操作排放中的原位测量或表征的有限。观察到的乳制品排放由乙醇,甲醇,乙酸和甲烷主导。乳制品业务负责圣Joaquin山谷的绝大多数甲烷排放;甲烷的观察与非车辆乙醇良好相关,并且在圣何国谷的排放空间分布的多重评估突出了乳品排放乳制品的优势。利用与原油相关的未精制天然气中的非甲烷烃的组成开发了石油操作源谱。观察到的源曲线与萃取和甲烷分离后相关气体的储存或加工期间的冷凝物的逃逸排放一致。在油井和乳房附近的集中热点的飞机观察与通过我们的FlexPart-WRF的建模方法和基于基础数据确定的统计源足迹一致。我们将我们的观察结果与加州空气资源板排放库存进行定量比较,并在该区域上述来源和机动车辆之间的反应性有机气体之间的相对排放率的一致性。我们估计石油和乳制品的乳制品各自占BAKERSIFIELD的22%的人为非甲烷有机碳,并且每个潜在的前体都是臭氧的8-13%。然而,它们的直接影响作为潜在的二次有机气溶胶(SOA)前体被估计为San Joaquin山谷中观察到的源曲线的次要。
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