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Bay breeze influence on surface ozone at Edgewood MD during July 2011

机译:2011年7月海湾微风对马里兰州埃奇伍德的表面臭氧的影响

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摘要

Surface ozone (O3) was analyzed to investigate the role of the bay breeze on air quality at two locations in Edgewood, Maryland (lat: 39.4°, lon: −76.3°) for the month of July 2011. Measurements were taken as part of the first year of NASA’s “Deriving Information on Surface Conditions from Column and Vertically Resolved Observations Relevant to Air Quality” (DISCOVER-AQ) Earth Venture campaign and as part of NASA’s Geostationary for Coastal and Air Pollution Events Chesapeake Bay Oceanographic campaign with DISCOVER-AQ (Geo-CAPE CBODAQ). Geo-CAPE CBODAQ complements DISCOVER-AQ by providing ship-based observations over the Chesapeake Bay. A major goal of DISCOVER-AQ is determining the relative roles of sources, photochemistry and local meteorology during air quality events in the Mid-Atlantic region of the U.S. Surface characteristics, transport and vertical structures of O3 during bay breezes were identified using in-situ surface, balloon and aircraft data, along with remote sensing equipment. Localized late day peaks in O3 were observed during bay breeze days, maximizing an average of 3 h later compared to days without bay breezes. Of the 10 days of July 2011 that violated the U.S. 8 h O3 standard of 75 parts per billion by volume (ppbv) at Edgewood, eight exhibited evidence of a bay breeze circulation. The results indicate that while bay breezes and the processes associated with them are not necessary to cause exceedances in this area, bay breezes exacerbate poor air quality that sustains into the late evening hours at Edgewood. The vertical and horizontal distributions of O3 from the coastal Edgewood area to the bay also show large gradients that are often determined by boundary layer stability. Thus, developing air quality models that can sufficiently resolve these dynamics and associated chemistry, along with more consistent monitoring of O3 and meteorology on and along the complex coastline of Chesapeake Bay must be a high priority.
机译:分析了表面臭氧(O3),以调查海湾微风对马里兰州Edgewood的两个地点(纬度:39.4°,lon:−76.3°)在空气质量中的作用。2011年7月进行了测量美国国家航空航天局(NASA)“从与空气质量有关的垂直和垂直分辨的观测数据中获取地面状况信息”(DISCOVER-AQ)的第一年,并且是美国国家航空航天局(NASA)针对海岸和空气污染事件地球静止观测的一部分,并与DISCOVER-AQ进行了切萨皮克湾海洋运动(Geo-CAPE CBODAQ)。 Geo-CAPE CBODAQ通过在切萨皮克湾提供船上观测来补充DISCOVER-AQ。 DISCOVER-AQ的主要目标是确定美国中大西洋地区空气质量事件期间源,光化学和本地气象学的相对作用。使用原位识别海湾微风期间O3的特征,运移和垂直结构地表,气球和飞机数据以及遥感设备。在海湾微风的日子里,O3出现了局部的晚高峰,与没有海湾微风的日子相比,平均晚了3小时。在Edgewood,2011年7月的10天违反了美国8小时O3的标准,即每十亿分之75(ppbv)的氧气含量,其中八次显示出海湾微风流通的迹象。结果表明,虽然海湾微风和与之相关的过程并不是造成该地区超标的必要条件,但海湾微风加剧了恶劣的空气质量,这种空气质量一直持续到深夜。从沿海埃奇伍德地区到海湾的O3的垂直和水平分布也显示出较大的梯度,通常由边界层稳定性决定。因此,开发能够充分解决这些动力学和相关化学问题的空气质量模型,以及对切萨皮克湾复杂海岸线及其沿线的O3和气象学进行更一致的监测,必须成为当务之急。

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