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Nitrogenous air pollutants and ozone exposure in the central Sierra Nevada and White Mountains of California - Distribution and evaluation of ecological risks

机译:内华达山脉中部和加利福尼亚怀特山脉的氮空气污染物和臭氧暴露-生态风险的分布和评估

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Ammonia (NH3), nitric oxide (NO), nitrogen dioxide (NO2), nitric add (HNO3), and ozone (O-3) were measured in summers of 2012 and 2013 with passive samplers. Nine monitoring sites were on W-E transect (511 to 3490 m) across central Sierra Nevada Mountains (SNM), and five sites on elevational gradient (1237 to 4346 m) in White Mountains (WM) of California. Levels of pollutants were similar in 2012 and 2013 in all sites. NH3, NO2, and HNO3 were highest near highly polluted Central Valley of California (CVC): maximum summer season means 7.8 mu g m(-3), 3.0 ppb, and 3.0 mu g m(-3), respectively. Regional background for NH3, NO2, and HNO3 in SNM occurred 20 km from CVC and 1500 m with seasonal averages: 2.1-4.8 mu g m(-3) : 0.8-1.7 ppb: 1.0-1.8 mu g m(-3), respectively, during two seasons. Levels of NH3, NO2, and HNO3 in WM remote locations were similar: 1.2-3.3 mu g m(-3),0.6-1.1 ppb, and 1.0-1.3 mu g m(-3), respectively. Seasonal mean O-3 (38-60 ppb) in SNM did not change with distance from CVC nor elevation. In WM, O-3 and NO mixing ratios were 41-61 ppb and 2.3-4.1 ppb, respectively, increasing with elevation. Even the lowest NH3 concentrations determined in this study were higher than NH3 continental background. This fact, as well as high values of N-reduced/N-oxidized near CVC of 1.9 in 2012 and 2.0 in 2013, decreasing with distance to 0.7 in 2012 and 0.8 in 2013, show importance of NH3 emissions from CVC as a contributor to N deposition and ecological impacts in SNM. The phytotoxic O-3 indices, AOT40 and W126, for selected sites on SNM and WM transects, showed high potential for negative O-3 impacts on vegetation, including forest trees.Capsule: Elevated NH3, NO2, and HNO3 on the western slopes of the Sierra Nevada Mountains (SNM) near the Central Valley of California (O/C) decreased with distance from CVC and elevation to regional background levels also recorded at high elevation sites of the White Mountains (WM). Published by Elsevier B.V.
机译:在2012年和2013年夏季,使用无源采样器测量了氨(NH3),一氧化氮(NO),二氧化氮(NO2),一氧化氮(HNO3)和臭氧(O-3)。横跨内华达山脉中部(SNM)的W-E断面(511至3490 m)上有9个监测点,位于加利福尼亚州怀特山(WM)的5个海拔梯度点(1237至4346 m)上的监测点。 2012年和2013年所有地点的污染物水平相似。 NH3,NO2和HNO3在高污染的加利福尼亚中央谷地(CVC)附近最高:最大夏季分别为7.8μg m(-3),3.0 ppb和3.0μgm(-3)。 SNM中NH3,NO2和HNO3的区域背景发生在距CVC> 20 km和> 1500 m的地方,季节性平均值为:2.1-4.8μgm(-3):0.8-1.7 ppb:1.0-1.8μgm(-3),分别在两个季节。 WM偏远地区的NH3,NO2和HNO3含量相似:分别为1.2-3.3微克m(-3),0.6-1.1 ppb和1.0-1.3微克m(-3)。 SNM中的季节平均O-3(38-60 ppb)不会随着距CVC的距离或海拔的升高而变化。在WM中,O-3和NO的混合比分别为41-61 ppb和2.3-4.1 ppb,随海拔升高而增加。即使在这项研究中确定的最低NH3浓度也高于NH3大陆背景。这一事实以及CVC的N还原/ N氧化值在2012年为1.9和2013年为2.0的高值,随着距离的减小而在2012年分别为0.7和2013年的0.8,表明CVC产生的NH3排放是造成这种情况的重要因素。 SNM中的氮沉降和生态影响。在SNM和WM样带上选定地点的植物毒性O-3指数AOT40和W126显示出对包括森林树木在内的植被产生不利的O-3负面影响的潜力。胶囊:西坡的NH3,NO2和HNO3升高加利福尼亚中央谷地(O / C)附近的内华达山脉(SNM)随着距CVC的距离和海拔升高到区域背景水平而降低,白山(WM)的高海拔地区也有记录。由Elsevier B.V.发布

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