使用向后气团轨迹模式的泰国曼谷市区氮氧化物(NOx)浓度垂直变化

T. Rungratanaubon, Parkpoom Choomanee, S. Bualert, B. Shutes
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引用次数: 5

摘要

曼谷大都会是一个快速发展的城市,工业和城市面积的扩张导致了严重的空气污染物的产生;氮氧化物(NOx = NO + NO2)。本研究利用2016年1月至2017年2月曼谷Kasetsart大学空气质量和小气候监测站近3天的数据,应用HYSPLIT模型模拟了城市区域离地30 m和110 m处的氮氧化物浓度变化。结果表明:30 m处氮氧化物浓度高于110 m处氮氧化物浓度;浓度在冬季(2016年10月- 2017年2月)呈上升趋势。反轨迹模拟表明,在离地30 m处,气团的主要运动方向为1类(N-NE)和2类(NE-E),占总运动方向的86% (NOx浓度范围为4.02 ~ 96.35 ppb);在离地110 m处,气团的主要运动方向为1类(N-NE)和2类(NE-E),占总运动方向的79% (NOx浓度范围为3.93 ~ 51.50 ppb)。气团穿过不同的土地利用类型、人类活动和工业区。该研究可为小气候监测和气团运动对NOx浓度的影响监测提供指导。
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Vertical Variation of Nitrogen Oxide (NOx) Concentration Using a Backward Air Mass Trajectories Model in an Urban Area of Bangkok, Thailand
Bangkok Metropolitan is a rapidly growing city with both industrial and urban area expansion resulting in the generation of a significant air pollutant; Nitrogen Oxide (NOx = NO + NO2). This research studied the variation of Nitrogen Oxide concentration in an urban area at 30 m and 110 m above ground by applying the HYSPLIT model to simulate the backward trajectories movement of air mass using the past 3 days of data from an air quality and microclimate monitoring station at Kasetsart University, Bangkok from January 2016 to February 2017. The results showed that the concentration of Nitrogen Oxide at 30 m above ground is higher than the concentration at 110 m above ground. The concentration trended to increase in winter (October 2016 to February 2017). According to the backward trajectories modeling, the major direction of air mass movement at 30 m above ground, category 1 (N-NE) and category 2 (NE-E), occupying 86% of total movement direction (concentration of NOx ranged from 4.02 to 96.35 ppb) meanwhile the major direction of air mass movement at 110 m above ground, category 1 (N-NE) and category 2 (NE-E), occupying 79% of total movement direction (concentration of NOx ranged from 3.93 to 51.50 ppb). The air mass moved through the different land use types, human activities and industrial areas. This study can be applied as a guideline for microclimate surveillance and monitoring of NOx concentration influenced by air mass movement.
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