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Monitoring and Modeling the Effect of Fuel Change on Air Quality in a Typical Heavy Traffic Residential Area in Kuwait

机译:监测和建模科威特典型交通繁忙居民区中燃料变化对空气质量的影响

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摘要

A mobile laboratory was positioned adjacent to a heavy traffic intersection in a typical urban area in Kuwait to monitor the concentrations of vehicular atmospheric pollutants before and after switching to unleaded MTBE gasoline. Monitored NO_x and O_3 emissions increased by 26.5% and 27.7%, respectively, while those of CO and HC decreased by 45.7% and 42.6%, respectively. However, evaporative emissions of some hydrocarbons, especially aldehydes, increased due to the higher volatility of the oxygenated fuel. Meteorological and traffic variables were used in estimating pollutant concentrations in the area under study using MOBILE5 and CAL3QHC software. An average normalized mean square error (NMSE) between estimated and monitored concentrations was calculated to be 0.102 for the 2 months of the study period. The effects of vehicle speed, ambient temperatures, and fuel ASTM volatility class on CO, HC, and NO_x emissions were also investigated. It was found that CO and HC emissions increase as volatility increases, while NO_x emissions did not depend on volatility. Ambient temperature had a similar effect. On the other hand, vehicle speed had an optimum value that minimizes CO emissions.
机译:在科威特典型市区的一个交通繁忙的十字路口附近设有一个移动实验室,以监测在转换为无铅MTBE汽油前后的汽车大气污染物浓度。监测的NO_x和O_3排放分别增加了26.5%和27.7%,而CO和HC的排放分别减少了45.7%和42.6%。然而,由于含氧燃料的较高挥发性,一些烃,尤其是醛的蒸发排放增加。使用MOBILE5和CAL3QHC软件,将气象和交通变量用于估算研究区域中的污染物浓度。在研究期间的2个月中,估计浓度与监测浓度之间的平均归一化均方误差(NMSE)计算为0.102。还研究了车速,环境温度和燃料ASTM挥发性等级对CO,HC和NO_x排放的影响。已发现,CO和HC排放量随挥发性的增加而增加,而NO_x排放量并不取决于挥发性。环境温度具有类似的作用。另一方面,车速具有使CO排放最小化的最佳值。

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