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Predicting the contents of BTEX and MTBE for the three types of tollbooth at a highway toll station via the direct and indirect approaches

机译:通过直接和间接方法预测高速公路收费站的三种收费站的BTEX和MTBE的内容

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This study was set out to assess the contents of five volatile organic compounds (VOCs), including BTEX (the acronym for benzene, toluene, ethylbenzene, and xylene) and methyl tertiary-butyl ether (MTBE), in three types of tollbooth (including the car lane/ticket-collecting, car lane/cash-collecting, and bus/truck lane tollbooths) at a highway toll station via the direct and indirect approaches. For the direct approach, VOC samples were collected from the breathing zone of booth attendants at all selected tollbooths during the three workshifts. For samples collected during the dayshift, we found VOC contents of BTEX and MTBE in both the car lane/ticket-collecting ( = 6.23, 21.93, 3.24, 8.56, and 5.63 ppb, respectively) and car lane/cash-collecting tollbooths ( = 5.98, 21.71, 3.25, 8.59, and 6.04 ppb, respectively) were quite comparable, but both were significantly higher than that in the bus/truck lane tollbooth (= 3.13, 13.91, 2.05, 4.52, and 2.70 ppb, respectively). The same pattern can also be found for the other two workshifts. For the indirect approach, we conducted multivariate regression analyses to predict VOC contents for any given type of tollbooth by using the four independent variables of the vehicle flowrate, wind speed, relative humidity, and air temperature. We found that, except the vehicle flowrate, the other three factors did not have a significant effect on VOC contents in the three types of tollbooth. In addition, the magnitudes of the effect of the vehicle flowrate on VOC contents for the three types of tollbooth were: car lane/cash-collecting > bus/truck lane > car lane/ticket-collecting. All regression results yielded R~2-values in the range of 0.41-0.74 indicating that the developed indirect approach was able to predict VOC contents for three types of tollbooth.
机译:本研究旨在评估三种收费站中五种挥发性有机化合物(VOC)的含量,其中包括BTEX(苯,甲苯,乙苯和二甲苯的缩写)和甲基叔丁基醚(MTBE)。通过直接和间接途径在高速公路收费站处的车道/票务收集,车道/现金收集和公交车/卡车车道收费站)。对于直接方法,在三个工作班次期间,从所有选定的收费站的展位服务员的呼吸区收集了VOC样本。对于在白班期间收集的样本,我们在车道/票务收集(分别为6.23、21.93、3.24、8.56和5.63 ppb)和车道/现金收集收费站中发现BTEX和MTBE的VOC含量(=分别为5.98、21.71、3.25、8.59和6.04 ppb),但两者均显着高于公交/卡车专用道收费站(分别为3.13、13.91、2.05、4.52和2.70 ppb)。对于其他两个工作班次,也可以找到相同的模式。对于间接方法,我们使用车辆流量,风速,相对湿度和气温的四个独立变量,进行了多元回归分析,以预测任何给定收费站类型的VOC含量。我们发现,除了车辆流量之外,其他三个因素对三种收费站中的VOC含量均没有显着影响。此外,三种收费站的车辆流量对VOC含量的影响大小为:车道/现金收集>公交车/卡车车道>车道/票务收集。所有回归结果均得出R〜2-值在0.41-0.74的范围内,这表明开发的间接方法能够预测三种收费站的VOC含量。

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