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Contribution of evaporative emissions from gasoline vehicles toward total VOC emissions in Japan

机译:日本汽油车蒸发排放对VOC排放总量的贡献

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The features of evaporative emissions from gasoline vehicles were examined. One potential source of evaporative emissions is mainly the so-called sigh of a fuel tank, which is a function of the daily temperature change and the volume not occupied by fuel. A theoretical equation was proposed for estimating the fuel vapor generation. It reproduced observed features well but underestimated the absolute values obtained in the experimental results. The widely used semi-empirical Reddy equation overestimates the results. The performance of a carbon canister was also evaluated. More than 95% of fuel vapor generation was trapped by the carbon canister. However, the canister worked for only one day because it adsorbed more VOC than that contained in the sigh alone. To estimate the evaporative emissions in the real world, the fuel tank temperature change while a car was parked in an outside car park was monitored and was found to be almost the same as the change in ambient air temperature; no other weather conditions had any effect. According to the findings in this study and data on frequency of car use, the annual amount of evaporative emissions from gasoline vehicles in Japan was estimated to be 4.6% of the total VOC emissions in Japan, making it the 6th-highest source of VOC.
机译:检查了汽油车辆蒸发排放物的特征。一种潜在的蒸发排放源主要是燃料箱的叹气,它是每日温度变化和未被燃料占据的体积的函数。提出了一个理论方程式来估计燃料蒸气的产生。它很好地再现了观察到的特征,但是低估了实验结果中获得的绝对值。广泛使用的半经验Reddy方程高估了结果。还评估了碳罐的性能。超过95%的燃料蒸气产生被碳罐捕获。但是,该罐只能工作一天,因为它吸收的VOC比仅含在叹气中的VOC还要多。为了估算现实世界中的蒸发排放,监测了汽车停放在室外停车场时油箱温度的变化,发现该变化与环境空气温度的变化几乎相同;没有其他天气条件有任何影响。根据本研究的发现以及有关汽车使用频率的数据,据估计,日本每年汽油车辆的蒸发排放量占日本VOC排放总量的4.6%,是第六大VOC排放源。

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