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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Vehicle emissions of greenhouse gases and related tracers from a tunnel study: CO : CO2, N2O : CO2, CH4 : CO2, O2 : CO2 ratios, and the stable isotopes 13C and 18O in CO2 and CO
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Vehicle emissions of greenhouse gases and related tracers from a tunnel study: CO : CO2, N2O : CO2, CH4 : CO2, O2 : CO2 ratios, and the stable isotopes 13C and 18O in CO2 and CO

机译:从隧道研究的温室气体和相关示踪剂的车辆排放:CO:CO2,N2O:CO2,CH4:CO2,O2:CO2比率,以及CO2和CO 2中的稳定同位素13C和18O

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Measurements of CO2, CO, N2O and CH4 mole fractions, O2 / N2 ratios and the stable isotopes 13C and 18O in CO2 and CO have been performed in air samples from the Islisberg highway tunnel (Switzerland). The molar CO : CO2 ratios, with an average of (4.15 ± 0.34) ppb:ppm, are lower than reported in previous studies, pointing to a reduction in CO emissions from traffic. The 13C in CO2 reflects the isotopic composition of the fuel. 18O in CO2 is slightly depleted compared to the 18O in atmospheric O2, and shows significant variability. In contrast, the δ13C values of CO show that significant fractionation takes place during CO destruction in the catalytic converter. 13C in CO is enriched by 3 compared to the 13C in the fuel burnt, while the 18O content is similar to that of atmospheric O2. We compute a fractionation constant of (?2.7 ± 0.7) for 13C during CO destruction. The N2O : CO2 average ratio of (1.8 ± 0.2) × 10?2 ppb:ppm is significantly lower than in past studies, showing a reduction in N2O emissions likely related to improvements in the catalytic converter technology. We also observed small CH4 emissions, with an average CH4 : CO2 ratio of (4.6 ± 0.2) × 102 ppb:ppm. The O2 : CO2 ratios of (?1.47 ± 0.01) ppm:ppm are very close to the expected, theoretically calculated values of O2 depletion per CO2 enhancement.
机译:CO 2,CO,N 2 O和CH4摩尔级分,O 2 / N 2比和稳定同位素13C和18O在CO 2和CO中的测量已经在来自Islisberg公路隧道(瑞士)的空气样本中进行。摩尔CO:CO 2比率,平均(4.15±0.34)PPB:PPM低于先前研究报告,指向来自交通的共同排放的减少。 CO2中的13C反映了燃料的同位素组成。与大气O2中的180相比,CO 2中的18O略微耗尽,并且显示出显着的变化。相反,CO的δ13C值表明在催化转化器中的共同破坏期间发生显着的分馏。与燃料燃烧的13℃相比,CO中的13C富集,而180含量类似于大气O2。在CO破坏期间,我们计算13℃的(?2.7±0.7)的分馏常数。 N2O:CO 2平均比(1.8±0.2)×10?2 ppb:PPM显着低于过去的研究,显示出可能与催化转化器技术的改进有关的N2O排放的降低。我们还观察到小CH4排放,平均CH 4:二氧化碳比例(4.6±0.2)×102 ppb:ppm。 O2:CO 2比(α1.47±0.01)ppm:PPM非常接近每CO 2增强的O2耗竭的预期理论计算值。

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