Published October 29, 2024
| Version v1
Dataset
Open
Measurement report: Unexpected high volatile organic compounds emission from vehicles on the Tibetan Plateau Dataset
Description
This dataset includes various emission profiles and related data, specifically:
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Source Profile Data at Different Altitudes.
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Emission Factor Data.
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Emission Ratio Data.
- Source Profile Data from PMF Source Apportionment: Data obtained through Positive Matrix Factorization (PMF), revealing the composition of emission sources.
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Average Profiles of Gasoline Vapors: Derived from sealed housing evaporative determination (SHED) tests, with references 1-7.
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Average Profiles of Gasoline Vehicle Exhaust: Based on dynamometer tests, with references 2, 8-13.
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Average Profiles of Vehicular Emissions: Collected from low-altitude tunnel measurements, reflecting emissions in real-world driving scenarios, with references 14-24.
Files
Files
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Additional details
References
- 1. Harley, R. A., Coulter-Burke, S. C., Yeung, T. S. Relating liquid fuel and headspace vapor composition for California reformulated gasoline samples containing ethanol. Environ. Sci. Technol. 34, 4088-4094 (2000).
- 2. Na, K., Kim, Y. P., Moon, I., Moon, K. C. Chemical composition of major VOC emission sources in the Seoul atmosphere. Chemosphere 55, 585-594 (2004).
- 3. Liu, Y., Shao, M., Fu, L. L., Lu, S. H., Zeng, L. M., Tang, D. G. Source profiles of volatile organic compounds (VOCs) measured in China: Part I. Atmos. Environ. 42, 6247-6260 (2008).
- 4. Zhang, Y. L., et al. Species profiles and normalized reactivity of volatile organic compounds from gasoline evaporation in China. Atmos. Environ. 79, 110-118 (2013).
- 5. Wu, Y., Yang, Y. D., Shao, M., Lu, S. H. Missing in total OH reactivity of VOCs from gasoline evaporation. Chin. Chem. Lett. 26, 1246-1248 (2015).
- 6. Man, H. Y., et al. VOCs evaporative emissions from vehicles in China: Species characteristics of different emission processes. Env. Sci. Ecotechnol. 1, 11 (2020).
- 7. Sun, L. N., et al. Refueling emission of volatile organic compounds from China 6 gasoline vehicles. Sci. Total. Environ. 789, 10 (2021).
- 8. Schauer, J. J., Kleeman, M. J., Cass, G. R., Simoneit, B. R. T. Measurement of emissions from air pollution sources. 5. C1-C32 organic compounds from gasoline-powered motor vehicles. Environ. Sci. Technol. 36, 1169-1180 (2002).
- 9. Guo, H., Zou, S. C., Tsai, W. Y., Chan, L. Y., Blake, D. R. Emission characteristics of nonmethane hydrocarbons from private cars and taxis at different driving speeds in Hong Kong. Atmos. Environ. 45, 2711-2721 (2011).
- 10. Gao, S., et al. VOCs emission characteristics and emission factors of light-duty gasoline vehicles with bench test (in Chinese). China-Environ. Sci. 32, 397-405 (2012).
- 11. Ou, J., et al. Source characteristics of VOCs emissions from vehicular exhaust in the Pearl River Delta region. Acta. Sci. Circumst. 34, 826-834 (2014).
- 12. Li, W., et al. Emission characteristics of VOCs from light-duty gasoline vehicles at constant speed in the Pearl River Delta. Acta. Sci. Circumst. 39, 243-251 (2019).
- 13. Wang, S., et al. Oxygenated volatile organic compounds (VOCs) as significant but varied contributors to VOC emissions from vehicles. Atmos. Chem. Phys. 22, 9703-9720 (2022).
- 14. Staehelin, J., Keller, C., Stahel, W., Schläpfer, K., Wunderli, S. Emission factors from road traffic from a tunnel study (Gubrist tunnel, Switzerland). Part III: Results of organic compounds, SO2 and speciation of organic exhaust emission. Atmos. Environ. 32, 999-1009 (1998).
- 15. Hwa, M. Y., Hsieh, C. C., Wu, T. C., Chang, L. F. W. Real-world vehicle emissions and VOCs profile in the Taipei tunnel located at Taiwan Taipei area. Atmos. Environ. 36, 1993-2002 (2002).
- 16. Zhang, Y. L., et al. Decadal changes in emissions of volatile organic compounds (VOCs) from on-road vehicles with intensified automobile pollution control: Case study in a busy urban tunnel in south China. Environ. Pollut. 233, 806-819 (2018).
- 17. Chiang, H. L., Hwu, C. S., Chen, S. Y., Wu, M. C., Ma, S. Y., Huang, Y. S. Emission factors and characteristics of criteria pollutants and volatile organic compounds (VOCs) in a freeway tunnel study. Sci. Total. Environ. 381, 200-211 (2007).
- 18. Gentner, D. R., et al. Chemical Composition of Gas-Phase Organic Carbon Emissions from Motor Vehicles and Implications for Ozone Production. Environ. Sci. Technol. 47, 11837-11848 (2013).
- 19. Zhang, Q. J., et al. Emission factors of volatile organic compounds (VOCs) based on the detailed vehicle classification in a tunnel study. Sci. Total. Environ. 624, 878-886 (2018).
- 20. Sun, L.-N., et al. Pollution Characteristics and Emission Factors of VOCs from Vehicle Emissions in the Tianjin Tunnel (in Chinese). Environ. Sci-China 40, 104-113 (2019).
- 21. Feng, M., et al. Real-World Vehicle Volatile Organic Compound Emissions and Their Source Profile in Chengdu Based on a Roadside and Tunnel Study. Atmosphere 12, 13 (2021).
- 22. Song, C. B., Liu, Y., Sun, L. N., Zhang, Q. J., Mao, H. J. Emissions of volatile organic compounds (VOCs) from gasoline- and liquified natural gas (LNG)-fueled vehicles in tunnel studies. Atmos. Environ. 234, 13 (2020).
- 23. Jin, B. Q., et al. Volatile organic compounds from a mixed fleet with numerous E10-fuelled vehicles in a tunnel study in China: Emission characteristics, ozone formation and secondary organic aerosol formation. Environ. Res. 200, 10 (2021).
- 24. Song, C., et al. Heavy-duty diesel vehicles dominate vehicle emissions in a tunnel study in northern China. Sci. Total. Environ. 637, 431-442 (2018).