Environmental Research Letters (Jan 2023)

Underestimated ammonia vehicular emissions in metropolitan city revealed by on-road mobile measurement

  • Chuanqi Gu,
  • Shanshan Wang,
  • Jian Zhu,
  • Wenhao Dai,
  • Jiaqi Liu,
  • Ruibin Xue,
  • Xiang Che,
  • Yanfen Lin,
  • Yusen Duan,
  • Mark O Wenig,
  • Bin Zhou

DOI
https://doi.org/10.1088/1748-9326/acf94a
Journal volume & issue
Vol. 18, no. 10
p. 104040

Abstract

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Atmospheric ammonia (NH _3 ) plays a significant role in the nitrogen cycle, and can have impacts on air quality, ecological balance and climate change. While NH _3 associated with natural and agricultural processes has long been considered the primary source, the contribution of combustion-related NH _3 , particularly from vehicular emissions, keeps on the rise. We found that high on-road NH _3 concentrations occurred in a metropolitan city based on mobile measurement, and inferred that urban vehicular NH _3 emission was likely underestimated in the past. NH _3 emission factors (EFs) were derived from ring roads and tunnels, showing levels 74% and 20% higher than the latest standard proposed by Euro VII, respectively. To quantify the underestimation, two methods based on car ownership and traffic flow were used to estimate the annual vehicular NH _3 emission in Shanghai as 2.59 and 1.76 Gg, respectively, substantially surpassing the predicted results by the Dynamic Projection model for Emissions in China. Given these discoveries, we recommend that it is urgent and imperative to establish relevant national standards and limits aiming at regulation on vehicular NH _3 emissions. And more representative EFs measurements should be adopted to improve the accuracy of inventory estimation.

Keywords