Yue Li
Peking University
4 Papers
4 Citations
Yue Li is an academic researcher from Peking University. The author has contributed to research in topics: Diesel fuel & Mass spectrometry. The author has an hindex of 4, co-authored 4 publications.
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Papers
Potentially Important Contribution of Gas-Phase Oxidation of Naphthalene and Methylnaphthalene to Secondary Organic Aerosol during Haze Events in Beijing.
Guancong Huang,Ying Liu,Min Shao,Min Shao,Yue Li,Qi Chen,Yan Zheng,Zhijun Wu,Yuechen Liu,Yusheng Wu,Min Hu,Xin Li,Sihua Lu,Chenjing Wang,Junyi Liu,Mei Zheng,Tong Zhu +16 more
TL;DR: Using tracer product-based and precursor consumption-based methods, 2-ring PAHs (Nap and MN) were estimated to produce 14.9% of the SOA formed in the afternoon during the wintertime haze, suggesting a comparable contribution of Nap and MN with monocyclic-aromatics on urban SOA formation.
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Carbonyl emissions from heavy-duty diesel vehicle exhaust in China and the contribution to ozone formation potential
TL;DR: Main influencing factors for carbonyl emissions were vehicle type, average speed and regulated emission standard, and the impact of vehicle loading was not evident in this study.
55
How does the OH reactivity affect the ozone production efficiency: case studies in Beijing and Heshan
Yudong Yang,Min Shao,Stephan Keβel,Yue Li,Keding Lu,Sihua Lu,Jonathan Williams,Yuanhang Zhang,Liming Zeng,A. C. Nölscher,A. C. Nölscher,Yusheng Wu,Xuemei Wang,Junyu Zheng +13 more
TL;DR: In this article, the daily median result for OH reactivity was 19.98 ± 11.03 s in Beijing and 30.62 ± 19.76 s in Heshan.
How the OH reactivity affects the ozone production efficiency: case studies in Beijing and Heshan, China
Yudong Yang,Min Shao,Stephan Keßel,Yue Li,Keding Lu,Sihua Lu,Jonathan Williams,Yuanhang Zhang,Liming Zeng,A. C. Nölscher,Yusheng Wu,Yusheng Wu,Xuemei Wang,Junyu Zheng +13 more
TL;DR: In this paper, the authors used an observation-based model with the RACM2 (Regional Atmospheric Chemical Mechanism version 2) to understand the daytime missing reactivity in Beijing by adding unmeasured oxygenated volatile organic compounds and simulated intermediates of the degradation from primary volatile organic compound (VOCs).