科研成果 by Type: 期刊论文

2022
Xue C, Ye C, Kleffmann J, Zhang W, He X, Liu P, Zhang C, Zhao X, Liu C, Ma Z, et al. Atmospheric measurements at Mt. Tai – Part II: HONO budget and radical (RO x + NO3) chemistry in the lower boundary layer. Atmospheric Chemistry and Physics. 2022;22:1035-1057.
Lu K, Wang H, Liu Y, Chen X, Gao Y, Qiu W, Jing S, Wang Q, Lou S, Edwards P, et al. Unexpected Fast Photochemistry Emerges in Cool Seasons China. National Science Open. 2022.
Wang H, Peng C, Wang X, Lou S, Lu K, Gan G, Jia X, Chen X, Chen J, Wang H, et al. N2O5 uptake onto saline mineral dust: a potential missing source of tropospheric ClNO2 in inland China. Atmospheric Chemistry and Physics. 2022;22:1845-1859.
Liu X, Kwok G, Wu Y, Huang C, Lu K, Zhang Y, Duan L, Cheng M, Chai F, Mei F, et al. Evaluating cost and benefit of air pollution control policies in China: a systematic review. Journal of Environmental Sciences. 2022.
Xue C, Ye C, Kleffmann J, Zhang C, Catoire V, Bao F, Mellouki A, Xue L, Chen J-M, Lu K, et al. Atmospheric measurements at Mt. Tai – Part I: HONO formation and its role in the oxidizing capacity of the upper boundary layer. Atmospheric Chemistry and Physics. 2022;22:3149-3167.
Chen X, Wang H, Lu K. Interpretation of NO3–N2O5 observation via steady state in high-aerosol air mass: the impact of equilibrium coefficient in ambient conditions. Atmospheric Chemistry and Physics. 2022;22:3525-3533.
Ma X, Tan Z, Lu K, Yang X, Chen X, Wang H, Chen S, Xin F, Li S, Li X, et al. OH and HO2 radical chemistry at a suburban site during the EXPLORE-YRD campaign in 2018. Atmospheric Chemistry and Physics. 2022;22:7005-7028.
Wang H, Ma X, Tan Z, Wang H, Chen X, Chen S, Gao Y, Liu Y, Liu Y, Yang X, et al. Anthropogenic monoterpenes aggravating ozone pollution. National Science Review. 2022.
Zhang G, Hu R-Z, Xie P, Lu K, Lou S, Liu X, Li X, Wang F, Wang Y, Yang X, et al. Intercomparison of OH radical measurement in a complex atmosphere in Chengdu, China. Science of The Total Environment. 2022;838:155924.
2021
Wang Y, Fu X, Wu D, Wang M, Lu K, Mu Y, Liu Z, Zhang Y, Wang T. Agricultural Fertilization Aggravates Air Pollution by Stimulating Soil Nitrous Acid Emissions at High Soil Moisture. Environmental Science & Technology. 2021;55.
Zong T, Wang H, Wu Z, Lu K, Wang Y, Zhu Y, Shang D, Xin F, HUANG X, He L, et al. Particle hygroscopicity inhomogeneity and its impact on reactive uptake. Science of The Total Environment. 2021:151364.
Song H, Lu K, Dong HB, Tan Z, Chen S, Zeng L, Zhang Y. Reduced Aerosol Uptake of Hydroperoxyl Radical May Increase the Sensitivity of Ozone Production to Volatile Organic Compounds. Environmental Science & Technology Letters. 2021.
Zhang C, Song Y, Wang H, Zeng L, Hu M, Lu K, Xie S, Carter W. Observation-Based Estimations of Relative Ozone Impacts by Using Volatile Organic Compounds Reactivities. Environmental Science & Technology Letters. 2021.
Guan Q, Lu K, Zhang N, Li X, Ma X, Yang X, Dong HB, Chen S, Cao J, Ceng L, et al. 西安市大气臭氧污染光化学特征与敏感性分析. Chinese Science Bulletin. 2021.
Huang X-F, Cao L-M, Tian X-D, Zhu Q, Saikawa E, Lin L-L, Cheng Y, He L-Y, Hu M, Zhang Y-H, et al. Critical Role of Simultaneous Reduction of Atmospheric Odd Oxygen for Winter Haze Mitigation. Environmental Science & Technology [Internet]. 2021;55:11557-11567. 访问链接
Song H, Lu K, Ye C, Dong HB, Li S, Chen S, Wu Z, Zheng M, Zeng L, Hu M, et al. A comprehensive observation-based multiphase chemical model analysis of sulfur dioxide oxidations in both summer and winter. Atmospheric Chemistry and Physics. 2021;21:13713-13727.
Tan Z, Wang H, Lu K, Dong HB, Liu Y, Zeng L, Hu M, Zhang Y. An Observational Based Modeling of the Surface Layer Particulate Nitrate in the North China Plain During Summertime. Journal of Geophysical Research: Atmospheres. 2021;126.
Tan Z, Ma X, Lu K, Jiang M, Zou Q, Wang H, Zeng L, Zhang Y. Direct evidence of local photochemical production driven ozone episode in Beijing: A case study. Science of The Total Environment. 2021;800:148868.
Liu J, Li X, Tan Z, Wang W, Yang Y, Zhu Y, Yang S, Song M, Chen S, Wang H, et al. Assessing the Ratios of Formaldehyde and Glyoxal to NO 2 as Indicators of O 3 –NO x –VOC Sensitivity. Environmental Science & Technology. 2021;55.
Zhao G, Zhu Y, Wu Z, Zong T, Chen J, Tan T, Wang H, Xin F, Lu K, Zhao C, et al. Impact of aerosol–radiation interaction on new particle formation. Atmospheric Chemistry and Physics. 2021;21:9995-10004.

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