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152 related items for PubMed ID: 34019409
21. Modeling analysis of secondary inorganic aerosols over China: pollution characteristics, and meteorological and dust impacts. Fu X, Wang S, Chang X, Cai S, Xing J, Hao J. Sci Rep; 2016 Oct 26; 6():35992. PubMed ID: 27782166 [Abstract] [Full Text] [Related]
22. Photochemical Aging of Atmospheric Fine Particles as a Potential Source for Gas-Phase Hydrogen Peroxide. Liu P, Ye C, Zhang C, He G, Xue C, Liu J, Liu C, Zhang Y, Song Y, Li X, Wang X, Chen J, He H, Herrmann H, Mu Y. Environ Sci Technol; 2021 Nov 16; 55(22):15063-15071. PubMed ID: 34705458 [Abstract] [Full Text] [Related]
23. In situ continuous hourly observations of wintertime nitrate, sulfate and ammonium in a megacity in the North China plain from 2014 to 2019: Temporal variation, chemical formation and regional transport. Tang M, Liu Y, He J, Wang Z, Wu Z, Ji D. Chemosphere; 2021 Jan 16; 262():127745. PubMed ID: 32805654 [Abstract] [Full Text] [Related]
24. [Pollution Characteristics and Source of HULIS in the Fine Particle During the Beijing APEC]. Zhou XM, Qi XJ, Xiang P, Tan JH, Duan JC, He XL, He K, Ma YL. Huan Jing Ke Xue; 2016 May 15; 37(5):1602-8. PubMed ID: 27506010 [Abstract] [Full Text] [Related]
25. Measurement of humic-like substances in aerosols: a review. Zheng G, He K, Duan F, Cheng Y, Ma Y. Environ Pollut; 2013 Oct 15; 181():301-14. PubMed ID: 23830737 [Abstract] [Full Text] [Related]
26. Stable Sulfur Isotopes Revealed a Major Role of Transition-Metal Ion-Catalyzed SO2 Oxidation in Haze Episodes. Li J, Zhang YL, Cao F, Zhang W, Fan M, Lee X, Michalski G. Environ Sci Technol; 2020 Mar 03; 54(5):2626-2634. PubMed ID: 31944676 [Abstract] [Full Text] [Related]
27. Humic-like substances (HULIS) in springtime aerosols at a high-altitude background station in the western North Pacific: Source attribution, abundance, and light-absorption. Pani SK, Lee CT, Griffith SM, Lin NH. Sci Total Environ; 2022 Feb 25; 809():151180. PubMed ID: 34699812 [Abstract] [Full Text] [Related]
28. Intense secondary aerosol formation due to strong atmospheric photochemical reactions in summer: observations at a rural site in eastern Yangtze River Delta of China. Wang D, Zhou B, Fu Q, Zhao Q, Zhang Q, Chen J, Yang X, Duan Y, Li J. Sci Total Environ; 2016 Nov 15; 571():1454-66. PubMed ID: 27418517 [Abstract] [Full Text] [Related]
29. Optical properties, source apportionment and redox activity of humic-like substances (HULIS) in airborne fine particulates in Hong Kong. Ma Y, Cheng Y, Qiu X, Cao G, Kuang B, Yu JZ, Hu D. Environ Pollut; 2019 Dec 15; 255(Pt 1):113087. PubMed ID: 31541815 [Abstract] [Full Text] [Related]
30. Observation of chemical components of PM2.5 and secondary inorganic aerosol formation during haze and sandy haze days in Zhengzhou, China. Dong Z, Su F, Zhang Z, Wang S. J Environ Sci (China); 2020 Feb 15; 88():316-325. PubMed ID: 31862073 [Abstract] [Full Text] [Related]
31. Atmospheric HULIS and its ability to mediate the reactive oxygen species (ROS): A review. Win MS, Tian Z, Zhao H, Xiao K, Peng J, Shang Y, Wu M, Xiu G, Lu S, Yonemochi S, Wang Q. J Environ Sci (China); 2018 Sep 15; 71():13-31. PubMed ID: 30195672 [Abstract] [Full Text] [Related]
32. Using Stable Sulfur Isotope to Trace Sulfur Oxidation Pathways during the Winter of 2017-2019 in Tianjin, North China. Ding S, Chen Y, Li Q, Li XD. Int J Environ Res Public Health; 2022 Sep 02; 19(17):. PubMed ID: 36078683 [Abstract] [Full Text] [Related]
33. Sources and atmospheric processing of brown carbon and HULIS in the Indo-Gangetic Plain: Insights from compositional analysis. Mukherjee A, Dey S, Rana A, Jia S, Banerjee S, Sarkar S. Environ Pollut; 2020 Dec 02; 267():115440. PubMed ID: 32858437 [Abstract] [Full Text] [Related]
34. Strong impacts of biomass burning, nitrogen fertilization, and fine particles on gas-phase hydrogen peroxide (H2O2). Ye C, Xue C, Liu P, Zhang C, Ma Z, Zhang Y, Liu C, Liu J, Lu K, Mu Y. Sci Total Environ; 2022 Oct 15; 843():156997. PubMed ID: 35777574 [Abstract] [Full Text] [Related]
35. Chemistry-triggered events of PM2.5 explosive growth during late autumn and winter in Shanghai, China. Sun W, Wang D, Yao L, Fu H, Fu Q, Wang H, Li Q, Wang L, Yang X, Xian A, Wang G, Xiao H, Chen J. Environ Pollut; 2019 Nov 15; 254(Pt A):112864. PubMed ID: 31369912 [Abstract] [Full Text] [Related]
36. Significant contribution of carbonyls to atmospheric oxidation capacity (AOC) during the winter haze pollution over North China Plain. Yang X, Zhang G, Pan G, Fan G, Zhang H, Ge X, Du M. J Environ Sci (China); 2024 May 15; 139():377-388. PubMed ID: 38105063 [Abstract] [Full Text] [Related]
37. Impact of aerosol in-situ peroxide formations induced by metal complexes on atmospheric H2O2 budgets. Song H, Lu K, Dong H, Tan Z, Chen S, Chen Z, Zeng L, Zhang Y. Sci Total Environ; 2023 Sep 20; 892():164455. PubMed ID: 37245820 [Abstract] [Full Text] [Related]
38. Increasing importance of nitrate formation for heavy aerosol pollution in two megacities in Sichuan Basin, southwest China. Tian M, Liu Y, Yang F, Zhang L, Peng C, Chen Y, Shi G, Wang H, Luo B, Jiang C, Li B, Takeda N, Koizumi K. Environ Pollut; 2019 Jul 20; 250():898-905. PubMed ID: 31085476 [Abstract] [Full Text] [Related]
39. Optical properties, molecular characterizations, and oxidative potentials of different polarity levels of water-soluble organic matters in winter PM2.5 in six China's megacities. Zhang T, Shen Z, Huang S, Lei Y, Zeng Y, Sun J, Zhang Q, Ho SSH, Xu H, Cao J. Sci Total Environ; 2022 Dec 20; 853():158600. PubMed ID: 36089047 [Abstract] [Full Text] [Related]
40. Elevated particle acidity enhanced the sulfate formation during the COVID-19 pandemic in Zhengzhou, China. Yang J, Wang S, Zhang R, Yin S. Environ Pollut; 2022 Mar 01; 296():118716. PubMed ID: 34933059 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]