Daqi yu huanjing guangxue xuebao
Editorial Office of Journal of Atmospheric and Environmental Optics · China · Est. 2006
Aims & Scope
Journal of Atmospheric and Environmental Optics covers research on atmospheric observation techniques, atmospheric remote sensing, optical gas absorption cells, atmospheric visibility prediction, atmospheric aerosol nucleation, lidar detection, remote sensing retrieval algorithms, optical properties of aerosols, CO2 retrieval, sea surface signals, cloud height inversion, NO2 estimation, water-leaving reflectance products, polarization crossfire suites, and polarized remote sensing.
General Information
Submission Info
Ethics & Quality
Think.Check.Submit Compliance
A twelfth criterion — whether APC fees are clearly disclosed — is not scored here; it is left out of the total rather than counted as a failure. Publication charges appear in the metrics card above.
Based on the Think.Check.Submit framework by DOAJ, COPE & OASPA. All data from verified open sources.
Publication & Citation Trend
Source: OpenAlex · Each year’s green bar = citations earned by that year’s papers, counted to date — so recent years look lower simply because their papers haven’t had time to be cited yet.
Frequently asked questions about Daqi yu huanjing guangxue xuebao
Is Daqi yu huanjing guangxue xuebao a predatory journal?
PubScope has no integrity flags on record for Daqi yu huanjing guangxue xuebao: it is indexed in DOAJ, and is not on DOAJ's withdrawn list. Indexing is a transparency signal, not a guarantee — always confirm fit and policies before submitting.
What is the impact factor of Daqi yu huanjing guangxue xuebao?
Daqi yu huanjing guangxue xuebao is not in the Web of Science Core Collection, so it has no official Clarivate Journal Impact Factor.
Is Daqi yu huanjing guangxue xuebao indexed in Scopus and Web of Science?
Daqi yu huanjing guangxue xuebao is indexed in DOAJ.
What is the aims and scope of Daqi yu huanjing guangxue xuebao?
Journal of Atmospheric and Environmental Optics covers research on atmospheric observation techniques, atmospheric remote sensing, optical gas absorption cells, atmospheric visibility prediction, atmospheric aerosol nucleation, lidar detection, remote sensing retrieval algorithms, optical properties of aerosols, CO2 retrieval, sea surface signals, cloud height inversion, NO2 estimation, water-leaving reflectance products, polarization crossfire suites, and polarized remote sensing.
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