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Remote Sensing of Atmospheric Ozone. 1. Ground-based Methods. / Виролайнен, Яна Акселевна; Тимофеев, Юрий Михайлович.

In: Russian Meteorology and Hydrology, Vol. 50, No. 8, 17.10.2025, p. 637-648.

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@article{9d7d62ea4a52449a8e9aadb460bfc7c6,
title = "Remote Sensing of Atmospheric Ozone. 1. Ground-based Methods",
abstract = "Ozone is one of the most important atmospheric components affecting climate, weather, and ecology. The global system of ozone monitoring operates within the international and national observation systems. The paper considers the most informative and high-precision ground-based methods for measuring atmospheric ozone that have been used for a long time and defines basic requirements for the accuracy, temporal and spatial resolution of measurements of different ozone characteristics in application to various problems.",
author = "Виролайнен, {Яна Акселевна} and Тимофеев, {Юрий Михайлович}",
year = "2025",
month = oct,
day = "17",
doi = "10.3103/S1068373925080011",
language = "English",
volume = "50",
pages = "637--648",
journal = "Russian Meteorology and Hydrology",
issn = "1068-3739",
publisher = "Allerton Press, Inc.",
number = "8",

}

RIS

TY - JOUR

T1 - Remote Sensing of Atmospheric Ozone. 1. Ground-based Methods

AU - Виролайнен, Яна Акселевна

AU - Тимофеев, Юрий Михайлович

PY - 2025/10/17

Y1 - 2025/10/17

N2 - Ozone is one of the most important atmospheric components affecting climate, weather, and ecology. The global system of ozone monitoring operates within the international and national observation systems. The paper considers the most informative and high-precision ground-based methods for measuring atmospheric ozone that have been used for a long time and defines basic requirements for the accuracy, temporal and spatial resolution of measurements of different ozone characteristics in application to various problems.

AB - Ozone is one of the most important atmospheric components affecting climate, weather, and ecology. The global system of ozone monitoring operates within the international and national observation systems. The paper considers the most informative and high-precision ground-based methods for measuring atmospheric ozone that have been used for a long time and defines basic requirements for the accuracy, temporal and spatial resolution of measurements of different ozone characteristics in application to various problems.

U2 - 10.3103/S1068373925080011

DO - 10.3103/S1068373925080011

M3 - Article

VL - 50

SP - 637

EP - 648

JO - Russian Meteorology and Hydrology

JF - Russian Meteorology and Hydrology

SN - 1068-3739

IS - 8

ER -

ID: 147634177