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Мониторинг стабильных изотопов (δ2H, δ18O) в осадках Москвы (Россия): сравнение периодов 2005-2014 и 1970–1979 гг. / Зыкин, Николай; Токарев, Игорь Владимирович; Виноград, Наталия Анатольевна.
в: Вестник Санкт-Петербургского университета. Науки о Земле, Том 66, № 4, 30.11.2021, стр. 1-14.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - Мониторинг стабильных изотопов (δ2H, δ18O) в осадках Москвы (Россия): сравнение периодов 2005-2014 и 1970–1979 гг.
AU - Зыкин, Николай
AU - Токарев, Игорь Владимирович
AU - Виноград, Наталия Анатольевна
N1 - Publisher Copyright: © 2021 St. Petersburg University Press. All rights reserved.
PY - 2021/11/30
Y1 - 2021/11/30
N2 - The isotopic composition of oxygen (δ18O) and hydrogen (δ2H) of atmospheric precipitation in Moscow in 2005–2014 was studied by sampling single precipitations (a total of 842 measurements after rejection of unreliable samples). A comparison was made with similar studies carried out by All-Russian Research Institute of Hydrogeology and Engineering Geology and Water Problems Institute of the Russian Academy of Sciences for the IAEA-WMO GNIP network in 1969–1979, when monthly average samples were taken by the accumulation method (61 pair determinations of deuterium and oxygen-18, mainly in 1975–1979). The 2005–2015 series is reduced to a similar form as the 1969–1979 series, recalculated through the data on the volume of precipitation at the nearest meteorological station. It was found that in the last decade there has been a significant change in the equation of the local line of meteoric waters, which for the first period had the form δ2H = 6.09 × δ18O – 23.0 ‰ (R2 = 0.87), and is currently described by the relation δ2H = 6.93 × δ18O – 11.3 ‰ (R2 = 0.944). There is also a decrease in depletion of the average values of δ2H and δ18O, compared with the first observation period, which apparently reflects the course of climatic changes. At the same time, within each of the periods, a negative (albeit relatively small) slope of the line of approximation of chronological data is noted. Deuterium excess naturally changes seasonally, with negative values in summer, primarily due to non-equilibrium fractionation during evaporation. In 2005–2014, the temperature dependence of the isotopic composition of precipitation changed significantly in comparison with 1969–1979, which makes it impossible to reconstruct the composition of precipitation in the past from meteorological observations.
AB - The isotopic composition of oxygen (δ18O) and hydrogen (δ2H) of atmospheric precipitation in Moscow in 2005–2014 was studied by sampling single precipitations (a total of 842 measurements after rejection of unreliable samples). A comparison was made with similar studies carried out by All-Russian Research Institute of Hydrogeology and Engineering Geology and Water Problems Institute of the Russian Academy of Sciences for the IAEA-WMO GNIP network in 1969–1979, when monthly average samples were taken by the accumulation method (61 pair determinations of deuterium and oxygen-18, mainly in 1975–1979). The 2005–2015 series is reduced to a similar form as the 1969–1979 series, recalculated through the data on the volume of precipitation at the nearest meteorological station. It was found that in the last decade there has been a significant change in the equation of the local line of meteoric waters, which for the first period had the form δ2H = 6.09 × δ18O – 23.0 ‰ (R2 = 0.87), and is currently described by the relation δ2H = 6.93 × δ18O – 11.3 ‰ (R2 = 0.944). There is also a decrease in depletion of the average values of δ2H and δ18O, compared with the first observation period, which apparently reflects the course of climatic changes. At the same time, within each of the periods, a negative (albeit relatively small) slope of the line of approximation of chronological data is noted. Deuterium excess naturally changes seasonally, with negative values in summer, primarily due to non-equilibrium fractionation during evaporation. In 2005–2014, the temperature dependence of the isotopic composition of precipitation changed significantly in comparison with 1969–1979, which makes it impossible to reconstruct the composition of precipitation in the past from meteorological observations.
KW - Atmospheric precipitation
KW - Climate
KW - Isotopic composition of oxygen and hydrogen
UR - http://www.scopus.com/inward/record.url?scp=85122176703&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/c5e83f7c-560d-39a1-9ff4-cadc865fb1b1/
U2 - 10.21638/spbu07.2021.405
DO - 10.21638/spbu07.2021.405
M3 - статья
AN - SCOPUS:85122176703
VL - 66
SP - 1
EP - 14
JO - Вестник Санкт-Петербургского университета. Науки о Земле
JF - Вестник Санкт-Петербургского университета. Науки о Земле
SN - 2541-9668
IS - 4
ER -
ID: 88980949