VARIATIONS OF δ18О AND δ2H VALUES OF PRECIPITATION IN MOSCOW FROM 2017 TO 2019

Yu.K. Vasilchuk, N.A. Budantseva, J. Vasilchuk, A. Vasilchuk, I. Eremina, Y. Chizhova
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Abstract

To reveal variations in the iso topic composition of O and H in the atmospheric precipitation in Moscow and the processes influencing the isotope composition, all events of precipitation in 2017-2019 were sampled at the Meteorological Observatory of the Moscow State University: 158 samples in 2017, 119 samples in 2018 and 143 samples in 2019. The study is a prolongation of continuous measurements of the isotope composition of precipitation, started by authors in 2014. The study of the isotope composition of precipitation at the MSU Meteorological Observatory was supported by the IAEA and became a part of the Global Network of Isotopes in Precipitation (GNIP) database. It has been found that the intra-annual variability of the isotop e composition of precipitation has a pronounced seasonality. The most isotopically heavy precipitation falls from May to August, and the most isotop ically light precipitation at December-February, mainly due to seasonal air temperature variations. The ratio of the average monthly δ18O values in precipitation and air temperature for the study period varied from 0.34 to 0.39‰/°C, which is consistent with the previously obtained data for precipitation in Moscow. The δ2H-δ18O ratio in precipitation was clos e to that of the Global Meteoric Water Line, pointing to the equilibrium conditions during precipitation formation. It was established that in the summer months isotopic composition is significantly influenced by undercloud evaporation. The deuterium excess va lues in precipitation are not markedly seasonal; however, lower dexc values (below the 3-year average of 11‰) are typical for the summer months (July-August). It is most likely due to undercloud evaporation in conditions of low relative humidity and high air temperatures. Higher dexc values (above 11‰) prevailed from October to April.
2017 至 2019 年莫斯科δ18О和δ2H 预采值的变化情况
为了揭示莫斯科大气降水中 O 和 H 的同位素组成变化以及影响同位素组成的过程,莫斯科国立大学气象观测台对 2017-2019 年的所有降水事件进行了采样:2017 年 158 个样本,2018 年 119 个样本,2019 年 143 个样本。这项研究是作者于 2014 年开始的降水同位素组成连续测量的延续。在 MSU 气象观测站进行的降水同位素组成研究得到了国际原子能机构的支持,并成为全球降水同位素网络(GNIP)数据库的一部分。研究发现,降水同位素组成的年内变化具有明显的季节性。5 月至 8 月的降水同位素含量最高,12 月至 2 月的降水同位素含量最低,这主要是由于季节性气温变化造成的。研究期间降水和气温的月平均δ18O 值之比在 0.34 至 0.39‰/℃之间变化,这与之前获得的莫斯科降水数据一致。降水中的δ2H-δ18O 比值与全球陨水线的比值接近,表明降水形成过程中的平衡条件。研究证实,在夏季,同位素组成受到云下蒸发的显著影响。降水中的氘过剩值没有明显的季节性;然而,较低的氘过剩值(低于三年平均值 11‰)是夏季(7-8 月)的典型特征。这很可能是由于在相对湿度低和气温高的条件下云下蒸发造成的。10 月至 4 月的脱氧核糖核酸(dexc)值较高(高于 11‰)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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