ON CHANGES IN THE HYDROPHYSICAL AND HYDROCHEMICAL STRUCTURE OF THE UPPER 200-METER LAYER OF THE BLACK SEA IN THE LAST DECADE AND A HALF

Capa

Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Acesso é pago ou somente para assinantes

Resumo

According to the long-term monitoring of the north-eastern part of the Black Sea at the Gelendzhik testing site of the IO RAS, a trend of salinization and warming of the surface waters of the Black Sea has been observed in the last 15 years. As a result, the increase in salinity of the surface water layer over these years is approximately 0.5 PSU and temperature – by 0.5°C. At the same time, the density of water in the upper 300 m layer increases, which is expressed in an increase in isopycnals and a decrease in their depth. It was found that in the period 2014–2024, the depth of the redox interface did not change and in the observation area amounted to 156±9 m, while the values of the potential density at which hydrogen sulfide appears changed from 16.15±0.02 to 16.25±0.02 kg/m3. It follows that the generally accepted binding of the appearance and disappearance of hydrochemical parameters to certain values of water density cannot be considered absolute and changes over time. In the conditions of the revealed salinization and warming of the active layer of Black Sea waters in the last 15 years, the distribution of oxygen and hydrogen sulfide by depth can be considered as more stable characteristics, less susceptible to climate change, at least during the observation period of 2014–2024 described in the article.

Sobre autores

A. Dubinin

P.P. Shirshov Institute of Oceanology, Russian Academy of Sciences

Email: dubinin@ocean.ru
Moscow, Russia

A. Zatsepin

P.P. Shirshov Institute of Oceanology, Russian Academy of Sciences

Email: dubinin@ocean.ru
Moscow, Russia

O. Podymov

Southern Branch of the P.P. Shirshov Institute of Oceanology Russian Academy of Sciences

Email: dubinin@ocean.ru
Gelendzhik, Russia

M. Rimskaya-Korsakova

P.P. Shirshov Institute of Oceanology, Russian Academy of Sciences

Email: dubinin@ocean.ru
Moscow, Russia

Bibliografia

  1. Подымов О.И., Зацепин А.Г., Очередник В.В. Рост солености и температуры в деятельном слое северо-восточной части Черного моря с 2010 по 2020 год // Морской гидрофизический журнал. 2021. Т. 37. № 3. С. 279–287. https://doi.org/10.22449/0233-7584-2021-3-279-287
  2. Mikaelyan A.S., Zatsepin A.G., Chasovnikov V.K. Long term changes in nutrient supply of phytoplankton growth in the Black Sea // J. Mar. Systems. 2013. V. 117‒118. P. 53‒64.
  3. h10.1016/j.jmarsys.2013.02.012
  4. Сорокин Ю.И. Черное море // Природа. Ресурсы (Отв. ред. М. Е. Виноградов). М.: Наука, 1982. 216 с.
  5. Konovalov S., Murray J., Luther G. Basic Processes of Black Sea // Biogeochemistry. Oceanography. 2005. V. 2. P. 28–35. h10.5670/oceanog.2005.39
  6. Ostrovskii A.G., Zatsepin A.G., Solovyev V.A. The temporal variability of oxygen inventory in the NE Black Sea slope water // Ocean Sci. 2018. V. 14. P. 1567‒1579. h
  7. Capet A., Stanev E.V., Beckers J.-M. et al. Decline of the Black Sea oxygen inventory // Biogeosciences. 2016. V. 13. P. 1287–1297.
  8. h10.5194/bg-13-1287-2016
  9. Pakhomova S., Vinogradova E., Yakushev E. et al. Interannual variability of the Black Sea Proper oxygen and nutrients regime: The role of climatic and anthropogenic forcing // Estuarine, Coastal and Shelf Science. 2013.
  10. h10.1016/j.ecss.2013.10.006
  11. Арашкевич Е.Г., Луппова Н.Е., Никишина А.Б. и др. Судовой экологический мониторинг в шельфовой зоне Черного моря: оценка современного состояния пелагической экосистемы (2005–2014 гг.) // Океанология. 2015. Т. 55. № 6. C. 964‒970.
  12. Дубинин А.В., Демидова Т.П., Кременецкий В.В. и др. Определение восстановленных форм серы в анаэробной зоне Черного моря: сравнение методов спектрофотометрии и иодометрии // Океанология. 2012. Т. 52. № 2. С. 200‒209.
  13. Murray J.W., Yakushev E. The suboxic transition zone in the Black Sea / In: L.N. Neretin (Ed). Past and present water column anoxia. Springer, 2006. P. 105‒138.
  14. Volkov I.I., Neretin L.N. Hydrogen Sulfide in the Black Sea / In: A.G. Kostianoy, A.N. Kosarev (Eds.). The Black Sea Environment. The Handbook of Environmental Chemistry. Berlin, Heidelberg: Springer, 2008. P. 309–331.
  15. Журбас В.М., Зацепин А.Г., Григорьева Ю.В. и др. Циркуляция вод и характеристики разномасштабных течений в верхнем слое Черного моря по дрифтерным данным // Океанология. 2004. Т. 44. № 1. С. 34–48.

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML

Declaração de direitos autorais © Russian Academy of Sciences, 2025