Distribution and Composition of Hydrocarbons in the Bottom Sediments of Kamyshovaya Bay (Black Sea)
O. V. Soloveva1, E. A. Tikhonova1, K. I. Gurov2, ✉
1 A. O. Kovalevsky Institute of Biology of the Southern Seas of RAS, Sevastopol, Russian Federation
2 Marine Hydrophysical Institute of RAS, Sevastopol, Russian Federation
✉ e-mail: gurovki@gmail.com
Abstract
Purpose. The purpose of the study is to identify the features of spatial and vertical distribution of hydrocarbons in bottom sediments of the coastal area under constant anthropogenic load, and to assess the likely sources of their inlet into the marine environment (using Kamyshovaya Bay as an example).
Methods and Results. The surface layer of bottom sediments (nine stations) and the sediment column were sampled in July 2021 as a part of long-term monitoring of the Sevastopol bays jointly performed by FRC IBSS and FRC MHI. The features of spatial distribution of hydrocarbons, alkanes and some geochemical markers in the surface layer (0–5 cm) and the vertical profile of bottom sediments are studied. The 30-year accumulation history of the considered substances in the bay bottom sediments is analyzed. The concentration of hydrocarbons in the bottom sediments ranges from 27.6 to 98.5 mg/kg that allows us to classify these sediments as low-polluted. A layer-by-layer study of the hydrocarbon composition in the bay bottom sediments shows that in the course of 30 years the bottom sediments were not significantly polluted with hydrocarbons. The results of analyzing the alkane composition and the geochemical marker values make it possible to establish that, as well as in the surface layer, the predominant source of hydrocarbon inlet was allochthonous and autochthonous organic matter. The increased values of geochemical markers identifying oil pollution indicate the fact that the inlet of oil and oil products can be considered a secondary source of hydrocarbons.
Conclusions. Hydrocarbons in the bottom sediments are distributed unevenly over the Kamyshovaya Bay water area, namely in the central part of the bay, a zone of the increased pollution is formed. It can be a consequence of the processes taking place in the semi-enclosed bay, as well as conditioned by the type of bottom sediments. The results of studying the hydrocarbon composition of bottom sediments show that in the course of the past 30 years and up to the present, Kamyshovaya Bay has been under the anthropogenic load which fluctuated insignificantly due to the degree of economic activity of the port. At the same time, the level of pollution in the bay remains low.
Keywords
bottom sediments, hydrocarbons, n-alkanes, markers, Kamyshovaya Bay, Black Sea
Acknowledgements
The work was carried out within the framework of state assignments of IBSS on theme “Study of biogeochemical patterns of radioecological and chemoecological processes in the ecosystems of water bodies of the Sea of Azov–Black Sea Basin in comparison with other areas of the World Ocean and individual aquatic ecosystems of their drainage basins to ensure sustainable development in the southern seas of Russia” (No. 124030100127-7), and FSBSI FRC MHI on themes “Fundamental studies of the processes that determine fluxes of matter and energy in the marine environment and at its boundaries, the state and evolution of the physical and biogeochemical structure of marine systems in modern conditions” (FNNN-2024-0001) and “Monitoring of the carbonate system, CO2 content and fluxes in the marine environment of the Black Sea and the Sea of Azov” (FNNN-2022-0002).
Original russian text
Original Russian Text © O. V. Soloveva, E. A. Tikhonova, K. I. Gurov, 2024, published in MORSKOY GIDROFIZICHESKIY ZHURNAL, Vol. 40, Iss. 5 (2024)
For citation
Soloveva, O.V., Tikhonova, E.A. and Gurov, K.I., 2024. Distribution and Composition of Hydrocarbons in the Bottom Sediments of Kamyshovaya Bay (Black Sea). Physical Oceanography, 31(5), pp. 626-646.
References
- Mezenceva, I.V. and Malchenko, Y.A., 2015. Integrated Approach in the Organization of Marine Pollution Monitoring in Coastal Water Areas of Sevastopol. Proceedings of N.N. Zubov State Oceanographic Institute. Moscow: GOIN, pp. 326-339 (in Russian).
- Kuftarkova, E.A., Rodionova, N.Yu., Gubanov, V.I. and Bobko, N.I., 2008. Hydrochemical Characteristics of Several Bays of Sevastopol Coast. In: YugNIRO, 2008. YugNIRO Proceedings. Kerch: YugNIRO. Vol. 46, pp. 110-117 (in Russian).
- Mironov, O.G. and Alyomov, S.V., eds., 2018. Sanitary and Biological Studies of the South-Western Crimea Coastal Waters at the Beginning of XXI Century. Simferopol: PP “ARIAL”, 276 р. https://doi.org/10.21072/978-5-907118-89-8 (in Russian).
- Kremenchutskii, D.A. and Gurova, Yu.S., 2023. Factors Forming the Spatial Distribution of Natural and Man-Made Radionuclides in the Bottom Sediments of the Kamyshovaya Bay, Sevastopol. Physical Oceanography, 30(5), pp. 652-665.
- Soloveva, O.V. and Tikhonova, E.A., 2018. The Organic Matter Content Dynamics in the Sea Bottom Sediments of the Sevastopol Harbor Water Area. Scientific Notes of V.I. Vernadsky Crimean Federal University. Biology. Chemistry, 4(70), pp. 196-206 (in Russian).
- Kurinnaya, Yu.S., Gurov, K.I., Zabegaev, I.A. and Orekhova, N.A., 2022. Redox Conditions and Characteristics of Bottom Sediments in the Bays of the Sevastopol Region. Ecological Safety of Coastal and Shelf Zones of Sea, (1), pp. 42-54. https://doi.org/10.22449/2413- 5577-2022-1-42-54
- Petrenko, O.A., ed., 2008. Main Results of Complex Research in the Azov-Black Sea Basin and the World Ocean. Kerch: YugNIRO, 195 p. (in Russian).
- Ovsyany, E.J., Romanov, A.S., Min’kovskaya, R.Ya., Krasnovid, I.I., Ozyumenko, B.A. and Zymbal, I.M., 2001. Basic Polluting Sources of Sea near Sevastopol. In: MHI, 2001. Ecological Safety of Coastal and Shelf Zones and Comprehensive Use of Shelf Resources. Sevastopol: ECOSI-Gidrofizika. Iss. 2, pp. 138-152 (in Russian).
- Tikhonova, E.A., Gurov, K.I. and Soloveva, O.V., 2023. Features of Distribution of Hydrocarbons in Bottom Sediments of the Streletskaya Bay (Black Sea). Physical Oceanography, 30(5), pp. 632-651.
- Osadchaya, T.S., 2013. Oil Hydrocarbons in Bottom Sediments of Sevastopol Coastal Areas (The Black Sea). Scientific World, 43(3), pp. 30-36 (in Russian).
- Venkatesan, M.I. and Kaplan, I.R., 1982. Distribution and Transport of Hydrocarbons in Surface Sediments of the Alaskan Outer Continental Shelf. Geochimica et Cosmochimica Acta, 46(11), pp. 2135-2149. https://doi.org/10.1016/0016-7037(82)90190-9
- Glyaznetsova, Yu.S. and Nemirovskaya, I.A., 2020. Features of Bitumoid Distribution in Bottom Sediments of the Barents Sea. Oceanology, 60(6), pp. 831-839. https://doi.org/10.1134/S0001437020050057
- Mironov, O.G., Kirjukhina, L.N. and Alyomov, S.V., 2003. Sanitary-Biological Aspects of the Sevastopol Bays Ecology in XX Century. Sevastopol: ECOSI-Gidrofizika, 185 p. (in Russian).
- Kashirtsev, V.A., 2003. Organic Geochemistry of Naphthides of the Eastern Siberian Platform. Yakutsk: YAF SO RAN, 160 p. (in Russian).
- Soloveva, O.V., Tikhonova, E.A., Mironov, O.A. and Alyomova, T.E., 2021. Origin of Hydrocarbons in the Water of the River–Sea Mixing Zone: A Case Study from the Chernaya River – The Sevastopol Bay, Black Sea. Regional Studies in Marine Science, 45, 101870. https://doi.org/10.1016/j.rsma.2021.101870
- Peters, K.E. and Moldowan, J.M., 1993. The Biomarker Guide: Interpreting Molecular Fossils in Petroleum and Ancient Sediments. New Jersey: Prentice Hall, 363 p.
- Peters, K.E., Walters, C.C. and Moldowan, J.M., 2005. The Biomarker Guide. Volume 1: Biomarkers and Isotopes in the Environment and Human History. Cambridge, New York, Melborne: Cambridge University Press, 1132 p. https://doi.org/10.1017/CBO9780511524868
- Bouloubassi, I. and Saliot, A., 1993. Investigation of Anthropogenic and Natural Organic Inputs in Estuarine Sediments Using Hydrocarbon Markers (NAH, LAB, PAH). Oceanologica Acta, 16(2), pp. 145-161.
- Tolosa, I., Mora, S., Sheikholeslami, M.R., Villeneuve, J.P., Bartocci, J. and Cattini, C., 2004. Aliphatic and Aromatic Hydrocarbons in Coastal Caspian Sea Sediments. Marine Pollution Bulletin, 48(1-2), pp. 44-60. https://doi.org/10.1016/S0025-326X(03)00255-8
- Mironov, O.G., Milovidova, N.Yu. and Kiryukhina, L.N., 1986. On Maximum Permissible Concentrations of Petroleum Products in Bottom Sediments of the Black Sea Littoral. Gidrobiologicheskiy Zhurnal, 22(6), pp. 76-78 (in Russian).
- Nemirovskaya, I.A., 2013. Oil in the Ocean (Pollution and Natural Flow). Moscow: Scientific World, 432 p. (in Russian).
- Cranwell, P.A., 1973. Chain-Length Distribution of n-Alkanes from Lake Sediments in Relation to Post-Glacial Environmental Change. Freshwater Biology, 3(3), pp. 259-265. https://doi.org/10.1111/j.1365-2427.1973.tb00921.x
- Gao, Y., Han, Y., Xia, J., Tan, J., Wang, Y.-P. and Wang, S., 2021. Composition and Distribution of Aliphatic Hydrocarbon Compounds and Biomarkers in Seafloor Sediments from Offshore of the Leizhou Peninsula (South China). ACS Omega, 6(50), pp. 34286-34293. https://doi.org/10.1021/acsomega.1c03529
- Wang, X.-C., Sun, S., Ma, H.-Q. and Liu, Y., 2006. Sources and Distribution of Aliphatic and Polyaromatic Hydrocarbons in Sediments of Jiaozhou Bay, Qingdao (China). Marine Pollution Bulletin, 52(2), pp. 129-138. https://doi.org/10.1016/j.marpolbul.2005.08.010
- Ficken, K.J., Li, B., Swain, D.L. and Eglinton, G., 2000. An n-Alkane Proxy for the Sedimentary Input of Submerged/Floating Freshwater Aquatic Macrophytes. Organic Geochemistry, 31(7-8), pp. 745-749. https://doi.org/10.1016/S0146-6380(00)00081-4
- Nemirovskaya, I.A., 2020. Hydrocarbons in the Water and Bottom Sediments of the Barents Sea during Ice Cover Variability. Geochemistry International, 58(7), pp. 822-834. https://doi.org/10.1134/S0016702920070071
- Yunker, M.B., Macdonald, R.W., Ross, P.S., Johannessen, S.C. and Dangerfield, N., 2015. Alkane and PAH Provenance and Potential Bioavailability in Coastal Marine Sediments Subject to a Gradient of Anthropogenic Sources in British Columbia, Canada. Organic Geochemistry, 89-90, pp. 80-116. https://doi.org/10.1016/j.orggeochem.2015.10.002