Microplastics have increasingly been recognized as a global pollutant due to their pervasive distribution and potential adverse impacts on marine ecosystems. Microplastics (MPs) were collected from surface sediments at five sites in the Gulf of Gemlik using density separation. The isolated MPs were subsequently identified and characterized with a stereomicroscope and fluorescence microscope. This study provides the first comprehensive assessment of microplastic pollution in the sediments of the Gulf of Gemlik, focusing on their abundance, spatial distribution, and potential ecological risks. The concentration of the MPs ranged from 2,200 to 6,400 items per kilogram of dry weight across the study sites. Fibers were the dominant shape type (58.4%), while black was the most prevalent color (26%). According to the ecological risk assessment, the sediments were classified as moderately to considerably contaminated with MPs. These findings contribute new insights into the occurrence and characteristics of microplastics in the surface sediments of the Gulf of Gemlik and establish a foundation for future research and management strategies aimed at mitigating microplastic pollution.
Research Projects Coordination Unit of Istanbul University, Türkiye
Proje Numarası
FBA-2023-40344
Kaynakça
Ahmed, Q., Öztekin, A., Ali, Q. M. & Bat, L. (2025). Microplastic Contamination of Holothuria (Thymiosycia) arenicola Semper, 1868, Holothuria pardalis Selenka, 1867, Sediments and Seawater From Karachi Coast, Northern Arabian Sea, Pakistan. Marine Science and Technology Bulletin, 14(1), 10-19. https://doi.org/10.33714/masteb.1641715
Alomar, C., Estarellas, F. & Deudero, S. (2016). Microplastics in the Mediterranean Sea: deposition in coastal shallow sediments, spatial variation and preferential grain size. Marine Environmental Research, 115, 1-10. https://doi.org/10.1016/j.marenvres.2016.01.005
Arslan Kaya, T. N., Sari, E. & Kurt, M. A. (2022). Sedimentary records of trace elements contamination in sediment core from the Gulf of Gemlik, Marmara Sea, Turkey: history, contamination degree, and sources. Turkish Journal of Earth Sciences, 31(5), 452-466. https://doi.org/10.55730/1300-0985.1813
Arslan Kaya, T. N., Sarı, E., Çağatay, M. N., Kurt, M. A., Kösesakal, T., Kılıç, Ö. & Acar, D. (2023). The effects of the 1999 Gölcük earthquake (Mw 7.4) on trace element contamination of core sediments from İzmit Gulf, Turkey. Natural Hazards, 116(1), 1189-1208. https://doi.org/10.1007/s11069-022-05717-w
Baysal, A., Saygin, H. & Ustabasi, G. S. (2020). Microplastic occurrences in sediments collected from Marmara Sea-Istanbul, Turkey. Bulletin of Environmental Contamination and Toxicology, 105(4), 522-529. https://doi.org/10.1007/s00128-020-02993-9
Belivermiş, M., Kılıç, Ö., Sezer, N., Sıkdokur, E., Güngör, N. D. & Altuğ, G. (2021). Microplastic inventory in sediment profile: A case study of Golden Horn Estuary, Sea of Marmara. Marine pollution bulletin, 173 Part B, Article 113117. https://doi.org/10.1016/j.marpolbul.2021.113117
Besiktepe, S. T., Sur, H. I., Ozsoy, E., Latif, M. A., Oguz, T. & Unluata, U. (1994). The circulation and hydrography of the Marmara Sea. Progress in Oceanography, 34(4), 285-334. https://doi.org/10.1016/0079-6611(94)90018-3
Besley, A., Vijver, M. G., Behrens, P. & Bosker, T. (2017). A standardized method for sampling and extraction methods for quantifying microplastics in beach sand. Marine Pollution Bulletin, 114(1), 77-83. https://doi.org/10.1016/j.marpolbul.2016.08.055
Blašković, A., Fastelli, P., Čižmek, H., Guerranti, C. & Renzi, M. (2017). Plastic litter in sediments from the Croatian marine protected area of the natural park of Telaščica bay (Adriatic Sea). Marine Pollution Bulletin, 114(1), 583-586. https://doi.org/10.1016/j.marpolbul.2016.09.018
Brandon, J. A., Jones, W. & Ohman, M. D. (2019). Multidecadal increase in plastic particles in coastal ocean sediments. Science Advances, 5(9), Article eaax0587. https://doi.org/10.1126/sciadv.aax0587
Browne, M. A., Crump, P., Niven, S. J., Teuten, E., Tonkin, A., Galloway, T. & Thompson, R. (2011). Accumulation of microplastic on shorelines woldwide: sources and sinks. Environmental Science & Technology, 45(21), 9175-9179. https://dx.doi.org/10.1021/es201811s
Claessens, M., De Meester, S., Van Landuyt, L., De Clerck, K. & Janssen, C. R. (2011). Occurrence and distribution of microplastics in marine sediments along the Belgian coast. Marine Pollution Bulletin, 62(10), 2199-2204. https://doi.org/10.1016/j.marpolbul.2011.06.030
Çağatay, M. N., Görür, N., Polonia, A., Demirbağ, E., Sakınç, M., Cormier, M. H., ... & Eriş, K. (2003). Sea-level changes and depositional environments in the Izmit Gulf, eastern Marmara Sea, during the late glacial–Holocene period. Marine Geology, 202(3-4), 159-173. https://doi.org/10.1016/S0025-3227(03)00259-7
Doğruyol, P., Şener, M. & Balkaya, N. (2019). Determination of microplastics and large plastics in the sediments of the Golden Horn Estuary (Halic), Istanbul, Turkey. Desalination and Water Treatment, 172, 344-350. https://doi.org/10.5004/dwt.2019.25067
Enders, K., Käppler, A., Biniasch, O., Feldens, P., Stollberg, N., Lange, X., ... & Labrenz, M. (2019). Tracing microplastics in aquatic environments based on sediment analogies. Scientific Reports, 9(1), Article 15207. https://doi.org/10.1038/s41598-019-50508-2
Ergin, M., Bodur, M. N. & Ediger, V. (1991). Distribution of surficial shelf sediments in the northeastern and southwestern parts of the Sea of Marmara: strait and canyon regimes of the Dardanelles and Bosporus. Marine Geology, 96(3-4), 313-340. https://doi.org/10.1016/0025-3227(91)90154-V
Erkan, H. S., Turan, N. B., Albay, M. & Engin, G. O. (2021). Microplastic pollution in seabed sediments at different sites on the shores of Istanbul-Turkey: Preliminary results. Journal of Cleaner Production, 328, Article 129539. https://doi.org/10.1016/j.jclepro.2021.129539
Erni-Cassola, G., Gibson, M. I., Thompson, R. C. & Christie-Oleza, J. A. (2017). Lost, but found with Nile red: a novel method for detecting and quantifying small microplastics (1 mm to 20 μm) in environmental samples. Environmental Science & Technology, 51(23), 13641-13648. https://doi.org/10.1021/acs.est.7b04512
Hartmann, N. B., Huffer, T., Thompson, R. C., Hassellov, M., Verschoor, A., Daugaard, A. E., ... & Wagner, M. (2019). Are we speaking the same language? Recommendations for a definition and categorization framework for plastic debris. Environmental Science & Technology 53(3), 1039-1047. http://dx.doi.org/10.1021/acs.est.8b05297
Horton, A. A. & Dixon, S. J. (2018). Microplastics: An introduction to environmental transport processes. Wiley Interdisciplinary Reviews: Water, 5(2), Article e1268. https://doi.org/10.1002/wat2.1268
Jafarabadi, A. R., Bakhtiyari, A. R., Toosi, A. S. & Jadot, C. (2017). Spatial distribution, ecological and health risk assessment of heavy metals in marine surface sediments and coastal seawaters of fringing coral reefs of the Persian Gulf, Iran. Chemosphere, 185, 1090-1111. https://doi.org/10.1016/j.chemosphere.2017.07.110
Kershaw, P. J. (2016). Marine plastic debris and microplastics–Global lessons and research to inspire action and guide policy change. United Nations Environment Programme, Nairobi.
Kershaw, P. J., Turra, A. & Galgani, F. (2019). Guidelines for the monitoring and assessment of plastic litter and microplastics in the ocean. London, UK, GESAMP Joint Group of Experts on the Scientific Aspects of Marine Environmental Protection, 130pp. (GESAMP Reports and Studies, No. 99). http://dx.doi.org/10.25607/OBP-435
Loring, D. H. & Rantala, R. T. (1992). Manual for the geochemical analyses of marine sediments and suspended particulate matter. Earth-Science Reviews, 32(4), 235-283. https://doi.org/10.1016/0012-8252(92)90001-A
Martins, J. & Sobral, P. (2011). Plastic marine debris on the Portuguese coastline: a matter of size?. Marine Pollution Bulletin, 62(12), 2649-2653. https://doi.org/10.1016/j.marpolbul.2011.09.028
Matsuguma, Y., Takada, H., Kumata, H., Kanke, H., Sakurai, S., Suzuki, T., ... & Newman, B. (2017). Microplastics in sediment cores from Asia and Africa as indicators of temporal trends in plastic pollution. Archives of Environmental Contamination and Toxicology, 73(2), 230-239. https://doi.org/10.1007/s00244-017-0414-9
McManus, J. (1988). Grain size determination and interpretation. In M. Tucker (Ed.), Techniques in Sedimentology (pp. 63-85). Blackwell Scientific Publ.
Mendes, A. M., Golden, N., Bermejo, R. & Morrison, L. (2021). Distribution and abundance of microplastics in coastal sediments depends on grain size and distance from sources. Marine Pollution Bulletin, 172, Article 112802. https://doi.org/10.1016/j.marpolbul.2021.112802
Mutlu, T., Minaz, M., Baytaşoğlu, H. & Gedik, K. (2024). Microplastic pollution in stream sediments discharging from Türkiye's eastern Black sea basin. Chemosphere, 352, Article 141496. https://doi.org/10.1016/j.chemosphere.2024.141496
Niu, L., Li, Y., Li, Y., Hu, Q., Wang, C., Hu, J., ... & Zhang, H. (2021). New insights into the vertical distribution and microbial degradation of microplastics in urban river sediments. Water Research, 188, Article 116449. https://doi.org/10.1016/j.watres.2020.116449
Okay, A.I. & Tüysüz, O. (1999). Tethyan sutures of northern Turkey. Geological Society, London, Special Publications, 156(1), 475-515. https://doi.org/10.1144/GSL.SP.1999.156.01.22
Okay, A. I., Satir, M., Maluski, H., Siyako, M., Monié, P., Metzger, R. & Akyüz, S. (1996). Paleo-and Neo-Tethyan events in northwestern Turkey: Geologic and geochronologic constraints. 420-441. In A. Yin & T.M. Harrison (Eds.), The Tectonic Evolution of Asia, (pp.: 420-441). Cambridge University Press
Sarı, E. (2008). Source and distribution of heavy metals in river sediments from the southern drainage basin of the sea of Marmara, Turkey. Fresenius Environmental Bulletin, 17(12), 2007-2019.
Sayed, A. E. D. H., Hamed, M., Badrey, A. E., Ismail, R. F., Osman, Y. A., Osman, A. G. & Soliman, H. A. (2021). Microplastic distribution, abundance, and composition in the sediments, water, and fishes of the Red and Mediterranean seas, Egypt. Marine Pollution Bulletin, 173 Part A, Article 112966. https://doi.org/10.1016/j.marpolbul.2021.112966
Sönmez, V. Z., Akarsu, C. & Sivri, N. (2023). Impact of coastal wastewater treatment plants on microplastic pollution in surface seawater and ecological risk assessment. Environmental Pollution, 318, Article 120922. https://doi.org/10.1016/j.envpol.2022.120922
Şengör, A. M. C., Görür, N. & Şaroğlu, F. (1985). Strike-slip faulting and related basin formation in zones of tectonic escape: Turkey as a case study. In Biddle, K. & Christie-Blick, N. (Eds.), Strike-Slip Deformation, Basin Formation and Sedimentation, Special Publications, SEPM Society for Sedimentary Geology, Tulsa, 37, 227-264.
Tomlinson, D. L., Wilson, J. G., Harris, C. R. & Jeffrey, D. W. (1980). Problems in the assessment of heavy-metal levels in estuaries and the formation of a pollution index. Helgoländer Meeresuntersuchungen, 33(1), 566-575.
Uddin, S., Fowler, S. W., Uddin, M. F., Behbehani, M. & Naji, A. (2021). A review of microplastic distribution in sediment profiles. Marine Pollution Bulletin, 163, Article 111973. https://doi.org/10.1016/j.marpolbul.2021.111973
Vardar, D., Öztürk, K., Yaltırak, C., Alpar, B. & Tur, H. (2014). Late Pleistocene–Holocene evolution of the southern Marmara shelf and sub-basins: middle strand of the North Anatolian fault, southern Marmara Sea, Turkey. Marine Geophysical Research, 35(1), 69-85. https://doi.org/10.1007/s11001-013-9210-8
Wang, T., Li, B., Zou, X., Wang, Y., Li, Y., Xu, Y., ... & Yu, W. (2019). Emission of primary microplastics in mainland China: invisible but not negligible. Water Research, 162, 214-224. https://doi.org/10.1016/j.watres.2019.06.042
Xu, P., Peng, G., Su, L., Gao, Y., Gao, L. & Li, D. (2018). Microplastic risk assessment in surface waters: A case study in the Changjiang Estuary, China. Marine Pollution Bulletin, 133, 647-654. https://doi.org/10.1016/j.marpolbul.2018.06.020
Xue, B., Zhang, L., Li, R., Wang, Y., Guo, J., Yu, K. & Wang, S. (2020). Underestimated microplastic pollution derived from fishery activities and “hidden” in deep sediment. Environmental Science & Technology, 54(4), 2210-2217. https://doi.org/10.1021/acs.est.9b04850
Yaltırak, C. & Alpar, B. (2002). Evolution of the middle strand of North Anatolian Fault and shallow seismic investigation of the southeastern Marmara Sea (Gemlik Bay). Marine Geology, 190(1-2), 307-327. https://doi.org/10.1016/S0025-3227(02)00352-3
Yaltirak, C., Yalcin, T., Bozkurtoğlu, E. & Yüce, G. (2005). Water-level changes in shallow wells before and after the 1999 Izmit and Düzce earthquakes and comparison with long-term water-level observations (1999–2004), NW Turkey. Turkish Journal of Earth Sciences, 14(3), 281-309.
Yilmaz, Y., Tüysüz, O., Yiğitbaş, E., Genç, Ş. C. & Şengör, A. M. C. (1997). Geology and tectonic evolution of the Pontides. In A. G. Robinson (Ed.), Regional and Petroleum Geology of the Black Sea and Surrounding Region, American Association of Petroleum Geologists Studies in Geology. https://doi.org/10.1306/M68612C11
Yin, Z. (2023). The pollution of microplastics in sediments: The ecological risk assessment and pollution source analysis. Science of The Total Environment, 859 Part 2, Article 160323. https://doi.org/10.1016/j.scitotenv.2022.160323
Yücedağ, E., Mülayim, A. & Gündüz, S. K. (2022). Investigation of Microplastic Pollution in the Sediment and Commercial Fish Species of Gemlik Bay (Marmara Sea) by Microscopic and Spectroscopic Methods. Research Square. https://doi.org/10.21203/rs.3.rs-1802703/v1
Kütüphaneme Ekle
Yüzey Sedimentlerinde Mikroplastiklerin Mekansal Dağılımı ve Risk Değerlendirmesi: Marmara Denizi Gemlik Körfezi Örneği / Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea
Yıl 2026,
Sayı: Advanced Online Publication, 1 - 14
Mikroplastikler (MP’ler), yaygın dağılımları ve deniz ekosistemlerine potansiyel zararları nedeniyle giderek artan şekilde küresel bir kirletici olarak tanımlanmaktadır. Bu çalışmada, Gemlik Körfezi’ndeki beş istasyondan alınan yüzey sedimentlerinden mikroplastikler yoğunluk ayırma yöntemiyle ekstrakte edilmiş; ardından stereomikroskop ve floresan mikroskobu kullanılarak karakterize edilmiştir. Çalışma, Gemlik Körfezi sedimentlerindeki mikroplastik kirliliğine ilişkin bolluk, mekânsal dağılım ve potansiyel ekolojik risklere odaklanan ilk kapsamlı değerlendirmeyi sunmaktadır. Araştırma alanında MP miktarı, kuru ağırlık başına 2200 ile 6400 adet/kg arasında değişmektedir. Mikroplastiklerin baskın şekli lif (%58,4) ve baskın rengi siyah (%26) olarak belirlenmiştir. Kontaminasyon faktörü (CF) ve kirlilik yükü indeksi (PLI) esas alındığında, sedimentlerin orta düzeyde ila oldukça kirlenmiş olduğu saptanmıştır. Bu çalışma, Gemlik Körfezi yüzey sedimentlerinde mikroplastik varlığına dair yeni bulgular ortaya koymakta olup, gelecekte yapılacak araştırmalar ve mikroplastik kirliliğinin yönetimi ile azaltılmasına yönelik stratejiler için bir temel oluşturmaktadır.
İstanbul Üniversitesi Bilimsel Araştırma ve Projeler Birimi
Proje Numarası
FBA-2023-40344
Kaynakça
Ahmed, Q., Öztekin, A., Ali, Q. M. & Bat, L. (2025). Microplastic Contamination of Holothuria (Thymiosycia) arenicola Semper, 1868, Holothuria pardalis Selenka, 1867, Sediments and Seawater From Karachi Coast, Northern Arabian Sea, Pakistan. Marine Science and Technology Bulletin, 14(1), 10-19. https://doi.org/10.33714/masteb.1641715
Alomar, C., Estarellas, F. & Deudero, S. (2016). Microplastics in the Mediterranean Sea: deposition in coastal shallow sediments, spatial variation and preferential grain size. Marine Environmental Research, 115, 1-10. https://doi.org/10.1016/j.marenvres.2016.01.005
Arslan Kaya, T. N., Sari, E. & Kurt, M. A. (2022). Sedimentary records of trace elements contamination in sediment core from the Gulf of Gemlik, Marmara Sea, Turkey: history, contamination degree, and sources. Turkish Journal of Earth Sciences, 31(5), 452-466. https://doi.org/10.55730/1300-0985.1813
Arslan Kaya, T. N., Sarı, E., Çağatay, M. N., Kurt, M. A., Kösesakal, T., Kılıç, Ö. & Acar, D. (2023). The effects of the 1999 Gölcük earthquake (Mw 7.4) on trace element contamination of core sediments from İzmit Gulf, Turkey. Natural Hazards, 116(1), 1189-1208. https://doi.org/10.1007/s11069-022-05717-w
Baysal, A., Saygin, H. & Ustabasi, G. S. (2020). Microplastic occurrences in sediments collected from Marmara Sea-Istanbul, Turkey. Bulletin of Environmental Contamination and Toxicology, 105(4), 522-529. https://doi.org/10.1007/s00128-020-02993-9
Belivermiş, M., Kılıç, Ö., Sezer, N., Sıkdokur, E., Güngör, N. D. & Altuğ, G. (2021). Microplastic inventory in sediment profile: A case study of Golden Horn Estuary, Sea of Marmara. Marine pollution bulletin, 173 Part B, Article 113117. https://doi.org/10.1016/j.marpolbul.2021.113117
Besiktepe, S. T., Sur, H. I., Ozsoy, E., Latif, M. A., Oguz, T. & Unluata, U. (1994). The circulation and hydrography of the Marmara Sea. Progress in Oceanography, 34(4), 285-334. https://doi.org/10.1016/0079-6611(94)90018-3
Besley, A., Vijver, M. G., Behrens, P. & Bosker, T. (2017). A standardized method for sampling and extraction methods for quantifying microplastics in beach sand. Marine Pollution Bulletin, 114(1), 77-83. https://doi.org/10.1016/j.marpolbul.2016.08.055
Blašković, A., Fastelli, P., Čižmek, H., Guerranti, C. & Renzi, M. (2017). Plastic litter in sediments from the Croatian marine protected area of the natural park of Telaščica bay (Adriatic Sea). Marine Pollution Bulletin, 114(1), 583-586. https://doi.org/10.1016/j.marpolbul.2016.09.018
Brandon, J. A., Jones, W. & Ohman, M. D. (2019). Multidecadal increase in plastic particles in coastal ocean sediments. Science Advances, 5(9), Article eaax0587. https://doi.org/10.1126/sciadv.aax0587
Browne, M. A., Crump, P., Niven, S. J., Teuten, E., Tonkin, A., Galloway, T. & Thompson, R. (2011). Accumulation of microplastic on shorelines woldwide: sources and sinks. Environmental Science & Technology, 45(21), 9175-9179. https://dx.doi.org/10.1021/es201811s
Claessens, M., De Meester, S., Van Landuyt, L., De Clerck, K. & Janssen, C. R. (2011). Occurrence and distribution of microplastics in marine sediments along the Belgian coast. Marine Pollution Bulletin, 62(10), 2199-2204. https://doi.org/10.1016/j.marpolbul.2011.06.030
Çağatay, M. N., Görür, N., Polonia, A., Demirbağ, E., Sakınç, M., Cormier, M. H., ... & Eriş, K. (2003). Sea-level changes and depositional environments in the Izmit Gulf, eastern Marmara Sea, during the late glacial–Holocene period. Marine Geology, 202(3-4), 159-173. https://doi.org/10.1016/S0025-3227(03)00259-7
Doğruyol, P., Şener, M. & Balkaya, N. (2019). Determination of microplastics and large plastics in the sediments of the Golden Horn Estuary (Halic), Istanbul, Turkey. Desalination and Water Treatment, 172, 344-350. https://doi.org/10.5004/dwt.2019.25067
Enders, K., Käppler, A., Biniasch, O., Feldens, P., Stollberg, N., Lange, X., ... & Labrenz, M. (2019). Tracing microplastics in aquatic environments based on sediment analogies. Scientific Reports, 9(1), Article 15207. https://doi.org/10.1038/s41598-019-50508-2
Ergin, M., Bodur, M. N. & Ediger, V. (1991). Distribution of surficial shelf sediments in the northeastern and southwestern parts of the Sea of Marmara: strait and canyon regimes of the Dardanelles and Bosporus. Marine Geology, 96(3-4), 313-340. https://doi.org/10.1016/0025-3227(91)90154-V
Erkan, H. S., Turan, N. B., Albay, M. & Engin, G. O. (2021). Microplastic pollution in seabed sediments at different sites on the shores of Istanbul-Turkey: Preliminary results. Journal of Cleaner Production, 328, Article 129539. https://doi.org/10.1016/j.jclepro.2021.129539
Erni-Cassola, G., Gibson, M. I., Thompson, R. C. & Christie-Oleza, J. A. (2017). Lost, but found with Nile red: a novel method for detecting and quantifying small microplastics (1 mm to 20 μm) in environmental samples. Environmental Science & Technology, 51(23), 13641-13648. https://doi.org/10.1021/acs.est.7b04512
Hartmann, N. B., Huffer, T., Thompson, R. C., Hassellov, M., Verschoor, A., Daugaard, A. E., ... & Wagner, M. (2019). Are we speaking the same language? Recommendations for a definition and categorization framework for plastic debris. Environmental Science & Technology 53(3), 1039-1047. http://dx.doi.org/10.1021/acs.est.8b05297
Horton, A. A. & Dixon, S. J. (2018). Microplastics: An introduction to environmental transport processes. Wiley Interdisciplinary Reviews: Water, 5(2), Article e1268. https://doi.org/10.1002/wat2.1268
Jafarabadi, A. R., Bakhtiyari, A. R., Toosi, A. S. & Jadot, C. (2017). Spatial distribution, ecological and health risk assessment of heavy metals in marine surface sediments and coastal seawaters of fringing coral reefs of the Persian Gulf, Iran. Chemosphere, 185, 1090-1111. https://doi.org/10.1016/j.chemosphere.2017.07.110
Kershaw, P. J. (2016). Marine plastic debris and microplastics–Global lessons and research to inspire action and guide policy change. United Nations Environment Programme, Nairobi.
Kershaw, P. J., Turra, A. & Galgani, F. (2019). Guidelines for the monitoring and assessment of plastic litter and microplastics in the ocean. London, UK, GESAMP Joint Group of Experts on the Scientific Aspects of Marine Environmental Protection, 130pp. (GESAMP Reports and Studies, No. 99). http://dx.doi.org/10.25607/OBP-435
Loring, D. H. & Rantala, R. T. (1992). Manual for the geochemical analyses of marine sediments and suspended particulate matter. Earth-Science Reviews, 32(4), 235-283. https://doi.org/10.1016/0012-8252(92)90001-A
Martins, J. & Sobral, P. (2011). Plastic marine debris on the Portuguese coastline: a matter of size?. Marine Pollution Bulletin, 62(12), 2649-2653. https://doi.org/10.1016/j.marpolbul.2011.09.028
Matsuguma, Y., Takada, H., Kumata, H., Kanke, H., Sakurai, S., Suzuki, T., ... & Newman, B. (2017). Microplastics in sediment cores from Asia and Africa as indicators of temporal trends in plastic pollution. Archives of Environmental Contamination and Toxicology, 73(2), 230-239. https://doi.org/10.1007/s00244-017-0414-9
McManus, J. (1988). Grain size determination and interpretation. In M. Tucker (Ed.), Techniques in Sedimentology (pp. 63-85). Blackwell Scientific Publ.
Mendes, A. M., Golden, N., Bermejo, R. & Morrison, L. (2021). Distribution and abundance of microplastics in coastal sediments depends on grain size and distance from sources. Marine Pollution Bulletin, 172, Article 112802. https://doi.org/10.1016/j.marpolbul.2021.112802
Mutlu, T., Minaz, M., Baytaşoğlu, H. & Gedik, K. (2024). Microplastic pollution in stream sediments discharging from Türkiye's eastern Black sea basin. Chemosphere, 352, Article 141496. https://doi.org/10.1016/j.chemosphere.2024.141496
Niu, L., Li, Y., Li, Y., Hu, Q., Wang, C., Hu, J., ... & Zhang, H. (2021). New insights into the vertical distribution and microbial degradation of microplastics in urban river sediments. Water Research, 188, Article 116449. https://doi.org/10.1016/j.watres.2020.116449
Okay, A.I. & Tüysüz, O. (1999). Tethyan sutures of northern Turkey. Geological Society, London, Special Publications, 156(1), 475-515. https://doi.org/10.1144/GSL.SP.1999.156.01.22
Okay, A. I., Satir, M., Maluski, H., Siyako, M., Monié, P., Metzger, R. & Akyüz, S. (1996). Paleo-and Neo-Tethyan events in northwestern Turkey: Geologic and geochronologic constraints. 420-441. In A. Yin & T.M. Harrison (Eds.), The Tectonic Evolution of Asia, (pp.: 420-441). Cambridge University Press
Sarı, E. (2008). Source and distribution of heavy metals in river sediments from the southern drainage basin of the sea of Marmara, Turkey. Fresenius Environmental Bulletin, 17(12), 2007-2019.
Sayed, A. E. D. H., Hamed, M., Badrey, A. E., Ismail, R. F., Osman, Y. A., Osman, A. G. & Soliman, H. A. (2021). Microplastic distribution, abundance, and composition in the sediments, water, and fishes of the Red and Mediterranean seas, Egypt. Marine Pollution Bulletin, 173 Part A, Article 112966. https://doi.org/10.1016/j.marpolbul.2021.112966
Sönmez, V. Z., Akarsu, C. & Sivri, N. (2023). Impact of coastal wastewater treatment plants on microplastic pollution in surface seawater and ecological risk assessment. Environmental Pollution, 318, Article 120922. https://doi.org/10.1016/j.envpol.2022.120922
Şengör, A. M. C., Görür, N. & Şaroğlu, F. (1985). Strike-slip faulting and related basin formation in zones of tectonic escape: Turkey as a case study. In Biddle, K. & Christie-Blick, N. (Eds.), Strike-Slip Deformation, Basin Formation and Sedimentation, Special Publications, SEPM Society for Sedimentary Geology, Tulsa, 37, 227-264.
Tomlinson, D. L., Wilson, J. G., Harris, C. R. & Jeffrey, D. W. (1980). Problems in the assessment of heavy-metal levels in estuaries and the formation of a pollution index. Helgoländer Meeresuntersuchungen, 33(1), 566-575.
Uddin, S., Fowler, S. W., Uddin, M. F., Behbehani, M. & Naji, A. (2021). A review of microplastic distribution in sediment profiles. Marine Pollution Bulletin, 163, Article 111973. https://doi.org/10.1016/j.marpolbul.2021.111973
Vardar, D., Öztürk, K., Yaltırak, C., Alpar, B. & Tur, H. (2014). Late Pleistocene–Holocene evolution of the southern Marmara shelf and sub-basins: middle strand of the North Anatolian fault, southern Marmara Sea, Turkey. Marine Geophysical Research, 35(1), 69-85. https://doi.org/10.1007/s11001-013-9210-8
Wang, T., Li, B., Zou, X., Wang, Y., Li, Y., Xu, Y., ... & Yu, W. (2019). Emission of primary microplastics in mainland China: invisible but not negligible. Water Research, 162, 214-224. https://doi.org/10.1016/j.watres.2019.06.042
Xu, P., Peng, G., Su, L., Gao, Y., Gao, L. & Li, D. (2018). Microplastic risk assessment in surface waters: A case study in the Changjiang Estuary, China. Marine Pollution Bulletin, 133, 647-654. https://doi.org/10.1016/j.marpolbul.2018.06.020
Xue, B., Zhang, L., Li, R., Wang, Y., Guo, J., Yu, K. & Wang, S. (2020). Underestimated microplastic pollution derived from fishery activities and “hidden” in deep sediment. Environmental Science & Technology, 54(4), 2210-2217. https://doi.org/10.1021/acs.est.9b04850
Yaltırak, C. & Alpar, B. (2002). Evolution of the middle strand of North Anatolian Fault and shallow seismic investigation of the southeastern Marmara Sea (Gemlik Bay). Marine Geology, 190(1-2), 307-327. https://doi.org/10.1016/S0025-3227(02)00352-3
Yaltirak, C., Yalcin, T., Bozkurtoğlu, E. & Yüce, G. (2005). Water-level changes in shallow wells before and after the 1999 Izmit and Düzce earthquakes and comparison with long-term water-level observations (1999–2004), NW Turkey. Turkish Journal of Earth Sciences, 14(3), 281-309.
Yilmaz, Y., Tüysüz, O., Yiğitbaş, E., Genç, Ş. C. & Şengör, A. M. C. (1997). Geology and tectonic evolution of the Pontides. In A. G. Robinson (Ed.), Regional and Petroleum Geology of the Black Sea and Surrounding Region, American Association of Petroleum Geologists Studies in Geology. https://doi.org/10.1306/M68612C11
Yin, Z. (2023). The pollution of microplastics in sediments: The ecological risk assessment and pollution source analysis. Science of The Total Environment, 859 Part 2, Article 160323. https://doi.org/10.1016/j.scitotenv.2022.160323
Yücedağ, E., Mülayim, A. & Gündüz, S. K. (2022). Investigation of Microplastic Pollution in the Sediment and Commercial Fish Species of Gemlik Bay (Marmara Sea) by Microscopic and Spectroscopic Methods. Research Square. https://doi.org/10.21203/rs.3.rs-1802703/v1
Arslan Kaya, T. N. (2025). Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea. Türkiye Jeoloji Bülteni(Advanced Online Publication), 1-14. https://doi.org/10.25288/tjb.1748185
AMA
Arslan Kaya TN. Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea. Türkiye Jeol. Bült. Aralık 2025;(Advanced Online Publication):1-14. doi:10.25288/tjb.1748185
Chicago
Arslan Kaya, Tuğçe Nagihan. “Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea”. Türkiye Jeoloji Bülteni, sy. Advanced Online Publication (Aralık 2025): 1-14. https://doi.org/10.25288/tjb.1748185.
EndNote
Arslan Kaya TN (01 Aralık 2025) Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea. Türkiye Jeoloji Bülteni Advanced Online Publication 1–14.
IEEE
T. N. Arslan Kaya, “Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea”, Türkiye Jeol. Bült., sy. Advanced Online Publication, ss. 1–14, Aralık2025, doi: 10.25288/tjb.1748185.
ISNAD
Arslan Kaya, Tuğçe Nagihan. “Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea”. Türkiye Jeoloji Bülteni Advanced Online Publication (Aralık2025), 1-14. https://doi.org/10.25288/tjb.1748185.
JAMA
Arslan Kaya TN. Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea. Türkiye Jeol. Bült. 2025;:1–14.
MLA
Arslan Kaya, Tuğçe Nagihan. “Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea”. Türkiye Jeoloji Bülteni, sy. Advanced Online Publication, 2025, ss. 1-14, doi:10.25288/tjb.1748185.
Vancouver
Arslan Kaya TN. Spatial Distribution and Risk Assessment of Microplastics in Surface Sediment: A Case Study in the Gulf of Gemlik, Marmara Sea. Türkiye Jeol. Bült. 2025(Advanced Online Publication):1-14.