Research Article
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Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye

Year 2024, Volume: 13 Issue: 4, 272 - 281
https://doi.org/10.33714/masteb.1557410

Abstract

When bilge water from ships is illegally discharged into the sea, it causes severe damage to the marine and coastal ecosystem. MARPOL Annex-1 does not cover many fishing vessels since it only covers vessels over 400 GT (gross tonnage). According to Turkish Statistical Institute (TURKSTAT) data, only 174 of the 14064 fishing vessels registered in Türkiye are above 400 GT. In our country, only 63 of 325 fishing harbors have waste reception facilities to control and collect bilge water. In this study, the amount of bilge waste that fishing vessels can produce was calculated using engine power information, and it was determined that a fishing vessel can produce an average of 155 L/day of bilge waste. It was also calculated that the bilge waste from fishing vessels could be at least 463872 m3/year, which is more than the 416370 m3 bilge waste collected from all vessels in 2021 according to the data of the Ministry of Environment, Urbanization and Climate Change. As a result, it is assessed that this risk can be reduced by increasing the number of waste reception facilities, the legal responsibility of waste reception facilities for bilge waste of fishing vessels, and strict inspections.

Ethical Statement

For this type of study, formal consent is not required.

References

  • Akman, R., & Atıcı, A. A. (2022). Van Gölü’nde sintine suyu kaynaklı kirliliğin incelenmesi. Yüzüncü Yıl Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 27(2), 452-465.
  • Arıcı, E. (2017). Karadeniz'in Sinop kıyı sahil şeridinden elde edilen baskın makroalglerin ve deniz çayırlarının ağır metal kirliliği tespitinde biyomonitör olarak kullanılmaları [Ph.D. Thesis. Sinop University].
  • Beyrem, H., Louati, H., Essid, N., Aïssa, P., & Mahmoudi, E. (2010). Effects of two lubricant oils on marine nematode assemblages in a laboratory microcosm experiment. Marine Environmental Research, 69(4), 248–253. https://doi.org/10.1016/j.marenvres.2009.10.018
  • Chanthamalee, J., Wongchitphimon, T., & Luepromchai, E. (2013). Treatment of oily bilge water from small fishing vessels by PUF-immobilized Gordonia sp. JC11. Water, Air, & Soil Pollution, 224, 1601. https://doi.org/10.1007/s11270-013-1601-6
  • Di Cintio, A., Scianna, C., & Prato, G. (2022). Analysis of small-scale fisheries value chain: An interview-based approach in Italian marine protected areas. Fisheries Research, 252, 106358. https://doi.org/10.1016/j.fishres.2022.106358
  • FAO. (2018). FAO yearbook, fishery and aquaculture statistics 2016. Rome: FAO.
  • FAO. (2022). Fishing fleet. In The state of world fisheries and aquaculture 2022. Retrieved from https://www.fao.org/3/cc0461en/online/sofia/2022/fishing-fleet.html
  • Finska, L., Ivanova, L., Jakobsen, I. U., Rapp Nilsen, H., Normann, A. K., & Solski, J. (2022). Waste management on fishing vessels and in fishing harbors in the Barents Sea: Gaps in law, implementation, and practice. Ocean Development & International Law, 53(4), 289-317. https://doi.org/10.1080/00908320.2022.2147306
  • GESAMP (Joint Group of Experts on the Scientific Aspects of Marine Environmental Protection). (2007). Estimates of oil entering the marine environment from sea-based activities. GESAMP Reports and Studies No. 75. IMO FAO UNESCO-IOC WMO UNIDO IAEA UN UNEP.
  • Hamzeh, M. A., Shah-Hosseini, M., & Naderi Beni, A. (2013). Effect of fishing vessels on trace metal contamination in sediments of three harbors along Iranian Oman Sea coast. Environmental Monitoring and Assessment, 185(2), 1791-1807. https://doi.org/10.1007/s10661-012-2668-z
  • Jalkanen, J. P., Johansson, L., Wilewska-Bien, M., Granhag, L., Ytreberg, E., Eriksson, K. M., & Moldanova, J. (2020). Modeling of discharges from Baltic Sea shipping. Ocean Science, 17(3), 699-728. https://doi.org/10.5194/os-17-699-2021
  • Keshavarzi, B., Ebrahimi, P., & Moore, F. (2015). A GIS-based approach for detecting pollution sources and bioavailability of metals in coastal and marine sediments of Chabahar Bay, SE Iran. Geochemistry, 75(2), 185-195. https://doi.org/10.1016/j.chemer.2014.11.003
  • Lin, B., Lin, C. Y., & Jong, T. C. (2007). Investigation of strategies to improve the recycling effectiveness of waste oil from fishing vessels. Marine Policy, 31(4), 415-420. https://doi.org/10.1080/19443994.2014.887040
  • MEUC (Ministry of Environment, Urbanization and Climate Change). (2024a). Balıkçılık filosunun kapasitesi. Retrieved from https://cevreselgostergeler.csb.gov.tr/balikcilik-filosunun-kapasitesi-i-85842
  • MEUC (Ministry of Environment, Urbanization and Climate Change). (2024b). Gemilerden kaynaklanan atık miktarları. Retrieved from https://cevreselgostergeler.csb.gov.tr/gemilerden-kaynaklanan-atik-miktarlari-i-85764
  • MEUC (Ministry of Environment, Urbanization and Climate Change). (2024c). Atık kabul tesisleri güncel liste. Retrieved from https://webdosya.csb.gov.tr/db/cygm/icerikler/atik-kabul-tes-s--guncel-l-ste-20240223143725.pdf
  • Ministry of Agriculture and Forestry. (2024). Balıkçı barınakları. Retrieved from https://www.tarimorman.gov.tr/BSGM/Belgeler/Icerikler/Su%20%C3%9Cr%C3%BCnleri%20Altyap%C4%B1lar%C4%B1/Bal%C4%B1k%C3%A7%C4%B1%20Bar%C4%B1naklar%C4%B1.pdf
  • Mısır, S. (2008). Karadeniz Bölgesi balıkçı tekneleri. Yunus Araştırma Bülteni, 8(1), 13-16.
  • National Research Council (NRC). (2003). Oil in the sea III: Inputs, fates, and effects. Washington: The National Academies Press.
  • Ortiz-Ojeda, C. P., & Rázuri-Esteves, V. F. (2021). Baseline study to determine the implementation area of an oily waste management system for artisanal fishing vessels. Environmental Monitoring and Assessment, 193(2), 64. https://doi.org/10.1007/s10661-021-08845-1
  • Parks, M., Ahmasuk, A., Compagnoni, B., Norris, A., & Rufe, R. (2019). Quantifying and mitigating three major vessel waste streams in the northern Bering Sea. Marine Policy, 106, 103530. https://doi.org/10.1016/j.marpol.2019.103530
  • Pavlaski, P., Tarchi, D., & Sieber, A. (2001). On the monitoring of illicit vessel discharges: A reconnaissance study in the Mediterranean Sea. EUR 19906 EN. 2001. JRC21936.
  • Richardson, K., Haynes, D., Talouli, A., & Donoghue, M. (2017). Marine pollution originating from purse seine and longline fishing vessel operations in the Western and Central Pacific Ocean, 2003–2015. Ambio, 46(2), 190-200. https://doi.org/10.1007/s13280-016-0811-8
  • Riyanto, M., Wiyono, E. S., & Abdurraman, M. I. (2023). Estimation of fishing boats operational waste and its management strategy at Nizam Zachman Ocean Fishing Port. Aquaculture, Aquarium, Conservation & Legislation, 16(4), 2124-2134.
  • Rousseau, Y., Watson, R. A., Blanchard, J. L., & Fulton, E. A. (2019). Evolution of global marine fishing fleets and the response of fished resources. Proceedings of the National Academy of Sciences, 116(25), 12238-12243. https://doi.org/10.1073/pnas.1820344116
  • TURKSTAT (Turkish Statistical Institute). (2022). Balıkçılık İstatistikleri. Retrieved from https://biruni.tuik.gov.tr/medas/?kn=97&locale=tr
  • Unger, A., & Harrison, N. (2016). Fisheries as a source of marine debris on beaches in the United Kingdom. Marine Pollution Bulletin, 107(1), 52-58. https://doi.org/10.1016/j.marpolbul.2016.04.024
  • Xuan, N. T. T., An, N. H., & Cuong, N. N. (2023). Study on the ability to treat bilge wastewater from fishing boat by cultivating and harvesting the microalgae Chlorella vulgaris. Tạp chí Khoa học và Công nghệ-Đại học Đà Nẵng, 21(4), 100-104.
  • Ytreberg, E., Eriksson, M., Maljutenko, I., Jalkanen, J. P., Johansson, L., Hassellöv, I. M., & Granhag, L. (2020). Environmental impacts of grey water discharge from ships in the Baltic Sea. Marine Pollution Bulletin, 152, 110891. https://doi.org/10.1016/j.marpolbul.2020.110891
  • Zaman, M. (2011). Orta ve Doğu Karadeniz’de balıkçılık [Fisheries in the Central and Eastern Black Sea]. Doğu Coğrafya Dergisi, 10(13), 31-78.
  • Zhang, X., Li, S., Liu, Y., Yu, K., Zhang, H., Yu, H., & Jiang, J. (2021). Neglected microplastics pollution in the nearshore surface waters derived from coastal fishery activities in Weihai, China. Science of The Total Environment, 768, 144484. https://doi.org/10.1016/j.scitotenv.2020.144484
Year 2024, Volume: 13 Issue: 4, 272 - 281
https://doi.org/10.33714/masteb.1557410

Abstract

References

  • Akman, R., & Atıcı, A. A. (2022). Van Gölü’nde sintine suyu kaynaklı kirliliğin incelenmesi. Yüzüncü Yıl Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 27(2), 452-465.
  • Arıcı, E. (2017). Karadeniz'in Sinop kıyı sahil şeridinden elde edilen baskın makroalglerin ve deniz çayırlarının ağır metal kirliliği tespitinde biyomonitör olarak kullanılmaları [Ph.D. Thesis. Sinop University].
  • Beyrem, H., Louati, H., Essid, N., Aïssa, P., & Mahmoudi, E. (2010). Effects of two lubricant oils on marine nematode assemblages in a laboratory microcosm experiment. Marine Environmental Research, 69(4), 248–253. https://doi.org/10.1016/j.marenvres.2009.10.018
  • Chanthamalee, J., Wongchitphimon, T., & Luepromchai, E. (2013). Treatment of oily bilge water from small fishing vessels by PUF-immobilized Gordonia sp. JC11. Water, Air, & Soil Pollution, 224, 1601. https://doi.org/10.1007/s11270-013-1601-6
  • Di Cintio, A., Scianna, C., & Prato, G. (2022). Analysis of small-scale fisheries value chain: An interview-based approach in Italian marine protected areas. Fisheries Research, 252, 106358. https://doi.org/10.1016/j.fishres.2022.106358
  • FAO. (2018). FAO yearbook, fishery and aquaculture statistics 2016. Rome: FAO.
  • FAO. (2022). Fishing fleet. In The state of world fisheries and aquaculture 2022. Retrieved from https://www.fao.org/3/cc0461en/online/sofia/2022/fishing-fleet.html
  • Finska, L., Ivanova, L., Jakobsen, I. U., Rapp Nilsen, H., Normann, A. K., & Solski, J. (2022). Waste management on fishing vessels and in fishing harbors in the Barents Sea: Gaps in law, implementation, and practice. Ocean Development & International Law, 53(4), 289-317. https://doi.org/10.1080/00908320.2022.2147306
  • GESAMP (Joint Group of Experts on the Scientific Aspects of Marine Environmental Protection). (2007). Estimates of oil entering the marine environment from sea-based activities. GESAMP Reports and Studies No. 75. IMO FAO UNESCO-IOC WMO UNIDO IAEA UN UNEP.
  • Hamzeh, M. A., Shah-Hosseini, M., & Naderi Beni, A. (2013). Effect of fishing vessels on trace metal contamination in sediments of three harbors along Iranian Oman Sea coast. Environmental Monitoring and Assessment, 185(2), 1791-1807. https://doi.org/10.1007/s10661-012-2668-z
  • Jalkanen, J. P., Johansson, L., Wilewska-Bien, M., Granhag, L., Ytreberg, E., Eriksson, K. M., & Moldanova, J. (2020). Modeling of discharges from Baltic Sea shipping. Ocean Science, 17(3), 699-728. https://doi.org/10.5194/os-17-699-2021
  • Keshavarzi, B., Ebrahimi, P., & Moore, F. (2015). A GIS-based approach for detecting pollution sources and bioavailability of metals in coastal and marine sediments of Chabahar Bay, SE Iran. Geochemistry, 75(2), 185-195. https://doi.org/10.1016/j.chemer.2014.11.003
  • Lin, B., Lin, C. Y., & Jong, T. C. (2007). Investigation of strategies to improve the recycling effectiveness of waste oil from fishing vessels. Marine Policy, 31(4), 415-420. https://doi.org/10.1080/19443994.2014.887040
  • MEUC (Ministry of Environment, Urbanization and Climate Change). (2024a). Balıkçılık filosunun kapasitesi. Retrieved from https://cevreselgostergeler.csb.gov.tr/balikcilik-filosunun-kapasitesi-i-85842
  • MEUC (Ministry of Environment, Urbanization and Climate Change). (2024b). Gemilerden kaynaklanan atık miktarları. Retrieved from https://cevreselgostergeler.csb.gov.tr/gemilerden-kaynaklanan-atik-miktarlari-i-85764
  • MEUC (Ministry of Environment, Urbanization and Climate Change). (2024c). Atık kabul tesisleri güncel liste. Retrieved from https://webdosya.csb.gov.tr/db/cygm/icerikler/atik-kabul-tes-s--guncel-l-ste-20240223143725.pdf
  • Ministry of Agriculture and Forestry. (2024). Balıkçı barınakları. Retrieved from https://www.tarimorman.gov.tr/BSGM/Belgeler/Icerikler/Su%20%C3%9Cr%C3%BCnleri%20Altyap%C4%B1lar%C4%B1/Bal%C4%B1k%C3%A7%C4%B1%20Bar%C4%B1naklar%C4%B1.pdf
  • Mısır, S. (2008). Karadeniz Bölgesi balıkçı tekneleri. Yunus Araştırma Bülteni, 8(1), 13-16.
  • National Research Council (NRC). (2003). Oil in the sea III: Inputs, fates, and effects. Washington: The National Academies Press.
  • Ortiz-Ojeda, C. P., & Rázuri-Esteves, V. F. (2021). Baseline study to determine the implementation area of an oily waste management system for artisanal fishing vessels. Environmental Monitoring and Assessment, 193(2), 64. https://doi.org/10.1007/s10661-021-08845-1
  • Parks, M., Ahmasuk, A., Compagnoni, B., Norris, A., & Rufe, R. (2019). Quantifying and mitigating three major vessel waste streams in the northern Bering Sea. Marine Policy, 106, 103530. https://doi.org/10.1016/j.marpol.2019.103530
  • Pavlaski, P., Tarchi, D., & Sieber, A. (2001). On the monitoring of illicit vessel discharges: A reconnaissance study in the Mediterranean Sea. EUR 19906 EN. 2001. JRC21936.
  • Richardson, K., Haynes, D., Talouli, A., & Donoghue, M. (2017). Marine pollution originating from purse seine and longline fishing vessel operations in the Western and Central Pacific Ocean, 2003–2015. Ambio, 46(2), 190-200. https://doi.org/10.1007/s13280-016-0811-8
  • Riyanto, M., Wiyono, E. S., & Abdurraman, M. I. (2023). Estimation of fishing boats operational waste and its management strategy at Nizam Zachman Ocean Fishing Port. Aquaculture, Aquarium, Conservation & Legislation, 16(4), 2124-2134.
  • Rousseau, Y., Watson, R. A., Blanchard, J. L., & Fulton, E. A. (2019). Evolution of global marine fishing fleets and the response of fished resources. Proceedings of the National Academy of Sciences, 116(25), 12238-12243. https://doi.org/10.1073/pnas.1820344116
  • TURKSTAT (Turkish Statistical Institute). (2022). Balıkçılık İstatistikleri. Retrieved from https://biruni.tuik.gov.tr/medas/?kn=97&locale=tr
  • Unger, A., & Harrison, N. (2016). Fisheries as a source of marine debris on beaches in the United Kingdom. Marine Pollution Bulletin, 107(1), 52-58. https://doi.org/10.1016/j.marpolbul.2016.04.024
  • Xuan, N. T. T., An, N. H., & Cuong, N. N. (2023). Study on the ability to treat bilge wastewater from fishing boat by cultivating and harvesting the microalgae Chlorella vulgaris. Tạp chí Khoa học và Công nghệ-Đại học Đà Nẵng, 21(4), 100-104.
  • Ytreberg, E., Eriksson, M., Maljutenko, I., Jalkanen, J. P., Johansson, L., Hassellöv, I. M., & Granhag, L. (2020). Environmental impacts of grey water discharge from ships in the Baltic Sea. Marine Pollution Bulletin, 152, 110891. https://doi.org/10.1016/j.marpolbul.2020.110891
  • Zaman, M. (2011). Orta ve Doğu Karadeniz’de balıkçılık [Fisheries in the Central and Eastern Black Sea]. Doğu Coğrafya Dergisi, 10(13), 31-78.
  • Zhang, X., Li, S., Liu, Y., Yu, K., Zhang, H., Yu, H., & Jiang, J. (2021). Neglected microplastics pollution in the nearshore surface waters derived from coastal fishery activities in Weihai, China. Science of The Total Environment, 768, 144484. https://doi.org/10.1016/j.scitotenv.2020.144484
There are 31 citations in total.

Details

Primary Language English
Subjects Water Quality and Water Pollution
Journal Section Research Article
Authors

Ömer Harun Özkaynak 0000-0002-5234-5751

Early Pub Date October 29, 2024
Publication Date
Submission Date September 27, 2024
Acceptance Date October 21, 2024
Published in Issue Year 2024 Volume: 13 Issue: 4

Cite

APA Özkaynak, Ö. H. (2024). Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye. Marine Science and Technology Bulletin, 13(4), 272-281. https://doi.org/10.33714/masteb.1557410
AMA Özkaynak ÖH. Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye. Mar. Sci. Tech. Bull. October 2024;13(4):272-281. doi:10.33714/masteb.1557410
Chicago Özkaynak, Ömer Harun. “Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye”. Marine Science and Technology Bulletin 13, no. 4 (October 2024): 272-81. https://doi.org/10.33714/masteb.1557410.
EndNote Özkaynak ÖH (October 1, 2024) Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye. Marine Science and Technology Bulletin 13 4 272–281.
IEEE Ö. H. Özkaynak, “Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye”, Mar. Sci. Tech. Bull., vol. 13, no. 4, pp. 272–281, 2024, doi: 10.33714/masteb.1557410.
ISNAD Özkaynak, Ömer Harun. “Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye”. Marine Science and Technology Bulletin 13/4 (October 2024), 272-281. https://doi.org/10.33714/masteb.1557410.
JAMA Özkaynak ÖH. Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye. Mar. Sci. Tech. Bull. 2024;13:272–281.
MLA Özkaynak, Ömer Harun. “Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye”. Marine Science and Technology Bulletin, vol. 13, no. 4, 2024, pp. 272-81, doi:10.33714/masteb.1557410.
Vancouver Özkaynak ÖH. Determination of the Amount of Bilge Waste Generated by Motorized Fishing Vessels in Türkiye. Mar. Sci. Tech. Bull. 2024;13(4):272-81.

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