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통영-거제 연안 어류 양식장 표층 퇴적물 중 유기물 및 중금속 오염 평가
Organic Matter and Heavy Metals Pollution Assessment of Surface Sediment from a Fish Farming Area in Tongyoung-Geoje Coast of Korea 원문보기

海洋環境安全學會誌 = Journal of the Korean society of marine environment & safety, v.27 no.4, 2021년, pp.510 - 520  

황동운 (국립수산과학원 어장환경과) ,  황현진 (국립수산과학원 어장환경과) ,  이가람 (국립수산과학원 어장환경과) ,  김선영 (국립수산과학원 어장환경과) ,  박소현 (국립수산과학원 어장환경과) ,  윤상필 (국립수산과학원 어장환경과)

초록
AI-Helper 아이콘AI-Helper

어류 양식장 퇴적물 중 유기물과 중금속의 오염상태를 파악하기 위하여 통영-거제 연안 어류 양식장 퇴적물 중 총유기탄소(TOC), 총질소(TN), 중금속(As, Cd, Cr, Cu, Fe, Hg, Mn, Pb, Zn)을 조사하였다. 양식장 퇴적물 중 TOC와 TN의 평균농도는 각각 22.7 mg/g과 3.4 mg/g로 남해안의 반폐쇄적인 내만보다 높았다. 퇴적물 중 중금속의 평균농도는 비소(As) 10.5 mg/kg, 카드뮴(Cd) 0.37 mg/kg, 크롬(Cr) 82.9 mg/kg, 구리(Cu) 127 mg/kg, 철(Fe) 4.19 %, 수은(Hg) 0.041 mg/kg, 망간(Mn) 596 mg/kg, 납(Pb) 39.5 mg/kg, 아연(Zn) 175 mg/kg였으며, 이중 Cd, Cu의 농도는 인접한 남동해 연안의 패류양식해역보다 3배 이상 높았다. 퇴적물 기준을 이용한 오염평가 결과, 대부분의 어류 양식장에서 TOC와 중금속 중 Cu 농도가 기준을 초과하는 것으로 나타났다. 또한, 전체 중금속 농도를 고려한 오염부하량지수(PLI)와 생태계위해 도지수(ERI) 결과는 일부 어류 양식장 퇴적물이 저서생물에 극심한 부정적인 생태 영향을 줄 수 있는 상태(disastrous risk)인 것으로 파악되었다. 따라서, 어류 양식장 퇴적물은 유기물 및 일부 중금속에 의한 오염된 상태를 보이고 있어, 양식장 퇴적환경을 개선하고 퇴적물내 유기물 및 중금속의 주된 오염원을 파악하는 한편 오염부하량을 저감하는 종합적인 관리대책이 필요하다.

Abstract AI-Helper 아이콘AI-Helper

To understand the status of organic matter and heavy metal pollution in surface sediment of a fish farming area, we have measured the concentrations of total organic carbon (TOC), total nitrogen (TN), and heavy metals (As, Cd, Cr, Cu, Fe, Hg, Mn, Pb, and Zn) in surface sediments of a fish farming ar...

주제어

참고문헌 (46)

  1. Choi, M., H. C. Kim, D. W. Hwang, I. S. Lee, Y. S. Kim, Y. J Kim, and H. G. Choi(2013), Organic enrichment and pollution in surface sediments from shellfish farming in Yeoja Bay and Gangjin Bay, Korea, Korean Journal of Fisheries and Aquatic Sciences, Vol. 46, pp. 424-436. 

  2. Choi, M., I. S. Lee, D. W. Hwang, H. C. Kim, S. P. Yoon, S. Yun, C. S. Kim, and I. S. Seo(2017), Organic enrichment and pollution in surface sediments from Jinhae and Geoje-Hansan Bays with dense oyster farms, Korean Journal of Fisheries and Aquatic Sciences, Vol. 50, pp. 777-787. 

  3. Choi, M., I. S. Lee, H. C. Kim, and D. W. Hwang(2015), Distribution and contamination status of trace metals in surface sediments of shellfish farming areas in Yeoja and Gangjin Bays, Korea, Korean Journal of Fisheries and Aquatic Sciences, Vol. 48, pp. 789-797. 

  4. Choi, M. S., J. H. Chun, H. J. Woo, and H. I. Yi(1999), Change of heavy metals and sediment facies in surface sediments of the Shihwa Lake, Journal of the Korean Environment Science of Society, Vol. 8, pp. 593-600. 

  5. Cranford, P. J., B. T. Hargrave, and L. I. Doucette(2009), Benthic organic enrichment from suspended mussel (Mytilus edulis) culture in Prince Edward Island, Canada, Aquaculture, Vol. 292, pp. 189-196. 

  6. El-Moselhy, Kh. M., A. I. Othman, H. Abd. El-Azem, and M. E. A. El-Metwally(2014), Bioaccumulation of heavy metals in some tissues of fish in the Red Sea, Egypt, Egyptian Journal of Basic and Applied Sciences, Vol. 1, No. 2, pp. 97-105. 

  7. Fang, T. H. and E. Hong(1999), Mechanisms influencing the spatial distribution of trace metals in surficial sediments off the south-western Taiwan, Marine Pollution Bulletin, Vol. 38, No. 11, pp. 1026-1037. 

  8. FAO(2016), The state of world fisheries and aquaculture 2016: Contributing to food security and nutrition for all, Food and Agriculture Organization (FAO), Rome, p. 200. 

  9. Hakanson, L.(1980), An ecological risk index for aquatic pollution control: A sedimentological approach, Water Research, Vol. 14, pp. 975-1001. 

  10. Holmer, M., D. Wildish, and B. T. Hargrave(2005), Organic enrichment from marine finfish aquaculture and effects on sediment biogeochemical processes. In:Hargrave B. T. (ed) environment effects of marine finfish aquaculture. Springer, Berlin, pp 181-206. 

  11. Hwang, D. W., H. G. Jin, S. S. Kim, J. D. Kim, J. S. Park, and S. G. Kim(2006), Distribution of organic matters and metallic elements in the surface sediments of Masan Harbor, Korea, Journal of the Korean Fisheries Society, Vol. 39, pp. 106-117. 

  12. Hwang, D. W., I. S. Lee, M. Choi, and J. H. Shim(2015), Distribution of organic matter and trace metal concentrations in surface sediments around the Hansan-Geoje Bay, Journal of the Korean Society for Environmental Analysis, Vol. 18, pp. 131-143. 

  13. Hwang, D. W., P. J. Kim, S. G. Kim, C. I. Sun, B. S. Koh, S. O. Ryu, and T. H. Kim(2019), Spatial distribution and pollution assessment of metals in intertidal sediments, Korea, Environmental Science and Pollution Research, Vol. 26, pp. 19379-19388. 

  14. Hwang, D. W., S. S. Kim, S. G. Kim, D. S. Kim, and T. H. Kim(2017), Concentrations of heavy metals in marine wild fishes captured from the southern sea of Korea and associated health risk assessments, Ocean Science Journal, Vol. 52, No. 4, pp. 527-536. 

  15. Hwang, H.(2015), Concentrations of trace metals in fish tissues from Hansan-Geoje Bay, Korea, Master Thesis, Pusan National University, p. 58. 

  16. Hwang, H., D. W. Hwang, G. Lee, H. C. Kim, and J. N. Kwon(2018), Distributions of organic matter and heavy metals in the surface sediment of Jaran Bay, Korea, Journal of the Korean Society of Marine Environment & Safety, Vol. 24, No. 1, pp. 78-91. 

  17. Hyun, S., T. Lee, J. S. Choi, D. L. Choi, and H. J. Woo(2003), Geochemical characteristics and heavy metal pollutions the surface sediments of Gwangyang and Yeosu Bay, south coast of Korea, The Sea-Journal of the Korean Society of Oceanography, Vol. 8, pp. 380-391. 

  18. Jeon, S. B., P. J. Kim, S. S. Kim, J. S. Ju, Y. H. Lee, D. S. Jang, J. U. Lee, and S. Y. Park(2012), Characteristics of spatial distribution of geochemical components in the surface sediments of the Deukryang Bay, Journal of the Korean Society for Environmental Analysis, Vol. 15, pp. 203-214. 

  19. Kim, P. J., S. G. Shon, S. Y. Park, S. S. Kim, S. J. Jang, S. B. Jeon, and J. S. Ju(2012), Biogeochemistry of metal and nonmetal elements in the surface sediment of the Gamak Bay, Journal of the Korean Society of Marine Environment & Safety, Vol. 18, pp. 67-83. 

  20. Koo, J. H., G. Lee, H. Hwang, J. B. Kim, S. S. Kim, and D. W. Hwang(2019), Distribution of organic matter and heavy metals in the surface sediments from fishery resources protection areas in the southwestern coast of Korea, Journal of the Korean Society of Marine Environment & Safety, Vol. 25, pp. 666-677. 

  21. Lee, G., D. W. Hwang, H. Hwang, J. H. Park, H. C. Kim, and J. N. Kwon(2017), Distribution and pollution status of organic matter and heavy metals in surface sediment around Goseong Bay, a shellfish farming area, Korea, Journal of the Korean Society of Marine Environment & Safety, Vol. 23, pp. 699-709. 

  22. Lee, G., H. Hwang, J. B. Kim, and D. W. Hwang(2020), Pollution Status of surface sediment in Jinju Bay, a spraying shellfish farming area, Korea, Journal of the Korean Society of Marine Environment & Safety, Vol. 26, No. 4, pp. 392-402. 

  23. Lee, W. C., Y. S. Cho, S. J. Hong, H. C. Kim, J. B. Kim, and S. M. Lee(2011), Estimation of ecological carrying capacity for oyster culutre by ecological indicator in Goeje-Hansan Bay, Journal of the Korean Society of Marine Environment & Safety, Vol. 17, pp. 315-322. 

  24. Lim, D. I., S. W. Jung, M. S. Choi, S. M. Kang, H.S. Jung, and J. Y. Choi(2013), Historical record of metal accumulation and lead source in the southeastern coastal region of Korea, Marine Pollution Bulletin, Vol. 74, pp. 441-445. 

  25. MIFAFF(2009), Status investigation of fishery environment in 2008, Ministry of Food, Agriculture, Forestry and Fisheries (MIFAFF), Report No 11-1541370-000085-01, p. 243. 

  26. MOF(2017a), Statistical yearbook of Oceans & Fisheries in 2017, Ministry of Oceans and Fisheries (MOF), Report No. 11-1192000-000071-10, p. 500. 

  27. MOF(2017b), Quality guidelines for habitat environment of marine biota in Korea, Ministry of Oceans and Fisheries (MOF), Notification No. 2017-109, p. 1. 

  28. MOF(2018), Quality guidelines for marine environment in Korea, Ministry of Oceans and Fisheries (MOF), Notification No. 2018-10, p. 10. 

  29. MOF(2020), Statistical yearbook of Oceans & Fisheries in 2020, Ministry of Oceans and Fisheries (MOF), Report No. 11-1192000-000071-10, p. 502. 

  30. Naser, H. A.(2013), Assessment and management of heavy metal pollution in the marine environment of the Arabian Gulf: A review, Marine Pollution Bulletin, Vol. 72, pp. 6-13. 

  31. Ra, K., E. S. Kim, K. T. Kim, J. K. Kim, J. M. Lee, and J. Y. Choi(2013), Assessment of heavy metal contamination and its ecological risk in the surface sediments along the coast of Korea, Journal of Coastal Research, Vol. 65, pp. 105-110. 

  32. Ruilian, Y., Y. Xing, Z. Yuanhui, H. Gongren, and T. Xianglin(2008), Heavy metal pollution in intertidal sediments from Quanzhou Bay, China, Journal of Environmental Sciences, Vol. 20, pp. 664-669. 

  33. Sheykhi, V. and F. Moore(2013), Evaluation of potentially toxic metals pollution in the sediments of the Kor river southwest Iran, Environmental Monitoring and Assessment, Vol. 185, pp. 3219-3232. 

  34. Silva, C., E. Yanez, M. L. Martin-Diaz, I. Riba, and T. A. DelValls(2013), Integrated ecotoxicological assessment of marine sediments affected by land-based marine fish farm effluents: physicochemical, acute toxicity and benthic community analyses, Ecotoxicology, Vol. 22, pp. 996-1011. 

  35. Soares, H. M. V. M., R. A. R. Boaventura, A. A. S. C. Machado, and J. C. G. Esteves da Silva(1999), Sediment as monitors of heavy metal contamination in Ave River basin(Portugal): multivariate analysis of data, Environmental Pollution, Vol. 105, No. 3, pp. 311-323. 

  36. Stein, R.(1991), Accumulation of organic carbon in marine sediments, Springer Verlag, Berlin, pp. 1-217. 

  37. Sundaray, S. K., B. B. Nayak, S. Lin, and D. Bhatta(2011), Geochemical speciation and risk assessment of heavy metals in the river estuarine sediments - A case study: Mahanadi basin, India, Journal of Hazardous Materials, Vol. 186, pp. 1837-1846. 

  38. Tomassetti, P., E. Persia, I. Mercatali, D. Vani, V. Marussso, and S. Porrello(2009), Effects of mariculture on macrobenthic assemblages in a western mediterranean site. mmunity analyses, Marine Pollution Bulletin, Vol. 58, pp. 533-541. 

  39. Tomlinson, D. L., J. G. Wilson, C. R. Harris, and D. W. Jeffrey(1980), Problems in the assessment of heavy-metal levels in estuaries and the formation of a pollution index. Helgolander Meeresunters, Vol. 33, pp. 566-575. 

  40. Turkmen, M. A. Turkmen, Y. Tepe, Y. Tore, and A. Ates(2009), Determination of metals in fish species from Aegean and Mediterranean seas, Food Chemistry, Vol. 113, pp. 233-237. 

  41. Vezzulli, L., M. Moreno, V. Marin, E. Pezzati, M. Bartoli, and M. Fabiano(2008), Organic waste impact of captured-based Atlantic bluefin tuna aquaculture at an exposed site in the Mediterranean Sea, Estuarine Coastal and Shelf Science, Vol. 78, pp. 369-384. 

  42. Wang, Y., Z. Yang, Z. Shen, Z. Tang, J. Niu, and F. Gao(2011), Assessment of heavy metals in sediments from a typical catchment of the Yangtze River, China. Environmental Monitoring and Assessment. 172, 407-417. 

  43. Woo, J. S., H. J. Lee, J. K. Park, K. K. Park, D. J. Cho, D. J. Jang, S. J. Park, M. S. Choi, and J. K. Yoo(2019), Background concentration and contamination assessment of heavy metals in Korean coastal sediments, Journal of the Korean Society of Oceanogrpahy, Vol. 24, pp. 64-78. 

  44. Yilmaz, A. B., M. K. Sangun, D. Yaglioglu, and C Turan(2010), Metals (major, essential to non-essential) composition of the different tissues of three demersal fish species from Iskenderun Bay, Turkey, Food Chemistry, Vol. 123, pp. 410-415. 

  45. Zhang, W., X. Liu, H. Cheng, E. Y. Zeng, and Y. Hu(2012), Heavy metal pollution in sediments of a typical mariculture zone in South China, Marine Pollution Bulletin, Vol. 64, pp. 712-720. 

  46. Zhu, Z., J. Xue, Y. Deng, L. Chen, and J. Liu(2016), Trace metal contamination in surface sediments of intertidal zone from Qinhuangdao, China, revealed by geochemical and magnetic approaches: Distribution, sources, and health risk assessment, Marine Pollution Bulletin, Vol. 105, pp. 422-429. 

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