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Comparison of Material Flux at the Sediment-Water Interface in Marine Finfish and Abalone Cage Farms, Southern Coast of Korea: In-situ and Laboratory Incubation Examination

남해안 어류 및 전복가두리양식장의 퇴적물-수층 경계면에서의 물질플럭스 비교: 현장배양과 실내배양실험 연구

  • Park, Jung-Hyun (Marine Environment Research Division, National Fisheries Research & Development Institute) ;
  • Cho, Yoon-Sik (Marine Environment Research Division, National Fisheries Research & Development Institute) ;
  • Lee, Won-Chan (Marine Environment Research Division, National Fisheries Research & Development Institute) ;
  • Hong, Sok-Jin (Marine Environment Research Division, National Fisheries Research & Development Institute) ;
  • Kim, Hyung-Chul (Marine Environment Research Division, National Fisheries Research & Development Institute) ;
  • Kim, Jeong-Bae (Marine Environment Research Division, National Fisheries Research & Development Institute)
  • 박정현 (국립수산과학원 어장환경과) ;
  • 조윤식 (국립수산과학원 어장환경과) ;
  • 이원찬 (국립수산과학원 어장환경과) ;
  • 홍석진 (국립수산과학원 어장환경과) ;
  • 김형철 (국립수산과학원 어장환경과) ;
  • 김정배 (국립수산과학원 어장환경과)
  • Received : 2012.11.14
  • Accepted : 2012.12.27
  • Published : 2012.12.31

Abstract

It is necessary to study the material circulation of coastal ecosystem according to aquacultural activity in order to induce the sustainable production of aquaculture and the fishery environment for the useful use. Hence, it is essential to make an exact assessment for the sedimentation release flux at the sediment-water interface in the aquafarm. Sediment oxygen demand and dissolved inorganic nitrogen release fluxes were compared using in-situ and laboratory incubational examination. Sediment oxygen demands were 116, 34, and $31\;mmol\;O_2\;m^{-2}\;d^{-1}$ (in-situ incubation), 52, 17, and $15\;mmol\;O_2\;m^{-2}\;d^{-1}$ (Core incubation) and dissolved inorganic nitrogen release fluxes were 7.18, 7.98, and $1.78\;mmol\;m^{-2}\;d^{-1}$ (in-situ incubation), 3.33, 3.74, and $1.96\;mmol\;m^{-2}\;d^{-1}$ (Core incubation) at Tongyeong finfish, Yeosu finfish, and Wando abalone cage farms, respectively. Consequently, in-situ incubation results showed two times higher than laboratory examination. We compared the material flux at the sediment-water interface of each farm and the characteristics between two different kinds of material flux examination.

지속적인 양식활동과 어장환경 보호를 위해서는 연안해역과 양식어종마다 각기 다른 연안생태계의 물질순환에 대한 연구가 필요하며, 양식장아래 퇴적물-수층 경계면의 침강 용출 플럭스에 관한 정확한 산정이 중요하다. 이에 관한 연구방법 중 벤틱 챔버를 이용한 현장배양법과 코아 채니를 이용한 실내배양실험법으로 퇴적물 산소요구량과 용존무기질소 용출 플럭스를 비교하여 보았다. 통영 어류 가두리양식장, 여수 어류 가두리양식장, 완도 전복양식장에 대하여, 퇴적물 산소요구량을 측정하여본 결과, 현장배양법은 116, 34, $31\;mmol\;O_2\;m^{-2}\;d^{-1}$, 실내배양법은 52, 17, $15\;mmol\;O_2\;m^{-2}\;d^{-1}$이었고, 용존무기질소 용출 플럭스의 경우, 현장배양법은 7.18, 7.98, $1.78\;mmol\;m^{-2}\;d^{-1}$, 실내배양법은 3.33, 3.74, $1.96\;mmol\;m^{-2}\;d^{-1}$로, 현장배양법이 실내배양법보다 약 2배 높게 나타났다. 본 연구는 각 양식장에 따른 물질 플럭스를 살펴봄으로서, 양식장아래 퇴적물-수층 경계면에 대한 두 가지 물질수지 계산 방법의 특성을 비교하였다.

Keywords

References

  1. Black, S. B., G. R. Fones, O. C. Peppe, H. A. Kennedy and I. Bentaleb(2001), An autonomous benthic lander: preliminary observations from the UK BENBO thematic programme (2001), Continental Shelf Resrarch, Vol. 21, pp. 859-877. https://doi.org/10.1016/S0278-4343(00)00116-3
  2. Canfield, D. E., B. Thamdrup, E. Kristensen and Aquati Geomicrobiology(2005), Aquatic Geomicrobiology, Elsevier Academic Press, Vol. 48, p. 640.
  3. Cho, K. S.(1997), Investigation methods of lake environments, DongHwa Technology Publishing Co., p. 365.
  4. FAO(2009), FishStat fishery statistical collections: aquaculture production(1950-2007; released March 2009), Rome, Italy: Food and Agriculture Organization of the United Nations, [Online] Available, http://www.fao.org/fishery/statistics/software/ fishstat/en (accessed 11.05.11).
  5. Ferron, S., T. Ortega and J. M. Forja(2009), Benthic fluxes in a tidal salt marsh creek affected by fish farm activities: Rio San Pedro (Bay of Cadiz, SW Spain), Marine Chemistry, Vol. 113 pp. 50-62. https://doi.org/10.1016/j.marchem.2008.12.002
  6. Forja, J. M., T. Ortega, T. A. DelValls and A. Gomez-Parra(2004), Benthic fluxes of inorganic carbon in shallow coastal ecosystems of the Iberian Peninsula, Marine Chemistry, Vol. 85, pp. 141-156. https://doi.org/10.1016/j.marchem.2003.09.007
  7. Glud, R. N., J. K. Gundersen, R. Hans and B. B. Jorgensen(2003), Seasonal dynamics of benthic O2 uptake in a semienclosed bay: Importance of diffuse and faunal activity, Limnol. Oceanogr., Vol. 48, No. 3, pp. 1265-1276. https://doi.org/10.4319/lo.2003.48.3.1265
  8. Hargrave, B. T., D. E. Duplisea, E. Pfeiffer and D. J. Wildish(1993), Seasonal changes in benthic fluxes of dissolved oxygen and ammonium associated with marine cultured Atlantic salmon, Marine Ecology Progress Series, Vol. 96, pp. 249-257. https://doi.org/10.3354/meps096249
  9. Holby, O. and P. O. J. Hall(1991), Chemical fluxes and mass balances in a marine fish cage farm. II. Phosphorus. Marine Ecology Progress Series, Vol. 70, pp. 263-272. https://doi.org/10.3354/meps070263
  10. Jung, R. H., S. P. Yoon, J. N. Kwon, J. S. Lee, W. C. Lee, J. H. Koo, Y. J. Kim, H. T. Oh, S. J. Hong, and S. E. Park(2007), Impact of Fish Farming on Macrobhenthic Polychaete Communities, Journal of the Korean Society of Oceanography, Vol. 12, pp. 159-169.
  11. Kim, B., A. Choi, S. An, H. C. Kim, R. H. Jung, W. C. Lee and J. H. Hyun(2011), Rates of sullfate reduction and iron reduction in the sediment associated with abalone aquaculture in the southern coastal waters of Korea, Ocean and Polar Research, Vol. 33, No. 4, pp. 435-445. https://doi.org/10.4217/OPR.2011.33.4.435
  12. Kim, D. H. and C. K. Park(1998), Estimation of Nutrients Released from Sediments of Deukryang Bay, Journal of the Korean Environmental Sciences Society, Vol. 7, No. 4, pp. 425-431.
  13. Klump, V. J. and C. S. Martens(1987), Biogeochemical cycling in an organic rich coastal marine basin, 5. Sedimentary nitrogen and phosphorus budgets based upon kinetic models, mass balances, and the stoichiometry of nutrient regeneration, Geochimica et Cosmochimica Acta, Vol. 51, pp. 1161-1173. https://doi.org/10.1016/0016-7037(87)90209-2
  14. Lee, J. S., R. H. Jung, K. H. Kim, J. N. Kwon, W. C. Lee, P. Y. Lee, J. H. Koo and W. J. Choi(2004), An Evaluation of the Environmental Effects of Marine Cage Fish Farms: I. Estimation of Impact Region and Organic Carbon Cycling in Sediment Using Sediment Oxygen Consumption Rates and Macrozoobenthos, Journal of the Korean Society of Oceanography, Vol. 9, No. 1, pp. 30-39.
  15. Lee, J. S., K. S. Bahk, B. J. Khang, Y. T. Kim, J. H. Bae, S. S. Kim, J. J. Park and O. I. Choi(2010), The Development of a Benthic Chamber(BelcI) for Benthic Boundary Layer Studies, Journal of the Korean Society of Oceanography, Vol. 15, No. 1, pp. 41-50.
  16. Lee, J. S., S. H. Kim, Y. T. Kim, S. J. Hong, J. H. Han, J. H. Hyun and K. H. Shin(2012), Influence of sea squirt(Halocynthia roretzi), aquaculture on benthic-pelagic coupling in coastal waters: A study of the South sea in Korea, Estuarine, Costal and Shelf Science, Vol. 99, pp. 10-20. https://doi.org/10.1016/j.ecss.2011.11.013
  17. MIFAFF(2012), Ministry for Food, Agriculture, Forestry and Fisheries, Fisheries information service, [Online] Available, http://www.fips.go.kr (accessed 11.05.11).
  18. MLTM(2010), Ministry of Land, Transport and Maritime Affairs, Marine environment standard methods, p. 495.
  19. NFRDI(2009), National Fisheries Research and Development Institute, Environmental Research of Aquaculture Farm, p. 443.
  20. NFRDI(2010), National Fisheries Research and Development Institute, Environmental Research of Aquaculture Farm, p. 611.
  21. Park, J. H., Y. S. Cho, W. C. Lee, S. J. Hong, H. C. Kim, J. B. Kim and J. H. Park(2012), Characteristics of Carbon Circulation for Ascidian Farm in Jindong Bay in Summer and Winter, Journal of the Korean Wetlands Society, Vol. 14, No. 2, pp. 211-221.
  22. Pratihary, A. K., S. W. A. Naqvi, H. Naik, B. R. Thorat, G. Narvenkar, B. R. Manjunatha and V. P. Rao(2009), Benthic fluxes in a tropical Estuary and their role in the system, Estuarine, Coastal and Shelf Science, Vol. 85, pp. 387-398. https://doi.org/10.1016/j.ecss.2009.08.012
  23. Richard, M., P. Archambault, G. Thouzeau and G. Desresies(2007), Summer influence of 1 and 2 yr old mussel cultures on benthic fluxes in Grande-Entree lagoon, Iles -de-la-Madeleine(Quebec, Canad), Marine Ecology Progress Series, Vol. 338, pp. 131-143. https://doi.org/10.3354/meps338131
  24. Rowe, G. T., G. S. Boland, W. C. Phoel, R. F. Anderson and P. E. Biscaye(1994), Deep-sea floor respiration as an indication of lateral input of biogenic detritus from continental margins, Deep-Sea Research II, Vol. 41, No. 2/3, pp. 657-668. https://doi.org/10.1016/0967-0645(94)90039-6
  25. Shim, J. H., Y. C. Kang and J. W. Choi(1997), Chemical Fluxes at the Sediment-Water Interface Below Marine Fish Cages on the Coastal Waters off Tong-Young, South Coast of Korea, Journal of the Korean Society of Oceanography, Vol. 2, No. 2, pp. 151-159.
  26. Tovar, A., C. Moreno, M. P. Manuel-Vez and M. Garcia-Vargas(2000), Enviornmental implications of intensive marine aquaculture in earthen ponds, Vol. 40, pp. 981-988. https://doi.org/10.1016/S0025-326X(00)00040-0
  27. Viollier, E., C. Rabouille, S. E. Apitz, E. Breuer, G. Chaillou, K. Dedieu, Y. Furukawa, C. Grenz, P. hall, F. Janssen, J. L. Morford, J. C. Poggiale, S. Roberts, T. Shimmield, M. Taillefert, A. Tengberg, F. Wenzhofer and U. Witte(2003), Benthic biogeochemistry: state of the art technologies and guidelines for the future of in situ survey, Journal of Experimental Marine Biology and Ecology, Vol. 285-286, pp. 5-31. https://doi.org/10.1016/S0022-0981(02)00517-8

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