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경기만에서 해사채취가 대형저서동물 군집구조에 미치는 영향

Impacts of Sand Mining on the Macrobenthic Community in Gyeonggi Bay, Korea

  • 유옥환 (한국해양연구원 해양환경연구본부) ;
  • 이형곤 (한국해양연구원 해양환경연구본부) ;
  • 이재학 (한국해양연구원 해양환경연구본부) ;
  • 김동성 (한국해양연구원 해양환경연구본부)
  • 발행 : 2006.06.30

초록

해사채취 지역에서의 저서동물은 채취에 따른 해저퇴적층의 교란 및 부유탁도에 의한 재침전 등의 영향을 직접적으로 받고 있으나, 이에 대한 연구는 매우 적다. 지금까지 대부분의 해사채취의 규모에 따른 저서생태계 변화 및 회복에 대한 연구는 단시간의 소규모 교란에 의해 실시되었으며, 일반적으로 대규모로 이루어지는 해사채취에 따른 생태계 교란을 평가하기에는 많은 어려움이 있다. 그러므로 본 연구에서는 해사채취가 많이 이루어지는 경기만 지역에서, 대량$(70,000m^3)$의 시범 해사채취를 실시하여 저서생태계 군집구조에 미치는 영향을 조사하였다. 저서생태계 조사는 2005년 11월부터 시범채취가 시작되기 전과 채취기간 동안에 실시되었다. 시범채취가 시작되기 전에 출현한 대형저서동물의 종수는 해사채취가 진행되고 있는 주변 지역에서와 비슷하였다. 시범채취 예정 지역(정점 1과 2)에서 단각류 U. grimaldii japonica가 우점했으며, 다차원척도분석에서도 시범채취 예정해역은 하나의 그룹으로 구분되었다. 그러나 시범채취가 시작되면서, 정점 0과 1에서의 종수 및 밀도가 급격히 감소하였다. 특히 이곳에 우점했던 단각류 U. grimaldii japonica가 급격히 감소했으며, 시범채취 2개월 후에 조사된 3차 조사에서는 정점 0과정점 1에서는 출현하지 않았다. 그렇지만, 정점 2에서는 뚜렷한 변화가 나타나지 않았다. 종간의 유사도 분석과 IMD 그리고 rIMD 그리고 P/A ratio분석에서 정점 0과 1에서 변화가 크게 나타났다. 본 연구의 결과, 해사채취의 직접적인 영향은 정점 0과 1에서 나타났으며, 정점 2에서는 직접적인 영향이 나타나지 않았다. 본 연구에서 해사채취에 따른 저서생태계의 영향을 평가하는데 이용한 IMD과 r.IMD및 P/A ratio 분석 결과는 모두 비슷하였으며, 장기간의 모니터링 검증을 통해 생태평가지수의 개발이 필요할 것으로 여겨진다.

Small-scale effects of sand mining on macrobenthic communities have been reported previously. However, little information is available as to how dredging affects the macrobenthic community structure. The objective of this study was to determine the impacts of large-scale exhibition dredging on the macrobenthic community of Gyeonggi Bay, Korea, where sand mining has continued for 20 years. Prior to dredging, the macrobenthic species composition was similar to that of areas near the dredging site, with several common dominant species found before dredging. After dredging, the number of species, density, and diversity (H') in the experimental area (sites 0 and 1) decreased significantly, but no difference was observed at other sites. Multivariate analysis (multidimensional scaling) revealed significant differences in community structure before and after dredging. The amphipod Urothoe grimaldii japonica, which was the most dominant species at sites 0,1, and 2, decreased rapidly at sites 0 and 1 after dredging, but no difference was observed at site 2. In addition, the index of multivariate dispersion (IMD) and the relative IMD (r. IMD) were large at sites 0 and 1, suggesting that the effects of dredging were direct at site 0 and 1, but indirect at site 2. The macrobenthic communities at sites 3 and 4 were not affected by dredging, but they were affected by physical conditions and biological interactions. We suggest that benthic biotope indices such as the IMD and r.IMD may constitute a valid tool for assessing the effects of dredging on the macrobenthic community; long-term monitoring is required to verify this.

키워드

참고문헌

  1. 건설교통부. 2005. 금년 수도권 모래수급은 원활할 전망, 2005년도 골재수급계획 확정, 건설교통부 보도자료. 4 p.
  2. 한국골재협회 인천지회. 2002. 경기만내 해사부존량 추정 및 해사채취에 따른 환경영향 연구. 한국골재협회 인천지회. 585 p.
  3. 해양수산부. 2005. 해사채취의 친환경적 관리방안 연구(1). 해양수산부. 861 p.
  4. Ambrose, W.G. 1984. Influences of predatory polychaetes and epibenthic predators on the structure of a softbottom community in a Maine estuary. J. Exp. Mar. Biol. Ecol., 81, 115-145. https://doi.org/10.1016/0022-0981(84)90002-9
  5. Boyd, S.E. and H.L. Rees. 2003. An examination of the spatial scale of impact on the marine benthos arising from marine aggregate extraction in the central English Channel. Estuar. Coast. Shelf Sci., 57, 1-16. https://doi.org/10.1016/S0272-7714(02)00313-X
  6. Boyd, S.E., K.M. Cooper, D.S. Limpenny, R. Kilbride, H.L. Rees, M.P. Dearnaley, J. Stevenson, W.J. Meadows, and C.D. Morries. 2004. Assessment of the re-habilitation of the seabed following marine aggregate dredging. Sci. Ser. Tech. Rep., CEFAS Lowestoft, 121, 154 p.
  7. Brown, A.C. and A. McLachlan. 1990. Ecology of sandy shore. Elsevier, Amsterdam. 328 p.
  8. Byrnes, M.R., R.M. Hammer, T.D. Thibaut, and D.B. Snyder. 2004. Effects of sand mining on physical processes and biological communities offshore New Jersey, U.S.A. J. Coast. Res., 20, 25-43. https://doi.org/10.2112/1551-5036(2004)20[25:EOSMOP]2.0.CO;2
  9. Clarke, K.R. and M. Ainsworth. 1993. A method of linking multivariate community structure to environmental variables. Mar. Ecol. Prog. Ser., 92, 205-219. https://doi.org/10.3354/meps092205
  10. Clarke, K.R. and R.M. Warwick. 2001. Change in marine communities: An approach to statistical analysis and interpretation, 2nd edition. PRIMBER-E Ltd., Plymouth, 162 p.
  11. Da Cunha Lana, P., M.V.O. Almeida, C.A.F. De Freitas, E.D.C.G. Couto, L.M.P. Conti, F.A.G. Gonzalez, M.J.D.S. Lopes, M.H.C. Da Silva, and L.A. Pedroso. 1989. Spatial structure of subtidal macrobenthic associations in a subcreek (Parana State, Brazil). Neritica, 4, 119-136.
  12. Dean, D. 1978. The swimming of bloodworms (Glycera spp.) at night, with comments on other species. Mar. Biol., 48(1), 99-104. https://doi.org/10.1007/BF00390535
  13. Desprez, M. 2000. Physical and biological impact of marine aggregate extraction along the French coast of the eastern English Channel: Short- and long-term postdredging restoration. ICES J. Mar. Sci., 57, 1428-1438. https://doi.org/10.1006/jmsc.2000.0926
  14. DTLR. 2002. Guidelines for the conduct of benthic studies at aggregate dredging sites. Department for Transport, Local Government and the Regions, 117 p.
  15. Folk, R.L. and W.C. Ward. 1957. Brazos river bar: A study in the significance of grain-size parameters. J. Sediment. Petrol., 267, 3-27.
  16. Gomez Gesteira, J.L. and J.-C. Dauvin. 2000. Amphipods are good bioindicators of the impact of oil spills on softbottom macrobenthic communities. Mar. Pollut. Bull., 40, 1017-1027. https://doi.org/10.1016/S0025-326X(00)00046-1
  17. Gray, J. 1981. The Ecology of Marine Sediments. Cambridge Univ. Press, 185 p.
  18. Hill, A.S., L.O. Veale, D. Pennington, S.G. Whyte, A.R. Brand, and R.G. Hartnoll. 1999. Changes in Irish Sea benthos: Possible effects of 40 years of dredging. Estuar. Coast. Shelf Sci., 48, 739-750. https://doi.org/10.1006/ecss.1999.0476
  19. ICES. 2001. Effects of extraction of marine sediments on the marine ecosystem. ICES Cooperative Research Report NO. 247. 80 p.
  20. Kenny, A.J., H.L. Rees, J. Greening, and S. Campbell. 1998. The effects of marine gravel extraction on the macrobenthos at an experimental dredge site off north Norfolk, UK (results 3 years post-dredging). ICES CM 1998/V:14. 8 p.
  21. Mattson, S. 1981. Burrowing and feeding of Goniada maculata Oested (Polychaeta). Sarsia, 66(1), 49-51. https://doi.org/10.1080/00364827.1981.10414519
  22. McManus, J.W. and D. Pauly. 1990. Measuring ecological stress: Variations on a theme by R.M. Warwick. Mar. Biol., 106, 305-308. https://doi.org/10.1007/BF01314814
  23. MEMG. 2003. Group co-ordinating sea disosal monitoring. Final report of the dredging and dredged material disposal monitoring task team. Sci. Ser. Aquat. Environ. Monit. Rep., CEFS, Lowestoft, (55). 52 p.
  24. MMS. 2001. Development and design of biological and physical monitoring protocols to evaluate the long-term impacts of offshore dredging operations on the marine environment. U.S. Department of the Interior, Minerals Management Service. 116 p.
  25. Newell, R.C., L.J. Seiderer, and D.R. Hitchcock. 1998. The impact of dredging works in coastal waters: A review of the sensitivity to disturbance and subsequent recovery of biological resources on the sea bed. Oceanogr. Mar. Biol.: An Ann. Rev., 36, 127-178.
  26. Newell, R.C., L.J. Seiderer, N.M. Simpson, and J.E. Robinson. 2002. Impact of marine aggregate dredging and overboard screening on benthic biological resources in the central North Sea: Production Licence Area 408. Coal Pit. Marine Ecological Surveys Limited. Technical Report No. ER1/4/02 to the British Marine Aggregate Producers Association (BMAPA). 72 p.
  27. Newell, R.C., L.J. Seiderer, N.M. Simpson, and J.E. Robinson. 2004. Impacts of marine aggregate dredging on benthic macrofauna off the south coast of the United Kingdom. J. Coast. Res., 20, 115-125. https://doi.org/10.2112/1551-5036(2004)20[115:IOMADO]2.0.CO;2
  28. Poiner, R. and R. Kennedy. 1984. Complex patterns of change in the macrobenthos of a large sandbank following dredging. Mar. Biol., 78, 335-352. https://doi.org/10.1007/BF00393020
  29. Sarda, R., S. Pinedo, A. Gremare, and S. Taboada. 2000. Changes in the dynamics of shallow sandy-bottom assemblages extraction in the Catalan Western Mediterranean Sea. ICES J. Mar. Sci., 57, 1446-1453. https://doi.org/10.1006/jmsc.2000.0922
  30. Shin, H.C., S.G. Kang, and C.H. Koh. 1992. Benthic polychate community in the southern area of Kyeonggi Bay, Korea. J. Oceanol. Soc. Kor., 27, 164-172.
  31. Somerfield, P.J., J.M. Gee, and S. Widdicombe. 1993. Analysis of meiobenthic community structure along a transect through the Garroch Head sewage sludge disposal site. Final report on contract MMC-47-1, phase 1. Report to MAFF CSF. Plymouth Marine Laboratory, NERC.
  32. Tsetlin, A.B. and M.V. Safonov. 2002. Interstitial polychaetes (Annelida) from the Kandalaksha Bay of the White Sea. Zool. Zh., 81, 899-908.
  33. van Dalfsen, J.A. and K. Essink. 2001. Benthic community response to sand dredging and shoreface nourishment in Dutch coastal waters. Senckenbergia Mar., 31, 329-332. https://doi.org/10.1007/BF03043041
  34. Van Der Veer, H.W., M.J.N. Bergman, and J.J. Beukema. 1985. Dredging activities in the Dutch Wadden Sea: Effects on macrobenthic infauna. Neth. J. Sea Res., 19, 183-190. https://doi.org/10.1016/0077-7579(85)90022-5
  35. Van Hoey, G., S. Degraer, and M. Vincx. 2004. Macrobenthic community structure of soft-bottom sediments at the Belgian continental shelf. Estuar. Coast. Shelf Sci., 59, 599-613. https://doi.org/10.1016/j.ecss.2003.11.005
  36. Vizakar, L., S.N. Harkantra, and A.H. Parulekar. 1991. Population ecology and community structure of sub-tidal soft sediment dwelling macro-invertebrates of Konkan, west coast of India. Indian J. Mar. Sci., 20, 40-42.
  37. Warwick, R.M. 1986. A new method for detecting pollution effects on marine macrobenthic communities. Mar. Biol., 92, 557-562. https://doi.org/10.1007/BF00392515
  38. Warwick, R.M. and K.R. Clarke. 1991. A comparison of some methods for analyzing changes in benthic community structure. J. Mar. Biol. Assoc. U.K., 71, 225-244. https://doi.org/10.1017/S0025315400037528
  39. Yu, O.H., H.Y. Soh, and H.-L. Su. 2002. Seasonal zonation patterns of benthic amphipods in a sandy shore surf zone of Korea. J. Crust. Biol., 22, 459-466. https://doi.org/10.1651/0278-0372(2002)022[0459:SZPOBA]2.0.CO;2

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  9. Improvements in the Marine Environmental Survey on Impact of Seawater Qualities and Ecosystems due to Marine Sand Mining vol.20, pp.2, 2014, https://doi.org/10.7837/kosomes.2014.20.2.143
  10. Significance of Biomarkers in the Assessment of Dredged Materials for Beneficial Reuses and Disposal vol.25, pp.6, 2016, https://doi.org/10.14249/eia.2016.25.6.466
  11. Macrozoobenthos of Korean tidal flats: A review on species assemblages and distribution vol.102, 2014, https://doi.org/10.1016/j.ocecoaman.2014.07.019
  12. Dune Migration on an Offshore Sand Ridge in the Southern Gyeonggi Bay, Korea vol.35, pp.1, 2013, https://doi.org/10.4217/OPR.2013.35.1.051