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      여름철 천수만 해수에서 담수 대량 방류에 따른 영양염, 유기물 및 미량금속의 변화 = Effect of Freshwater Discharge on the Seawater Quality (Nutrients, Organic Materials and Trace Metals) in Cheonsu Bay

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      https://www.riss.kr/link?id=A106628783

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      다국어 초록 (Multilingual Abstract)

      When the fresh water from the artificial lakes (Ganwolho and Bunamho) were discharged to Cheonsu Bay in summer to prevent the flood over the reclaimed farmland near the lakes, the impact on water qualities (nutrients, organic matters, trace metals) within the bay was investigated through four surveys (June, July, August and October, 2011). Dissolved inorganic nitrogen (DIN) increased about as much as 3-4 times over the whole water column when the freshwater was discharged. And the main species composition of DIN changed from ammonia to nitrate. Dissolved inorganic phosphorus (DIP) decreased as much as 2 times in surface waters, but increased as much as 1.5 times in deep waters, and also silicate concentrations increased as much as 3-4 times in deep waters of the inner bay. The N/P ratios in Chunsu bay seawaters were much higher (2 to 7 times) than the Redfield ratio when the freshwaters were discharged, which indicated the phosphorus limiting in the phytoplankton growth. Dissolved organic carbon (DOC) and nitrogen (DON) increased as much as about 2 times. In addition, particulate organic matters (POC, PON, POP, Bio-Si) increased as much as above 2 times in the surface waters of the inner bay. Trace metals (Fe, Mn, Co, Ni, Cu) increased in the surface waters of the inner bay, but dissolved Cd concentrations decreased as much as 2 times. Therefore, when the contaminated fresh waters from the artificial lakes were discharged into the bay, nutrients, organic matters and trace metals generally increased compared to normal period. Since the phytoplankton bloom occurred in the surface waters of the inner bay, dissolved oxygens at the surface waters were oversaturated and hence hypoxic in the deep waters. Highly enriched nutrients concentrations were found in deep waters of the inner bay, which was accompanied with the hypoxic condition. Finally, the water quality in the inner bay of the Chunsu bay was deteriorated from less than grade 3 in normal periods to grade 5 when the freshwaters from the artificial lakes were discharged in summer.
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      When the fresh water from the artificial lakes (Ganwolho and Bunamho) were discharged to Cheonsu Bay in summer to prevent the flood over the reclaimed farmland near the lakes, the impact on water qualities (nutrients, organic matters, trace metals) wi...

      When the fresh water from the artificial lakes (Ganwolho and Bunamho) were discharged to Cheonsu Bay in summer to prevent the flood over the reclaimed farmland near the lakes, the impact on water qualities (nutrients, organic matters, trace metals) within the bay was investigated through four surveys (June, July, August and October, 2011). Dissolved inorganic nitrogen (DIN) increased about as much as 3-4 times over the whole water column when the freshwater was discharged. And the main species composition of DIN changed from ammonia to nitrate. Dissolved inorganic phosphorus (DIP) decreased as much as 2 times in surface waters, but increased as much as 1.5 times in deep waters, and also silicate concentrations increased as much as 3-4 times in deep waters of the inner bay. The N/P ratios in Chunsu bay seawaters were much higher (2 to 7 times) than the Redfield ratio when the freshwaters were discharged, which indicated the phosphorus limiting in the phytoplankton growth. Dissolved organic carbon (DOC) and nitrogen (DON) increased as much as about 2 times. In addition, particulate organic matters (POC, PON, POP, Bio-Si) increased as much as above 2 times in the surface waters of the inner bay. Trace metals (Fe, Mn, Co, Ni, Cu) increased in the surface waters of the inner bay, but dissolved Cd concentrations decreased as much as 2 times. Therefore, when the contaminated fresh waters from the artificial lakes were discharged into the bay, nutrients, organic matters and trace metals generally increased compared to normal period. Since the phytoplankton bloom occurred in the surface waters of the inner bay, dissolved oxygens at the surface waters were oversaturated and hence hypoxic in the deep waters. Highly enriched nutrients concentrations were found in deep waters of the inner bay, which was accompanied with the hypoxic condition. Finally, the water quality in the inner bay of the Chunsu bay was deteriorated from less than grade 3 in normal periods to grade 5 when the freshwaters from the artificial lakes were discharged in summer.

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      참고문헌 (Reference)

      1 노태근, "해역의 환경특성을 고려한 해양환경 기준설정과 수질등급 평가" 한국해양학회 17 (17): 45-58, 2012

      2 김동선, "한국 서해 천수만의 화학적 수질특성과 부영양화" 한국해양과학기술원 27 (27): 45-58, 2005

      3 박승윤, "천수만의 수질환경특성과 장기변동" 한국환경과학회 15 (15): 447-459, 2006

      4 이상우, "천수만 해역에서 장마기 담수 방류가 플랑크톤에 미치는 영향" 한국해양학회 19 (19): 41-52, 2014

      5 송윤호, "천수만 퇴적물에서 미량금속의 지화학적 특성" 한국해양학회 16 (16): 169-179, 2011

      6 최윤석, "서해 연안 황도와 정산포 바지락 양식장의 환경특성" 한국패류학회 30 (30): 117-126, 2014

      7 이재광, "반폐쇄적인 천수만 해역의 플랑크톤 군집 변화" 한국해양학회 17 (17): 95-111, 2012

      8 이동관, "간척지 내 부영양화된 호수 수괴의 간헐적 유출로 인한 천수만 저층수의 Hypoxia 발생과 영양염 분포 특성" 해양환경안전학회 22 (22): 854-862, 2016

      9 Zeitzschel B., "The quantity, composition and distribution of suspended particulate matter in the gulf of California" 7 (7): 305-318, 1970

      10 Redfield, A. C., "The biological control of chemical factors in the environment" 46 : 205-221, 1958

      1 노태근, "해역의 환경특성을 고려한 해양환경 기준설정과 수질등급 평가" 한국해양학회 17 (17): 45-58, 2012

      2 김동선, "한국 서해 천수만의 화학적 수질특성과 부영양화" 한국해양과학기술원 27 (27): 45-58, 2005

      3 박승윤, "천수만의 수질환경특성과 장기변동" 한국환경과학회 15 (15): 447-459, 2006

      4 이상우, "천수만 해역에서 장마기 담수 방류가 플랑크톤에 미치는 영향" 한국해양학회 19 (19): 41-52, 2014

      5 송윤호, "천수만 퇴적물에서 미량금속의 지화학적 특성" 한국해양학회 16 (16): 169-179, 2011

      6 최윤석, "서해 연안 황도와 정산포 바지락 양식장의 환경특성" 한국패류학회 30 (30): 117-126, 2014

      7 이재광, "반폐쇄적인 천수만 해역의 플랑크톤 군집 변화" 한국해양학회 17 (17): 95-111, 2012

      8 이동관, "간척지 내 부영양화된 호수 수괴의 간헐적 유출로 인한 천수만 저층수의 Hypoxia 발생과 영양염 분포 특성" 해양환경안전학회 22 (22): 854-862, 2016

      9 Zeitzschel B., "The quantity, composition and distribution of suspended particulate matter in the gulf of California" 7 (7): 305-318, 1970

      10 Redfield, A. C., "The biological control of chemical factors in the environment" 46 : 205-221, 1958

      11 Hydes, D. J., "The behaviour of dissolved aluminium in estuarine and coastal waters" 5 : 755-769, 1977

      12 Paasche, E., "The annual cycle of plankton diatom growth and silica production in the inner Oslofjord" 25 : 481-494, 1980

      13 Brzezinski, M. A., "The Si:C:N ratio of marine diatoms: interspecific variablity and the effect of some environmental variables" 21 : 347-357, 1985

      14 Boyle, E. A., "The Chemical Mass Balance of the Amazon Plume. 2. Copper, Nickel, and Cadmium" 29 (29): 1355-1364, 1982

      15 Shim, J. H., "Spatial and temporal variations of phytoplankton in Chŏnsu Bay" 23 (23): 130-145, 1988

      16 Shim, J. H., "Seasonal variation and production of zooplankton in Chŏnsu Bay, Korea" 25 (25): 229-239, 1990

      17 Shin, Y. K., "Relative significance of nanoplankton in Chŏnsu Bay : Species composition, abundance, chlorophyll and primary productivity" 25 (25): 217-228, 1990

      18 Head, P. C., "Practical Estuarine Chemistry" Cambrige Univ. Press 337-, 1985

      19 Windom, H. L., "Particulate trace metal composition and flux across the southeastern U. S. continental shelf" 27 (27): 283-297, 1989

      20 Shim, J. H., "On phytoplankton of the Cheonsu Bay, west coast" 14 (14): 6-14, 1979

      21 Moon, C. H., "Nutrients and particulate organic matter in Asan Bay" 26 (26): 173-181, 1993

      22 Hecky, R. E., "Nutrient limitation of phytoplankton biomass in in freshwater and marine environments:A review of recent evidence on the effects of enrichment" 33 : 796-822, 1988

      23 Kaplan, W. A., "Nitrogen In Marine Environment" Academic Press 139-190, 1983

      24 Nixon, S. W., "Nitrogen In Marine Environment" Academic Press 565-638, 1983

      25 Sohrin, Y., "Multielemental determination of GEOTRACES key trace metals in seawater by ICPMS after preconcentration using an ethylenediaminetriacetic acid chelating resin" 80 (80): 6267-6273, 2008

      26 Jung, K. Y., "Hypoxia in a transient estuary caused by summer lake-water discharge from artificial dykes into Chunsu Bay, Korea" 95 : 47-62, 2015

      27 Edmond, J. M., "Chemical dynamics of the Changjiang estuary" 4 : 17-36, 1985

      28 Lee, T. W., "Change in species composition of fish in Chonsu Bay. 1. Demersal fish" 29 (29): 71-83, 1996

      29 Shim, J. H., "Biomass of primary producer in the Chŏnsu Bay – relationships between phytoplankton carbon, dell number and chlorophyll" 24 (24): 194-205, 1989

      30 Froelich, P. N., "Arsenic, barium, germanium, tin, dimethylsulfide and nutrient biogeochemistry" 21 : 239-264, 1985

      31 Berger, C. J. M., "Application of a chemical leach technique for estimating labile particulate aluminum, iron, and manganese in the Columbia River plume and coastal waters off Oregon and Washington" 113 : 1-16, 2008

      32 Ragueneau, O., "A new method for the measurement of biogenic silica in suspended matter of coastal waters : using Si : Al ratios to correct for the mineral interference" 25 (25): 697-710, 2005

      33 Sugimura, Y., "A high-temperature catalytic-oxidation method for the determination of non-volatile dissolved organic carbon in seawater by direct injection of a liquid sample" 24 (24): 105-131, 1988

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