• 제목/요약/키워드: phytoplankton area

검색결과 327건 처리시간 0.022초

Spring Phytoplankton Bloom in the Fronts of the East China Sea

  • Son, Seung-Hyun;Yoo, Sin-Jae;Noh, Jae-Hoon
    • Ocean Science Journal
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    • 제41권3호
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    • pp.181-189
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    • 2006
  • Frontal areas between warm and saline waters of the Kuroshio currents and colder and diluted waters of the East China Sea (ECS) influenced by the Changjiang River were identified from the satellite thermal imagery and hydrological data obtained from the Coastal Ocean Process Experiment (COPEX) cruise during the period between March $1^{st}$ and $10^{th}$, 1997. High chlorophyll concentrations appeared in the fronts of the East China Seas with the highest chlorophyll-a concentration in the southwestern area of Jeju Island (${\sim}2.9\;mg/m^3$) and the eastern area of the Changjiang River Mouth (${\sim}2.8\;mg/m^3$). Vertical structures of temperature, salinity and density were similar, showing the fronts between ECS and Kuroshio waters. The water column was well mixed in the shelf waters and was stratified around the fronts. It is inferred that the optimal condition for light utilization and nutrients induced both from the coastal and deep waters enhances the high phytoplankton productivity in the fronts of the ECS. In addition, the high chlorophyll-a in the fronts seems to have been associated with the water column stability as well.

Nutrients and Phytoplankton Blooms in the Southern Coastal Waters of Korea: I. The Elemental Composition of C, N, and P in Particulate Matter in the Coastal Bay Systems

  • Kang, Chang-Keun;Kim, Pyoung-Joong;Lee, Won-Chan;Lee, Pil-Yong
    • Journal of the korean society of oceanography
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    • 제34권2호
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    • pp.86-94
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    • 1999
  • An investigation was conducted to determine limiting nutrients in the bay systems of the southern coastal area of Korea. The elemental composition of C, N, and P in suspended particulate matter was monitored nearly monthly in Chinhae and Koje Bays and seasonally in Deukryang Bay for 2 years. Atomic C:N ratio in particulate matter ranges from 4.3 to 9.6, typical of marine phytoplankton. C:P and N:P ratios vary from the Redfield ratio to 229 (C:P) and 37 (N:P). A constant C:N ratio of 6.87 from regression of particulate C and N concentrations demonstrates that the particulate matter in the systems originates from primary production. C:P and N:P ratios from regression of C on P and N on P are well associated with changes in salinity. The low N:P ratio of 13.1 implies N limitation in the environments of the systems. This seems to result from the low N:P ratio of nutrients released across sediment-water interface. Phytoplankton response, expressed here as the increase of chlorophyll a, to N addition also verifies N limitation for phytoplankton communities. In heavy rainfall season (from June to September), the addition of excessive N via streams into the stratified coastal water proliferates phytoplankton greatly. During the phytoplankton blooms, C:P and N:P ratios are much higher than the Redfield ratio, implying P limitation. This results from the high N:P ratio in nutrients supplied from stream waters. Strong stratification during the blooms also interrupts the supply of nutrients, particularly p, from bottom waters. Dependent upon precipitation, this tendency shows great inter-annual variation.

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2005년 하계 완도 연안 냉수대 발생시 식물플랑크톤의 분포 특성 (The Characteristics of Phytoplankton Community of Cold Water in the around Sea of Wando in Summer, 2005)

  • 오현주;김승한;문성용
    • 한국환경과학회지
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    • 제17권9호
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    • pp.949-956
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    • 2008
  • The data of temperature, chlorophyll a, phytoplankton and NOAA/AVHRR satellite data were analyzed about 7 stations around Wando Island area on August 30, 2005. The sea water temperature range was from $15.19^{\circ}C$ to $24.97^{\circ}C$, and there was a cold water mass from the station 1 to 5 around the outside of Chungsando Island, the water temperature was lower at the bottom than surface. The salinity was $32.41{\sim}34.03$, DO was $7.40{\sim}9.14mg/L$, but the concentration of chlorophyll a was 1ug/L higher at the bottom than surface. Total phytoplankton appeared from the whole stations were 47 genus, 80 species and diatoms were dominant. A lot of dinoflagellates Ceratium forca and diatoms Thalassithrix spp. mostly appeared in the cold water mass were turned up from the station 1 to 5. 4 groups of phytoplankton clusters were shown in the surface, and 3 groups of phytoplankton clusters were shown at the bottom according to the water temperature. On the ground of the result analyzed with NOAA/AVHRR satellite data, the SST around Wando Island was $22{\sim}25^{\circ}C$, it was formed by thermohaline front latitudinally

한국해역의 식물플랑크톤의 연구 1. 1965년 하계의 한국해협 표층수의 식물 플랑크톤의 양과 분포 (Phytoplankton Studies In Korean Waters 1. Phytoplankton Survey Of The Surface In The Korea Strait In Summer Of 1965)

  • 최상
    • 한국해양학회지
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    • 제1권1_2호
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    • pp.14-21
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    • 1966
  • 우리 나라의 서, 남, 동해 즉 황해, 한국해협 및 일본해는 각자가 특이한 해양학적 구조를 지니고 있다. 서해는 전반적으로 80m이천의 천해를 구성하여 대륙계 하천수를 풍부하게 공급을 받아, 계절풍이 심한 추, 동계에는 특이 부니질의 발달이 현저하고, 이곳의 해양수는 대륙의 기후의 영향을 많이 받고 있는 것이 특징이다. 한편 일부의 황해수는 황해나뭅, 동지나해에서 이류에 의해 흑조와 혼합되어 대마난류를 형성하여 한국해협을 거쳐 일본해로 유입한다.

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The Community Structure And Distribution Of Phytoplankton Of The Kum River Estuary

  • Shim, Jae-Hyung;Yang, Jae-Sam
    • 한국해양학회지
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    • 제17권1호
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    • pp.1-11
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    • 1982
  • A study on the community and distribution of phytoplankton of the Kum River Estuary has been done in fall, 1980 and spring, 1981. Ond hundred and one taxa representing 22 families, 41 genera, 107 species, 2 varieties, and 2 forms were identified. The community of the study area composed mainly of diatom species icluding the very small fraction of dinoflagellates, blue-greens and greens. The dominant species were Skeletonema costatum, Paralia sulcata, and Asterionella kariana. The total standing crop of phytoplankton of winter samples was 115,000 cells/1 in average and that of spring samples was, 1,320,333 cells/1 in average. Of the representative members, dominant species above appeared moree than 10% of the total standing crop, Skeletonema costatum being maximized up to 46%. In spring Asterionella japonica, Thalassionema nitzschioides, and Chaetoceros curvistetus appeared 3∼8%, and Thalassiosira excentricus 3% in winter. The distribuion of marine forms showed negative correlation with that of fresh water forms, although the brackish-water forms showed no relationship. This change pattern of marine, brackish and fresh-water forms are discussed with the results of time series analysis. A list of phytoplankton species observed in this study is added.

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A Possible Explanation for the Dominance of Chlorophyll in Pico and Nano-size Fractions in the Waters Around the South Shetland Islands

  • Kawaguchi, So;Shiomoto, Akihiro;Imai, Keiri;Tsarina, Yoriko;Yamaguchi, Hitomi;Noiri, Yoshifumi;Iguchi, Naoki;Kameda, Takahiko
    • Ocean and Polar Research
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    • 제23권4호
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    • pp.379-388
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    • 2001
  • Ch1 a abundance, Ch1 a-specific productivity and phytoplankton growth rate in each size fraction (pico, $<2{\mu}m$; nano, $2-10{\mu}m$; micro, > $10{\mu}m$) in the waters around the South Shetland Islands (Ant-arctic Peninsula Area) were analysed. Although Ch1 a-specific productivity and growth rate were highest in micro-size fractions, ChI a abundance was highest in pico-size fractions. Selective removal of nano- and micro-size phytoplankton especially by krill and salp grazing, but not limitation of phytoplankton growth, seemed to be the major reason to explain this miss match between productivity and abundance of the phytoplankton community.

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남한강 3개 인공보의 식물플랑크톤 군집 변동과 생물학적 수질평가 (The Dynamic of Phytoplankton Communities and the Biological Water Quality Assessment at Three Artificial Weirs in Downstream of Namhan-river)

  • 신현주;이옥민
    • 한국물환경학회지
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    • 제30권6호
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    • pp.612-621
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    • 2014
  • Physicochemical factors and the phytoplankton communities in the downstream area of Namhan-River were investigated from June 2012 to November 2013. We also assessed water quality using biological water quality indices. Total nitrogen was 2.4 mg/L, total phosphorus was 0.04 mg/L, and biological oxygen demand was 1.1 mg/L. This resulted in a level 2 (Ib, good) water quality rating. A total of 259 phytoplankton taxa were classified, consisting of 26 families, two subfamilies, 64 genera, 222 species, 32 varieties, and five formas. Bacillariophyceae dominated during a1l seasons and at all sites. The dominant species were Aulacoseira granulata, Cyclotella meneghiniana, C. stelligera, Melosira varians, Cocconeis placentula var. lineata, Nitzschia palea, N. amphibia, Cymbella minuta, and Achnanthes convergens. The diatom assemblage index for organic pollution values was level A-D, and TDI was level B-D. P-IBI at most sites was at the M (moderate) level, but TSI was at the E (eutrophic) level. Most indices dropped from upstream to downstream.

하계 마산만의 부영양화 제어를 위한 생태계모델의 적용 (The application of ecosystem model for the eutrophication control in Masan Bay in summer)

  • 김종구;박청길;김광수
    • 한국환경과학회지
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    • 제3권3호
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    • pp.185-195
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    • 1994
  • Masan bay is one of the polluted enclosed bays, which has red tides problem and the formation of oxygen deficient water in the bottom layer. Most important factors that cause eutrophication and red tide is nutrient materials containing nitrogen and phosphorus which stem from terrestrial sources and nutrients released from sediment. Therefore, to improve of water quality, reduction of these nutrient loads should be indispensible. At this study, the three-dimensional numerical hydrodynamic and eutrophication model, which were developed by Institute for Resources and Environment of Japan, were applied to analyze the processes affecting the phytoplankton production and also to evaluate the effect of water quality improvement plans on phytoplankton production. In field sorvey, the range of concentrations of chlorophyll-a at surface area was found to be 29.17 - 212.5mg/m3, which were exceeding eutrophication criteria. The constant currents defined by integrating the simulated tidal currents over 1 tidal cycle showed the counterclockwise eddies in the southern part of Budo. The general directions of constant currents were found to be southward at surface and northward at bottom over all the bay. The eutrophication model was calibrated with the data surveyed in the field area in June, 1993. The calculated results are in fairly good agreement with values within relative error of 30%. The pollutant load from the sources such as the input from terrestrial release from the sediment was reduced by the rate of 50, 70, 90, 98% to effect of phytoplankton production. Phytoplankton production was reduced to of the 90% reduction of the input loads from terrestrial sources and 8% in 90% reduction of the load from sediment.

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서낙동강에서 식물플랑크톤의 1차 생산성 (Primary Productivity of Phytoplankton in the Shallow and Hypertrophic River (Seonakdong River))

  • 전승일;조경제
    • 생태와환경
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    • 제37권1호통권106호
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    • pp.57-63
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    • 2004
  • 서낙동강에서 $^{14}C$법으로 1996년 1월부터 10월까지 식물플랑크톤의 1차 생산성을 측정하였다. 서낙동강은 수심이 얕고, 국내 호수와 하천 중에서 가장 수질오염이 심한 곳으로 진광층의 깊이는1.4${\sim}$2.1 m 범위였다. 식물플랑크톤의 chi-a 농도는 67${\sim}$894 ${\mu}g\;L^{-1}$ 범위였고, 8월에는 chi-a 농도가 크게 증가하였다. 최대 물질생산성은 수표면 ${\sim}$0.4 m 깊이에서 나타났으며 2.1${\sim}$4.3 mg C mg $chl-a^{-1}$ 범위였다. 광합성 (P)-광(I)의 관계에서 식물플랑크톤의 광합성 저해는 높은 고광에서 현저히 저해되었으나 Microcystis가 대발생한 기간에는 광저해 현상이 나타나지 않았다. Chl-a 당 식물플랑크톤의 1차 생산성은 입사 광에너지의 양에 비례하였으며 면적 당 1차 생산성은 chl-a현존량과 직선적으로 비례하여 식물플랑크톤의 1차 생산성은 결과적으로 생물량과 광의 함수였다. 과거 자료를 수집한 결과. 낙동강 하구 지역에서 식물플랑크톤의 생산성은 하구둑 건설(1987년) 이후 해가감에 따라 점진적으로 증가하여 이 지역의 부영양화 현상을 반영하였다. 식물플랑크톤의 연 생산성 개념에서 평균 10 ${\mu}g\;chl-a\;L^{-1}$의 생물량 증가는 30 mg C $m^{-2}\;day^{-1}의 단위면적 당 생산성 증가를 가져왔다.

북극해 하계 남동 바렌츠 해역에서 식물플랑크톤 크기별 분포와 환경요인에 관한 연구 (Phytoplankton and Environmental Factors in the Southeastern Barents Sea during August 2003)

  • 주형민;이진환;정경호;강재신;강성호
    • Ocean and Polar Research
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    • 제27권3호
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    • pp.265-276
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    • 2005
  • In order to grasp the structure and dynamics of phytoplankton communities, chlorophyll-a (Chl-a) and cell abundance were measured at 20 stations during the period from August 9 to August 21, 2003 in the southeastern Barents Sea on surface and subsurface chlorophyll maximum depth (SCM). Surface temperatures were varied from minimum $-0.7^{\circ}C(st. 18)$ to maximum $10.4^{\circ}C(st.1)$. Salinities were varied from minimum 29.9 psu(st. 18) to maximum 35.8 psu(st.2). The maximum nutrient(phosphate, nitrate, silicate) concentrations were $0.12{\mu}M,\;0.11{\mu}M,\;7.53{\mu}M$ and minimum concentrations were $0.01{\mu}M,\;0.03{\mu}M,\;1.43{\mu}M$, respectively. On SCM physical environmental factor were almost similar. Chl-a concentrations ranged from 0.23 to $2.13{\mu}g\;chi-a\;l^{-1}$ at SCM. Nano- and pico phytoplankton were the important contributors for increase of the Chl-a. It was about seven times difference between highest concentration to lowest. Phytoplankton communities were composed of diatoms, dinoflagellates, cryptophyceae, silicoflagellate, and prymnesiophyceae showing 37 taxa at surface and 38 taxa at SCM. Picophytoplankton was the most dominant in all stations and all layers, but the second groups were 2 and/or 3 taxa. Phytoplankton abundance ranged from minimum $4.3{\times}10^5\;cells\;l^{-1}$ (st. 20) to maximum $2.4{\times}10^6\;cells\;l^{\-1}$. (st. 17) at surface water. As a result, phytoplankton might be controlled by physical factors such as North Atlantic ocean currents and northern melt water among environmental factors in Barents Set h addition the dominant species were nano- and pico phytoplankton such as Phaeocystis, Cryptomonas and Dinobryon in the study area.