• 제목/요약/키워드: SALINITY AREA

검색결과 698건 처리시간 0.027초

1996년 제주도에 나타난 대형저서동물의 대량폐사: 물리해양학적 요인의 역할 (The 1996 Mass Mortality of Macrobenthic Animals in Cheju Island: A Possible Role of Physical Oceanographic Factor)

  • 서해립;조양기;서호영;김대환
    • 환경생물
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    • 제17권2호
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    • pp.175-182
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    • 1999
  • 1996년 여름 제주도 서쪽 해안에서 전에 볼 수 없을 정도로 유용 대형저서동물이 대량으로 죽어, 전복, 오분자기, 소라, 해삼, 말똥성게에 큰 피해를 주었다. 제주도 해안에서 식물플랑크톤 대발생은 없었고, 대량폐사가 일어나기 전에 해안에서 표층 저염수가 나타났기 때문에 저염분 스트레스가 대량폐사에 결정적인 영향을 미쳤을 것으로 여겨진다. 같은 기간 관측된 강수량이 적어, 강수량으로 저염화를 설명하지 못한다. 국립수산진흥원(1997)이 관측한 자료는 1996년 8월 제주도와 중국 사이 해역에 표충 저염수가 나타난 것을 확실히 보여준다. 제주도 서쪽 해안에 나타난 표층 저염수는 다량으로 유출된 강물이 그 기원일 가능성이 가장 높다. 해류와 양자강에서 제주도까지 거리등도 표층 저염수가 양자강에서 방류된 강물에서 기원한 것이라는 가설을 지지한다.

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한국남해의 여름과 겨울철 성층변동 (Stratification Variation of Summer and Winter in the South Waters of Korea)

  • 이충일;구도형;윤종휘
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2007년도 춘계학술발표회
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    • pp.43-50
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    • 2007
  • In order to calculate the strength and to. see the variation af the stratification in the Southern Waters af Korea, the stratification parameter defined as potential energy anomaly (PEA, $V(J/m^3)$) introduced by Simpson and Hunter (1974) was used The data used in this paper were observed in August 1999 and February 2000 by National Fisheries Research and Development Institute (NFRDI). Also to know the effects af the temperature and the salinity an the stratification respectively, averaged temperature and salinity were used in the process af calculation the parameter. V is generally high in the offshore. However, in February, V in the onshore is higher than that of the offshore due to the vertical temperature gradient caused by the expansion of South Korean Coastal Waters (SKCW). In the summer, the increase af the atmospheric heating, the temperature inversion phenomenon act an the stratification as the buoyancy forcing. In most cases, the effects of the temperature on the stratification is stronger than that of the salinity. The temperature effect is predominantly due to the extent af the intrusion of Tsushima Warm Current into the study area. However, at stations where V is high the effect af the salinity is also significant. In the winter, V is very low due to the decrease of the buoyancy forcing, but same stations show the relatively high V due to the expansion of SKCW and Tsushima Warm Current.

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하계 금강 Plume의 구조와 변동 (Structure and Variation of the Keum River Plume in Summer)

  • 이상호;최현용
    • 한국해양학회지
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    • 제30권2호
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    • pp.125-137
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    • 1995
  • 금강하구 외해에서 1991년과 1992년 8월에 관측된 CTD, 광투과도 및 조류자료를 분석하여 담수 plume의 수평이동과 조류에 따른 수직구조의 변화를 파악하였다. 집중 호우로 발단된 초기 plume은 하구 서쪽 고군산군도와 연도사이 해역에서 표층에 저염 의 렌즈구조를 이룬다. 북동-남서 방향으로 왕복하는 조류에 의해 plume의 축이 이동 되며 축의 이동거리는 약 7km에 달한다. 낙조시의 plume은 전선이 형성되며 전선역에 서의 plume 두께는 6m까지로 깊어지고 비대칭적 구조를 보인다. 염분전선이 창조류에 의해 북쪽으로 이동되어 하구 북쪽의 해수가 전층에 걸쳐 남쪽보다 고온, 저염화되는 것으로 추측된다. 20일 이상 장기간에 걸쳐 다량의 담수가 유출되었을 때는 plume 이 십이동파도까지 렌즈 구조를 유지하며 확장하고 북쪽으로 편향된다.

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새만금 간척지 토양 염농도의 경시적 변동 특성: 10년 조사 결과 (Annual Changes of Soil Salinity of the Saemangeum Reclaimed Tide Land during Last 10 Years)

  • 류진희;오양열;이수환;이경도;김영주
    • 한국환경농학회지
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    • 제39권4호
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    • pp.327-333
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    • 2020
  • BACKGROUND: Through Saemangeum development project, 283 ㎢ of new land is planned to be created and the reclaimed land of 89.7 ㎢ will be used as agricultural land. Therefore, monitoring of soil salinity is required to evaluate the suitability of the land for agricultural purposes. METHODS AND RESULTS: We investigated changes of soil physico-chemical properties, including electric conductivity (EC), of the Saemangeum reclaimed tidal land (1,195 ha) from 2008 to 2017 to obtain basic data for suitable soil management of the Saemangeum reclaimed tidal land. Soil samples were collected from the sites spaced 200 meters apart from each other. Soil analysis results showed that average soil EC was 14.5 dS m-1 in 2008, and decreased to 6.5 dS m-1 in 2014 and to 0.9 dS m-1 in 2017. Accordingly, the soil area below soil EC 4.7 dS m-1 (accepted as farmable soil salinity) increased; 25.0% in 2008, 54.3% in 2014, and 96.9% in 2017. The annual decrease in soil EC was described as y = -1.5756x + 14.6 (R2= 0.96), where y = soil EC and x = elapsed years since 2008. CONCLUSION: The soil salinity have decreased to a level for cultivation of most edible crops. However, since the soil chemical properties, such as soil organic matter were inadequate for the cultivation of crops, it was suggested that management of soil fertility would be important for efficient agricultural use of Saemangeum reclaimed land.

Halotolerant Plant Growth Promoting Bacteria Mediated Salinity Stress Amelioration in Plants

  • Shin, Wansik;Siddikee, Md. Ashaduzzaman;Joe, Manoharan Melvin;Benson, Abitha;Kim, Kiyoon;Selvakumar, Gopal;Kang, Yeongyeong;Jeon, Seonyoung;Samaddar, Sandipan;Chatterjee, Poulami;Walitang, Denver;Chanratana, Mak;Sa, Tongmin
    • 한국토양비료학회지
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    • 제49권4호
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    • pp.355-367
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    • 2016
  • Soil salinization refers to the buildup of salts in soil to a level toxic to plants. The major factors that contribute to soil salinity are the quality, the amount and the type of irrigation water used. The presented review discusses the different sources and causes of soil salinity. The effect of soil salinity on biological processes of plants is also discussed in detail. This is followed by a debate on the influence of salt on the nutrient uptake and growth of plants. Salinity decreases the soil osmotic potential and hinders water uptake by the plants. Soil salinity affects the plants K uptake, which plays a critical role in plant metabolism due to the high concentration of soluble sodium ($Na^+$) ions. Visual symptoms that appear in the plants as a result of salinity include stunted plant growth, marginal leaf necrosis and fruit distortions. Different strategies to ameliorate salt stress globally include breeding of salt tolerant cultivars, irrigation to leach excessive salt to improve soil physical and chemical properties. As part of an ecofriendly means to alleviate salt stress and an increasing considerable attention on this area, the review then focuses on the different plant growth promoting bacteria (PGPB) mediated mechanisms with a special emphasis on ACC deaminase producing bacteria. The various strategies adopted by PGPB to alleviate various stresses in plants include the production of different osmolytes, stress related phytohormones and production of molecules related to stress signaling such as bacterial 1-aminocyclopropane-1-carboxylate (ACC) derivatives. The use of PGPB with ACC deaminase producing trait could be effective in promoting plant growth in agricultural areas affected by different stresses including salt stress. Finally, the review ends with a discussion on the various PGPB activities and the potentiality of facultative halophilic/halotolerant PGPB in alleviating salt stress.

제주도 북부연안역의 해황과 조석전선 특성 (A Study of the Hydrographic Conditions and Tidal Front on the Northern Coastal Area of Cheju Island)

  • 김상현;노흥길;최찬문
    • 한국수산과학회지
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    • 제31권3호
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    • pp.437-446
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    • 1998
  • 제주도 북부연안역의 해황 및 조석전선의 변동특성을 파악하기 위하여 $1991\~1993$년까지 CTD에 의한 해황조사를 실시하고, 조석전선의 위치 Energy를 계산하여 분석하였다. 1 제주도 북부연안역의 국소지역에서는 해협의 중앙부 및 주변해역보다 상대적으로 저온v고염한 해수가 자주 출현하여 주변수 사이에는 국지적 수온 $\cdot$염분전선을 형성하는 경우가 많았다. 이와 같은 현상은 제주도 북부연안역에서의 용승 혹은 조석전선에 의해 발생하는 것이며, 위치는 지형이 다소 돌출된 곳과 수심이나 해저지형이 해$\cdot$조류의 흐름에 영향을 줄 수 있는 곳으로 제주도 서쪽의 차귀도와 비양도 연안, 애월북부 연안역과 제주시 부근 및 함덕 북부해역, 제주도 동쪽의 우도 북부와 행원부근해역에서 자주 출현하고 있다. 2. 제주해협내에는 성질이 서로 다른 이질수괴가 마주치고 있으므로 안장형 (Saddle)의 수온$\cdot$염분분포가 거의 매월 출현하여 안장형의 중앙역이나 이질수괴간의 경계역에서 수온$\cdot$염분전선이 형성된다. 3. 제주도 연안역을 대상으로 계산된 조석전선의 성층계수 (stratification parameter-V ($J/m^3$) )는 6월이 $8.4\~209.8\;J/m^3$의 범위이며, 8월이 $201.9\~634.9\;J/m^3$. 9월 $0.18\~680\;J/m^3$, 10월 $2.7\~462\;J/m^3$의 분포범위로 제주도 북부연안역 약 $1\~2$해리 범위내의 수심변화가 심한 해역에서 위치에너지 10$J/m^3$정도의 등치선이 출현해 조석전선이 형성되고 있으며 이는 대략 50m등심선과 일치했다.

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Characteristics of Plant Distribution in the Reclaimed Dredging Area in Gwangyang Bay, Korea

  • Nam, Woong;Kwak, Young-Se;Lee, Deok-Beom;Lee, Sang-Suk
    • Journal of Ecology and Environment
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    • 제32권2호
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    • pp.115-121
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    • 2009
  • In order to elucidate the mechanisms affecting plant distributions in the reclaimed dredging area in the Gwangyang steelworks, in the Gwangyang Bay, Korea, we examined soil characteristics and plant distributions in four study sites and a control site in the study area. Desalination occurring along a gradient with increasing elevation, resulting in decrease of soil pH, EC, P, K, Cl, Ca, Mg, and salt and an increase in soil T-N, silt, clay contents. From site 1 (the lowest-elevation site) to site 5 (the highest-elevation site), halophytes decreased in abundance and nonhalophytes increased. The dominant species in each site were: Phragmites communis, Limonium tetragonum, and 12 additional species at site 1, Carex pumila, Suaeda japonica, and 15 additional species at site 2, Spergularia marina, Scirpus planiculmis, and 22 additional species at site 3, Miscantus sinensis, Lespedeza bicolor, and 26 additional species at site 4 and Pinus thunberii, Rhododendron mucronulatum, and 39 additional species at site 5, which resembled a naturally-occurring P. thinbergii community. Cluster analysis of the vegetation data matrix grouped the 35 plots into 5 major groups, and cluster analysis using the soil environment data matrix revealed 4 major groups. CCA of the floristic and environmental data matrix showed a positive relationship of SAR, EC, Na, Cl, and Ca, which are related to salt, in the $1^{st}$ axis and $2^{nd}$ axis, but negative relationships for altitude, organic contents, silt, and clay contents. Notably, plant species in the reclaimed dredging area that were separated along the $1^{st}$ axis showed strong relationships with factors that related to salt. Long-term exposure to natural rainfall in the reclaimed dredging area changed the soil characteristics, such as salinity. This change in soil characteristics might alter the SAR, which affects plant survival strategies in a given habitat. These results strongly indicated that factors related to salt and elevation play important roles in determining the overall plant distribution in the reclaimed dredging area.

남극 하계 스코티아해의 총 이산화탄소, 영양염, 엽록소 분포 (Distribution of Total CO2, Nutrients, Chlorophyll-a in the Scotia Sea During Austral Summer)

  • 김동선;심정희;김경태;강영철
    • Ocean and Polar Research
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    • 제26권3호
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    • pp.401-414
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    • 2004
  • Temperature, salinity, alkalinity, pH, nutrient, chlorophyll, and iron were measured within the upper 250m water column around the Antarctic Polar Front in the Scotia Sea from late November to early December 2001. Temperature and salinity showed a rapid change across the Polar Front, and the temperature minimum layer existed only in the southern area of the Polar Front. Total $CO_2$ and nutrient concentrations were relatively high and increased rapidly with water depth in the southern area of the Polar Front, which was resulted from upwelling of the Antarctic deep water containing high concentrations of total $CO_2$ and nutrient. ${\Delta}C:{\Delta}N:{\Delat}P$ ratios measured in the norhem and southern areas of the Polar Front were 75:11.4:1 and 84:12.5:1, respectively, which were lower than the Redfield ratio. ${\Delta}Si:{\Delta}N$ ratio (3.65) measured in the southern area of the Polar Front was two times higher than that (1.95) in the northern area. These two ratios were higher than the ratio (1.0) measured in the temperate and tropical oceans. Chlorophyll concentrations were extremely high in the area of $59^{\circ}{\sim}60^{\circ}S$, which was attributed to favorable environmental conditions for phytoplankton growth in this area, such as sufficient iron, high water column stability, and high silicate concentration.

고군산군도 내측해역의 현생퇴적환경 (Modern Sedimentary Environments Within the Gogunsan Archipelago)

  • 이희준;김민지;김태경
    • Ocean and Polar Research
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    • 제30권4호
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    • pp.519-536
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    • 2008
  • The relatively tranquil area within the Gogunsan Archipelago was for the first time investigated preliminarily with respect to modern sedimentological processes in association with the emplacement of the Saemangeum Dyke. Basic sedimentological observations, bathymetry and surface sediments were performed twice during 2006-2008 to compare the results and elaborate changes during that period of time. In addition, sediment dynamical observations were carried out with latest measuring equipment along two transects crossing the entrances of the archipelago, including 12-hour onboard measurements of current, suspended sediments, temperature, and salinity. This dataset was used to reveal hydrodynamic characteristics for spring season April-May and to estimate the direction and relative magnitude of the net flux of suspended sediments. There occurred three depositional areas (A to C) within the archipelago, where sediment texture was also changed. In area A, around Yami Island and the dyke, and area B, in the center of the archipelago, surface sediments became coarsened over the two-year period; sand content increased 5% at the expense of silt content in the former, whereas silt content increased 3% at the expense of clay content in the latter. By comparison, area C in the western entrance of the archipelago shows a textural trend of fining with more silt and clay (combined increase of 5%) at the expense of sand content. The accumulation of sediments in areas A and B is attributable to the sand and silt resuspended from the seabed sediments off sector 4 of the dyke during the winter. The origin of the fine materials depositing on area C is uncertain at present, although suspended sediments moving offshore around the archipelago may be one of the most likely candidates for the source. The temperature of seawater increased rapidly from $9-10^{\circ}C$ in April to $14-16^{\circ}C$ in May, whereas salinity remained more or less constant at 31-32%o during the two months. Both of these parameters showed little variations with depth through a tidal cycle, suggesting good mixing of seawater without any help of significant waves. The consistency of salinity during a tidal cycle also indicates no insignificant effects of freshwater from the rivers Mangyung and Donjin emitting through the opening gap near Sinsi Island. The suspended sediment concentrations were higher at the entrance between Sunyu and Sinsi islands than at the entrance between Hoenggyong and Sinsi islands, ranging from 20 and 30 mg/l and from 5 and 15 mg/l, respectively at the sea surface. Although tidal currents were variable across a transect between Sunyu and Sinsi islands, the currents across the entrance between Hoenggyong and Sinsi islands flowed consistently in the same direction all over the transect during a tidal cycle. The estimation of net flux of suspended sediments indicates that suspended sediments are transferred to the Gogunsan Archipelago mainly through a relatively deep trough adjacent to Sinsi Island toward the shallow area around Yami Island and the dyke.

한강 기수역에서 염분구배에 따른 지화학적 특성 변화 (Characteristics of Geochemical Processes along the Salinity Gradient in the Han River Estuary)

  • 김동화;박용철;이효진;손주원
    • 한국해양학회지:바다
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    • 제9권4호
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    • pp.196-203
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    • 2004
  • 한강 기수역에서 일어나는 지화학적 변화과정을 파악하기 위하여 2000년 6월과 2001년 2월 두 차례에 걸쳐 용존 무기영양염류,용존 유기 탄소,추출된 용존 유기물의 형광 특성, 용존 우라늄의 분포특성에 대해서 연구하였다. 용존 무기 영양염류는 염분이 증가함에 따라 감소하였는데,특히 질소계 영양염류의 경우 기수역에서 뚜렷한 질산화 과정(nitrification process)을 보였다. 인산-인 또한 질소계 영양염류와 같이 기수역에서 비보존적 분포특성을 보였다 용존 유기탄소와 형광 유기물은 염분이 증가함에 따라 감소하는 모습을 보였는데, 특히 5 psu이하의 저염분대에서 급격히 감소하는 양상을 나타내었다. 이러한 현상은 육상 기원의 지구거대 유기물질이 이온강도가 증가하는 기수역에서 응집, 침전하여 제거되기 때문으로 생각된다. 한편 용존 우라늄은 대부분 강을 통하여 해양으로 유입되는데, 염분이 증가함에 따라 같이 증가하는 양의 상관관계를 보였다. 용존 우라늄은 기수역에서 제거되는 비보존적인 분포 특성을 보였는데. 이는 용존 우라늄의 일부가 유기물질과 착화합물의 형태로 제거되기 때문으로 생각된다. 염분과 용존 우라늄의 분포 상관관계로부터 추정된 한강 기수역에서 용존 우라늄 제거량은 약 7.1 ton/year으로 Savannah salt marsh에서의 제거량과 비교해볼 때 약 51.4%에 해당하였다.