• 제목/요약/키워드: Yeungnam Lakes

검색결과 4건 처리시간 0.019초

Principle Relations Between Biomass and Production of Phytoplankton and Physicochemical Factors in Two Eutrophic Lakes of the Mediterranean Sea

  • Kim, Ki-Tai
    • 환경생물
    • /
    • 제22권1호
    • /
    • pp.227-232
    • /
    • 2004
  • Hydrological and biological studies on ecosystems of the lakes 'etang de Berre' and 'etang de Vaime', the four rivers flowing into these lakes, and the Mediterranean Sea are carried out during the whole two-year period. The phytoplankton population of the lakes 'etang de Berre' and 'etang de Vaine' is larger than that of the seawater or freshwater populations of four neighbouring rivers. This is due to the increasing nutriments such as phosphate, nitrate, and silicate flowing into the lakes from the four rivers. The superfluous phytoplanktons in the lakes flow into the Mediterranean Sea via the Caronte Canal. Phytoplanktons multiplicated by phosphate of lake 'etang de Berre' can produce 10,160 tons of assimilated carbon per year, and those multiplicated by nitrate produce 18,450 tons of assimilated carbon per year. According to Steeman Nielsen's primary production estimation, phytoplanktons produce about 45,000 tons of carbon per year through assimilation in lake'4tang de Berre' and 10,000 tons of carbon per year in lake 'etang de Vaime'. The amount of carbon produced by phytoplanktons and the amount of phosphate, and nitrate are different according to the sea, river, and estuary.

영남지역 21개 호소의 어류상과 군집구조 (Ichthyofauna and Community Structure from 21 Lakes in the Yeungnam Area including Gyeongsangbukdo and Gyeongsangnam-do Provinces, Korea)

  • 김상기;강영훈;홍기붕;유동욱;석호영;채병수;김한순;황의욱
    • 한국어류학회지
    • /
    • 제23권4호
    • /
    • pp.288-299
    • /
    • 2011
  • 2008년 4월부터 2009년 10월까지 영남지역 21개 호소를 중심으로 어류상을 조사한 결과, 서식이 확인된 어류는 15과 44속 61종이었다. 채집된 어류 가운데 잉어과가 32종 (52.5%)으로 가장 많았고, 다음은 미꾸리과 어류가 6종 (9.8%)이었다. 호소별 출현종수는 진양호에서 31종으로 가장 많은 종이 확인되었다. 전체 호소에서 확인된 61종의 어종 중 개체수에 근거할 때, 우점종은 빙어 (26.6%), 아우점종은 긴몰개(14.8%)로 나타났으며, 생체량에 근거할 때, 우점종은 블루길 (19.8%), 아우점종은 잉어 (14.8%)로 나타났다. 확인된 61종 중 한국 고유종은 6과 20종으로 나타났으며, 긴몰개가 전체 개체수의 14.8%를 차지하여 가장 높은 출현율을 나타내었다. 환경부지정 멸종위기종인 꼬치동자개는 용연지와 영천호, 잔가시고기는 용연지에서 각각 확인되었다. 유전자 분석 결과 용연지의 꼬치동자개는 낙동강수계에서 최근 이입된 것으로 확인되었다. 외래도입종으로는 배스, 블루길, 이스라엘잉어, 떡붕어, 백련어로 총 5종이 확인되었다. 블루길은 풍락지, 합천호, 번개늪, 장척호, 주남저수지와 같은 5개 호소에서 우점종 또는 아우점종으로 나타났다. 타 수계로부터 낙동강으로 이입된 종으로 끄리, 강준치, 치리, 살치, 동자개, 빙어, 얼록동사리의 7종이 확인되었으며, 이 중 끄리는 임하호와 영천호에서 우점종으로 나타났다. 본 연구를 통하여 농어목 동사리과에 속하는 좀구굴치가 낙동강 유역의 질날벌에서 처음으로 확인되었다. 21개 호소의 어류 군집 분석을 실시한 결과, 전체 호소의 종다양도, 균등도, 우점도 지수는 각각 1.079, 0.604, 0.134로 나타났으며, 호소별 어류상의 유사도는 저수량과 관계가 있는 것으로 나타났다. 본 연구는 동일시기에 영남 지역에 위치하는 21개의 호소를 대상으로 어류상을 조사하였다는 점에서 이후 관련 연구에 의미 있는 기초자료로 활용될 수 있을 것으로 판단된다.

부영양화 평가 방법에 따른 계절별 대청호의 수질분석 (Seasonal Water Quality Analysis in Daecheong Lake by Eutrophication Assessment Methods)

  • 김응석;심규범;양상용;윤조희;갈병석;손인욱;최현일
    • 한국물환경학회지
    • /
    • 제28권6호
    • /
    • pp.882-889
    • /
    • 2012
  • This study has evaluated the trophic state in Daecheong Lake by Carlson (1977) method, Aizaki (1981) method, Yang and dickman (1993) method, and Korean trophic state index method. For estimating the trophic state index from each analysis method we use water quality factors such as COD, TN, TP, Chl-a, and SD provided by the water information system and the ministry of environment. The seasonal lake trophic state results denote the mesotrophic state lake from Carlson (1977) method, Aizaki (1981) method, and Korean trophic state index method and the high relation between Carlson (1977) method and Aizaki (1981) method with the coefficient of determination $R^2$ greater than 0.9 for all the seasons. Although Korean trophic index method has relatively weak relation to other methods with the coefficient of determination $R^2$ ranging from 0.419 to 0.701, we propose that Korean trophic index method is suitable for use in domestic lakes since Korean trophic index results show the similar periodicity and tendency with other method results. Hence, Korean trophic index method incorporating domestic lake characteristics is expected to can contribute to seasonal water quality management measures in lakes.

Ecosysteme de I′Etang de Berre (Mediterranee nord-occidentale) : Caracteres Generales Physiques, Chimiques et Biologiques

  • Kim, Ki-Tai
    • 환경생물
    • /
    • 제22권2호
    • /
    • pp.247-258
    • /
    • 2004
  • Climatological, hydrological and planktonical research studies, measurements of primary production and photosynthetic efficiency from December 1976 to December 1978 have been carried out in two brackish lakes: Lake Etang de Berre and Lake Etang de Vaine located in the French Mediterranean coast, in the region of Carry-le-Rouet located on the north-west Mediterranean near Marseilles, and in fresh water inflows from 4 Rivers (Touloubre, Durance, Arc, Durancole) to Lake Etang de Berre. Physico-chemical parameters were measured for this study: water temperature, salinity, density, pH, alcalinity, dissolved oxygen (% saturation), phosphate, nitrate, nitrite, silicate etc. Diverse biological parameters were also studied: photosynthetic pigments, phaeopigments, specific composition and biomass of phytoplankton, primary pelagic production etc. Climatical factors were studied: air-temperature, solar-radiation, evaporation, direction (including strength) of winds, precipitation and freshwater volume of the four rivers. The changes in Lake ‘Etang de Berre’ ecosystem depend on the quality of the water in the Durance River, and on the effects of seawater near the entrance of the Caronte Canal. The water quality of the lake varies horizontally and vertically as a result of atmospheric phenomena, maritime currents and tides. The distribution of water temperatures is generally heterogeneous. Southeasterly winds and the Northeasterly Mistral wind are important in the origins of circulated and mixed water masses. These winds are both frequent and strong. They have, as a result, a great effect on the water environment of Lake Etang de Berre. In theory, the annual precipitation in this region is well over eight times the water mass of the lake. The water of the Durance River flows into Lake Etang de Berre through the EDF Canal, amounting to 90% of the precipitation. However, reduction of rainfall in dry seasons has a serious effect on the hydrological characteristics of the lake. The temperature in the winter is partially caused by the low temperature of fresh water, particularly that of the Durance River. The hydrological season of fresh and brackish water is about one month ahead of the hydrological season of sea water in its vicinity. The salinity of Lake Etang de Berre runs approximately 3$\textperthousand$, except at lower levels and near the entrance to the Caronte Canal. However, when the volume of the Durance River water is reduced in the summer and fall, the salinity rises to 15$\textperthousand$. In the lake, the ratio of fresh water to sea water is six to one (6:1). The large quantities of seston conveyed by rivers, particularly the Durance diversion, strongly reduce the transparency in the brackish waters. Although the amount of sunshine is also notable, transparency is slight because of the large amount of seston, carried chiefly by Tripton in the fresh water of the Durance River. Therefore, photosynthesis generally occurs only in the surface layer. The transparency progressively increases from freshwater to open seawater, as mineral particles sink to the bottom (about 1.7kg $m^{-2}a^{-1}$ on the average in brackish lakes). The concentration of dissolved oxygen and the rate of oxygen saturation in seawater (Carry-le-Rouet) ranged from 5.0 to 6.0 $m\ell$ㆍ.$1^{-1}$, and from 95 to 105%, respectively. The amount of dissolved oxygen in Etang de Berre oscillated between 2.9 and 268.3%. The monographs of phosphate, nitrate, nitrite and silicate were published as a part of a study on the ecology of phytoplankton in these environments. Horizontal and vertical distributions of these nutriments were studied in detail. The recent diversion of the Durance River into Lake Etang de Berre has effected a fundamental change in this formerly marine environment, which has had a great impact in its plankton populations. A total of 182 taxa were identified, including 111 Bacillariophyceae, 44 Chlorophyceae, and 15 Cyanophyceae. The most abundant species are small freshwater algae, mainly Chlorophyceae. The average density is about $10^{8}$ cells $1^{-1}$ in Lake Etang de Berre, and about double that amount in Lake Etang de Vaine. Differences in phytoplankton abundance and composition at the various stations or at various depths are slight. Cell biovolume V (equivalent to true biomass), plasma volume VP (‘useful’ biomass) and, simultaneously. the cell surface area S and S/V ratio through the measurement of cell dimensions were computed as the parameters of phytoplankton productivity and metabolism. Pigment concentrations are generally very high on account of phytoplankton blooms by Cyanophyceae, Chlorophyceae and Cryptophyceae. On the other hand, in freshwaters and marine waters, pigment concentrations are comparatively low and stable, showing slight annual variation. The variations of ATP concentration were closely related to those of chlorophyll a and phytoplankton blooms only in marine waters. The carbon uptake rates ranged between 38 and 1091 mg$Cm^{-2}d^{-1}$, with an average surface value of 256 mg; water-column carbon-uptake rates ranged between 240 and 2310 mg$Cm^{-2}d^{-1}$, with an average of 810, representing 290 mg$Cm^{-2}$, per year 45 000 tons per year of photosynthetized carbon for the whole lake. Gross photosynthetic production measured by the method of Ryther was studied over a 2-year period. The values obtained from marine water(Carry-le-Rouet) ranged from 23 to 2 337 mg$Cm^{-2}d^{-1}$, with a weighted average of 319, representing about 110 gCm$^{-2}$ per year. The values in brakish water (Etang de Berre) ranged from 14 to 1778 mg$Cm^{-2}d^{-1}$, with a weighted average of 682, representing 250 mg$Cm^{-2}$ per year and 38 400 tons per year of photosynthesized carbon for the whole lake.