• 제목/요약/키워드: aquatic ecosystem

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드론원격정보를 활용한 저수지 수생식물 분포 파악: 경북 문천저수지에서의 적용 예 (Identification of Aquatic Plants in the Muncheon Water Reservoir Using Drone-based Information)

  • 이근상;김성욱;이길하
    • 한국환경과학회지
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    • 제26권5호
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    • pp.685-689
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    • 2017
  • Aquatic plants serve the crucial function of helping to balance water reservoir ecosystem, as they filter and remove major minerals required for algal growth such as nitrogen, ammonia, and nitrates. Aquatic plants provide food, shade, and protection for the aquatic biome in and around the reservoir. Thus, it is important to accurately determine the existence and areal extent of the aquatic plants. In the present study drone-based facilities were used for this purpose. In the Muncheon water reservoir, Gyeongbuk, the Normalized Difference Vegetation Index (NDVI) and Surface Algal Bloom Index (SABI) were used to determine the existence status of the aquatic plants. The data so obtained exhibited reasonable accuracy; drone-based facilities can be used in future to identify the areal extent of aquatic plants.

진위천수계의 오염총량관리에 따른 수질 및 수생태계 개선 효과 분석 (Analysis of Water Quality and Aquatic Ecosystem Improvement Effect According to TMDL in Jinwi River Watershed)

  • 임지혁;공동수
    • 환경영향평가
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    • 제30권6호
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    • pp.355-360
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    • 2021
  • 국내 물관리정책은 농도 중심의 물관리에서 부하량 관리 중심의 오염총량관리로 전환되면서 수질 및 수생태계에 변화를 가져왔다. 하지만 오염원의 변화와 유량 변동 등으로 총량제 시행 이후 수질 및 수생태계 건강성이 개선되었는지 판단하기 어려워 로그선형모델과 생물지표(저서성 대형무척추동물)를 활용하여 효과를 분석하였다. 그 결과 진위천수계의 BOD와 T-P농도는 각각 30%, 35% 저감되어 수질개선 효과를 보였으나, 저서생물지수(BMI) 결과 D등급에서 E등급으로 악화되었다. 진위천수계의 수생태계 건강성을 개선하기 위해서 생태하천을 가꾸는 노력이 필요하다.

남서부 동해에서 1970년대의 기후체제전환이 생태계의 구조에 미친 영향 (Effects of Climatic Regime Shift on the Structure of Marine Ecosystem in the Southwestern East Sea during the 1970s)

  • 장창익;윤상철
    • 한국수산과학회지
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    • 제36권4호
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    • pp.389-401
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    • 2003
  • The changes in structure and abundance of taxon or species groups in the East Sea ecosystem were compared between pre- and post-Climatic Regime Shift (CRS) occurred in the mid 1970s using an ECOPATH model. Although the East Sea ecosystem consisted of primary producers, primary consumers, secondary consumers and terminal consumers most species groups were classified as secondary consumers. The mean trophic level between pre- and post-CRS increased from 3.09 during the pre-CRS period to 3.28 during the post-CRS period. Total biomass of the species groups in the East Sea ecosystem increased by $9\%$ due to the CRS, and total catch increased by $48\%.$ The most significant differences between pre- and post-CRS models occurred at the mid/high trophic levels occupied by fishes and cephalopods. Relative contribution of the different species groups to the total energy flow was calculated for the trophic level III. As a result, the status by the dominant species in the East Sea ecosystem shifted from cephalopods to walleye pollock due to the CRS. Relative contribution of 5 species, which were commercially important, such as Pacific saury, Pacific sardine, filefish, walleye pollock and sandfish in trophic level III, were also changed due to the CRS. Finally, the CRS turned out to cause large variations in biomass and catch of fisheries resources as well as the status and role of the major species.

계류생태계 보전을 고려한 환경친화적 사방 전략(I) (Consideration on Environmentally Friendly Erosion Control Strategy for Conservation of Stream Valley Ecosystem (I))

  • 박재현
    • 한국환경복원기술학회지
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    • 제5권5호
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    • pp.67-75
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    • 2002
  • This study was carried out to introduce current status to discuss erosion control strategy for the conservation of stream valley ecosystem. To restore stream valley ecosystem, we should establish restoration plans to keep the original shape of stream. It is necessary to use environmentally sound materials with conservation of valley stability. Valley construction for erosion control works should be evaluated continuously based on concepts of conservation and development of stream valley ecology. It is categorized in point of the important of class of stream valley conservation ahead planning and constructure. We suggest that the development of stream valley construction needs to prevent mass movement of soil sediments. In addition, it is established the basal strategy to protect macro and micro aquatic organisms in stream valley ecosystem.

LEHA 모델을 이용한 어류군집 특성 분석 및 건강성 평가 (Health Evaluation and Fish Population Analysis by Using LEHA (Lentic Ecosystem Health Assessment) Model)

  • 한석중;김봉래;차준성;강경호;정민민
    • 수산해양교육연구
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    • 제26권6호
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    • pp.1185-1192
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    • 2014
  • Health assessment of aquatic ecosystem was investigated by using LEHA (Lentic Ecosystem Health Assessment) model method with habitat fish population structure analysis in this study. The investigation was two comparison spots (St 1; floating island, St 2; 500 m away site from st 1) in the Habcheon lake of Korea. As results, health evaluation of Habcheon lake ecosystem was fair grade of LEHA scores base on metric values in both place (30 score in st. 1 and 32 score in st. 2).

생태하천 복원사업 우선순위 선정에 대한 연구: 한강하구를 중심으로 (Priority Determination of the Projects for Ecological Restoration of the Stream : Case Study for Han River Estuary)

  • 백선욱;이준학;이승민;이하늘;김형수;김수전
    • 한국습지학회지
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    • 제25권1호
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    • pp.64-73
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    • 2023
  • 2022년 이전에는 하천 관리 주체가 이원화되어 생태하천 복원사업을 계획 및 시행하는 과정에서 많은 혼선이 발생하였다. 이로 인해 하천 수생태계 건강성이 확보되지 못하였다. 그러나 2022년 환경부가 생태하천 복원사업을 주관하게 되며, 하천 수생태계 건강성 확보는 복원사업에서 필수적인 요소가 되었다. 따라서 본 연구에서는 기수역과 람사르 습지가 위치하여 하천 수생태계 건강성 확보가 필수적인 한강하구 지역을 대상으로 복원사업이 필요한 하천 구역을 선정하였다. 우선, 생태하천 복원사업의 세부 조사항목을 기반으로 하천의 물리적, 화학적, 공간/인문학적, 수생태계 건강성 평가지수를 산정하였다. 산정된 평가지수에 순위정렬(ranking), 스케일 재조정(re-scaling), z 점수(z-score), t 점수(t-score) 표준화(normalization) 방법을 적용하였으며, 도출된 값을 비교·분석하였다. 이후 각 평가지수에 엔트로피 가중치 방법(entropy weight method)을 적용하였다. 해당 과정을 통해 한강하구 지역 내에서 수생태계 건강성 확보를 목적으로 복원사업이 요구되는 하천(목감천, 안양천 등)을 선정하였다. 본 연구의 결과는 생태하천 복원사업의 우선순위를 선정하는 과정에서 기초연구 자료로 활용될 수 있을 것이다.

Assessment of polluted factors in aquatic environment using near infrared spectroscopy

  • Norio, Sugiura;Zhang, Yansheng;Wei, Bin;Zhang, Zhenya;Isoda, Hiroko;Maekawa, Takaaki
    • 한국근적외분광분석학회:학술대회논문집
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    • 한국근적외분광분석학회 2001년도 NIR-2001
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    • pp.1272-1272
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    • 2001
  • Eutrophication processes of aquatic environment are strictly correlated with the concentration levels of nitrogen, phosphorous, organic matter and biological parameters such as phytoplankton and chlorophylla (Tremel, 1996; Burns et al., 1997; Young et al. 1999; Wei et al.,2000). Accordingly, the monitoring and evaluation of these factors will provide useful information about the health of aquatic ecosystem. However, the traditional types of auqatic chemistry analysis and ecological monitoring of phytoplankton are time-consuming, costly, and further resulting in secondary pollution due to the use of reagents. NIR (near-infrared) spectroscopy, as a rapid, non-destructive, little sample preparation and reagents-free technology (Hildrum et al., 1992), has been extensively applied to the characterization of food (Osborne and Fearn, 1988), pharmaceutical (Morisseau and Rhodes, 1995) and textile materials (Clove et al.,2000). Currently, NIR technology has been used indirectly in inferring lake water chemistry by two approaches, suspended (Malley et al., 1996) or seston (Dabakk et al., 1999), and sediments (Korsman et al., 1992; Malley et al., 1999). In addition, the evaluation of trophic state and the identification of the key factors contributed to the trophication are the key step to restore the damaged aquatic environment. Moreover, an understanding of the factors, which regulate the algal proliferation, is crucial to the successful management of aquatic ecosystem. In the paper, NIR technology will be used to study the environmental factors affecting the algal proliferation in combination with the trophic state index and diversity index. This novel developed system can be applied in monitoring and evaluating allopathic water environment and provide real time information services for the aquatic environment management.

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표층혼합층 생태계모델을 이용한 동해 식물플랑크톤의 계절변화 (Seasonal Variation of Phytoplankton in the East Sea Using A Surface Mixed Layer Ecosystem Model)

  • 김상우;기전풍;동옥지범
    • 한국수산과학회지
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    • 제36권2호
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    • pp.178-186
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    • 2003
  • Seasonal variation of phytoplankton was investigated with surface mixed layer ecosystem model in the East Sea. The model consisted of four compartments (phytoplankton, zooplankton, nutrient, detritus) forced by mixed layer depths, photosynthetically available radiation and nutrient concentrations. From model results we estimated entrainment rate $2.5-4.0\;m{\cdot}day^{-1}$ to reproduce the two annual blooms, and reproduced seasonal variation of phytoplankton at southern and northern regions by the difference of surface winter mixed layer depth (MLD) using the entrainment rate value $3.0\;m{\cdot}day^{-1}$. The spring blooms in the southern and northern regions closely related to deepening of a winter surface MLD. In the southern region where MLD was shallow and phytoplankton spring bloom occurs one month in advance to the northern region where MLD was deep. The amount of light increases within the MLD during the onset of stratification and water temperature increases faster in spring in the southern region than the northern region. Decrease of phytoplankton was mainly affected by zooplankton grazing in the southern region and by nutrient exhaustion in the northern region. The fall bloom in the two regions was caused by the nutrient availability and entrainment on the phytoplankton.

전복양식장 저서생태계의 훼손으로 인한 어업자원의 생산감소량 추정 모델 (A Quantative Population Dynamic Model for Estimating Damages in Fishery Production in the Benthic Ecosystem of Abalone Culture Grounds)

  • 강용주;장창익
    • 한국수산과학회지
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    • 제36권4호
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    • pp.409-416
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    • 2003
  • Marine populations are maintained through the processes of spawning, growth, recruitment, natural death and fishing in a marine ecosystem. Based upon each of these processes, a quantitative population dynamic model was developed to estimate damages in fishery production due to accidents in a fishing ground. This model was applied for the abalone culture grounds in Korean waters. Three components of damages were identified in the ecosystem of the abalone culture grounds, namely, physical damages in the substratum of the fishing ground, biological damages in the structure and function of the ecosystem, and damages in fishery production. Considering these three components the processes and durations of damages in fishery production were determined. Because the abalone population is composed of multiple year classes, damages influence all the year classes in the population, when they occur The model developed in this study is: $$y=(n_{\lambda}+1){\times}Y_E\;-\;\sum\limits^{n_\lambda-n_c}_{l=0}\;y_{n_c/i}$$ where, y is the expected damages in fishery production during the period of restoration of the damaged abalony population, $Y_E$ is the annual equilibrium yield, $n_{\lambda}$ is the maximum age in the population, $t_s$ is the year of damage occurrence, $n_c$ is the age at recruitment, and $\sum\limits^{n_\lambda-n_c}_{l=0}\;y\;_{n_c/i}$ is total expected lifetime catch of year classes which were recruited during the restoration period.

새만금 사업지구의 연안해역에서 부영양화관리를 위한 생태계모델의 적용 -2. 오염부하의 정량적 관리- (Application of Ecosystem Model for Eutrophication Control in Coastal Sea of Saemankeum Area -2. Quantitative Management of Pollutant Loading-)

  • 김종구;김양수;조은일
    • 한국수산과학회지
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    • 제35권4호
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    • pp.356-365
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    • 2002
  • One of the most important factors that cause eutrophication is nutrient materials containing nitrogen and phosphorus which stem from excreation of terrestial sources and release from sediment. Therefore, to improve water quality, the reduction of these nutrients loads should be indispensible. At this study, the three-dimensional numerical hydrodynamic and ecosystem model, which was developed by Institute for Resources and Environment of Japan, were applied to analyze the processes affecting the eutrophication. The residual currents, which were obtained by integrating the simulated tidal currents over 1 tidal cycle, showed the presence of a typical counterclockwise eddies between Gyewha and Garyuk island. Density driven currents were generated westward at surface and eastward at the bottom in Saemankeum area where the fresh waters are flowing into, The ecosystem model was calibrated with the data surveyed in the field of the study area in annual average. The simulated results were fairly good coincided with the observed values within relative error of $30\%$. The simulations of DIN and DIP concentrations were performed using ecosystem model under the conditions of $40\~100\%$ pollution load reductions from pollution sources. In study area, concentration of DIN and DIP were reduced to $59\%$ and $28\%$ in case of the $80\%$ reduction of the input loads from fresh water respectively. But pollution loads from sediment had hardly affected DIN and DIP concentration, The $95\%$ input load abatement is necessary to meet the DIN and DIP concentration of second grade of ocean water quality criteria.