• 제목/요약/키워드: Eutrophication assessment

검색결과 118건 처리시간 0.028초

주암호 영양상태 및 인부하 분석 (Trophic State and P Loading Analysis for Juam Lake)

  • 배상옥;이용운;이성우;정선용
    • 환경영향평가
    • /
    • 제9권4호
    • /
    • pp.291-300
    • /
    • 2000
  • Juam lake is a major water reservoir for the industrial and agricultural activities as well as the residental life of Kwangju and Chonnam regions. However, the water quality of the lake is getting worse due to a large quantity inflowing to the lake. The excessive growth of algae by the overfertilization may result in water treatment problems and also the interference with desirable water uses of navigation, aesthetics, recreation, and aquatic ecosystem. Thus the purpose of this study is to investigate the species and their amount of planktons in the lake and the relationship between the P loading amount and the chlorophyll-a used as a primary productivity index. The results of the investigation show that (1) the predominant species of algae are Microcystis aeruginosa, Anabaena affinis, Melosira granulata, Synedra acus, and Coelastrum cambricum, (2) the trophic state of the lake can be classified as eutrophic, and (3) there is close relation between the P loading amount and the chlorophyll-a.

  • PDF

Comparative Analysis of SOx Emission-Compliant Options for Marine Vessels from Environmental Perspective

  • Jeong, Byongug
    • 동력기계공학회지
    • /
    • 제22권1호
    • /
    • pp.72-78
    • /
    • 2018
  • With growing concerns over air pollutions attributed to shipping activities, the international maritime organization has enacted a series of stringent regulations. In particular, MARPOL Annex IV Reg. 16 requires sulfur contents from exhaust gases of marine engines to be progressively reduced. To comply with this regulation, three feasible options have been introduced: using LNG as a marine fuel, using heavy fuel oil with the scrubber system, and using the marine gas oil (a type of low sulfur fuel oil). For the objectives of this paper, the holistic environmental impacts pertinent to these options were investigated and compared in ways that the flows of energy and emission were tracked and quantified through the life cycle of the ship. Research findings obtained from a case study with a large bulk carrier showed that the use of the scrubber system to purify heavy fuel oil would produce relatively fewer amounts of emissions attributing to global warming than other two options. On the other than, the use of LNG would be the way to operate the ship in a cleaner way in terms of reducing the acidification, eutrophication, and photochemical effects. Throughout the analysis, the excellence of life cycle assessment was proven to shift the environmental impact of marine systems from the short-term view to the long-term one.

Assessment of the Marine Environment in Masan-Jinhae Bay of Korea in Relation to Algal Blooms

  • 이문옥
    • 한국해양공학회지
    • /
    • 제22권5호
    • /
    • pp.7-24
    • /
    • 2008
  • Masan-Jinhae Bay, in Korea, is known for its frequent algal bloom outbreaks. This study was conducted in order to examine the environmental characteristics of the area, with the aim of identifying indicators that could be used to speculate about future algal blooms. The water temperatures and salinities in Haengam Bay, one of the small inner bays within Jinhae, appeared to re relatively higher than those in Masan and Jinhae bays, across most seasons. Furthermore, stratification begins to develop in all three regions from spring to summer as a result of the local heating effects and an increase in the efficient from the surrounding land. As a result, anoxic conditions appear near the bottom layer of the bay, leading to the deterioration of water quality, which has been identified as one of the causes of bloom outbreaks. Compared to Haengam and Jinhae bays, concentrations of DIN and DIP were remarkably higher in Masan Bay. However, the mean ratio of DIN to DIP was 3.3$\sim$13.6 in all three regions throughout the year, suggesting that nitrogen can function as a growth-limiting factor for phytoplankton. The results of mathematical models showed that cumulative organic pollutants may be a trigger for direct algal bloom occurrences, since residual tidal currents appeared to be less than $3\;cm\;\cdot\;s^{-1}$. Furthermore, computed DO concentrations in the four small inner bays of Jinhae during the summer appeared to be $3\;cm\;\cdot\;l^{-1}$ indicating a hypoxic state. Likewise, computed Chl-a concentrations turned out to be more than $0.01\;mg\;\cdot\;l^{-1}$, indicating eutrophication across most seasons. Based on the overall results, Masan-Jinhae Bay appeared to possess a very high potential for algal bloom outbreaks at anytime during the year.

물질순환모델을 이용한 울산해역의 수질예측 (The Prediction of Water Quality in Ulsan Area Using Material Cycle Model)

  • 신범식;김규한;편종근
    • 한국해양공학회지
    • /
    • 제20권1호
    • /
    • pp.55-62
    • /
    • 2006
  • Recently, pollution by development in coastal areas is going from bad to worse. The Korean government is attempting to make policies that prevent water pollution, but it is still difficult to say whether such measures are lowering pollution to an acceptable level. More specifically, the general investigation that has been done in KOREA does not accurately reflect the actual conditions of pollution in coastal areas. An investigation that quantitatively assesses water quality management using rational prediction technology must be attempted, and the ecosystem model, which incorporates both the 3-dimensional hydrodynamic and material cycle models, is the only one with a broad enough scope to obtain accurate results. The hydrodynamic model, which includes advection and diffusion, accounts for the ever-changing flow and (quality) of water in coastal areas, while the material cycle model accounts for pollutants and components of decomposition as sources of the carbon, phosphorus, and nitrogen cycles. In this paper, we simulated the rates of dissolved oxygen (DO), chemical oxygen demand (COD), total nitrogen(T-N) and total-phosphorous(T-P) in Korea's Ulsan Area. Using the ecosystem model, we did simulations using a specific set of parameters and did comparative analysis to determine those most appropriate for the actual environmental characteristics of Ulsan Area. The simulation was successful, making it now possible to predict the likelihood of coastal construction projects causing ecological damage, such as eutrophication and red tide. Our model can also be used in the environmental impact assessment (EIA) of future development projects in the ocean.

주남저수지 유역의 오염원과 수질변동에 따른 식물플랑크톤 군집 (Phytoplankton Community in Junam Reservoir by Pollution Sources, Loads and Water Quality)

  • 이혜진;서정관;정현기;탁보미;이재관
    • 한국환경과학회지
    • /
    • 제19권11호
    • /
    • pp.1445-1456
    • /
    • 2010
  • This study presented seasonal changes of the phytoplankton community in Junam reservoir by pollution and water quality of the lake. The water storage of the reservoir is 5.3 million ton, most of which are being utilized for agricultural, industrial and residential purposes. The annual precipitation during the investigation period was 1,868.9 mm, increasing by 20% from the average annual level of 1,506.7 mm in 2009. The annual average water storage was 57.3%. It decreased during agricultural season and then increased again after monsoon rainfall. The loads of BOD were $3,799kgday^{-1}$, and 81% of them came from livestock and household. The TN and TP loads were $1,164kgday^{-1}$ and $170kgday^{-1}$, respectively, and 76% of them came from livestock. We assessed water quality of the Junam reservoir using 17 variables. According to the result, the reservoir met the fourth grade, meaning slightly bad, because of high concentration of COD, SS and chlorophyll-a. Eutrophication assessment was conducted by revised Carlson's Index (TSIm, Aizaki), and it was found that the entire lake was eutrophicated with high chlorophyll-a concentration all through the year, except during February to April and in July. A total of 76 phytoplankton species were identified from the samples. Among them, the largest number of species were Chlorophyceae with 33 species(43.4%), followed by Bacilliophyceae with 27 species(35.5%), Cyanophyceae with 8 species(10.5%), and Cryptophyceae with species(10.5%). The total cell number of phytoplankton was the highest in October(7,884 cells $mL^{-1}$) among Cyanophyceae and Bacilliophyceae. The seasonal succession of Chlorophyceae (Chlamydomonas spp.), Cyanophyceae(Microcystis aeruginosa) and Cryptophyceae(Rhodomonas spp.) was observed during January to May, July to September and October to December respectively.

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.

하천 및 호소 내 퇴적물 재부유에 따른 중금속 및 영양염류 용출량 평가기법 동향 (Trends in Evaluation Techniques for Leaching of Heavy Metals and Nutrients according to Sediment Resuspension in Rivers and Lakes)

  • 윤상규;한서연;김해욱;곽인실;안진성
    • 한국지하수토양환경학회지:지하수토양환경
    • /
    • 제28권5호
    • /
    • pp.1-11
    • /
    • 2023
  • The phenomenon of sediment resuspension in rivers and lakes causes contaminants (heavy metals and nutrients) accumulated in the sediment to leach into the overlying water. As a result, it can lead to changes in toxic effects and eutrophication in the aquatic ecosystem. In this regard, it is important to quantitatively determine the amount of contaminants leached during sediment resuspension. In this study, methods for assessing the amount of released contaminants and the types of contaminants potentially released due to sediment resuspension were studied and summarized. Methods for assessing leaching can be divided into three groups based on the principle of causing resuspension: (i) the oscillating grid chamber method, (ii) the mechanical stirrer method, and (iii) the shaker method. It was confirmed that the types of contaminants that can potentially be released include heavy metals bound to sulfides, as well as exchangeable and labile forms of heavy metals and nutrients. To effectively manage stable aquatic ecosystems in the future, a simplified leaching test method is needed to assess in advance the risks (i.e., changes in toxic effects and eutrophication) that sediment resuspension may pose to aquatic ecosystems.

EFDC 모델에 의한 세종보의 부영양화 및 제어대책 평가 (Evaluation of Eutrophication and Control Alternatives in Sejong Weir using EFDC Model)

  • 윤여정;장은지;박형석;정세웅
    • 환경영향평가
    • /
    • 제27권6호
    • /
    • pp.548-561
    • /
    • 2018
  • 본 연구의 목적은 금강의 중류에 위치한 갑천과 미호천의 직접적 영향을 받는 대청댐과 세종보 구간에 대해 3차원 수리-수질 해석 모델인 EFDC를 구축하고 모델을 보정한 후, 대청댐의 유량조절과 갑천 및 미호천의 부하량 삭감 시나리오에 따른 세종보 구간의 영양상태와 수질개선 효과를 평가하는데 있다. EFDC 모델은 2012년 9월부터 2013년 4월까지 측정된 수위, 수온 및 수질 변수를 사용하여 보정하였으며, 모델은 실측 수위의 변화와 수온 및 수질의 공간적, 시간적 변화를 재현했다. 연구결과, 연구대상 하천구간에서 영양염류와 조류 생체량의 공간 분포는 횡단 방향의 변화가 크다는 것을 확인 하였다. 또한 조류 성장 제한 요인 분석 결과, 갑천과 미호천에서 세종보에 이르는 인 부하가 부영양화와 녹조발생을 일으키는 요인으로 나타났다. 시나리오 모의결과, 갑천과 미호천의 오염 부하량 감축은 청원-1지점의 경우 Chl-a 4.7~18.2%, TP 5.4~21.9%, 연기지점은 Chl-a 4.2~17.3%, T-P 4.7~19.4% 저감하여 대상 하천의 수질 개선과 부영양 지수 개선에 큰 영향을 미치는 것으로 확인되었다. 한편, 대청댐 및 세종보의 유량을 조절하는 시나리오는 청원-1지점의 경우 Chl-a 1.5~2.4%, T-P 2.5~3.8%, 연기지점은 Chl-a 1.2~2.1%, T-P 0.9~1.5% 저감되어 수질 개선에 거의 영향을 미치지 않았다. 따라서 세종보의 녹조저감과 수질개선 목표를 달성하기 위해서는 갑천과 미호천의 수질 개선이 필수적이며 가장 중요한 선결 조건이라 판단된다.

LCA 기법을 활용한 합류식 하수도 월류수 사업의 잠재적 환경영향 저감효과 분석 (An Analysis of Potential Environmental Impact Reduction for Combined Sewer Overflow Project using a LCA Methodology)

  • 조현정;송장환;황용우;박지형
    • 상하수도학회지
    • /
    • 제25권6호
    • /
    • pp.885-892
    • /
    • 2011
  • In this study, LCA(Life Cycle Assessment) on 'Saemangum CSO Project' was carried out to evaluate environmental impact which occurred during the construction and operation periods and the potential environmental impact reduction was analyzed by comparing production and reduction level of pollution loads. LCA was conducted out according to the procedure of ISO14040 which suggested Goal and Scope Definition, Life Cycle Inventory Analysis, Life Cycle Impact Assessment and Interpretation. In the Goal and Scope Definition, the functional unit was 1 m3 of CSO, the system boundary was construction and operation phases, and the operation period was 20 years. For the data collection and inventory analysis, input energies and materials from civil, architecture, mechanical and electric fields are collected from design sheet but the landscape architecture field is excepted. LCIA(Life Cycle Impact Assessment) was performed following the procedure of Eco-Labelling Type III under 6 categories which were resource depletion, eutrophication, global warming, ozone-layer destruction, and photochemical oxide formation. In the result of LCA, 83.4% of environmental impact occurred in the construction phase and 16.6% in the operation phase. Especially 78% of environmental impact occurred in civil works. The Global warming category showed the highest contribution level in the environmental impact categories. For the analysis on potential environmental impact reduction, the reduction and increased of environmental impact which occurred on construction and operation phases were compared. In the case of considering only the operation phase, the result of the comparison showed that 78% of environmental impact is reduced. On the other hand, when considering both the construction and operation phases, 50% of environmental impact is increase. Therefore, this study showed that eco-friendly material and construction method should be used for reduction of environmental impact during life cycle, and it is strongly necessary to develop technology and skills to reduce environmental impact such as renewable energies.

Building capacity for ecological assessment using diatoms in UK rivers

  • Kelly, Martyn
    • Journal of Ecology and Environment
    • /
    • 제36권1호
    • /
    • pp.89-94
    • /
    • 2013
  • Diatoms have become an integral part of the UK's freshwater monitoring strategy over the past two decades, mostly in response to increasingly stringent European Union (EU) legislation. The use of diatoms is based on strong correlations between diatom assemblages and environmental variables, and from knowledge of the "expected" (= "reference") state of each river. The nationwide overview of the ecological health of rivers this gives allows those stretches of rivers which fail to meet EU criteria to be identified. This, in turn, allows appropriate remediation measures to be planned. Because diatom assemblages vary in space and time, even within a single water body, effective use of diatoms requires a consistent approach in order to minimise uncertainty. This includes the use of methods which comply with European Standards, a training and accreditation scheme for analysts, and a suite of quality assurance methods. Those aspects of uncertainty that cannot be readily controlled have been quantified and all estimates of ecological status are accompanied by the appropriate "confidence of class" and "risk of misclassification". This, in turn, helps planners prioritise those locations which are most likely to benefit from remediation.