• Title/Summary/Keyword: Autochthonous COD

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낙동강 하구 해역의 자생COD 평가 (Evaluation of Autochthonous COD in the Nakdong Estuary)

  • 신성교;박청길;송교욱
    • 한국수산과학회지
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    • 제28권3호
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    • pp.263-269
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    • 1995
  • 낙동강 하구를 대상해역으로하여 자생COD 농도를 구하기 위해 3가지 방법을 적용하고, 각 방법간의 적용성을 평가한 실험으로부터 다음과 같은 결론을 얻었다. 낙동강 하구 해역의 부영양화도 평가 지수는 5.0-111.0로 부영양화 기준 지수 1을 훨씬 초과하여 과영양단계에 있는 것으로 나타났다. 낙동강 하구 조사해역의 총COD중 자생COD 비는 $0.5-44.9\%$의 범위였으며, 계절별로는 하계에 가장 높은 비율을 보였다. 지점별로는 하계에 정점 6에서 평가방법 평균 $43.5\%$로 가장 높은 비율을 나타내었다. 염분농도를 이용한 평가법은 낙동강 하구에서 하구언의 수문조작에 따른 하천수의 부정기적인 유입으로 인해 자생COD를 평가 하기에 부적절한 방법이었다 $\Delta COD$법과 COD와 Chl.a와의 상관성을 이용해 자생COD농도를 평가하는 방법은 하계 전조사해역에서 상대오차 $20\%$이내의 값을 보여 낙동강 하구 해역의 자생COD평가를 위한 적절한 방법임을 알 수 있다.

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생태계 모델링을 이용한 진해만의 자생 COD 평가 (Ecological Modeling for Estimation of Autochthonous COD in Jinhae Bay)

  • 홍석진;이원찬;박종수;오현택;윤상필;김형철;김동명
    • 한국환경과학회지
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    • 제16권8호
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    • pp.959-971
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    • 2007
  • The three-dimensional eco-hydrodynamic model was applied to estimate the autochthonous COD caused by production of phytoplankton in Jinhae Bay. A residual current was simulated, using a hydrodynamic model, to have a sightly complicated pattern in the inner part of the bay, ranging from 0.001 to 5 cm/s. In the outer part of the bay, the simulated current flowed out to the south sea with a southward flow at a maximum of 25 cm/s. The results of the ecological model simulation of COD levels showed high concentrations, exceeding 4 mg/L, in the inner bay of Masan, an area of wastewater discharge, and lower levels, approaching less than 1 mg/L, closer to the outer part of the bay. The simulation results of Autochthonous COD by two methods using ecological modeling, showed high ratio over 70% of total COD. Therefore, it is more important to consider nutrients than organic matters in the region for control COD standard.

금강수계의 수질관리를 위한 QUAL2E 모델의 적용(I) -모델입력인자 산정 및 자생BOD 평가- (Application of QUAL2E Model for Water Quality Management in the Keum River(I) -Estimation of Model input Parameter and Autochthonous BOD-)

  • 김종구;이지연
    • 한국환경과학회지
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    • 제10권2호
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    • pp.119-127
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    • 2001
  • The Keum river is one of the important river in Korea and has a drainage area of 9,873$\textrm{km}^2$. The Keum river is deepening pollution state due to development of the lower city and construction of a industrial complex. The water quality of the Keum river come to eutrophication state and belong to III grade of water quality standard. The concentration BOD in river is affected by the organic loading from a tributary and the algae biomass that largely happen to under eutrophication state. In the eutrophic water mass such as the Keum river, the autochthonous BOD was very important part for making a decision of water quality management, because it was accounted for majority of the total BOD. The purpose of this study was to survey the chatacteristics of water quality in summer and to estimate reaction coefficient. Also, we studied to correlationship between chlorophyll a and BOD(COD) for estimation of the autochthonous BOD. The correlationship between chlorophyll a and BOD(COD) were obtained through the culture experiment of phytoplankton in the laboratory. The results of this study may be summarized as follows ; The characteristics of water quality in summer were belong to III~IV grade of water quality standard as BOD and nutritive condition is very high. The BOD, ammonia nitrogen and phosphate loadings in Miho stream which inflowing untreated sewage from Chungju city was occupied with 64.07%, 26.36%, 46.08%, respectively. Maximum nutrient uptake (Vmax) was 0.4400$\mu$M/hr as substrate of ammonia nitrogen, 0.1652$\mu$M/hr as substrate of phosphate. Maximum specific growth rate ($\mu$max) was 1.2525$hr^{-1}$ as substrate of ammonia nitrogen, 1.5177$hr^{-1}$ as substrate of phosphate. The correlation coefficient between chlorophyll a and BOD by the culture experiment were found to be 0.911~0.935 and 0.942~0.947 in the case adding nutrient and no adding nutrient, respectively. The correlation coefficient between chlorophyll a and COD through the culture experiment were found to be 0.918~0.977 and 0.880~0.931 in the case adding nutrient and no adding nutrient, respectively. The autochthonous BOD(COD) was estimated to the relationship between BOD(COD) and chlorophyll a. The regression equation were found to be autochthonous BOD=(0.045~0.073)${\times}chlorophyll$ a and autochthonous $COD=(0.137~0.182){\times}chlorophyll$ a.

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생물정화기작과 총허용오염부하량을 연계한 마산만의 효율적 해양환경 개선방안 (Effective Costal Environmental Management by Conjugation of Modeling of Bio-Purification and Total Allowable Pollutant Loads in Masan Bay)

  • 엄기혁;김귀영;이원찬;이대인
    • 한국해양환경ㆍ에너지학회지
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    • 제15권1호
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    • pp.38-46
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    • 2012
  • 마산만은 폐쇄성이 강하여 해수유통이 원활하지 못해 소량의 오염물질이 유입되어도 외해로 확산되지 못하고 만내에 계속 머물게 되어 해역의 오염이 가중되고 있고, 만내에서 증식한 식물플랑크톤과 하천을 통하여 유입된 오염물질은 해저에 침강되어 분해·무기화를 거쳐 영양염이 다시 수중으로 공급되어 부영양화, 적조, 빈산소 등을 유발하여 생태계 건강도를 악화시키고 있다. 이러한 마산만의 해양환경개선을 위해 해수유동모델(COSMOS)과 생태계모델(EUTRP2)을 이용하여 환경용량을 산정하고 이매패의 개체군 성장모델을 연계하여 이매패를 포함한 생태계내 물질 순환 구조를 해석하여 이매패의 수질정화 효과를 분석함으로써 비용효과적이고 친환경적인 내만수질개선방안을 도출하고자 한다. 육상오염원의 효과적인 관리 방안으로 환경용량 산정을 통해 시나리오별 유입부하 삭감에 의한 수질관리 방안은 유입부하의 50~90%에 해당하는 비현실적인 삭감량이 제시된다. 마산만의 자생 COD를 평가한 결과 총 COD의 30.7%가 외부유입에 의한 COD이고 69.3%가 자생 COD에 의한 것으로 계산되었다. 이는 마산만의 수질관리에 있어 유기물의 공급원에 대한 제어뿐만 아니라, 자생 COD를 증가시키는 영양염의 유입원에 대한 제어가 필수적이라는 것을 의미한다. 마산만의 자생 COD를 유발하는 영양염류를 제거하기 위해 현재 상황에서 적용가능한 고도처리 증설의 비용을 산정하여 이매패류에 의한 생물정화 효과와의 경제성을 비교분석해 본 결과 20년 동안의 총 비용에 있어 질소를 제거하기 위한 질산화탈질법 906억원, 인을 제거하기 위한 화학침전법은 559억, 이매패류 양식은 461억원으로 산정되어 이매패류 양식은 질소와 인을 같이 제거하는 고도처리 도입에 비해서는 약 1/3의 비용이 소요되는 것으로 나타났다.

가막만의 COD 거동 및 분포 특성 평가를 위한 생태계 모델링 (Ecological modeling for estimation of a transport and distribution of COD in Kamak Bay)

  • 김동명
    • 한국환경과학회지
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    • 제14권9호
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    • pp.835-842
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    • 2005
  • The three-dimensional eco-hydrodynamic model was applied to estimate the physical process in terms of COD (chemical oxygen demand) and net supply(or decomposition) rate of COD in Kamak Bay to find proper management plan for oxygen demanding organic matters. The estimation results of the physical process in terms of COD showed that transportation of COD is dominant in surface level while accumulation of COD is dominant in bottom level. In the case of surface level, the net supply rate of COD was 0 -0.50 mg/m2/day. The net decomposition rate of COD was 0 -0.04 mg/m2/day in middle level(3 -6m) and 0.05 -0.1 5 mg/m2/day in bottom level(6m -bottom). These results indicates that the biological decomposition and physical accumulation of COD are occurred predominantly at the northern part of bottom level. Therefore, it is important to consider both allochthonous and autochthonous oxygen demanding organic matters in the region.

생태계 모델을 이용한 진해만의 COD의 거동과 분포특성 평가 (Estimation of a Transport and Distribution of COD using Eco-hydrodynamic Model in Jinhae Bay)

  • 홍석진;이원찬;정래홍;박성은;장주형;김형철;김동명
    • 한국환경과학회지
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    • 제16권12호
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    • pp.1369-1382
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    • 2007
  • To find proper water quality management strategy for oxygen consumption organic matters in Jinhae bay, the physical process and net supply/decomposition in terms of COD was estimated by three-dimensional eco-hydrodynamic modeling. The estimation results of physical process in terms of COD showed that transportation of COD was dominant in loading area from land to sea, while accumulation of COD was dominant in $middle{\sim}bottom$ level. In case of surface level, the net supply rate of COD was $0{\sim}60\;mg/m^2/day$. The net decomposition rate of COD was $0{\sim}-0.05\;mg/m^2/day$($-5{\sim}-10$ m, in depth) to 2 level, and $-0.05{\sim}-0.20\;mg/m^2/day(10m{\sim})$ to bottom level. These results indicate that the biological decomposition and physical accumulation of COD are occurred for the most part of Jinhae Bay bottom. The variation of net supply or net decomposition rate of COD as reducing land based input loading is also remarkable. Therefore, it is important to consider both allochthonous and autochthonous oxygen demanding organic matters to improve the water quality of Jinhae Bay.

화학적산소요구량을 이용한 하구해역의 해수중 유기물 기원 고찰 (A Study on the Origin of Organic Matter in Seawater in Korean Estuaries Using Chemical Oxygen Demand)

  • 김영숙;구준호;권정노;이원찬
    • 해양환경안전학회지
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    • 제24권6호
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    • pp.735-749
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    • 2018
  • 본 연구에서는 우리나라의 주요하천인 한강, 금강, 영산강, 섬진강 그리고 낙동강의 하구에서 해수중 화학적산소요구량(COD)의 농도를 결정하는 주요 요인과 수질인자에 대해 고찰하였다. 주성분분석으로 얻어진 해수중 COD 농도를 결정하는 주요요인은 염분과 클로로필-a를 중심으로 한 외래성 기원과 자생공급으로 나타났으며, 그 외 해저 퇴적층의 유기물도 영향을 미치는 것으로 나타났다. 하구해역의 COD 농도를 결정하는 수질인자들의 기여도는 회귀식 기울기를 통해 평가하였다. 조사시기별로는 전체적으로 염분의 영향을 많이 받는 것으로 나타났으며, 4월과 8월에는 클로로필-a의 영향도 함께 받는 것으로 나타났다. 하구별로는 낙동강에서는 클로로필-a, 한강과 영산강에서는 염분, 금강에서는 염분과 함께 클로로필-a의 기여도가 각각 큰 것으로 나타났으며, 섬진강에서는 염분과 클로로필-a 모두 낮은 기여를 나타내었다.

목포항 수질의 계절적 변화 특성 I. 물리 환경과 유기 오염 (The Characteristics of Seasonal Variations of Water Quality in Mokpo Harbour 1. Physical Environment and Organic Pollution)

  • 김광수
    • 해양환경안전학회지
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    • 제5권2호
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    • pp.57-65
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    • 1999
  • The in situ observations and the seawater analyses were conducted at all seasons from July 1996 to April 1999 for the purpose of describing the characteristics of seasonal variations of water quality in Mokpo harbour, Korea. Vertical stratification started to be formed in water column in spring, developed in summer and disappeared in fall. In summer, vertical density distribution of water column was found to be in stable structure with lower temperature and higher salinity of bottom water, and the vertical mixing of water between surface and bottom layers was restricted. In winter, however, surface water was found to be similar to bottom water in temperature and salinity, and water column was in unstable structure and in well-mixed condition between surface and bottom waters. The saturation percentage of dissolved oxygen(DO) in bottom water of inner part of Mokpo harbour at all seasons was shown to be decreased to the third grade or under the third grade of Korean standards of seawater quality. In particular, dissolved oxygen was oversaturated in surface water and undersaturated in bottom water in summer, due to stratification and organic pollution. The difference of DO concentration between surface and bottom waters was found to be greater in spring and summer than in fall and winter, due to stratification and photosynthesis of phytoplankton. The concentrations of chemical oxygen demand(COD) over the entire waters of Mokpo harbour were found to fluctuate from below the third grade to the first grade of Korean standards through all seasons and COD concentrations of same seasons were shown to be different year after year. In particular, in view of COD, the annual average seawater quality of Mokpo harbour was evaluated to be in third grade of Korean standards, due to organic pollution. The average COD of surface water was greater than that of bottom water in spring and summer, due to the autochthonous COD caused by production of phytoplankton in surface waters, while the average COD of surface water was similar to that of bottom water in fall and winter, due to the vertical mixing of water between surface and bottom layers.

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생태계 모델을 이용한 울산만의 하계 수질관리 (Summer Water Quality Management by Ecological Modelling in Ulsan Bay)

  • 박성은;홍석진;이원찬;정래홍;조윤식;김형철;김동명
    • 해양환경안전학회지
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    • 제16권1호
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    • pp.1-9
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    • 2010
  • 울산만의 육상기인 오염부하에 대한 해역수질의 응답특성을 조사하고 만내 수질관리에 활용하기 위하여 해양생태계모델링 연구를 수행하였다. 생태계모텔에 의해 계산된 울산만의 수질은 만 내측에서 COD 농도 2.8mg/L로 해양수질 III등급 수준으로 나타났다. 계산결과 울산만 전체 해역의 수질을 II등급으로 개선하기 위해서는 육상부하를 약 30% 이상 삭감해야 하며, COD 농도 1.0mg/L이하의 수질이 되기 위해서는 전체 육상부하의 70% 이상을 삭감해야 하는 것으로 나타났다. 해역수질 II등급을 유지하기 위하여 삭감해야 할 오염부하량은 약 3,083kgCOD/day, 이 때의 환경용량은 약 7,193kgCOD/day로 계산되었다. 태화강 하구역은 식물플랑크톤 대증식(Bloom)이 상습적으로 발생하는 해역이므로 식물플랑크톤에 의한 자생유기물 부하를 감소시키기 위해서는 유가물 삭감 이외에도 영양염의 제어가 필요한 것으로 나타났다.

Bioaugmentation Treatment of Mature Landfill Leachate by New Isolated Ammonia Nitrogen and Humic Acid Resistant Microorganism

  • Yu, Dahai;Yang, Jiyu;Teng, Fei;Feng, Lili;Fang, Xuexun;Ren, Hejun
    • Journal of Microbiology and Biotechnology
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    • 제24권7호
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    • pp.987-997
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    • 2014
  • The mature landfill leachate, which is characterized by a high concentration of ammonia nitrogen ($NH_3$-N) and humic acid (HA), poses a challenge to biotreatment methods, due to the constituent toxicity and low biodegradable fraction of the organics. In this study, we applied bioaugmentation technology in landfill leachate degradation by introducing a domesticated $NH_3$-N and HA resistant bacteria strain, which was identified as Bacillus cereus (abbreviated as B. cereus Jlu) and Enterococcus casseliflavus (abbreviated as E. casseliflavus Jlu), respectively. The isolated strains exhibited excellent tolerant ability for $NH_3$-N and HA and they could also greatly improved the COD (chemical oxygen demand), $NH_3$-N and HA removal rate, and efficiency of bioaugmentation degradation of landfill leachate. Only 3 days was required for the domesticated bacteria to remove about 70.0% COD, compared with 9 days' degradation for the undomesticated (autochthonous) bacteria to obtain a similar removal rate. An orthogonal array was then used to further improve the COD and $NH_3$-N removal rate. Under the optimum condition, the COD removal rate in leachate by using E. casseliflavus Jlu and B. cereus Jlu increased to 86.0% and 90.0%, respectively after, 2 days of degradation. The simultaneous removal of $NH_3$-N and HA with more than 50% and 40% removal rate in leachate by employing the sole screened strain was first observed.