• 제목/요약/키워드: nutrient loading

검색결과 160건 처리시간 0.023초

회전원판공정과 화학침전공정 조합을 이용한 유기물과 질소*인의 동시제거 (Integrated System of RBC-lime Precipiatation for Simultaneous Removal of Organics and Nutrients)

  • 박종안;허준무;손부순
    • 한국환경보건학회지
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    • 제24권1호
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    • pp.132-140
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    • 1998
  • 회전원판공정(rotating biological contactorRBC)과 화학적 처리공정을 결합한 처리시스템을 이용하여 도시하수내 포함된 유기물과 영양염류를 제거할 경우에 수리학적 부하 (hydraulic loading)와 처리수 반송율 (recirculation rate)의 시스템 처리효율에 미치는 영향을 알아보고자 하였다. 각각의 수리학적 부하 0.031, 0.0535 및 0.076 $m^3/m^2/d에서 반송율을 100%, 200%, 300%로 변화시켰고, 질산화에 필요한 알카리도의 보충 및 화학적 처리를 위하여 lime(CaCO$_3$)을 가하여 유입수의 pH를 10.4-11.0으로 유지시켰다. 실험결과 수리학적 부하 0.0535 $m^3/m^2/d에서 BOD, COD의 제거효율이 가장 높게 나타났으며, 질산화 효율 및 질소 제거효율에서는 수리학작 부하 0.035 $m^3/m^2/d, 반송율 300%에서 가장 높았으며, 반송율별에서는 수리학적 부하를 고려할 때 300% 반송하는 것이 가장 높은 유기물 제거효율을 보였다. 반송율과 수리학적 부하를 증가시킬 경우에 발생되는 슬러지내 유기물 함량은 점점 증가하였고, 수리학적 부하 0.076 $m^3/m^2/d, 반송율 300%일 경우에는 유기물 함량이 47%로 매우 높았다. 이는 부하증가에 따른 미생물 성장의 증가와 더불어 수리학적 부하 증가에 따른 전단력의 증가가 영향을 미쳤기 때문이다. 인을 제거하기 위하여 pH를 10.4-11.0으로 유지시킨 경우에 인을 90%이상 제거할 수 있었으며, 유출수내 평균 SS농도는 40 mg/l를 상회하였다.

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동해 울릉도-독도해역에서 질소, 인, 철 첨가실험에 따른 식물플랑크톤의 성장 및 군집반응 (Growth and community response of phytoplankton by N, P and Fe nutrient addition in around water of Ulleungdo and Dokdo in East Sea)

  • 백승호;이민지;김윤배
    • 한국산학기술학회논문지
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    • 제17권11호
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    • pp.186-195
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    • 2016
  • 동해 울릉도-독도 2정점에서 식물플랑크톤의 군집조성 및 수직적 영양염분포 특성과 표층 현장수를 이용하여 N, P, NP, Fe을 첨가하여 식물플랑크톤의 영양염소비 및 성장특성을 파악하였다. 현장에서 영양염류농도는 유광층 상부에서 낮았고, 100 m보다 깊은 수심에서 증가하였다. N:P비는 Redfield비(16)보다 표층에서 21-25로 높았고, 조사 최대심도인 400 m 층에서는 6 전후로 극히 낮게 관찰되었다. 식물플랑크톤의 총개체수는 St.UD3과 St.50에서 각각 $4.9{\times}10^5cells\;L^{-1}$$1.9{\times}10^5cells\;L^{-1}$로 관찰되었다. 주요 우점종은 St.UD3에서 침편모조류 Heterosigma akashiwo, 은편모조류 Crytomonas spp., 규조류 Leptocylindrus danicus로 파악되었고, St.50에서는 규조류 Chaetoceros socialis, H. akashiwo, L. danicus로 각각 관찰되었다. 영양염첨가실험의 +N과 +NP실험군에서 빠른 식물플랑크톤의 성장반응을 보였고, +P실험군에서는 대조군과 유사하게 식물플랑크톤 성장이 관찰되지 않았다. 아울러 Fe을 첨가한 대조군, +N, +P, +NP실험군에서 Fe을 첨가하지 않은 다른 실험군과 비교하여 형광값의 유의한 차이를 보이지 않았다는 것은 Fe첨가에 따른 식물플랑크톤의 성장반응이 명확하지 않다는 것을 의미한다(p>0.05). 결과적으로 현장에서 우점한 H. akashiwo 와 L. danicus는 영양염이 추가적으로 공급된 환경의 생물검증실험에서도 빠르게 반응하여 높은 개체수로 우점한 것을 파악하였고, 특히 +Fe 실험군에서 L. danicus의 빠른 성장이 두드려졌다.

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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미생물배양조를 결합한 회전원판법에 의한 하수처리 효과 (The Effect of Wastewater Treatment by Rotating Biological Contactors with HBR)

  • 임봉수;어성욱;정원문
    • 한국물환경학회지
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    • 제16권4호
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    • pp.501-512
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    • 2000
  • This study was carried out to develop the new process for RBC process which is capable of nutrient removal and to obtain its design parameters for Sludge Settling Type Rotating Biological Contactors by comparing RBC with RBC combined with HBR (Hanmee Bio-Reactor). To achieve more than 90% of organic removal efficiency, organic loading rate less than $6.0g\;BOD/m^2/d$ is recommended. Nitrification rate was about 90% at $6.0g\;BOD/m^2/d$. TN removal efficiency of RBC+HBR was higher than those of RBC1 and RBC2. TN removal efficiency at condition of $5.0g\;BOD/m^2/d$ was about 60% in RBC1. When BOD loading rate was $6.0g\;BOD/m^2/d$. TN removal efficiencies in RBC2 and RBC+HBR were about 70%, 80%, respectively. TP removal efficiency was more than about 67% for RBC1, about 63% for RBC2 and about 71 % for RBC+HBR at the same loading rate. From the blank experiment to observe removal efficiency in the first stage, it can be known that COD removal efficiency was about 30% and suspend solids settling rate was about 45%. It was proved that RBC+HBR is much better in sludge dewatering than RBC.

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해수 조건에서 모래유동층 여과조의 TAN 부하량과 수온에 따른 질산화 효율 (Nitrification Efficiency of the Fluidized Sand Biofilter by TAN Leading Rates and Temperatures in the Simulated Seawater Aquaculture Condition)

  • 박정환
    • 한국수산과학회지
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    • 제38권6호
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    • pp.347-352
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    • 2005
  • These experiments investigated the conditioning pattern and the nitrification efficiency of a fluidized sand biofilter (FSB) for seawater application. The FSB fed artificial nutrient was fully conditioned within 22 weeks. The maximum nitrification efficiency of the FSB was achieved at a superficial water velocity (SWV) of 1.0 cm/sec. After fixing the superficial water velocity at 1.0 cm/sec, the nitrification rates of the FSB were assessed at 3 total ammonia nitrogen (TAN) loading rates (250, 500, 1,000 g TAN/$m^3$/day) and 3 water temperatures (12, 16, $20^{\circ}C$). The TAN concentration in the simulated culture tank ranged from 2.87 to 9.72 mg/L at TAN loading rate of 1,000 g TAN/$m^3$/day, while that ranged from 0.45 to 1.26 mg/L at TAN loading rate of 500 g TAN/$m^3$/day. The ranges of TAN concentration in the former were too high for aquatic organisms and those in the latter were acceptable. Therefore, the safe TAN loading rate for the FSB in seawater conditions was decided as 500 g TA/$m^3$/day. From these results, daily TAN removal rates (g TAN/$m^3$/day) of FSB under conditions of inlet TAN concentration (C, mg/L) and water temperature (T, $^{\circ}C$) were calculated by the following non-linear multi-regression equation: TAN removal rate: f(z)=-1,311.295+655.714LnT+225.775LnC ($r^2=0.962$).

연속회분식반응기에서 패턴매칭방법을 이용한 유입수 부하수준 진단 알고리즘 개발 (Development of a Diagnosis Algorithm of Influent Loading Levels Using Pattern Matching Method in Sequencing Batch Reactor (SBR))

  • 김예진;안유가;김효수;신중필;김창원
    • 대한환경공학회지
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    • 제31권2호
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    • pp.102-108
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    • 2009
  • 연속회분식반응기에서 측정되는 기초상용계측기의 프로파일은 공정 내에서 수행되는 유기오염물질 및 영양염류 제거반응의 진행 정도에 대한 정보를 제공할 수 있다. 특히 호기성 반응구간에 측정되는 pH나 DO, ORP의 변곡점 등의 정보를 이용한 반응 종료 감지는 널리 알려진 응용사례라고 할 수 있다. 그러나 이러한 정보들은 반응의 종료 여부에 대한 정보를 제공할 뿐, 현재 공정에 가해지는 부하에 대한 정보를 제공하지는 못한다. 본 논문에서는 운전자에게 공정 유입수 내의 호기적 반응을 요하는 부하, 즉 암모니아 부하 및 유기물 부하의 고/중/저에 관한 정보를 제공할 수 있는 기초상용계측기의 정보를 활용한 진단 알고리즘을 개발하였다. 본 알고리즘으로 인해, 연속회분식반응기를 운전할 시에 수시로 변화하는 유입수의 부하를 습식분석 없이 자동 계측기 프로파일로부터 얻어낼 수 있을 것으로 사료된다.

Environmental Challenges of Animal Agriculture and the Role and Task of Animal Nutrition in Environmental Protection - Review -

  • Chen, Daiwen
    • Asian-Australasian Journal of Animal Sciences
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    • 제14권3호
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    • pp.423-431
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    • 2001
  • Animals are one of the important memberships of the food chain. The low-efficiency rule of nutrient transfer from one member to the next in the food chain determines the low efficiency of animal agriculture for human food. On the average, about 20% feed proteins and 15% feed energy can be converted into edible nutrients for humans. The rest proportion of feed nutrients is exposed to the environment. Environmental pollution, therefore, is inevitable as animal agriculture grows intensively and extensively. The over-loading of the environment by nutrients such as nitrogen, phosphorus from animal manure results in soil and water spoilage. The emission of gases like $CH_2$, $CO_2$, $SO_2$, NO, $NO_2$ by animals are one of the contributors for the acidification of the environment and global warming. The inefficient utilization of natural resources and the probable unsafety of animal products to human health are also a critical environmental issue. Improving the conversion efficiency of nutrients in the food chain is the fundamental strategy for solving environmental issues. Specifically in animal agriculture, the strategy includes the improvements of animal genotypes, nutritional and feeding management, animal health, housing systems and waste disposal programs. Animal nutrition science plays a unique and irreplaceable role in the control of nutrient input and output in either products or wastes. Several nutritional methods are proved to be effective in alleviating environmental pollution. A lot of nutritional issues, however, remain to be further researched for the science of animal nutrition to be a strong helper for sustainability of animal agriculture.

생물학적 영양염류 제거를 위한 돈사폐수의 반응 특성 (Reaction Characteristics of Piggery Wastewater for Biological Nutrient Removal)

  • 한동준;류재근;임연택;임재명
    • 환경위생공학
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    • 제13권1호
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    • pp.44-56
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    • 1998
  • This study was performed to investigate the reaction characteristics of piggery wastewater for biological nutrient removal. The reaction characteristics were discussed the fraction of organics, the behavior of nitrogen, nitrification, denitrification, and the behavior of phosphorus. The fraction of readily biodegradable soluble COD was 11-12 percent. The ammonia nitrogen was removed via stripping, nitrification, autotrophic cell synthesis, and heterotrophic cell synthesis. The removal percents by each step were 12.1%, 68.9%, 15.0%, and 4.0%, respectively. Nitrification inhibition of piggery wastewater was found to occur at an influent volumetric loading rate over 0.2 NH$_{3}$-N kg/m$^{3}$/d. Denitrification rates were the highest in the raw wastewater and the lowest in the anaerobic effluent. The denitritation of piggery wastewater came out to be possible, and the rate of organic carbon consumption decreased about 10 percent. The phosphorus removed was released in the form of ortho-p in the aerobic fixed biofilm reactor, it was caused by autooxidation. The synthesis and release of phosphorus were related to the ORP and the boundary value for the phase change was about 170mV. In the synthesis phase, the phosphorus removal rate per COD removed was 0.023mgP$_{syn}$/mgCOD$_{rem}$. The phosphorus contents of the microorganism were 4.3-6.0% on a dry weight basis.

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강우시 한강유역에서의 비점오염원 유출 특성과 토지이용도와의 관계 (Characteristics of Nonpoint Source Pollution and Relationship between Land Use and Nutrient Concentrations in the Han River Watershed)

  • 정성민;엄재성;장창원;최영순;김범철
    • 한국물환경학회지
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    • 제28권2호
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    • pp.255-268
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    • 2012
  • Nonpoint source pollution has become a concern for water quality in the Han River system, especially during the high runoff events during the monsoon season. The patterns in nonpoint source runoff the relationships with land use, rainfall intensity, and stream nutrients concentrations were surveyed in 19 streams in the Han River watershed. The results show that the magnitude of NPS inputs of nutrients and sediment in the Han River watershed are of a serious concern. In the South Han River watershed, event mean concentrations (EMC) for biochemical oxygen demand (BOD), suspended sediment (SS), dissolved organic carbon (DOC), dissolved total phosphorus (DTP), total nitrogen (TN) Nitrate ($NO_3$-N) and total phosphorus (TP) were $1.94mg{\cdot}L^{-1},\;251mg{\cdot}L^{-1},\;2.75mg{\cdot}L^{-1},\;0.076mg{\cdot}L^{-1},\;2.82mg{\cdot}L^{-1},\;2.40mg{\cdot}L^{-1}$ and $0.232mg{\cdot}L^{-1}$, respectively. In the North Han River watershed, EMCs for BOD, SS, DOC, DTP, TN, $NO_3$-N and TP were $1.34mg{\cdot}L^{-1},\;172mg{\cdot}L^{-1},\;2.63mg{\cdot}L^{-1},\;0.032mg{\cdot}L^{-1},\;1.97mg{\cdot}L^{-1},\;1.55mg{\cdot}L^{-1}$ and $0.148mg{\cdot}L^{-1}$, respectively. The specific export coefficients of nutrient and sediments were much higher than those of other reports. Our study also found that the proportion of agricultural field area was significantly correlated with the EMCs for nutrients. Therefore, efforts to reduce NPS loading must focus on agricultural practices in the watershed. The relationships between land use and nutrient and sediment export found in this study can be used to derive estimates of runoff coefficients for agricultural field and as input data for modeling works and to develop total maximum daily load and best management practices in the Han River watershed.

논에서의 오염부하 예측을 위한 범용모형 개발 (Water Quality Model Development for Loading Estimates from Paddy Field)

  • 전지홍;황하선;윤광식;윤춘경
    • 생태와환경
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    • 제36권3호통권104호
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    • pp.344-355
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    • 2003
  • 논은 우리나라 총 면적의 12%를 차지하며, 인간활동이 이루어지는 토지이용 중 가장 많은 면적으로 비점오염분야에서 중요한 의미를 가진다. 논은 시비가 이루어지기 때문에 논표면수의 수질변화 폭이 매우 커 지표배수가 이루어지는 시점에 따라 논에서의 부하량에 큰 영향을 미치기 때문에 논에서의 오염부하량산정과 최적관리기법개발에 있어 획일적인 원단위 적용에는 한계가 있다. 뿐만 아니라 기존에 개발된 유역모형의 대부분은 논을 포함하고 있지 않거나 포함하더라도 논에서의 충분한 기작을 모의할 수 없어 우리나라의 적용에 있어서 제한점을 가지므로 앞으로의 합리적인 오염총량제 적용을 위해서는 논모형의 개발이 절실하다. 그러나 논은 담수라는 기능을 가지므로 유역모형과 같은 물리적인 반응보다는 수질모형과 같은 생화학적 반응이 우세하리라 판단된다. 논을 하나의 얕은 호소로 간주하여 호소모형의 적용이 가능하나 이를 위한 수많은 인자 결정에 많은 어려움이 있을 것으로 판단된다. 그러나 논에서의 영농활동은 거의 유사한 시기에 해마다 반복적으로 일어나며, 동일한 양과 형태의 시비가 이루어지며 완전낙수에 의해 다음해의 수질에 영향을 거의 미치지 않으므로. 오히려 간단한 반응공식으로도 충분한 해석이 가능하리라 판단된다. 본 연구에서는 이러한 형태의 영농활동이 이루어지는 논에서의 시비와 바닥에서의 용출에 의한 영향을 dirac deltal function과 continuous source function을 이용하여 모형을 개발하여 지하수관개지역과 지표수관개지역을 대상으로 보정 및 검증결과 높은 적용가능성을 나타내었다. 앞으로의 연구방향은 논에서의 장기적인 모니터링과 여러 지역의 적응을 통한 논 모형의충분한 검증을 실시함으로써, 논에서의 오염부하량 산정과 BMPs개발 뿐 아니라, 기존의 유역모형에 연결함으로써 우리나라 오염총량제의 합리적인 적용이 이루어져야 할 것으로 판단된다.