• 제목/요약/키워드: T-N Removal

검색결과 608건 처리시간 0.028초

비점오염원 저감을 위한 봉산 인공습지의 오염물질 정화효율 평가 (Evaluation of Treatment Efficencies of Pollutants in Bongsan Constructed Wetlands for Treating Non-point Source Pollution)

  • 최익원;문성동;서동철;강세원;임병진;박종환;김갑순;이준배;허종수;조주식
    • 한국토양비료학회지
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    • 제44권6호
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    • pp.1089-1094
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    • 2011
  • 주암호 상수원 상류지역인 송광천에 위치한 봉산 인공습지의 수생태학적 효율 향상을 위한 관리 방안을 제시하기 위하여 시기별, 처리단계별 및 오염물질 부하량별 수처리 효율을 평가하였다. 유입원수의 BOD, SS, T-N 및 T-P의 평균 함량은 $1.87mg\;L^{-1}$, $1.62mg\;L^{-1}$, $11.47mg\;L^{-1}$$4.40mg\;L^{-1}$이었으며, 연평균 처리효율은 BOD, SS, T-N 및 T-P가 각각 26%, 18%, 16% 및 9%로서 전반적으로 처리효율이 낮았으나 유입수 농도가 높아서 오염물질의 제거량은 매우 높은 편이었다. 인공습지 처리단계별 BOD, SS, T-N 및 T-P 변화를 조사한 결과는 모든 항목에서 침강지의 처리효율이 가장 높았고 BOD와 T-P는 습지 II > 습지 I, SS와 T-N은습지 I > 습지 II 순으로 처리효율이 높았다. 인공습지 구성 시스템별 오염물질 부하량에 따른 오염물질 처리량은 BOD는 침강지 > 습지 I > 습지 II, SS는 침강지 > 습지 II > 습지 I, T-N은 습지 I > 침강지 > 습지 II, T-P는 습지 II > 침강지 > 습지 I 순으로 높았다.

은나노 활성탄에 의한 하수 2차 처리수 중의 오염물질 제거 특성에 관한 연구 (A Study on the Characteristics of Pollutant Removal in Secondary Effluent from Wastewater Treatment Plant Using Silver Nanoparticles on Activated Carbon)

  • 선용호
    • KSBB Journal
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    • 제29권5호
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    • pp.353-360
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    • 2014
  • This study targets the pollutant removal of secondary effluent from final clarifiers in wastewater treatment plant using silver nanoparticles on activated carbon. The removal efficiency and treatment characteristics of pollutant are anlayzed by perfoming experiments using granular activated carbon with silver nanoparticles and ordinary granular activated carbon. The specific surface area of granular activated carbon with silver nanoparticles is smaller than that of ordinary granular activated carbon. However, the removal efficiency of $COD_{Mn}$, T-N and T-P in experiments using activated carbon with silver nanoparticles are higher than that in experiment using ordinary granular activated carbon. That means the case of activated carbon with silver nanoparticles is much better at treatment activity. In addition, activated carbon with silver nanoparticles has antimicrobial activity because there is no microbe on the surface of it after experiments.

인공하수 조성 성분에 따른 SBR 처리 공정의 효율에 관한 연구 (A Study on Efficiency of SBR Process by Composition of Artificially Wastewater)

  • 이장훈;장승철;권혁구;김동욱
    • 한국환경보건학회지
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    • 제31권2호
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    • pp.99-106
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    • 2005
  • The removals of organic matter, nitrogen and phosphate in wastewater were investigated with Sequencing Batch Reactor (SBR). Glucose and sodium acetate were Used for organic carbon source so as to know nutrient removal efficiency in proportion to MLSS concentration. In the case of glucose, the COD removal rate was $74\%,\;41\%\;and\;66\%$ in MLSS 5000, 3000 and 1000, respectively. On equal terms, the BOD was $57\%,\;21\%\;and\;38\%$, the T-N was $24\%,\;13\%\;and\;44\%$, and the T-P was $12\%,\;21\%\;and\;33\%$. As a result, the removal rate of organic materials showed the finest remove when MLSS was 5000, but the nutrient removal rate appeared as was best when MLSS was 1000. In the case of sodium acetate, the COD removal rate was $83\%,\;81\%\;and\;86\%$ in MLSS 5000, 3000 and 1000, respectively. On equal terms, the BOD was appeared by $76\%,\;82\%\;and\;92\%$, the T-N $57\%,\;42\%\;and\;78\%$, and the T-P $48\%,\;52\%\;and\;38\%$. As a result, organic and T-N removal rates were best when MLSS was 1000. But, the T-P removal rates were best when MLSS was 3000. Glucose was shown fast removal in reaction beginning, but screened by more efficient thing though sodium acetate removes organic matter, nitrogen and phosphate. Form of floc was ideal in all reactors regardless of carbon source and MLSS concentration. And its diameter was about $200\~500{\mu}m$.

다단 생물반응기에 의한 질소제거 (Nitrogen Removal from Wastewater by a Multi-stage Bio-reactor)

  • 최규철;정일현
    • 환경위생공학
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    • 제13권1호
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    • pp.91-103
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    • 1998
  • Design data for COD and nitrogen removal from wastewater were collected from Pilot's Multi-stage Bio-reactor. Hyraulic conditions and pollutant loadings were varied in order to optimize the biological and operational parameters. Pilot's experimental results summarize as followings. 1. T-N removal efficiency in the organic volumetric loading 0.2 kgCOD/m$^{3}$·d was obtained as maxium of 85% at internal recycle ratio 2.5 and in more ratio than this it was decreased. Organic removal efficiency was about 91% under the overall experimental conditions and not influenced by recycle ratio.. 2. Nitrification reaction was shown as maxium in the SCOD$_{cr}$/NH$^{+}$-N ratio of 6.5 and in more ratio than this it was decreased. Denitrification rate was the maxium as 85% in more than 7.5 of SCOD$_{cr}$/NO$_{x}$-N ratio and in the ratio over this ratio it becomes constant. 3. By utilizing an applied new model of Stover-Kincannon from Monod's kinetic model, concentration of T-N in the effluent according to flow quanity in the influent was estimated as 8.74 and -67.5 respectively. The formula for estimating T-N concentration of effluent was obtained like this: N$_e$=N$_0$(1- $\frac{8.74}{(QN$_0$/A)-67.05}$)

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생물막 담체를 이용한 실험실 규모 $A_{2}O$공법의 시스템 변형에 따른 고도처리 성능 평가에 관한 연구 (The Study on Evaluating Performances of Lab Sacle-Advanced $A_{2}O$ with Changing System Using Biofilm Process)

  • 김민식;강구영
    • 상하수도학회지
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    • 제26권2호
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    • pp.209-218
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    • 2012
  • Recently, as reinforced water quality standards for wastewater has been announced, more efficient and more powerful wastewater treatment processes are required rather than the existing activated sludge process. In order to meet this demands, we evaluate Task 1-4 about lab scale $A_{2}O$ process using biofilm media. Task 1, 2, and 3 use 'Module A' which has 4 partitions (Anoxic/Anerobic/Oxic/Oxic). Task 4 uses 'Module B' which has 2 partitions including a denitrification reactor with an Inclined plug flow reactor (IPFR) and a nitrification reactor with biofilm media. The denitrification reactor of Module B is designed to be upward flow using IPFR. The result of evaluating at each Task has shown that attached growth system has better capacity of removal efficiency for organic matter and nitrogen with the exception of phosphorus. Task 4 which has the most outstanding removal efficiency has 90.5% of $BOD_{5}$ removal efficiency, 97.8% of ${NH_4}^{+}-N$ removal efficiency, 65% of T-N removal efficiency and 92% of T-P removal efficiency with additional chemical phosphorus removal system operated at HRT 9hr, Qi:Qir 1:2, and BOD/T-N ratio 2.7.

부처꽃, 물상추, 미나리, 달뿌리풀의 수질정화효과에 관한 연구 (A study on the effect of the water purification by Lythrum anceps, Pistia straiotes, Oenanthe javanica, and Phragmites japonica)

  • 조해용
    • 한국산학기술학회논문지
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    • 제8권2호
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    • pp.380-384
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    • 2007
  • COD 제거효율은 각 조의 부처꽃을 제외한 대조군의 경우 물상추 56%, 달뿌리풀 48%, 미나리 41%의 효율을 보이고, 발포유리가 첨가된 조의 경우는 물상추 69%, 달뿌리풀 68% 미나리 62%의 제거효율을 보임으로써 발포유리를 첨가한 조의 COD 제거효율이 대조군 보다 높았다. T-N의 제거효율은 발포유리를 첨가한 조의 경우 부처꽃 91%, 달뿌리풀 93%와 발포유리를 첨가한 혼합조가 94%의 높은 T-N 제거효율 보임으로써 모든 질소성분이 제거된 것으로 사료된다. T-P의 제거효율은 대조군의 부처꽃 35%, 달뿌리풀 8%이며, 발포유리를 첨가한 조의 부처꽃 78%, 달뿌리풀 43%로 발포유리를 첨가한조의 T-P 제거효율이 대조군 보다 높았다.

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빛의 조사기간으로 본 호기성 고율 안정조 프로세스의 영양물질 제거 (The Nutrients Removal in Aerobic High Rate Ponds Through the Lighting Period)

  • 공석기
    • 환경위생공학
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    • 제11권1호
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    • pp.83-91
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    • 1996
  • It is not too much to say that the territorial inhabitants' concerns are wholly c concentrated on the environmental preservation-problem and development-problem in Korea given effect to the local self-government system. At a time like this I was studied the effect on nutrients removal through lighting period in aerobic high rate pond and we know that waste stabilization pond method is the most economical and energy saving wastewater treatment technology than others. At the results which was studied through operating the reactor-l artifically main-tained at a temperature, $25^{\circ}C$, a light intensity, 3000lux, and a lighting period, 24hrs and the reactor-2 artifically maintained at a tern야rature, $25^{\circ}C$ and a light intensity 3000lux, and a lighting period period, 12hrs, It has appeared for 24hrs.-lighting period -reactor-1 to be prior to the reactor-2. The attained results are that 1. reactor-1 is prior to reactor-2 on oxygen-generation 2. reactor-1 is prior to reactor-2 on algal production 3. COD removal efficiency, 90.76%, T-N removal efficiency, 80%, T-P removal e efficiency, 74.47 % in reactor-2, in reactor-1 COD removal efficiency, 94.85 %, T-N removal efficiency, 98.07%, T-P removal efficiency, 72.13% are, so the treatment efficiency of reactor-1 is more excellent than things of reactor-2 4. it appeared that the detention time is 8, 9days.

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유입방식 변화에 따른 황 탈질조의 탈질효율 평가 (Evaluation of Denitrification Efficiency by Sulfur Denitrification Process according to Injection Type)

  • 유태경;최용범;권재혁
    • 한국산학기술학회논문지
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    • 제17권12호
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    • pp.262-269
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    • 2016
  • 황 탈질조 유입수질은 회분식 실험을 통한 질산화된 유출수를 사용하였으며, 유입수 주입방향에 따라 상향류와 하향류식으로 운전하여 주입방식에 따른 탈질효율 성능을 평가하였다. 또한, 탈질효율 평가에 따라 선정된 주입방식의 최적 운전조건을 산출하기 위해 EBCT(Empty bed contact time) 변화와 유입 질소농도를 증가시켜 유입부하 증가에 따른 질소 제거효율을 평가하였다. 유입방식 변화에 따른 황 탈질조의 탈질효율 평가결과, 상향류 방식이 탈리된 미생물과 유출 고형물의 재침전으로 인하여 하향류 방식보다 유출 유기물 농도가 낮은 것으로 조사되었다. 또한, 상향류 방식에서 T-N 제거 효율은 73.3~90.2%로 하향류 방식보다 약 10.0% 이상 높은 것으로 조사되어 질소제거 측면에서도 상향류 방식이 유리한 것으로 판단된다. EBCT 변화에 따른 질소제거 효율 검토결과, 1hr에서는 47.4%, 3hr에서는 88.1%, 5hr에서는 90.5%로 조사되어, 황 탈질 공정의 최적 EBCT는 3hr로 판단된다. 법 규정과 부하율에 따른 총질소 제거효율을 검토한 결과, T-N 법적 방류수질 20mg/L를 을 안정적으로 유지하기 위해서는 황 탈질조의 유입 T-N 부하율은 $0.443kgT-N/m^3{\cdot}day$ 이하로 유지하여야 한다.

전기화학적방법을 이용한 산업폐수 처리 (Treatment of Industrial Wastewater by Electrochemical Method)

  • 조주식;안명섭;이홍재;허재선;손보균;허종수
    • 한국환경농학회지
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    • 제19권2호
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    • pp.134-141
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    • 2000
  • 전기화학적 방법을 이용한 농공단지폐수의 효율적인 처리기술개발을 위한 기초실험으로서 전압, 전극판 간격, pH 및 전해용액 주입농도 등에 따른 오염물질 처리효율을 조사한 결과는 다음과 같다. 전압별 전기화학반응조내 온도 및 pH는 전압이 높을수록 상승하였으나, EC는 전압별로 별 변화가 없었다. COD, 탁도, T-N 및 T-P의 처리율은 전압이 높을수록 증가하였으며 전압 20V일 경우 COD는 20분, 탁도는 30분, T-N 및 T-P는 2분일 때 각각 그 처리율이 약 65, 90, 68 및 84%로 가장 높았다. 전극판 간격별 COD 처리율은 전극간격이 좁아질수록 그리고 전기반응시간이 경과할수록 전반적으로 증가하는 경향이었으며, 탁도 처리율은 전극판 간격 모두 전기반응초기에 약 80%이상 처리되었고, T-N 처리율은 전극판 간격이 좁을수록 높았다. T-P 처리율은 전기반응시간 2분 후에 전극판 간격 모두에서 약 79% 이상 처리되었다. 초기 pH에 따른 COD 처리율은 전반적으로 pH 7에서 높았으며, 탁도 처리율은 전기반응시간 2분 이후의 모든 조건에서 약 80%이상 처리되었다. 그리고 T-N 처리율은 초기 pH가 높아질수록 증가하였고, T-P 처리율은 전기반응시간 2분 이후 초기 $pH\;5{\sim}9$에서 약 $79{\sim}96%$로서 가장 높았다. NaCl 농도별 오염물질 처리율은 전반적으로 NaCl을 주입한 경우가 NaCl를 주입하지 않은 경우에 비해 매우 높았으며, COD 및 T-P의 처리율은 $NaCl\;500mg/l$, 탁도 처리율은 $NaCl\;1,000mg/l$, T-N의 처리율은 NaCl 250 및 $500mg/l$에서 전반적으로 다른 조건에 비하여 높았다.

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효과적 공간활용을 위한 Side Stream Plug-Flow Reactor를 이용한 하수 고도처리 공정 적용에 관한 연구 (A study on Applicable to Advanced treatment of using Side Stream Plug-Flow Reactor)

  • 김삼주;현인환;독고석
    • 상하수도학회지
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    • 제22권3호
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    • pp.367-372
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    • 2008
  • This study configured the conventional $A^2O$ (Anaerobic-Anoxic-Aerobic bioreactor) system which the fixed media immersed into the anoxic reactor(Named PFR system : Plug Flow Reactor) for evaluating the removal efficiency of nitrogen in the wastewater. The experimental equipment was a cylinder which was consist of 4 pleated PE Pipes(Length 330M, Diameter 100mm) including 2 rope shape media. As a result, the average effluent T-N removal efficiency of the conventional $A^2O$ system was 17.9, 40.3, 50.6, 44.6% in each mode, but the average effluent T-N removal efficiency of the PFR system could achieve 38.8, 57.1, 71.8, 65.4% in each mode. It indicated that the PFR system caused to the increasing of C/N ratio that effected to the increasing of the denitrification efficiency. Not only the effective T-N removal efficiency but also the controllable install space will give advantages for retrofitting of the wastewater treatment plant with the conventional treatment system to the PFR system.