• 제목/요약/키워드: anoxic tank

검색결과 61건 처리시간 0.02초

무산소조에서 고농도 미생물을 이용한 하수고도처리공정의 처리특성 (Characteristics of Advanced Wastewater Treatment Process Using High MLSS in Anoxic Tank)

  • 손동훈;임봉수;박혜숙
    • 한국물환경학회지
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    • 제20권1호
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    • pp.42-47
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    • 2004
  • This study was accomplished to develope an advanced wastewater treatment process using high MLSS in anoxic tank aimed to improve nutrient removal and to reduce wasting sludge. It was operated with 4 Modes with varing solid concentration and internal recycle ratios. Mode I, II, III was operated 1.0~1.5% MLSS concentration at anoxic tank with 50% sludge recycle rate, however, each internal recycle rate were 100%, 200%, 300% and Mode IV was operated 1.5~2.0% MLSS concentration at anoxic tank with 50% sludge recycle rate and 100% internal recycle rate. The COD removal efficiency didn't show any big difference from Mode I to IV. The average COD removal rate was over than 90%. The T-N removal rate was 73%, the highest rate in all mode. The 36% of SCOD is used for the denitrification and phosphorus release in the anoxic tank. Specific denitrification rate was 3.5mg $NO_3{^-}-N/g$ Mv/hr and denitrification time was 0.7hr. As MLSS concentration is higher in anoxic tank as denitrification time would be shorter. The T-P removal rate was average 70%. The phosphorus release accomplished from the anoxic tank because the anaerobic condition was prevalent in the anoxic due to the prompt completion of denitrification. Sludge production was 0.28 kgVSS/kg $BOD_{removed}$ under the 1.5% MLSS and 17 day SRT. It is prominent result which has 40% sludge reduce comparing with traditional activate sludge system.

침전조 상등액과 유입하수의 유량대비에 따른 하수 내 질소 화합물 제거특성 (Removal Characteristic of Nitrogenous Compounds According to the Combination of Feeding Ratio between the Supernatant of Precipitation Tank and Raw Domestic Wastewater)

  • 박상민;박진희
    • 유기물자원화
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    • 제13권4호
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    • pp.128-135
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    • 2005
  • 본 연구에서는 CFSTR(Continuous-flow Stirred-Tank Reactor) 형식의 반응조에 담체가 채워진 호기-혐기조합 공법에 따른 질산화 및 탈질화에 관한 효율의 증대와 유입수 및 침전조 상등액의 유량대비를 조절 하므로써 질소제거의 효율 증대에 관한 방법을 모색하고자 하였다. 탈질조 내의 탈질효율에 비례하여 포기 반응조 내의 질산성 질소 농도를 산출하고자 유입수와 침전조 내에서의 상등액을 탈질조로 반송하여 유입하고 유입수와 반송되는 침전조 상등액 유입의 유량대비를 통하여 최종적으로 반응조에 대한 질소제거의 효율을 파악하고자 하였다. 적절한 유량대비를 이용하였을 때 탈질조 내의 필요한 탄소원의 공급이 유입수로 통해 이루어지는 것으로 판단되어지며, 외부탄소원의 주입 없이 유입수 만으로도 완벽하게 탈질이 이루어지는 것을 확인 할 수 있었다. 하지만 유입수와 침전조 상등액의 유량대비에서 침전조 상등액의 유량비가 커지면 커질수록 유입수내의 탄소원의 유입이 줄어들기 때문에 이에 대한 탄소원의 농도에 대한 산정이 중요하다고 생각된다.

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수정 DNR 공정을 이용한 하수처리 (Sewage Treatment Using a Modified DNR Process)

  • 최진택;남세용
    • 한국환경보건학회지
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    • 제34권6호
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    • pp.446-451
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    • 2008
  • In this study, the removal characteristics of organic components and nutrients of sewage taken from the Suwon area were investigated in a lab-scale modified DNR (Daewoo Nutrient Removal) process. The modified DNR process consisted of a sludge denitrification tank, an anaerobic tank, an anoxic tank, an aerobic tank, a secondary anoxic tank and a secondary aerobic tank. The proposed process with the average C/N ratio of 3.5 was performed for the sewage treatment. The results were compared with other existing DNR processes. The organic fractions in sewage were analyzed by measuring the oxygen uptake rate. The resulting removal efficiencies of SS, BOD, COD, TN and TP were 93.1%, 95.5%, 86.1%, 67.8% and 80.6%, respectively.

오염하천 정화를 위한 호기성 인공습지의 운영인자 평가 (Parameter Estimation of the Aerated Wetland for the Performance of the Polluted Stream Treatment)

  • 김둘선;이동근
    • 청정기술
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    • 제25권4호
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    • pp.302-310
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    • 2019
  • 호기조와 혐기/무산소조를 직렬로 연결한 인공습지를 이용하여 크게 오염된 하천수를 처리하였다. 호기조는 자연 공기 배출 시스템을 통하여 공기가 연속적으로 공급되어 호기성 상태가 유지되었다. 인공습지의 성능에 영향을 미치는 최적의 영향인자를 조사하기 위하여 체류시간을 다르게 한 5개의 파일럿 플랜트를 사용하였다. 호기조에서 BOD (biochemical oxygen demand)와 COD (chemical oxygen demand)의 제거율은 1차 반응 속도식을 나타내었고, COD 제거 속도 상수는 BOD보다 약간 낮았다. 온도 의존성은 COD (θ = 1.0079)와 BOD (θ = 1.0083)제거에 대한 값이 거의 동일했으나 T-N 제거의 온도 의존성(θN)은 1.0189로 다소 높게 나타났다. SS제거율은 98%로 높았고 수력학적 부하 속도(Q/A)가 증가함에 따라 제거 효율이 증가하는 경향을 보였다. 혐기/무산소조에서 BOD와 COD 제거의 주요 메커니즘은 호기조와 완전히 다르게 나타났다. 혐기/무산소조에서 COD와 COD는 생물학적 탈질을 위한 탄소원으로 공급되었고 T-P는 혐기/무산소조 내의 orthophosphate와 자갈 사이의 양이온 교환에 의해 제거되는 것으로 조사되었다. 인공습지는 여과된 고형물에 의해 막힘 없이 성공적으로 운영되었고 고형물들은 매우 빠르게 연속적으로 분해되었다.

Modeling of Recycling Oxic and Anoxic Treatment System for Swine Wastewater Using Neural Networks

  • Park, Jung-Hye;Sohn, Jun-Il;Yang, Hyun-Sook;Chung, Young-Ryun;Lee, Minho;Koh, Sung-Cheol
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제5권5호
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    • pp.355-361
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    • 2000
  • A recycling reactor system operated under sequential anoxic and oxic conditions for the treatment of swine wastewater has been developed, in which piggery slurry is fermentatively and aerobically treated and then part of the effluent is recycled to the pigsty. This system significantly removes offensive smells (at both the pigsty and the treatment plant), BOD and others, and may be cost effective for small-scale farms. The most dominant heterotrophic were, in order, Alcaligenes faecalis, Brevundimonas diminuta and Streptococcus sp., while lactic acid bacteria were dominantly observed in the anoxic tank. We propose a novel monitoring system for a recycling piggery slurry treatment system through the use of neural networks. In this study, we tried to model the treatment process for each tank in the system (influent, fermentation, aeration, first sedimentation and fourth sedimentation tanks) based upon the population densities of the heterotrophic and lactic acid bacteria. Principal component analysis(PCA) was first applied to identify a relationship between input and output. The input would be microbial densities and the treatment parameters, such as population densities of heterotrophic and lactic acid bacteria, suspended solids(SS), COD, NH$_4$(sup)+-N, ortho-phosphorus (o-P), and total-phosphorus (T-P). then multi-layer neural networks were employed to model the treatment process for each tank. PCA filtration of the input data as microbial densities was found to facilitate the modeling procedure for the system monitoring even with a relatively lower number of imput. Neural network independently trained for each treatment tank and their subsequent combined data analysis allowed a successful prediction of the treatment system for at least two days.

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생물학적 질소 제거공정에서 ORP 측정을 통한 외부탄소원의 자동 주입 제어 (Automatic Addition Control of the External Carbon Source by the Measurement of ORP in Biological Nitrogen Removal Process)

  • 신춘환
    • 한국환경과학회지
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    • 제21권3호
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    • pp.383-390
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    • 2012
  • For the cost-effective biological nitrogen removal (BNR) process whose characteristics of influent have low COD/N ratios, the automatic control system for the addition of external carbon based on oxidation-reduction potential (ORP) data in an anoxic reactor has been developed. In this study, it was carried out with a pilot-scale Bardenpho process which was consisted of anoxic 1, aerobic 1, aerobic 2, anoxic 2, aerobic 3 tank and clarifier. Firstly, the correlation coefficient ($R^2$) of the dosage of external carbon source and ORP value was about 0.97. Consequently, the automatic control system using ORP showed that the dosage of external carbon source was decreased by about 20% compared with a stable dosage of 75 mg/L based on the COD/N ratio of the anoxic influent.

유입하수에 따른 BNR에서의 N과 P 제거율에 관한 연구 (Removal Ratio of Nitrogen & Phosphorus according to Sewage Inflow in the Biological Treatment(Biological Nutrient Removal)Process)

  • 이한섭;정광보;안성환;김경호;원성권
    • 한국응용과학기술학회지
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    • 제31권4호
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    • pp.669-678
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    • 2014
  • The amount of waste water generated from the domestic sources is consistently increasing in proportion to economic growth, and the conventional activated sludge process is widely being used for general waste water treatment. But the ministry of environment becomes stringthent treatment standards of N and P (less than 20mg/L of N, 2mg/L of P) to prevent the eutrophication of lake water, and therefore highly advanced treatment technology is required not only in the existing treatment plants where the activated sludge process is being used, but also in newly constructed treatment plants for the treatment of N and P. This study is aimed at highly operating the engineering technology method was developed by domestic to eliminate N and P at the same time. Experiments were conducted in the treatment plant located in Yong In city. The bioreactor was started from the principal equipment for the elimination of N and P and the elimination of organic compounds. It consists of an internal recycle piping from the end of the aerobic tank to the anoxic tank and external recycle piping from the final settling basin to the denitrification tank. By experiment of 4 types separate inflow of waste water to the denitrification tank and the anaerobic tank, and changes in staying time at the anoxic tank and the aerobic tank, the elimination of organic compounds in each type and the relationship in the efficiency between the elimination of N and P were researched.

${\cdot}$ 폐수처리장에서의 생물학적 질소제거 프로그램 검증 (Verification of biological nitrogen removal program in sewage or wastewater treatment plants)

  • 김희선;이병대
    • 한국응용과학기술학회지
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    • 제24권4호
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    • pp.332-338
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    • 2007
  • Based on the experiment results of laboratory scale modified anoxic-oxic process for leachate treatment, biological nitrogen removal program was verified in terms of SS, COD, and TN concentration. These measured water qualities concentration could be predicted by biological nitrogen removal program with $R^2$ of 0.994, 0.987, 0.990, respectively. No error was occurred between water qualities concentration and quite wide range of water qualities concentration (i.e., 50-4200 mg/L) during the modelling. Each unit and final effluent of simulated concentration was kept good relationship with that of measured concentration therefore this biological nitrogen removal program for sewage or wastewater treatment plants has good reliance.

Application of upflow multi-layer bioreactor (UMBR) for domestic wastewater treatment in HCMC

  • Cao, Duc Hung;Nguyen, Ngoc Han;Nguyen, Phuoc Dan;Bui, Xuan Thanh;Kwon, J.C.;Shin, H.S.;Lee, E.T.
    • Membrane and Water Treatment
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    • 제3권2호
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    • pp.113-121
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    • 2012
  • Up-flow multi-layer bioreactor (UMBR) is a hybrid system using dual sludge that consists of an up-flow multi-layer bioreactor as anaerobic/anoxic suspended growth microorganisms followed by an aeration tank. The UMBR acts as a primary settling tank, anaerobic/anoxic reactor, thickener which requires low energy due to mixing by up-flow stream. This study focused on using a pilot UMBR plant with capacity of 20-30 $m^3$/day for domestic wastewater in HCMC. HRTs of UMBR and aeration tank were 4.8 h and 7.2 h, respectively. The average MLSS of UMBR ranged from 10,000-13,600 mg/l SS. Internal recycle rate and sludge return were 200-300% and 150-200%, respectively. The results obtained from this study at flow rate of 20 $m^3$/day showed that removal of COD, SS, TKN, N-$NH_4$, T-N, and color were 91%, 87%, 86%, 80%, 91% and 91%, respectively.

비개질/개질 생물막을 이용한 오수고도처리공정에서 혐기조와 무산소조의 원수 분배율에 따른 유기물 및 질소 제거 (The Removal of Organics and Nitrogen with Step Feed Ratio Change into the Anoxic and Anaerobic reactor in Advanced Sewage Treatment process Using Nonsurface-modified and Surface-modified Media Biofilm)

  • 선용호
    • KSBB Journal
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    • 제20권4호
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    • pp.253-259
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    • 2005
  • 본 연구는 고정 생물막을 이용한 혐기/무산소/호기 공정으로 구성된 반응기에서 폴리에틸렌 재질의 표면을 이온빔으로 조사하여 소수성 표면을 친수성으로 만든 표면개질담체를 호기조의 여재로 사용하고 혐기/무산소조의 여재로는 표면 개질을 하지 않은 담체를 사용하여, 외부 탄소원 대신 원수내의 RBDCOD를 탄소원으로 이용하고자 혐기조와 무산소조에 원수를 분할 주입하였을 때 나타나는 유기물 및 T-N 제거 특성을 알아보았다. 혐기/무산소조로의 원수 분배율이 각각 10 : 0, 9 : 1, 8 : 2, 6 : 4로 설정하였으며, 각각의 분배율에 대하여 $93.3\%,\;92.6\%,\;92.4\%,\;91.6\%$$BOD_5$ 제거율 (유기물의 제거능)을 보였다. 하지만 무산소조까지의 $BOD_5$ 제거율(유기물 이용능)은 9 : 1에서 $84.8\%$로 가장 높은 것으로 나타났으며, 분배율 10 : 0, 8 : 2는 각각 $77.0\%,\;75.3\%$로서 거의 비슷한 수준이었고, 분배율 6 : 4 경우에 $61.1\%$로 가장 낮은 수치를 나타내었다. T-N 제거율은 9 : 1의 분배율로 분할하였을 때가 $67.4\%$로 가장 제거 효율이 높았으며, 분배율 10 : 0, 8 : 2 경우는 각각 $61.3\%,\;60.7\%$로 비슷한 경향을 보였으나 분배율을 6 : 4로 하였을 때는 $55.5\%$의 제거율을 나타내 분배율 9 : 1의 경우와는 약 $12\%$의 차이를 보였다. 또한 10 : 0, 9 : 1, 8 : 2의 분배율에서는 질산화가 거의 비슷한 수준으로 발생하였지만, 6 : 4로 주입하였을 경우에는 질산화의 저해가 나타나고, 방류수 중의 대부분의 질소성분이 암모니아 성분으로 방류되었다. 이 공정에서 탄소원으로 생하수를 이용하는 것이 메탄올과 같은 독성 탄소원에 비해 독성을 지니지 않고 약품비용이 들지 않는다는 측면에서 유리할 것으로 사료된다.