• 제목/요약/키워드: 간헐폭기

검색결과 30건 처리시간 0.031초

ORP와 pH 측정에 의한 간헐폭기 고도처리 공정 제어의 평가 (State Evaluation of Nutrient Removal in an Intermittent Aeration Process by Monitoring ORP & pH)

  • 고광백;서준석
    • 한국물환경학회지
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    • 제18권4호
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    • pp.401-409
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    • 2002
  • In this study, to evaluate the applicability of ORP and pH as process control parameters for an intermittent aeration process, a 200L/d bench-scale plant was installed and operated for 90 days. It was fed with synthetic wastewater which contained $COD_{Cr}$ : 400mg/L, TN : 40mg/L and TP : 7mg/L. ORP & pH were measured on-line and compared with the variation of nutrient concentrations. As the results, both of the ORP and pH were able to monitor successfully nitrification and denitrification. Bending-points on the ORP curve and peak points on the pH curve corresponded to the termination of nitrification and denitrification. For P uptake and release, pH was the best indicator for performance evaluation. The aerobic pH apex was appeared when P uptake was accomplished and there was a relationship between the P release and pH variation. But the pH curve needed filtering because there were many noises on it. In this study, the shape of the ORP & pH curves were varied as the operating conditions such as aeration rates and organic loads were changed. It allowed the operating states of biological systems to be effectively evaluated. If it is properly managed to show the bending points and peak points clearly, the on-line monitoring of ORP & pH will be a reliable and effective technique for process control of intermittent aeration processes.

관형막을 이용한 혐기소화조의 전처리 농축공정으로써 적용가능성 연구 (Application of tubular membrane to thickening process as a pre-treatment of anaerobic digester)

  • 강희석;박기태;박정우;김형수
    • 상하수도학회지
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    • 제29권2호
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    • pp.203-209
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    • 2015
  • The purpose of this study is to estimate the applicability of a stable anaerobic digester using a separator membrane to the preprocessing thickening process. The results of the experiments showed about a 47.16% weight loss rate for the sludge under anaerobic condition, and about 41.17% under intermittent aeration condition. The concentrations of rejection water were $SCOD_{Cr}$ 25 mg/L, T-N 16.6 mg/L, and T-P 1.4 mg/L on the average under the intermittent aeration condition, which were lower than the concentrations of rejection water under an anaerobic condition. As for the factors affecting the reduction of the flux, correlation analyses of TTF, MLSS, $SCOD_{Cr}$, and $EPS_{Protein}$, $EPS_{Polysacchride}$ resulted in -0.97, -0.95, -0.84 and -0.86, -0.95, respectively, which showed that TTF had the highest correlation to the reduction of the flux. In addition, it was concluded that MLSS, $SCOD_{Cr}$ and $EPS_{Protein}$, $EPS_{Polysacchride}$ also have close correlations. The results are considered to show that, in the case of the process using a tubular membrane in the preprocessing process of an anaerobic digester, an intermittent aeration condition of the thickener considering the contamination of the membrane and load of rejection water is appropriate for the stable preprocessing process.

알루미늄 부식을 조합한 간헐폭기 활성슬러지 공정에서 질소와 인의 동시 제거 (Simultaneous Removal of Phosphorus and Nitrogen by Intermittently Aerated Activate Sludge combined with Aluminum Corrosion)

  • 정경훈;최형일;정오진;박상일;김우항
    • 한국환경과학회지
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    • 제14권7호
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    • pp.675-681
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    • 2005
  • A laboratory experiment was performed to investigate phosphorus and nitrogen removal from synthetic wastewater by intermittently aerated activated sludge process packed with aluminum and silver plate. Three continuous experi­mental processes, i. e. an intermittently aerated activated sludge process(Run A), an intermittently aerated activated sludge process with an aluminum and silver plate packed into the reactor(Run B), and a reactor post stage(Run C) were compared. In the batch experiments, the phosphorus removal time in the reactor packed with aluminum and silver plate simultaneously was faster than that of the reactor packed with only an aluminum plate. More phos­phorus was removed with an increase of NaCl concentration. The pitting corrosion of aluminum does not affect the performance of the biological treatment. The total nitrogen removal efficiency in Run B was $57\%\;and\;43.6\%$ at the HRT of 12 and 6 hours respectively. The effluent $PO_{4-}P$ concentration as low as 1.0 mg/L could be ob­tainable through the continuous experiment in Run B at HRT of 6 hours.

Bioaugmentation이 간헐폭기 오수처리장치의 운전효율에 미치는 영향 (Effect of Bioaugmentation on Performance of Intermittently Aerated Sewage Treatment Plant)

  • 정병곤
    • 한국환경보건학회지
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    • 제34권3호
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    • pp.233-239
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    • 2008
  • In order to improve reactor performance of existing sewage treatment plants, the feasibility of enhancing reactor performance by bioaugmentation using EM as bioaugmentation agent and the effects of anoxic: oxic time ratio on reactor performance were investigated. Continuous and intermittent aeration modes were compared under the 6 hr of HRT. Three different types of intermittent aeration modes, that is, 15 min, of anoxic:45 min of oxic, 30 min of anoxic: 30 min of oxic, and 45 min of anoxic: 15 min oxic respectively were chosen as test modes to study the effects of anoxic : oxic time ratios on reactor performance. The optimum anoxic: oxic time ratio was 30 min:30 min when considering simultaneous removal of organic, nitrogen and phosphorus. When applying EM into a continuously aerated reactor under the varying dosing rates of 50-200 ppm, reactor performance in terms of organic and nitrogen removal efficiencies was not improved at all. Nitrogen removal efficiency was increase when the EM dosing rate was increased. However the degree of improvement was slight when the EM was injected above 100 ppm. However optimum phosphorus removal was found at the EM dosing of 200 ppm. Thus it was found that optimum injection concentration of EM is 200 ppm. It is apparent that putting EM into a sewage treatment plant significantly affects the T-N removal efficiency of the reactor by enhancing denitrification efficiency especially in operational conditions of relatively long anoxic periods. To achieve reciprocal condition in a reactor with intermittent aeration it is necessary to enhance the reactor performance by EM injection. In the case of modifying existing continuously aerated reactors into intermittent aerated reactors, it is obvious that operating costs of aeration would be reduced by reducing aeration time when compared with existing conventional sewage treatment plants.

PVDF 중공사막을 이용한 막생물반응기의 초기 운전조건 설정 및 여과수 재활용 (Initial Operating Condition of Membrane Bioreactor with PVDF Hollow Fiber and Permeate Reuse)

  • 신춘환;강동효;박해식;조현길
    • 청정기술
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    • 제16권1호
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    • pp.39-45
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    • 2010
  • 본 연구에서는 국내 우리텍사의 PVDF계 중공사 막을 4 bundle 씩 묶어 모듈을 제작하였으며, 처리용량은 10 ton/day로 설정하여 반응조 내 부유고형물(suspended solid; SS) 의 농도구배가 없도록 하부로부터 간헐 폭기하는 방식을 선택하여 부산 수영하수처리장에 pilot plant를 설치하였다. Pilot plant는 정상 운전을 위하여 하수처리장의 폭기조로부터 유입된 mixed liquor suspended solid (MLSS) 1,000 ppm 정도의 원수를 시험 여과하고, 세척수로 2회 세척, 10% 에탄올 용액으로 1회 세척, 그리고 NaOCl 5% 용액으로 1회 세척 과정을 거치고 마지막으로 세척수로 최종 세척한 후 운전하였다. 결과적으로, 화학세정 후 membrane bioreactor (MBR) 내의 잔류수를 원수로 운전한 결과 SS 제거효율이 99.9% 이상을 보이고 있는 결과와 폭기조 유입수를 원수로 운전하여, 여과 수량은 초기 조건에 비해 16% 감소, suction pressure 는 30% 상승하고 있음을 확인한 결과를 연속 운전 조건으로 설정하였다. 연속 운전한 결과, 유입수 mixed liquor suspended solid (MLSS)가 1,900 mg/L의 조건에서 SS 제거 효율은 99.99% 이었으며 여과수량은 $42{\sim}52L/m^2$ h, suction pressure가 16~20 cmHg로 안정 상태로 운전되고 있음을 확인하였다. 다만, 여과수 저장조의 유출구와 유입구에서의 SS 제거 효율에 영향을 미치는 조류의 발생 억제에 관한 방법이 재고되어 여과수의 재이용 범위를 설정할 필요가 있을 것으로 판단된다.

알루미늄부식을 조합한 간헐폭기법에 의한 합성폐수 중의 인 및 질소 제거 (Phosphorus and Nitrogen Removal from Synthetic Wastewater by Intermittently Activated Sludge combined with Aluminium Corrosion)

  • 정경훈;정오진;최형일
    • 한국환경보건학회지
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    • 제27권3호
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    • pp.99-106
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    • 2001
  • A laboratory experiment was performed to investigate phosphorus and nitrogen removal from synthetic wastewater by intermittently activated sludge process packed with aluminium plate. Three continuous experimental systems, I. e. an intermittently activated sludge process(Run A), an intermittently activated sludge process with an aluminium plate packed into the reactor(Run B), and a reactor post stage(Run C) were compared. In the batch experiments, the phosphorus removal time in the reactor packed with copper and aluminium plate simultaneously was faster than that of the reactor packed with only an aluminium plates. However, the reactor packed with only an aluminium plate could be used for phosphorus removal. Move phosphorus was removed with an increase of surface area of aluminium plate and electrolysis(NaCl) concentration. The efficiency of COD and nitrogen removal was not affected in Run B. However, the phosphrus removal efficiency decreased because of reaction products and activated sludge which gradually covered gradually the surface of the aluminium plate. The efficiency of phosphorus removal in Run C was 86.3% at the HRT of 3.2 hours. Especially, the efficiency of phosphorus removal in Run C was higher than that in Run B.

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하수처리를 위한 간헐 방류식 장기폭기 공정에서 아질산염의 축적에 영향을 미치는 인자 (Factors affecting nitrite build-up in an intermittently decanted extended aeration process for wastewater treatment)

  • 안규홍;박기영;이형집
    • 상하수도학회지
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    • 제13권1호
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    • pp.51-60
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    • 1999
  • An intermittently-aerated, intermittently-decanted single-reactor process (KIDEA process : KIST intermittently decanted extended aeration process) was applied for nitrogen removal from wastewater. Synthetic wastewater with chemical oxygen demand (COD): nitrogen (N) ratio of approximately 5.25: 1 was used. The average COD removal efficiency reached above 95%, and under optimal conditions nitrogen removal efficiency also reached above 90%. This process consisted of 72 minute aeration, 48 minute settling and 24 minute effluent decanting with continuous feeding of influent wastewater from the bottom of the reactor, and did not require a separate anoxic mixing-phase. In this process, nitritation ($1^{st}$ step of nitrification) was induced but nitratation($2^{nd}$ step of nitrification) was suppressed. Main factors responsible for the accumulation of nitrite ion in the experimental condition were free ammonium and dissolved oxygen. This condition of nitrite build-up accelerated by continuous feed flow in the bottom of the KIDEA reactor because of high concentration of ammonia nitrogen in the influent. This research provides one of answers to control nitrate build-up.

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소규모 고도하수처리를 위한 변형 연속회분식공정에 관한 연구 (The Study of Modified Sequencing Batch Reactor Process for Small Advanced Wastewater Treatment)

  • 한운우;김규형
    • 한국지반환경공학회 논문집
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    • 제9권3호
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    • pp.35-43
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    • 2008
  • 본 연구는 소규모 하수고도처리시설에 대해 변형 연속회분식공정을 적용하여 그 효용성을 평가하였다. 변형 연속회분식공정은 단일 반응조 내에서 유기물질 및 질소, 인 등이 제거되며 유입수의 유량 및 수질특성에 의해 적합한 운전방식을 선택할 수 있다. 각 공정의 기능 향상을 위해 원수 유입조건의 제어, 간헐 폭기방식에 의한 무산소 및 호기조건의 적절한 분배 그리고 처리수와 잉여슬러지의 고액분리를 위한 처리수 배출장치의 적용으로 설계된 유량 및 수질에 비해 낮은 부하 조건임에도 1일 3Cycle 운전모드로써 안정적인 처리효율을 나타냈다. 평가결과 유기물질 제거효율은 BOD의 경우 평균 120.4mg/L에서 6.8mg/L로 94.4%, CODMn은 95.7mg/L에서 11.0mg/L로 88.5%의 처리효율을 나타냈다. T-N의 제거효율은 평균 32.2mg/L의 유입수 농도에 대해서 약 69.6%, T-P의 경우는 유입수 농도 4.65mg/L에 대해 73.6%의 처리효율을 나타냈다. 동절기 평균 T-N과 T- P의 처리효율은 58.8%, 68.5%로 약간 감소하였지만 안정적인 처리효율을 나타냈다. 1차 무산소 호기조건에서 BOD는 90%, T-N은 67% T-P는 46%정도로 제거되었으며 T-P는 2차 무산소 호기조건에서 약 70%정도 제거되었다. 따라서 유입수의 간헐유입과 무산소 호기조건의 적정한 분배에 의해 질산화, 탈질 및 인의 과잉섭취에 유기물이 적절히 이용된 것으로 평가되어 소규모 고도하수처리시설에 적합한 공정으로 판단된다.

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간헐폭기법에 의한 돈사 폐수 처리에 관한 연구 (A Study on the Treatment of Swine Wastewater by Using Intermittently Aerated Activated Sludge Process)

  • 양태두;이미경;정윤진
    • 상하수도학회지
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    • 제12권4호
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    • pp.86-96
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    • 1998
  • In this study, an intermittently aerated activated sludge process, modified process from conventional activated sludge process, was developed to treat high strength swine wastewater, which has been blamed as major pollutant for stream pollution. Therefore, the optimum cycle for oxic and anoxic period, SRT, and OLR were studied as design parameters. The effects of different time interval for oxic and anoxic period on nitrification and denitrification were examined by operating two reactors with 60/60min and 60/90min as oxic/anoxic period. Although the reactor with 60/60min showed complete denitrification of $NO_x-N$ generated during oxic period, the reactor with 60/90min showed incomplete nitrification due to the inactivity of nitrifier by accumulated $NH_3-N$ toxicity during anoxic period. Therefore, it is recommended to operate same interval for oxic and anoxic period. In order to determine the optimum cycle for oxic/anoxic period, four different reactors with 30/30, 60/60, 90/90 and 120/120min were examined. The reactor operation with 90/90min was optimum to get the most stable results in this study. However, the optimum cycle for oxic and anoxic period should be changed with characteristics of influent wastewater and operating conditions. According to lie operation results of three reactors with SRT of 15, 20 and 30days. The reactor with 2Odays SRT showed best removal efficiency of T-N. The optimum OLR would be $2.5Kg\;COD/m^3/day$ which showed the most stable nitrification and denitrification. Since characteristics of influent wastewater in the real system has a severe fluctuation, so it is very difficult to determine each interval for oxic and anoxic period. Therefore, ORP curves, describing the change of oxidation/reduction potential in reactor, can be used as a control parameter for automatic control of oxic and anoxic period. In other words, bending point (Nitrate Knee) of ORP curve during anoxic period could be used as a starting point of oxic period.

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고농도 질소함유폐수의 경제적 처리를 위한 단축질소공정 파일럿플랜트 실증화 및 운영 결과 (Demonstration and Operation of Pilot Plant for Short-circuit Nitrogen Process for Economic Treatment of High Concentration Nitrogen Wastewater)

  • 이재명;전지형;최홍복
    • 유기물자원화
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    • 제28권1호
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    • pp.53-64
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    • 2020
  • 다단수직형 적층 방식의 질산화조가 포함된 2㎥/d 병합폐수처리 파일럿플랜트를 설치하여, pH8 이상, DO 1mg/L, 내부반송율 4Q이상의 단축질소제거공정의 질산화조 운전 조건으로 약 1년 이상 운영하였다. 음폐수와 침출수의 경제적인 병합 처리를 위하여, 유분이 최소화된 음폐수를 전체 처리량의 5~25%로 조절하여 최적의 병합 비율을 검토하였다. 음폐수의 고형물과 유분을 효과적으로 분리하기 위하여 도입된 3상원심분리기의 주요 처리 효율은 SS는 116,000mg/L에서 55,700mg/L로 약 52% 제거 되었으며, 노르말헥산(N-H)의 농도는 53,200mg/L에서 27,800mg/L로 약 48%로 제거되었다. 운전 기간 중 병합 폐수처리 공정의 BOD 평균 제거 효율은 99.3%, CODcr 94.2%, CODmn 90%, SS 70.1%, T-N 85.8%, T-P 99.2%로 분석되었다. 처리수의 BOD, CODcr, T-N, T-P 평균 농도는 침출수 배출허용 기준("나"지역)을 만족하였으며, SS는 멤브레인조를 적용한 후 만족하였다. 현장의 침출수는 유량조정조의 간헐적 폭기 및 월별 상이한 방출량의 영향으로 병합폐수 중 아질산성 질소의 성분이 비교적 높았다. 아질산성질소가 축적된 상태에서도 완전질산화 후 탈질보다는, 아질산성 질소에서 탈질되는 결과가 나타났다. 또한 운전기간 중 평균 소포제 투입량은 약 2L/d으로 같은 폐수를 처리할 시 필요한 메탄올 투입량 약 2.8L/d 대비하여 경제적인 것으로 보인다.