• 제목/요약/키워드: Anoxic $\cdot$ oxic process

검색결과 7건 처리시간 0.016초

${\cdot}$ 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.

연속회분식반응조에서 유기물 부하와 질산염농도에 따른 생물학적 질소 및 인 제거 특성 (Biological Nitrogen and Phosphorus Removal Characteristics on Organic Material and Nitrate Loadings in SBR Process)

  • 김이태;이희자;김광수;배우근
    • 한국물환경학회지
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    • 제20권6호
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    • pp.571-576
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    • 2004
  • Since anaerobic/anoxic/oxic process, which is a typical mainstream biological nitrogen and phosphorus removal process, utilizes influent organic matter as an external carbon source for phosphorus release in anaerobic or anoxic stage, influent COD/T-P ratio gives a strong influence on performance of phosphorus removal process. In this study, a bench scale experiment was carried out for SBR process to investigate nitrogen and phosphorus removal at various influent COD/T-P ratio and nitrate loadings of 23~73 and 1.6~14.3g $NO_3{^-}-N/kg$ MLSS, respectively. The phosphorus release and excess uptake in anoxic condition were very active at influent COD/T-P ratios of 44 and 73. However, its release and uptake was not obviously observed at COD/T-P ratio of 23. Consequently, phosphorus removal efficiency was decreased. In addition, the phosphorus release and uptake rate in anoxic condition increased as the nitrate loading decreased. Specific denitrification rate had significantly high correlation with organic materials and nitrate loadings of the anoxic phase too. The rate of phosphorus release and uptake in the anoxic condition were $0.08{\sim}0.94kg\;S-P/kg\;MLSS{\cdot}d$ and $0.012{\sim}0.1kg\;S-P/kg\;MLSS{\cdot}d$, respectively.

폐수의 고도처리를 위한 무산소/호기형 분리막생물반응조 - 역삼투 공정과 활성슬러지공정 - 정밀여과 - 역삼투 공정의 비교 (Comparison of Anoxic/Oxic Membrane Bioreactor - Reverse Osmosis and Activated Sludge Process-Microfiltration-Reverse Osmosis Process for Advanced Treatment of Wastewater)

  • 노성희;김선일;전홍화;송연호
    • 공업화학
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    • 제17권5호
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    • pp.521-526
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    • 2006
  • 폐수를 재이용하기 위한 고도처리 시스템으로서 분리막 생물반응조(Membrane Bioreactor, MBR)는 기존의 활성슬러지 공정(Activated Sludge Process, ASP)에 비하여 많은 장점을 가지고 있다. 도시 하수 중에 포함된 유기물과 영양염류를 동시에 제거하기 위하여 침지형 정밀여과(Microfiltration, MF) 막을 이용한 무산소/호기(Anoxic/Oxic, A/O)형 MBR에서 투과플럭스를 $10.2L/m^2{\cdot}h$로 일정하게 유지하면서 고형물 체류시간(Solids Retention Time, SRT) 변화에 따른 막 여과 특성을 조사하였다. 실험 결과, SRT를 증가시킬수록 체외고분자물질(Extracellular Polymeric Substances, EPS)내 단백질/탄수화물(Protein/Carbohydrate, P/C) 비가 높아져서 막 오염이 빠르게 진행되었다. A/O MBR에 RO막을 결합한 A/O MBR-RO 공정을 폐수의 고도처리에 적용하고자 하였으며, 성능평가를 위해 A/O MBR-RO 공정과 기존의 활성슬러지 공정에 MF와 RO막을 결합한 ASP-MF-RO 공정의 유기물 및 영양염류 제거율을 비교하였다. 실험 결과 A/O MBR-RO 공정이 ASP-MF-RO 공정보다 더 우수한 처리효율을 나타내었다.

Optimization of membrane fouling process for mustard tuber wastewater treatment in an anoxic-oxic biofilm-membrane bioreactor

  • Chai, Hongxiang;Li, Liang;Wei, Yinghua;Zhou, Jian;Kang, Wei;Shao, Zhiyu;He, Qiang
    • Environmental Engineering Research
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    • 제21권2호
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    • pp.196-202
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    • 2016
  • Membrane bioreactor (MBR) technology has previously been used by water industry to treat high salinity wastewater. In this study, an anoxic-oxic biofilm-membrane bioreactor (AOB-MBR) system has been developed to treat mustard tuber wastewater of 10% salinity (calculated as NaCl). To figure out the effects of operating conditions of the AOB-MBR on membrane fouling rate ($K_V$), response surface methodology was used to evaluate the interaction effect of the three key operational parameters, namely time interval for pump (t), aeration intensity ($U_{Gr}$) and transmembrane pressure (TMP). The optimal condition for lowest membrane fouling rate ($K_V$) was obtained: time interval was 4.0 min, aeration intensity was $14.6 m^3/(m^2{\cdot}h)$ and transmembrane pressure was 19.0 kPa. And under this condition, the treatment efficiency with different influent loads, i.e. 1.0, 1.9 and $3.3kgCODm^{-3}d^{-1}$ was researched. When the reactor influent load was less than $1.9kgCODm^{-3}d^{-1}$, the effluent could meet the third discharge standard of "Integrated Wastewater Discharge Standard". This study suggests that the model fitted by response surface methodology can predict accurately membrane fouling rate within the specified design space. And it is feasible to apply the AOB-MBR in the pickled mustard tuber factory, achieving satisfying effluent quality.

분리막이 결합된 무산소·호기 공정을 이용한 축산폐수처리에서 수리학적체류시간 및 내부반송율이 유기물 및 질소제거에 미치는 영향 (Effect of HRT and Internal Recycle Ratio on Removal of Organic and Nitrogen in Swine Wastewater by Anoxic-Oxic Process Combined with Membrane)

  • 황규대;이봉희;이현덕
    • 한국물환경학회지
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    • 제20권6호
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    • pp.603-609
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    • 2004
  • The objective of this study was to determine the optimal operation conditions in an anoxic oxic process to eliminate both organic and nitrogen matters in swine wastewater. For the purpose of this, the removal efficiency was evaluated with various HRTs and internal recycling ratio. During the whole 580 days of experiment, HRTs had been gradually decreased in an order of 20, 14, 12 and l0days, and the internal recycle ratio was kept at 20Q. So as to determine the effect of the internal recycle ratio on the nitrogen removal, the internal recycle ratio had been gradually increased from 20Q to 50Q while HRT was maintained at 12days. As a result, it was shown that the removal efficiency of organic matter was above 95% regardless of changing of HRTs. The average influent concentration of TCODcr and SCODcr were 24,854 mg/L and 18,920 mg/L, respectively. Average removal efficiency of TKN was shown to be nearly 98% when HRT was kept at 12days; however, the $NH_4{^+}-N$ concentration of effluent was shown to be increased when the loading rate of $NH_4{^+}-N$ was increased to $0.602 kgNH_4{^+}-N/m^3$-day by means of decreasing HRT to 10days. It was concluded that nitrogen loading rates should be more considered rather than organic loading rates in case of determining an optimal HRT. When gradually increasing the internal recycle ratio from 20Q to 50Q, the removal efficiency of organic matters and TKN were 96% and 98%, respectively so that no significant changes in removal efficiency was detected. However, when the internal recycle ratio was kept at 50Q, it was revealed that the $NO_3-N$ concentration of effluent seemed to drop and the average $NO_3-N$ concentration of effluent was around 52 mg/L.

미생물 강제포획기술을 이용한 수산물 가공공장 폐수처리에서 부하율에 따른 유기물 및 질소의 제거 효율성 평가 (Evaluating the Removal Efficiency of Organic Compounds and Nitrogen Depending on Loading Rate in Wastewater Treatment from Fisheries Processing Plant Using an Entrapped Mixed Microbial Cell Technique)

  • 정병철;장수현;정병곤
    • 한국해양환경ㆍ에너지학회지
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    • 제9권1호
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    • pp.14-20
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    • 2006
  • 수산물 가공공장 폐수의 생물학적 처리를 위하여 미생물 강제포획방식인 EMMC 공정을 적용하여 유기물 및 질소의 동시제거 가능성을 평가하였다. 처리도 실험은 도시하수처리장에서 가져온 활성슬러지를 cellulose triacetate를 이용한 gel matrix에 고정시켜 실험을 수행하였다. anoxic조와 oxic조로 구성된 시스템에 유기물 및 질소부하 율을 증가시켜가며 실험한 결과 비교적 안정된 형태의 운전이 가능하였다. 적용 유기물부하는 $0.65{\sim}1.72kgCOD/m^3{\cdot}d$, 총질소 부하는 $0.119{\sim}1.317kgT-N/m^3{\cdot}d$의 범위에서 4단계로 나누어 적용시켰다. 본 연구에 사용한 수산물 가공공장폐수의 경우 공장폐수의 유출수 총질소 농도 규제치인 60 mg/l 이하를 기준으로할 때 T-N의 경우 한계 적용용적부하는 약 $0.3kgT-N/m^3{\cdot}d$인 것으로 나타났다. T-N의 경우는 부하율 증가에 따른 제거효율 저하가 뚜렷하였으나 ${NH_4}^+-N$의 경우는 각 단계별로 부하율을 증가시키면서 실험해본 결과 부하율 증가에도 불구하고 제거 효율 변화는 완만하여 본 실험에 적용한 시스템의 경우 질산화 반응은 부하변동에 관계없이 효율적으로 이루어지는 것으로 평가되었다. 실험 기간 중 Anoxic조의 질산성 질소 제거율은 각 단계별로 평균 $99.51{\sim}98.62%$로 나타났으며 oxic조의 질산화 제거율은 $94.0{\sim}96.9%$로 나타났다. 시스템 전체로는 적용 용적부하율하에서 화학적 산소요구량(COD: Chemical Oxygen Demand)의 경우 $94.2%{\sim}96.6%$, 총질소의 경우 $73.4{\sim}83.4%$ 의 제거효율을 나타내었다.

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하.폐수 고도처리시 F/M비 변화에 따른 유기산 잔류 농도가 슬러지 침강성에 미치는 영향 (Influence of Organic Acids Residual Concentration by the Change of F/M Ratio on Sludge Settleability in Advanced Sewage Treatment Processes)

  • 박영기;김영일;김슬기
    • 대한환경공학회지
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    • 제28권1호
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    • pp.42-47
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    • 2006
  • 생물학적 고도처리는 혐기, 무산소, 호기의 조건을 반복하거나 재배열함으로서 이루어지는데 이때 혐기조와 무산소조에서는 유기산이 발생한다. 여기서 발생한 유기산은 질소와 인의 제거와 슬러지침강성에 중요한 인자로 작용한다. 따라서 본 연구에서는 하 폐수 고도처리 시 F/M비 변화에 따른 유기산의 발생정도와 잔류농도 변화와 기에 따른 유기물과 질소의 제거 특성과 처리효율 및 슬러지 침강성과의 관계를 모색하기 위해 특성을 검토 하였다. 고도처리를 위해 $A^2/O$ 공정을 사용하였고 MLSS의 농도의 변화로 F/M비를 조절하였다. F/M비를 $0.16{\sim}0.08$ kg-BOD/kg-MLSS/day로 변화 시켰을 때 F/M비에 감소에 따라 회분식 반응기에 의한 유기산의 생성량의 증가하였고 잔류 유기산 농도는 감소하였다가 증가하였다. F/M비가 $0.16kg/kg{\cdot}d$ 실험 조건에서 SVI와 SS는 높게 나타났으며 F/M비가 $0.11{\sim}0.13kg/kg{\cdot}d$로 높아짐에 따라 감소하여 양호한 상태를 보이다 F/M비가 증가함에 SVI와 SS도 지속적으로 증가하여 $0.08kg/kg{\cdot}d$에서 높은 SVI와 SS 농도를 나타내었다. 무산소조의 유기산 잔류 농도 그리고 탈질률을 비교한 결과 무산소조의 유기산 잔류량이 적을수록 탈질률은 증가하였다. 슬러지 침강성과 질소 제거효율을 고려한 최적의 유기산 잔류 농도는 $1.4{\sim}2.2$ mg/L이며 이때의 F/M비는 $0.11{\sim}0.13$ kg-BOD/kg-MLSS/day범위로 나타났다.