• 제목/요약/키워드: Membrane bio-reactor

검색결과 48건 처리시간 0.023초

순산소 고율포기시스템 및 침지식 MBR융합공정에서 Biofouling 제어 및 원인물질 규명에 관한 연구 (The Study of Biofouling Control and Cause Material in Hybrid Process of Pure Oxygen and Submerged Membrane Bio-reactor)

  • 이상민;김미형
    • 한국물환경학회지
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    • 제27권1호
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    • pp.44-53
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    • 2011
  • Membrane bio-reactor (MBR) has several advantages over the conventional activated sludge process, including a high biomass, low sludge production, and better permeate quality. Therefore, the MBR have gained popularity for municipal and industrial wastewater treatment. However the MBR usually were used for sewage and low streng th wastewater treatment because of membrane fouling problem and limitation of oxygen transfer into biomass. In this study, the hybrid process combining MBR and pure oxygen was tested for high strength organic wastewater treatment in the COD loading range from 2 to $10kgCOD/m^3{\cdot}day$. The hybrid process, membrane coupled pure oxygen high compact reactor (MPHCR), had been operated for one year and operation parameters, the effect of COD loading, MLSS concentration and the location of membrane module were studied for membrane fouling characteristic. Also membrane resistance test and the component of foulant was analyzed to investigate what is specific foulant in the MBR.

막결합형 생물반응기(Membrane Bio-Reactor)의 막 오염 저감을 위한 고전압 펄스의 적용과 막 오염 저감 속도론적 해석 (Application of high voltage pulse for reduction of membrane fouling in membrane bio-reactor and kinetic approach to fouling rate reduction)

  • 김경래;김완규;장인성
    • 상하수도학회지
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    • 제34권3호
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    • pp.183-190
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    • 2020
  • Although membrane bio-reactor (MBR) has been widely applied for wastewater treatment plants, the membrane fouling problems are still considered as an obstacle to overcome. Thus, many studies and commercial developments on mitigating membrane fouling in MBR have been carried out. Recently, high voltage impulse (HVI) has gained attention for a possible alternative technique for desalting, non-thermal sterilization, bromate-free disinfection and mitigation of membrane fouling. In this study, it was verified if the HVI could be used for mitigation of membrane fouling, particularly the internal pore fouling in MBR. The HVI was applied to the fouled membrane under different conditions of electric fields (E) and contact time (t) of HVI in order to investigate how much of internal pore fouling was reduced. The internal pore fouling resistance (Rf) after HVI induction was reduced as both E and t increased. For example, Rf decreased by 19% when the applied E was 5 kV/cm and t was 80 min. However, the Rf decreased by 71% as the E increased to 15 kV/cm under the same contact time. The correlation between E and t that needed for 20% of Rf reduction was modeled based on kinetics. The model equation, E1.54t = 1.2 × 103 was obtained by the membrane filtration data that were obtained with and without HVI induction. The equation states the products of En and t is always constant, which means that the required contact time can be reduced in accordance with the increase of E.

Bio-degradation of Phenol in Wastewater by Enzyme-loaded Membrane Reactor: Numerical Approach

  • Barbieri, Giuseppe;Choi, Seung-Hak;Scura, Francesco;Mazzei, Rosalinda;Giorno, Lidietta;Drioli, Enrico;Kim, Jeong-Hoon
    • 멤브레인
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    • 제19권1호
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    • pp.72-82
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    • 2009
  • A mathematical model was written for simulating the removal of phenol from wastewater in enzyme-loaded membrane reactor (EMR). The numerical simulation program was developed so as to predict the degradation of phenol through an EMR. Numerical model proves to be effective in searching for optimal operating conditions and creating an optimal microenvironment for the biocatalyst in order to optimize productivity. In this study, several dimensionless parameters such as Thiele Modulus (${\phi}^2$, dimensionless Michaelis-Menten constant ($\xi$), Peclet number (Pe) were introduced to simplify their effects on system efficiency. In particular, the study of phenol conversion at different feed compositions shows that low phenol concentrations and high Thiele Modulus values lead to higher reactant degradation.

전기응집 조건이 활성슬러지 막 여과 저항에 미치는 영향 (Effect of operating condition of electro-coagulation on the membrane filtration resistances of activated sludge)

  • 홍성준;장인성
    • 한국산학기술학회논문지
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    • 제16권3호
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    • pp.2314-2320
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    • 2015
  • MBR (Membrane Bio-Reactor) 공정은 막 오염을 해결하기 위해 막대한 에너지 소비를 하는 공정으로 알려져 있다. 이를 해결하기 위한 일환으로 전기응집 기술을 MBR에 적용하는 시도가 보고되고 있다. 본 연구에서는 전류밀도를 변화시켜가며 활성슬러지의 막 여과를 수행하여 전기응집이 막 오염 저감에 미치는 영향과 메커니즘을 파악하고자 하였다. 활성슬러지 혼합액을 전기응집한 후 회분식교반셀로 분리 막의 여과성능을 평가하였다. 전류밀도(A/m2)를 10에서 40으로 증가시켰을 때 총 오염 저항 (Rc+Rf) 값이 18%에서 79%까지 감소하여 전기응집으로 인해 분리 막의 여과성능이 향상됨을 확인할 수 있었다. 전기응집 전후로 유기물 농도와 활성슬러지 입도분포 변화는 거의 일어나지 않았다. 여과 성능의 향상은 수산화알루미늄, Al(OH)3이 생성되어 막 표면에 부착되면서 오염물질이 쌓이게 됨을 방지하는 역할, 즉 dynamic membrane 으로 작용하였기 때문인 것으로 판단되었다.

Multi-Dimension Scaling as an exploratory tool in the analysis of an immersed membrane bioreactor

  • Bick, A.;Yang, F.;Shandalov, S.;Raveh, A.;Oron, G.
    • Membrane and Water Treatment
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    • 제2권2호
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    • pp.105-119
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    • 2011
  • This study presents the tests of an Immersed Membrane BioReactor (IMBR) equipped with a draft tube and focuses on the influence of hydrodynamic conditions on membrane fouling in a pilot-scale using a hollow fiber membrane module of ZW-10 under ambient conditions. In this system, the cross-flow velocities across the membrane surface were induced by a cylindrical draft-tube. The relationship between cross-flow velocity and aeration strength and the influence of the cross-flow on fouling rate (under various hydrodynamic conditions) were investigated using Multi-Dimension Scaling (MDS) analysis. MDS technique is especially suitable for samples with many variables and has relatively few observations, as the data about Membrane Bio-Reactor (MBR) often is. Observations and variables are analyzed simultaneously. According to the results, a specialized form of MDS, CoPlot enables presentation of the results in a two dimensional space and when plotting variables ratio (output/input) rather than original data the efficient units can be visualized clearly. The results indicate that: (i) aeration plays an important role in IMBR performance; (ii) implementing the MDS approach with reference to the variables ratio is consequently useful to characterize performance changes for data classification.

전기응집 분리 막 생물반응기의 막 오염 저감 (Membrane fouling reduction using electro-coagulation aided membrane bio-reactor)

  • 김완규;홍성준;장인성
    • 한국산학기술학회논문지
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    • 제19권8호
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    • pp.105-114
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    • 2018
  • 전기응집 (Electro-coagulation)을 활용한 분리 막 생물반응기 (Membrane Bio-Reactor) 공정의 막 오염 저감 현상을 확인하고 이를 해석하고자 하였다. 전기응집의 주요 운전 인자인 전류밀도와 접촉시간 변화가 활성슬러지 혼합액의 막 여과에 미치는 영향을 관찰하고 전기응집 과정에서 발생하는 수산화금속염이 막 오염에 미치는 역할에 대해 연구하였다. 전류밀도를 $10A/m^2$으로 높게 유지한 경우에는 전기응집 시간이 증가하여도 막 오염 감소 효과가 크지 않은 반면 $2.5A/m^2$의 낮은 전류밀도 하에서는 전기응집 시간이 증가하면 추가적인 막 오염 감소가 관찰되었다. 즉, 막 오염을 감소시키는 전류밀도와 접촉시간의 곱이 전체 막 오염 저감 정도를 지배하고 있음을 확인하였다. 또한 주어진 전류밀도와 인가시간에서 입도분포는 크게 변화하지 않은 것으로 나타나 콜로이드 입자와 막 오염 저감과는 큰 관련성이 없는 것으로 판단되었다. 그러나 전기응집을 통해 생성된 수산화알루미늄 (인산알루미늄)이 막 여과 과정에서 동적 막 (Dynamic Membrane)을 형성하여 막 오염 현상을 완화하는 것으로 확인되었다. 전기응집에서 발생한 수산화금속염이 막 표면에 동적 막을 형성하고 이로 인해 유입수의 입자성분이 직접 막 표면과 내부에 침적되는 것을 방해하고 동적 막에 주로 쌓이게 함으로써 막 오염이 감소된 것이다. 본 연구에서 밝힌 수산화금속염에 의한 동적 막의 역할은 전기응집을 활용한 MBR 공정의 후 막 오염 감소 메커니즘을 해석하는데 중요한 역할을 한다고 결론지을 수 있다.

멤브레인을 침지한 하수고도처리공법에서 기존간헐포기와 개량간헐포기의 효율성 비교평가 (Evaluation of CIA(Conventional Intermittent Aeration) and MIA(Modified Intermittent Aeration) in Membrane Submerged Advanced Wastewater Treatment Process)

  • 서인석;김연권;김지연;김홍석;김병군;최창규;안효원
    • 상하수도학회지
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    • 제20권2호
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    • pp.257-264
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    • 2006
  • In this study, the treatment of domestic wastewater in a field-scale membrane submerged intermittently aerated activated sludge process($210m^3/day$) was investigated under difference aeration methods. Operating temperature was 5.4 to 25.0 and membrane used in this study is a polyethylene hollow fiber membrane(pore size $0.4{\mu}m$). The range of operating flux was $9.7{\sim}24.4l/m^2-h$ and membrane permeates periodically operated for 7min followed idle for 3 min. The results showed that MIA(modified intermittent aeration) was more efficient in nitrogen and phosphorus removal. The removal efficiencies of T-N and T-P were 73.0% and 69.6% for CIA(conventional intermittent aeration) and 57.5%, 58.6% for MIA (modified intermittent aeration). With application of modified intermittent aeration, DO reached nearly Omg/l within 10 minutes after air off. Organics of influent could be entirely consumed to the denitrification and the P-release without the influence by remained DO in intermittent aeration reactor. Therefore, newly developed KSMBR(Kowaco-KMS-Ssangyoung Membrane Bio-Reactor) process with modified intermittent aeration can be one of the useful process for stable nitrogen and phosphorus removal.

Nitrogen Removal and Behavior of Soluble Microbial Products (SMP) in the MBR Process with Intermittent Aerobic Condition

  • Cha, Gi-Cheol;Myoung Hwang
    • Korean Membrane Journal
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    • 제3권1호
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    • pp.1-8
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    • 2001
  • A lab-scale submerged membrane bio-reactor (MBR) with intermittent aeration was carried out for investigating the behavior of soluble microbial products (SMP). The SMP concentration of mixed liquor at Run 1 accumulated immediately at the end of running and biodegradable SMP converted into non-biodegradable SMP, but it did not occurred at the Run 2 and 3. The SMP formation coefficient (k) at the anoxic phase was a little higher than oxic phase, and the lowest k was investigated at Run 3. The combination of biological denitrification with the MBR Process was advantageous in the prevention of membrane bio-fouling.

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